Weifeng Sun | Structural Health Monitoring | Best Researcher Award

Mr. Weifeng Sun | Structural Health Monitoring | Best Researcher Award

Lecturer Chang’an University, China

Weifeng Sun πŸ‘¨β€πŸ”¬, a doctor of engineering, hails from Yanling County, Henan Province. He is a lecturer and master’s supervisor at Chang’an University’s College of Geology and Engineering 🏫. As a member of the Chinese Society for Rock Mechanics and Engineering πŸ§—β€β™‚οΈ and the Communist Party of China πŸ‡¨πŸ‡³, he has published nearly 20 academic papers πŸ“š and holds over 40 patents and software copyrights πŸ’». His work is focused on geological engineering, both in teaching and research

Publication Profile

Orcid

Education πŸŽ“

Weifeng Sun completed his Doctorate in Engineering πŸŽ“ with a focus on geotechnical materials and geological engineering πŸ“Š. His educational journey involved rigorous research 🧠 into the deformation and failure mechanisms of geotechnical materials, stability of soil slopes 🌱, and intelligent monitoring technologies πŸ–₯️. His academic foundation provides a strong framework for his innovative research into geotechnical engineering πŸ”¨, making significant contributions to both academia and practical applications in the field πŸ—οΈ.

Experience πŸ‘¨β€πŸ«

Dr. Weifeng Sun’s professional journey spans across teaching πŸ“˜ and research πŸ”¬ at the College of Geology and Engineering, Chang’an University πŸ›οΈ. As a lecturer and master’s supervisor πŸ‘¨β€πŸ«, he mentors aspiring geologists and engineers while advancing his research in geotechnical engineering 🏞️. With 20+ publications and over 40 patents and software copyrights πŸ“, he is actively involved in cutting-edge research on geological materials and monitoring systems. His expertise extends to in-situ testing πŸ§ͺ and geotechnical project management 🚧.

Awards and Honors πŸ†

Dr. Weifeng Sun’s pioneering work in geotechnical engineering has earned him numerous accolades , including recognition for his patents and contributions to the field πŸ“œ. As a member of prestigious organizations like the Chinese Society for Rock Mechanics and Engineering πŸ…, his innovative research has been acknowledged both nationally and internationally 🌍. His patents πŸ’‘ and research papers πŸ“– reflect his commitment to advancing geotechnical engineering πŸ—οΈ, establishing him as a respected figure in the academic and professional communities πŸŽ–οΈ.

Research Focus πŸ”.

Weifeng Sun’s research interests lie in the deformation and failure mechanisms of geotechnical materials 🧱, plant-based control on shallow soil slopes stability 🌳, intelligent monitoring for geotechnical structures πŸ–₯️, and in-situ testing of geotechnical materials πŸ§ͺ. His work aims to improve the safety and efficiency of geotechnical engineering projects 🌐 by leveraging advanced monitoring techniques and developing sustainable engineering solutions 🌱. His multidisciplinary approach addresses both macroscopic and microscopic geotechnical challenges πŸ”.

Publications Top Notes

“A Statistical Damage Model for the Soil–Structure Interface Considering Interface Roughness and Soil Shear Area”
Construction and Building Materials, 2024-06
DOI: 10.1016/j.conbuildmat.2024.136606

“Effect of Dry-Wet Cycles and Freeze-Thaw Cycles on the Antierosion Ability of Fiber-Reinforced Loess”
Advances in Materials Science and Engineering, 2021-01
DOI: 10.1155/2021/8834598

“Deformation of Geogrid-Reinforced Segmental Retaining Wall Due to Insufficient Compaction of the Loess Backfill: Case Study in Shaanxi Province, China”
Journal of Performance of Constructed Facilities, 2019-09-18
DOI: 10.1061/(ASCE)CF.1943-5509.0001346

“Failure Models of a Loess Stacked Dam: A Case Study in the Ansai Area (China)”
Bulletin of Engineering Geology and the Environment, 2019-09-06
DOI: 10.1007/s10064-019-01605-z

“A Dry Soil Crushing and Screening Device in Geotechnical Test”
Patent ZL201821116361.2 (2019-01-18)

“A Soil Sensor Installation Device”
Patent ZL201821109384.0 (2019-01-04)

“A Rebar Meter Used to Monitor Force of Anchor Embed in Rock and Soil”
Patent ZL201721579552.8 (2018-08-10)

“A Comprehensive Geotechnical Test Platform for Geological Model Tests of Complex Slopes”
Patent ZL201710480631.1 (2017-08-29)

 

Conclusion

Dr. Weifeng Sun is a highly qualified candidate for the Best Researcher Award due to his substantial contributions to geological engineering, including a robust portfolio of publications and patents. His research addresses critical issues in the field, and his role as an educator further underscores his impact. With improvements in global collaboration and broader dissemination of his work, Dr. Sun could further elevate his stature in the international research community. Overall, his innovative approaches and commitment to advancing geological engineering make him a strong contender for the award.

Bernd Bachert | Korrosionsschutz | Best Researcher Award

Dr.Β  DHBW Mosbach, Germany

With a robust academic background in Mechanical Engineering, including a Doctorate from Darmstadt University of Technology, this individual has amassed extensive experience in academia and industry. They have served as a professor, dean, and director across various institutions, playing a pivotal role in developing and accrediting numerous engineering study programs. Their expertise extends to fluid mechanics, thermodynamics, and materials science. They also lead research in mechanical engineering and renewable energy, contributing significantly to education and innovation. As CEO of IRATEC GmbH, they combine academic rigor with practical industry insights, making them a highly accomplished professional in their field.

Professional Profiles:

Education πŸŽ“

February 1982 – June 1987: Secondary School NeckargemΓΌnd Qualification: GCSE August 1987 – February 1991: Training at Eltro GmbH, Heidelberg
Qualification: Precision Mechanic August 1991 – June 1992: Johannes-Gutenberg-Schule, Heidelberg Qualification: Technical Diploma (Fachhochschulreife) September 1992 – January 1997: University of Applied Sciences Mannheim, Faculty of Mechanical Engineering Qualification: Graduate Engineer in Mechanical Engineering (FH) October 1997 – April 2000: Darmstadt University of Technology, Faculty of Mechanical Engineering Qualification: Graduate Engineer in Mechanical Engineering June 2000 – December 2003: Doctoral Thesis at Darmstadt University of Technology, Faculty of Mechanical Engineering Qualification: Doctor of Mechanical Engineering (Dr.-Ing.)

Work Experience πŸ’Ό

February 1991 – August 1991: Wolfgang Bortz Zerspanungstechnik GmbH Function: Programming of CNC Machines January 1997 – June 1999: Assistant Professor at BFZ NΓΌrnberg January 1997 – December 1997: KDK Kalibrierdienst Kopp GmbH (Calibration Service) Function: Handling of problems in quality assurance and quality management October 1997 – April 2000: Assistant Professor at Abendakademie Mannheim and DaimlerChrysler Training Center Mannheim Lecture: Fluid Mechanics

Evaluation of the Candidate for the Best Researcher Award

Strengths:

  1. Extensive Academic Background:
    • The candidate has a solid educational foundation in mechanical engineering, with qualifications ranging from a Technical Diploma to a Doctorate in Mechanical Engineering (Dr.-Ing.). This extensive academic background supports their credibility and expertise in the field.
  2. Diverse Work Experience:
    • The candidate has a wealth of experience across various roles, including positions as an assistant professor, director, professor, and head of departments. Their roles have spanned multiple institutions and responsibilities, indicating a strong capacity for leadership and innovation in both academia and industry.
  3. Leadership and Management Skills:
    • The candidate has held significant leadership positions, such as Director of the Heidelberg Institute for Applied Research and Development, Professor and Dean at SRH University, and Head of Mechanical Engineering at DHBW Mosbach. These roles highlight their ability to lead and manage academic and research initiatives effectively.
  4. Contributions to Education:
    • The candidate has been instrumental in developing and accrediting various study programs, including Bachelor’s and Master’s degrees in Mechanical Engineering and Industrial Engineering. Their work in creating didactical training and education programs for national and international partners showcases their dedication to advancing education in engineering.
  5. Research Contributions:
    • The candidate has engaged in several research projects in areas such as Mechanical Engineering, Water Power Engineering, and Dual Education. Their authorship of various scientific publications further underscores their contributions to research and knowledge dissemination.
  6. International Experience and Collaboration:
    • As the Head of the International Office at DHBW Mosbach, the candidate has demonstrated a commitment to fostering international collaborations and expanding the global reach of their institution.
  7. Industry Engagement:
    • The candidate’s part-time role as CEO of IRATEC GmbH, coupled with their experience in consulting and renewable energy engineering, illustrates a strong connection between their academic work and practical, real-world applications.

Areas for Improvement:

  1. Focused Research Output:
    • While the candidate has a broad range of experience, a more focused research output in a specific area of mechanical engineering might strengthen their candidacy for a Best Researcher Award. Concentrating on one niche could lead to more impactful publications and a stronger reputation in that domain.
  2. Innovation and Patents:
    • The candidate’s profile could be further enhanced by showcasing any patents or innovative technologies they may have developed. Highlighting these achievements would emphasize their contributions to the advancement of mechanical engineering.
  3. Recent Research Activity:
    • Emphasizing more recent and cutting-edge research activities would demonstrate continued relevance and engagement with current trends in mechanical engineering. If recent high-impact publications or projects are not prominent, focusing on these could be beneficial.

 

✍️Publications Top Note :

Time-dependent measurements of cavitation damage
Authors: Osterman, A., Bachert, B., Sirok, B., Dular, M.
Journal: Wear, 2009, 266(9-10), pp. 945–951
Citations: 29

Comparison of different methods for the evaluation of cavitation damaged surfaces
Authors: Bachert, B., Ludwig, G., Stoffel, B., Baumgarten, S.
Conference: Proceedings of the American Society of Mechanical Engineers Fluids Engineering Division Summer Conference, 2005, 2, pp. 553–560, FEDSM2005-77368
Citations: 1

Comparison of different methods for the evaluation of cavitation damaged surfaces
Authors: Bachert, B., Stoffel, B., Ludwig, G., Baumgarten, S.
Conference: Proceedings of 2005 ASME Fluids Engineering Division Summer Meeting, FEDSM2005, 2005, pp. 2111–2118
Citations: 7

Relationship between cavitation structures and cavitation damage
Authors: Dular, M., Bachert, B., Stoffel, B., Ε irok, B.
Journal: Wear, 2004, 257(11), pp. 1176–1184
Citations: 249

Experimental investigations concerning erosive aggressiveness of cavitation at different test configurations
Authors: Bachert, B., Dular, M., Baumgarten, S., Ludwig, G., Stoffel, B.
Conference: Proceedings of the ASME Heat Transfer/Fluids Engineering Summer Conference 2004, HT/FED 2004, 3, pp. 733–743, HT-FED04-56597
Citations: 5

Experimental investigations concerning influences on cavitation inception at an axial test pump
Authors: Bachert, B., Brunn, B., Stoffel, B.
Conference: Proceedings of the ASME/JSME Joint Fluids Engineering Conference, 2003, 2 A, pp. 249–256
Citations: 5

The influence of cavitation structures on the erosion of a symmetrical hydrofoil in a cavitation tunnel
Authors: Ε irok, B., Dular, M., Novak, M., Ludwig, G., Bachert, B.
Journal: Strojniski Vestnik/Journal of Mechanical Engineering, 2002, 48(7), pp. 368–378
Citations: 13

Conclusion:

The candidate is a strong contender for the Best Researcher Award due to their extensive academic qualifications, leadership experience, and contributions to education and research. Their background in mechanical engineering is complemented by significant roles in academia and industry, making them a well-rounded and influential figure in the field. To enhance their candidacy, they could focus on a more specialized area of research, highlight any innovative contributions, and ensure their recent research activities are at the forefront of their application.

Gyo Soon Kim | CFD | Best Researcher Award

Mr.Β  TAE SUNG S&E,Department of Mechanical Engineering, Kyung Hee University, South Korea

Mr. Gyo Soon Kim is currently a Ph.D. candidate in Mechanical Engineering at Kyung Hee University, Suwon, Korea, under the guidance of Dr. Junmo Koo. With a solid foundation in mechanical engineering, having completed an M.S. at Ajou University,Mr. Gyo Soon Kim has led several government-sponsored research projects. These include the development of a technology for achieving over 65% thermal substitution rate in cement kilns through optimized waste plastic supply and combustion processes (2023), safety verification systems for spent nuclear fuel disposal sites (2021), and LNG fuel supply system technology for coastal ships (2019). His expertise in these areas underscores his leadership in advancing critical technologies for energy and environmental sustainability.

Professional Profiles:

Education πŸŽ“

Ph.D. Candidate in Mechanical Engineering, Kyung Hee University, Suwon, Korea (Present)Advisor: Dr. Junmo KooFocus: Advanced thermal and energy systems, with ongoing research in optimizing energy efficiency.M.S. in Mechanical Engineering, Ajou University, Suwon, Korea (Feb 2005)Advisor: Dr. Yunho ChoiSpecialized in mechanical system design and energy process engineering.

Employment History πŸ› οΈ

Team Leader, Technical Division, TAE SUNG S&E (2013.4 – Present)Leading the technical division, overseeing advanced engineering projects, and driving innovation in energy systems.Team Leader, Technical Division, CD-adapco Korea (2012.3 – 2013.4)Managed a team focused on computational fluid dynamics (CFD) and simulation technology, delivering cutting-edge solutions.Manager (Engineer), Technical Division, TAE SUNG S&E (2010.4 – 2012.3)Contributed to the development of energy-efficient technologies, focusing on process optimization and system integration.Manager (Engineer), Technical Division, Next E&E Co., Ltd. (2009.9 – 2010.3)Worked on engineering projects related to environmental sustainability, emphasizing clean energy solutions.Manager (Engineer), Technical Division, ATES Co., Ltd. (2005.8 – 2009.9)Played a crucial role in designing and implementing engineering solutions in the energy sector.

Projects πŸš€

Development of Technology for Cement Kiln Thermal Substitution Rate Over 65% by Uniform Waste Plastic Supply and Combustion Process Optimization (2023)As the Research Director, led a five-year project funded by MOTIE to develop a groundbreaking technology that enhances cement kiln thermal efficiency by over 65% through optimized waste plastic supply and combustion processes.Evaluation Technology for Spent Nuclear Fuel Disposal Site and Safety Verification System Construction (2021)Directed a nine-year MOTIE-funded project focused on constructing a robust safety verification system for spent nuclear fuel disposal sites, ensuring compliance with stringent safety standards.LNG Fuel Supply System Technology Development for Coastal Ships (2019)Managed a four-year project funded by MOTIE, aimed at developing an LNG fuel supply system for coastal ships, contributing to the maritime industry’s transition to cleaner energy sources.

Strengths for the Award

  1. Extensive Experience in Industry and Research: The individual has a robust background in engineering with significant roles in various technical divisions, including leadership positions at TAE SUNG S&E and CD-adapco Korea. This extensive experience provides a strong foundation for understanding and leading advanced research projects.
  2. Advanced Education: The individual is a Ph.D. candidate in Mechanical Engineering at Kyung Hee University, which highlights a commitment to advancing their knowledge and expertise in the field.
  3. Government-Sponsored Projects: The person has led several high-profile projects funded by the Ministry of Trade, Industry, and Energy (MOTIE), showcasing their capability in managing substantial research and development initiatives. These projects cover critical areas such as cement kiln thermal optimization, nuclear fuel disposal, and LNG fuel systems.
  4. Innovative Projects: Their projects focus on technology development and optimization, including cutting-edge topics like waste plastic utilization and safety systems for nuclear fuel. This reflects a commitment to addressing contemporary challenges and advancing technological solutions.

Areas for Improvement

  1. Publication Record: The provided information does not include details about the individual’s publication record. A strong track record of peer-reviewed publications would enhance their candidacy, showcasing their contributions to academic and practical knowledge in the field.
  2. Broader Research Impact: While the projects are significant, providing more details on the impact of these projects on industry practices, technology advancement, and academic contributions could strengthen their application.
  3. Collaboration and Outreach: Demonstrating involvement in collaborative research or partnerships with other institutions could enhance their profile. Additionally, engagement in academic conferences or workshops could highlight their contribution to the broader research community.

✍️Publications Top Note :

Title: Granule Efficiency Evaluation Process Using Two-Way CFD-DEM Coupling Analysis
Authors: S.J. Lee, H.S. Ahn, J.H. Lee, G.S. Kim, J.H. Cho
Journal: Chemical Engineering Journal
Year: 2024
Volume: 498
Article Number: 155123

Conclusion

The individual has a solid foundation for being considered for the Best Researcher Award due to their extensive experience in engineering, advanced education, and leadership in substantial government-sponsored projects. To strengthen their candidacy, focusing on enhancing their publication record, showcasing the broader impact of their research, and demonstrating collaborative efforts could further solidify their suitability for the award.

 

Juan Bai | Materials and Structures | Women Researcher Award

Dr.Β  Queensland university of technology, Australia

Dr. Bai J. is an ARC DECRA Fellow and Lecturer at Queensland University of Technology, with a strong background in material physics and chemistry. Their research is centered on designing and synthesizing functional nanostructured materials for electrochemistry and energy conversion, particularly in fuel cells and electrocatalysis. Dr. Bai has published 24 papers in leading SCI journals such as Advanced Materials and ACS Energy Letters. Recognized for their contributions, they have received prestigious awards, including the Australian Research Council DECRA and Discovery Projects awards. Dr. Bai holds a Ph.D. from Shaanxi Normal University and has extensive expertise in electrochemical energy storage and conversion devices.

Professional Profiles:

 

πŸŽ“ Education

Feb. 2024 – Present:
ARC DECRA Fellow/Lecturer, School of Chemistry and Physics, Queensland University of Technology, Brisbane, Australia.Apr. 2020 – Jan. 2024:
Postdoc in Electrocatalysis, School of Chemistry and Physics, Queensland University of Technology, Brisbane, Australia.
Supervisors: Prof. Ziqi Sun, Jun MeiSep. 2016 – Jun. 2019:
Ph.D. in Material Physics and Chemistry, School of Materials Science and Engineering, Shaanxi Normal University, Xi’an, China.
Supervisors: Prof. Yu Chen, Jinghui ZengSep. 2012 – Jun. 2015:
M.S. in Physical Chemistry, College of Chemistry and Materials Science, Nanjing Normal University, Nanjing, China.
Supervisors: Prof. Dongmei Sun, Yu Chen, Tianhong LuSep. 2008 – Jun. 2012:
B.S. in Science Education, Department of Applied Chemistry, Yuncheng University, Yuncheng, China.

πŸ”¬ Research Objectives

My research is centered on the design and synthesis of functional nanostructured materials for applications in electrochemistry and energy conversion devices. Key areas of focus include:Anodic and Cathodic Reactions of Fuel Cells: ORR, MOR, EOR, and FAORElectrocatalysts: Noble metal-based (Pt, Pd, Rh) nanoparticles for HER, OER, and NRRAs the first/co-first/corresponding author, I have published 24 papers in top-tier SCI Journals such as Advanced Materials, ACS Energy Letters, and Advanced Energy Materials.

πŸ† Awards and Honors

2023: Australian Research Council Discovery Early Career Researcher Award (DECRA) – $448,407.002023: Australian Research Council Discovery Projects – $404,530.002018: National Scholarship for Graduate Students (Ph.D.)2017: Research Individual Award by Shaanxi Normal University2017: Ji-Xue Scholarship by Shaanxi Normal University2016: Yuan-Ding Scholarship by Shaanxi Normal University2015: Excellent Student Award by Nanjing Normal University

Strengths for the Award

  1. Extensive Research Experience: The candidate has a strong background in material physics and chemistry, with a focus on nanostructured materials and their applications in electrochemical energy conversion. This expertise is highly relevant to the award, as it demonstrates a deep understanding of a critical field in modern science.
  2. Publication Record: With 24 papers published in high-impact SCI journals such as Advanced Materials, ACS Energy Letters, and Advanced Energy Materials, the candidate has established herself as a leading researcher in her field. This prolific publication record underscores her ability to contribute original and significant research to the scientific community.
  3. Award and Recognition: The candidate has received prestigious awards, including the 2023 Australian Research Council Discovery Early Career Researcher Award (DECRA) and substantial research funding. These accolades reflect her recognized potential and achievements within the scientific community.
  4. Research Focus on Sustainability: The candidate’s work on electrocatalysts and fuel cells, especially in the context of sustainable energy, aligns with global priorities in renewable energy and environmental protection. This makes her research not only innovative but also socially and environmentally impactful.
  5. Professional Skills: The candidate has demonstrated a high level of expertise in experimental techniques, theoretical knowledge, and the use of advanced instrumentation. These skills are essential for conducting cutting-edge research in electrochemistry and material science.

Areas for Improvement

  1. Broader Impact and Outreach: While the candidate has an impressive academic and research background, there is limited information on her involvement in outreach activities, mentoring, or promoting women in science. Increasing visibility and engagement in these areas could enhance her candidacy for a Women Researcher Award, which often considers contributions beyond academic achievements.
  2. Interdisciplinary Collaboration: While the candidate’s research is highly specialized, further collaboration across disciplines could lead to broader applications of her work and increase its overall impact. Engaging in interdisciplinary projects or collaborations with industry could further elevate her profile.

 

✍️Publications Top Note :

Nanocatalysts for Electrocatalytic Oxidation of Ethanol
Authors: J. Bai, D. Liu, J. Yang, Y. Chen
Journal: ChemSusChem, 12(10), 2117-2132, 2019
Citations: 170
πŸ§ͺ Focus: Ethanol oxidation using nanocatalysts.

Polyallylamine-Functionalized Platinum Tripods: Enhancement of Hydrogen Evolution Reaction by Proton Carriers
Authors: G.R. Xu, J. Bai, L. Yao, Q. Xue, J.X. Jiang, J.H. Zeng, Y. Chen, J.M. Lee
Journal: ACS Catalysis, 7(1), 452-458, 2017
Citations: 147
πŸ”‹ Focus: Hydrogen evolution reaction.

Bimetallic Platinum–Rhodium Alloy Nanodendrites as Highly Active Electrocatalyst for the Ethanol Oxidation Reaction
Authors: J. Bai, X. Xiao, Y.Y. Xue, J.X. Jiang, J.H. Zeng, X.F. Li, Y. Chen
Journal: ACS Applied Materials & Interfaces, 10(23), 19755-19763, 2018
Citations: 145
βš—οΈ Focus: Platinum-rhodium alloy for ethanol oxidation.

Atomically Ultrathin RhCo Alloy Nanosheet Aggregates for Efficient Water Electrolysis in Broad pH Range
Authors: Y. Zhao, J. Bai, X.R. Wu, P. Chen, P.J. Jin, H.C. Yao, Y. Chen
Journal: Journal of Materials Chemistry A, 7(27), 16437-16446, 2019
Citations: 143
🌊 Focus: Water electrolysis using RhCo alloy nanosheets.

Au Nanowires@Pd-Polyethylenimine Nanohybrids as Highly Active and Methanol-Tolerant Electrocatalysts Toward Oxygen Reduction Reaction in Alkaline Media
Authors: Q. Xue, J. Bai, C. Han, P. Chen, J.X. Jiang, Y. Chen
Journal: ACS Catalysis, 8(12), 11287-11295, 2018
Citations: 133
πŸ§ͺ Focus: Oxygen reduction reaction in alkaline media.

Polyethyleneimine Functionalized Platinum Superstructures: Enhancing Hydrogen Evolution Performance by Morphological and Interfacial Control
Authors: G.R. Xu, J. Bai, J.X. Jiang, J.M. Lee, Y. Chen
Journal: Chemical Science, 8(12), 8411-8418, 2017
Citations: 115
βš›οΈ Focus: Hydrogen evolution through platinum superstructures.

Hydrothermal Synthesis and Catalytic Application of Ultrathin Rhodium Nanosheet Nanoassemblies
Authors: J. Bai, G.R. Xu, S.H. Xing, J.H. Zeng, J.X. Jiang, Y. Chen
Journal: ACS Applied Materials & Interfaces, 8(49), 33635-33641, 2016
Citations: 96
πŸ”¬ Focus: Rhodium nanosheet for catalytic applications.

Molybdenum‐Promoted Surface Reconstruction in Polymorphic Cobalt for Initiating Rapid Oxygen Evolution
Authors: J. Bai, J. Mei, T. Liao, Q. Sun, Z.G. Chen, Z. Sun
Journal: Advanced Energy Materials, 12(5), 2103247, 2022
Citations: 87
⚑ Focus: Oxygen evolution in cobalt.

One-Pot Fabrication of Hollow and Porous Pd–Cu Alloy Nanospheres and Their Remarkably Improved Catalytic Performance for Hexavalent Chromium Reduction
Authors: S.H. Han, J. Bai, H.M. Liu, J.H. Zeng, J.X. Jiang, Y. Chen, J.M. Lee
Journal: ACS Applied Materials & Interfaces, 8(45), 30948-30955, 2016
Citations: 85
🌍 Focus: Catalytic reduction of hexavalent chromium.

Glycerol Oxidation Assisted Electrocatalytic Nitrogen Reduction: Ammonia and Glyceraldehyde Co-Production on Bimetallic RhCu Ultrathin Nanoflake Nanoaggregates
Authors: J. Bai, H. Huang, F.M. Li, Y. Zhao, P. Chen, P.J. Jin, S.N. Li, H.C. Yao, J.H. Zeng
Journal: Journal of Materials Chemistry A, 7(37), 21149-21156, 2019
Citations: 84

Conclusion

The candidate is exceptionally well-suited for the Women Researcher Award, given her extensive research experience, strong publication record, and recognized achievements in the field of electrochemistry and materials science. Her work is not only innovative but also highly relevant to global challenges, particularly in sustainable energy. To further strengthen her candidacy, the candidate might consider expanding her impact through outreach, mentoring, and interdisciplinary collaboration.

Mr. Ismail ELABBASSI | Applied physics and engineering sciences | Best Researcher Award | 3233

Mr.Β  Moulay Ismail University, Morocco

Elabbassi Ismail is a Doctoral student and Professor in Physical Sciences and Chemistry at the Faculty of Sciences and Technology, Errachidia, Morocco. With a Master’s degree in Solar Technologies and Sustainable Development, he is currently pursuing a Ph.D. in Science and Technology. His research focuses on hybrid storage systems, energy management strategies, microgrid stability, green hydrogen, fuel cell technologies, artificial intelligence, and IoT. Elabbassi has extensive teaching experience and has presented at international conferences. He is proficient in MATLAB/SIMULINK, AutoCAD, and various energy modeling tools. His diverse expertise spans academic research, energy systems, and technical training.

Professional Profiles:

Elabbassi Ismail: Doctorant

Profil Elabbassi Ismail est doctorant et professeur en sciences physiques et chimiques Γ  la FacultΓ© des Sciences et Techniques d’Errachidia, Maroc. Titulaire d’un Master en Technologies Solaires et DΓ©veloppement Durable de l’UniversitΓ© Moulay Ismail de MeknΓ¨s, il prΓ©pare actuellement un doctorat en sciences et techniques. Ses recherches portent sur la modΓ©lisation des systΓ¨mes de stockage hybrides, la gestion de l’Γ©nergie, la stabilitΓ© des micro-rΓ©seaux, l’hydrogΓ¨ne vert, les technologies de vΓ©hicules Γ  pile Γ  hydrogΓ¨ne, l’intelligence artificielle et l’internet des objets. πŸŒπŸ”¬

CompΓ©tences

Communication : Γ‰criture en franΓ§ais et en anglais πŸ“Outils : MATLAB/SIMULINK, AutoCAD, Caneco BT, Rhapsodie, PVsys, Trnsys, MΓ©teonorm βš™οΈEnseignement : Cours, travaux pratiques, et dirigΓ©s πŸ“šModΓ©lisation et Automatisation : Projets en Γ©nergie photovoltaΓ―que, Arduino πŸ€–RΓ©daction Scientifique : Articles, rapportsCentres d’IntΓ©rΓͺtSport πŸ…Lecture de la littΓ©rature scientifique πŸ“–Enseignement πŸ‘¨β€πŸ«Voyage ✈️

ExpΓ©rience Professionnelle

ConfΓ©rences :IEEE International Conference on Circuit, Systems and Communication, 2024 πŸ“ŠInternational Conference on Artificial Intelligence in Cybersecurity and Sustainability, 2024 πŸ€–International Conference on Electrical Systems & Automation, 2024 πŸ”‹International Conference on Artificial Intelligence and Smart Environment, 2022 🌟Enseignement :Cours de circuits Γ©lectriques et Γ©lectroniques, thermodynamique, algorithmique πŸ’‘

Evaluation for Researcher Award

Strengths for the Award

  1. Diverse Research Focus: Elabbassi Ismail has a wide range of research interests, including hybrid storage systems, energy management strategies, green hydrogen, fuel cell technologies, and the integration of AI and IoT. This breadth of focus demonstrates a comprehensive understanding of contemporary issues in applied physics and engineering sciences.
  2. Relevant Publications and Conferences: Ismail’s recent participation in high-profile conferences and contributions to scholarly papers reflect a commitment to advancing knowledge in his field. His presentations on topics such as neural networks for power management, machine learning for energy storage, and advanced fault detection showcase his expertise and active engagement in cutting-edge research.
  3. Advanced Technical Skills: His proficiency in tools such as MATLAB/SIMULINK, AutoCAD, and various energy modeling software highlights his technical capabilities. This skill set is crucial for developing and implementing innovative solutions in applied physics and engineering.
  4. Teaching and Mentorship: Ismail’s experience as a professor and involvement in teaching practical modules demonstrate his dedication to education and mentoring. His ability to convey complex concepts and guide students and projects adds significant value to his research profile.
  5. Professional Training and Certifications: His continued education through various training programs in MATLAB, Python, and other relevant areas shows a commitment to staying updated with the latest tools and techniques in his field.

Areas for Improvement

  1. Publication Impact: While Ismail has presented at several conferences and contributed to various papers, there is a need for more high-impact journal publications to further establish his research influence and reach a broader audience.
  2. Interdisciplinary Collaboration: Expanding collaborations with researchers from different disciplines could enhance the scope and impact of his research. Engaging with experts in complementary fields might lead to novel insights and more comprehensive solutions.
  3. Research Visibility: Increasing the visibility of his research through open-access publications or broader dissemination of findings could help in gaining wider recognition and citations.
  4. Project Management: Strengthening skills in project management and leadership could help in effectively managing larger research projects and securing funding for innovative research initiatives.

 

✍️Publications Top Note :

Evaluating and Comparing Machine Learning Approaches for Effective Decision Making in Renewable Microgrid Systems
Authors: Elabbassi, I., Khala, M., Elyanboiy, N., Eloutassi, O., El Hassouani, Y.
Journal: Results in Engineering, 2024, 21, 101888
Abstract: This study evaluates and compares various machine learning techniques for decision-making in renewable microgrid systems.
Citations: 5

Enhancing Surface Defect Detection in Solar Panels with AI-Driven VGG Models
Authors: Yanboiy, N.E., Khala, M., Elabbassi, I., Hassouani, Y.E., Messaoudi, C.
Journal: Data and Metadata, 2023, 2, 81
Abstract: The article discusses improvements in detecting surface defects in solar panels using VGG models driven by artificial intelligence.
Citations: 1

Conference Papers:

Neural Network for FCEVs and RM Power Management using V2G Technology
Authors: Elabbassi, I., Khala, M., El Yanboiy, N., Eloutassi, O., El Hassouani, Y.
Conference: International Conference on Circuit, Systems and Communication (ICCSC), 2024
Abstract: This paper explores the use of neural networks for managing power in Fuel Cell Electric Vehicles (FCEVs) and Renewable Microgrid (RM) systems using Vehicle-to-Grid (V2G) technology.
Citations: 0

Improving Solar Energy Monitoring: Advanced Deep Learning Predictive Model for Photovoltaic Power Generation
Authors: Khala, M., El Yanboiy, N., Elabbassi, I., El Hassouani, Y., Messaoudi, C.
Conference: International Conference on Circuit, Systems and Communication (ICCSC), 2024
Abstract: This conference paper presents an advanced deep learning model for predicting photovoltaic power generation.
Citations: 0

Advanced Intelligent Fault Detection for Solar Panels: Incorporation of Dust Coverage Ratio Calculation
Authors: Elyanboiy, N., Eloutassi, O., Khala, M., El Hassouani, Y., Messaoudi, C.
Conference: 4th International Conference on Innovative Research in Applied Science, Engineering and Technology (IRASET), 2024
Abstract: The paper details a method for fault detection in solar panels by incorporating dust coverage ratio calculations.
Citations: 0

Comparative Study of Machine Learning for Managing EV Energy Storage with Battery-Hydrogen Tank
Authors: Elabbassi, I., Elyanboiy, N., Khala, M., Eloutassi, O., Messaoudi, C.
Conference: Advances in Science, Technology and Innovation, 2024, pp. 215–221
Abstract: This paper provides a comparative study of machine learning techniques for managing energy storage in electric vehicles with battery-hydrogen tank systems.
Citations: 0

Adaptive Neural Fuzzy Inference System (ANFIS) in a Grid Connected-Fuel Cell-Electrolyser-Solar PV-Battery-Super Capacitor Energy Storage System Management
Authors: Elabbassi, I., Elyanboiy, N., Khala, M., Layti, M.B.M., Messaoudi, C.
Conference: Lecture Notes in Networks and Systems, 2023, 635 LNNS, pp. 138–143
Abstract: This conference paper discusses the use of Adaptive Neural Fuzzy Inference Systems (ANFIS) for managing energy storage systems that combine fuel cells, electrolyzers, solar PV, batteries, and super capacitors.
Citations: 2

IoT-Based Intelligent System of Real-Time Data Acquisition and Transmission for Solar Photovoltaic Features
Authors: Elyanboiy, N., Khala, M., Elabbassi, I., Eloutassi, O., Messaoudi, C.
Conference: Lecture Notes in Networks and Systems, 2023, 635 LNNS, pp. 559–565
Abstract: This paper presents an IoT-based intelligent system for real-time data acquisition and transmission related to solar photovoltaic systems.
Citations: 1

Conclusion

Elabbassi Ismail exhibits many strengths that make him a strong candidate for the Researcher Award. His diverse research interests, technical expertise, and dedication to teaching and continuous learning highlight his significant contributions to the fields of applied physics and engineering sciences. Addressing areas for improvement, such as increasing publication impact and expanding interdisciplinary collaborations, could further enhance his profile and influence. Overall, his achievements and ongoing efforts position him well for recognition in this prestigious award.

Morteza Akbari | Structural Control | Best Researcher Award

Mr. GdaΕ„sk University of Technology, Poland

Morteza Akbari is a PhD student in Structural Engineering at GdaΕ„sk University of Technology, Poland, specializing in structural control, earthquake engineering, and soil-structure interaction. He holds an MSc in Structural Engineering from Islamic Azad University, Iran, with a thesis on seismic control of tall buildings using semi-active friction tuned mass dampers. Morteza has published several journal and conference papers on advanced seismic control strategies, focusing on the reliability and optimization of structural control devices in buildings. His professional experience includes technical inspection roles in construction, and he has served as a reviewer for academic journals.

 

Professional Profiles:

scopus

πŸŽ“ Education

PhD Student: Structural Engineering, GdaΕ„sk University of Technology, PolandThesis: Optimal design of structural control devices in buildings, including soil-structure interactionSupervisor: Prof. Robert JankowskiDuration: 2023-2027MSc. Structural Engineering: Islamic Azad University, Zahedan Branch, IranGPA: 15.82/20Thesis: Seismic Control of Tall Buildings Equipped with Semi-Active Friction Tuned Mass Damper Including Soil-Structure InteractionSupervisor: Dr. Sadegh EtedaliDuration: 2013-2016B.S. Civil Technology Engineering: Islamic Azad University, Birjand Branch, IranGPA: 16.24/20Duration: 2011-2013A.D. in Building General Works: Ibn Hossam Technical and Vocational University, Birjand, IranGPA: 14.39/20Duration: 2008-2010

πŸ… Honor & Award

2016: Graded as an excellent thesis with a GPA of 4/4 (MSc) (18.5/20) Here’s a revised version of the content with headings and emojis to make it more engaging:

πŸŽ“ Education

PhD Student: Structural Engineering, GdaΕ„sk University of Technology, PolandThesis: Optimal design of structural control devices in buildings, including soil-structure interactionSupervisor: Prof. Robert JankowskiDuration: 2023-2027MSc. Structural Engineering: Islamic Azad University, Zahedan Branch, IranGPA: 15.82/20Thesis: Seismic Control of Tall Buildings Equipped with Semi-Active Friction Tuned Mass Damper Including Soil-Structure InteractionSupervisor: Dr. Sadegh EtedaliDuration: 2013-2016B.S. Civil Technology Engineering: Islamic Azad University, Birjand Branch, IranGPA: 16.24/20Duration: 2011-2013A.D. in Building General Works: Ibn Hossam Technical and Vocational University, Birjand, IranGPA: 14.39/20Duration: 2008-2010

πŸ’Ό Field of Interest

Structural ControlStructural ReliabilityEarthquake EngineeringSoil-Structure InteractionMachine Learning (ML)Finite Element Method

πŸ› οΈ Professional Skills

Engineering Software and Programming Languages:

MATLAB & SimulinkSeismoSignalAUTO CAD

Other Skills:

Microsoft Office

πŸ… Honor & Award

2016: Graded as an excellent thesis with a GPA of 4/4 (MSc) (18.5/20)

🌐 Experience

Technical Inspector: Ready-mixed concrete company and construction company, Birjand and Mashhad, Iran (Full-time, 2017-2022)Surveyor: Housing foundation office and document registration office, Birjand, Iran (Part-time, 2017-2021)

✍️ Refereeing Experience

Reviewer: Structures Journal, Elsevier (2023-2024)Reviewer: Results in Engineering, Elsevier (2023-2024)

Strengths for the Award:

  1. Strong Academic Background:
    • Morteza Akbari is currently pursuing a PhD in Structural Engineering at GdaΕ„sk University of Technology, with a focus on the optimal design of structural control devices in buildings, including soil-structure interaction. His academic journey also includes an MSc in Structural Engineering and a BSc in Civil Technology Engineering, demonstrating a solid foundation in the field.
  2. Specialization in Seismic Control and Soil-Structure Interaction:
    • His research work is deeply rooted in seismic control strategies, which is a critical area in structural engineering, particularly for earthquake-prone regions. His focus on soil-structure interaction further emphasizes his understanding of complex dynamics in structural design.
  3. Notable Publications:
    • Akbari has several publications in reputable journals, including Geomechanics and Engineering, Soil Dynamics and Earthquake Engineering, and the Journal of Earthquake and Tsunami. His research covers important topics such as friction-tuned mass dampers, failure probability in tall buildings, and advanced seismic control strategies.
  4. Collaborations with Renowned Researchers:
    • His work with respected supervisors like Prof. Robert Jankowski and Dr. Sadegh Etedali adds credibility to his research. Collaborating with leading experts in the field strengthens his profile as a researcher.
  5. Recognition and Awards:
    • Grading of his MSc thesis as excellent and his experience as a reviewer for journals like Structures and Results in Engineering demonstrate his academic rigor and recognition within the research community.
  6. Relevant Skill Set:
    • Proficiency in engineering software like MATLAB, Simulink, and SeismoSignal, as well as experience with programming languages, makes him technically adept in his research domain.

Areas for Improvement:

  1. Broader Impact of Research:
    • While Akbari’s research is specialized and impactful within structural control and seismic mitigation, expanding the scope to include more interdisciplinary applications or real-world case studies could enhance the broader relevance and applicability of his work.
  2. International Exposure and Collaborations:
    • Increasing international collaborations and exposure through conferences, joint research projects, or partnerships with global research institutions could further elevate his profile.
  3. Publication in High-Impact Journals:
    • While his current publications are impressive, targeting more high-impact journals in civil engineering or structural dynamics could increase the visibility and citation of his work.
  4. Diversification of Research Topics:
    • Exploring additional areas within structural engineering or integrating emerging technologies like AI and machine learning into his research could provide new insights and innovations.

 

 

✍️Publications Top Note :

. Advanced Seismic Control Strategies for Smart Base Isolation Buildings Utilizing Active Tendon and MR Dampers

Authors: Akbari, M., Zand, J.P., Falborski, T., Jankowski, R.

Journal: Engineering Structures

Publication Year: 2024

Volume: 318

Article ID: 118756

2. A New Seismic Control Framework of Optimal PIΞ»DΒ΅ Controller Series with Fuzzy PD Controller Including Soil-Structure Interaction

Authors: Etedali, S., Zamani, A.-A., Akbari, M., Seifi, M.

Journal: Journal of the Franklin Institute

Publication Year: 2023

Volume: 360

Issue: 14

Pages: 10536–10563

Citations: 4

3. Friction Tuned Mass Dampers in Seismic-Excited High-Rise Buildings with SSI Effects: A Reliability Assessment

Authors: Etedali, S., Akbari, M., Seifi, M.

Journal: Journal of Earthquake and Tsunami

Publication Year: 2023

Volume: 17

Issue: 2

Article ID: 2250022

Citations: 7

4. Failure Probability of Tall Buildings with TMD in the Presence of Structural, Seismic, and Soil Uncertainties

Authors: Etedali, S., Seifi, M., Akbari, M.

Journal: Structural Engineering and Mechanics

Publication Year: 2023

Volume: 85

Issue: 3

Pages: 381–391

Citations: 2

5. MOCS-Based Optimum Design of TMD and FTMD for Tall Buildings Under Near-Field Earthquakes Including SSI Effects

Authors: Etedali, S., Akbari, M., Seifi, M.

Journal: Soil Dynamics and Earthquake Engineering

Publication Year: 2019

Volume: 119

Pages: 36–50

Citations: 52

6. A Numerical Study on Optimal FTMD Parameters Considering Soil-Structure Interaction Effects

Authors: Etedali, S., Seifi, M., Akbari, M.

Journal: Geomechanics and Engineering

Publication Year: 2018

Volume: 16

Issue: 5

Pages: 527–538

Citations: 12

Conclusion:

Morteza Akbari’s academic achievements, specialized research in seismic control and soil-structure interaction, and his solid publication record make him a strong contender for the Best Researcher Award. His work addresses critical challenges in structural engineering, particularly in enhancing the safety and resilience of buildings against seismic activities. By expanding his research’s broader impact and increasing his international collaborations, Akbari can further solidify his standing as a leading researcher in his field. His current trajectory suggests a promising future, with the potential to make significant contributions to civil engineering and structural dynamics.

Dr. Roopendra Singh | Environmental concern | Best Researcher Award

Dr. Roopendra Singh | Environmental concern | Best Researcher Award

Β Dr. Bundelkhand University Jhansi Uttar Pradesh Indi,Β India

Roopendra Singh is a seasoned library and information science professional with extensive experience as a Librarian at Kendriya Vidyalaya Babina Cantt (2014-2022) and as a Teaching Assistant at Dr. S. R. Ranganathan Institute of Library and Science, Bundelkhand University (2012-2014). He holds a Ph.D. in Library and Science from Bundelkhand University. His research contributions include journal articles on social networking tools, content analysis of doctoral dissertations, and library marketing. Singh has also authored book chapters on topics like the Internet of Things in libraries and Big Data. He is skilled in MS-Windows, E-granthalaya, and Greenstone.

 

Professional Profiles:

Professional Experience πŸ“š

Librarian
Kendriya Vidyalaya Babina Cantt
December 1, 2014 – August 15, 2022
Roopendra Singh served as a dedicated Librarian, managing library operations and fostering a resource-rich environment for students and staff.Teaching Assistant
Dr. S. R. Ranganathan Institute of Library andΒ  Science, Bundelkhand University, Jhansi
September 12, 2012 – November 29, 2014
In this role, Singh supported academic activities and contributed to the education of future library and information science professionals.

Educational Qualifications πŸŽ“

B.Sc. (Mathematics)MLIScUGC-NET (2012)M.Phil. (Library and Science)Ph.D. (Library and Science), Dr. S. R. Ranganathan Institute of Library andΒ  Science, Bundelkhand University, Jhansi

✍️Publications Top Note :

 

“Social Networking as a Tool for Marketing Library Services”
Roopendra Singh
Knowledge Librarian, 3(1), 99-108
2016
This article explores how social networking tools can be leveraged to enhance library services and outreach.

“Webometric Study of National Institute of Technology (NIT) Websites in India”
A. Yadav, R. Singh, B. Yadav, R. Srivastava
2024
This study provides a webometric analysis of the online presence of NIT websites across India.

“A Bibliometric Study of DESIDOC Journal of Library andTechnology”
R. Singh, A. Yadav, B. Yadav, N.K. Verma
2023
This bibliometric analysis assesses the publication trends and impact of the DESIDOC Journal.

“Adoption of Artificial Intelligence in Libraries”
Dr. Singh, N.K. Verma
From Dewey to Digital: Evolution of Libraries in the Age, pp. 144-153
2023
This chapter examines how artificial intelligence is transforming library operations and services.

“Big Data: An Overview”
R. Singh
Strategies of Library Management in Digital Era, 1, pp. 341-348
2023
This chapter provides an overview of big data concepts and their implications for library management.

“Content Analysis of Doctoral Dissertations in Library andΒ  Science”
R. Singh, P.R. Srivastava
Marketing ofΒ  Products and Services, 1, pp. 207
2021
This study presents a content analysis of doctoral dissertations in Library and Science.

“Use and Impact of Internet of Things in the Library”
R. Singh
Emerging Trends for Smart Libraries, pp. 125-128
2019
This chapter discusses the application and impact of IoT technologies in library environments.

“Content Analysis of Doctoral Dissertations in Library andΒ  Science with Special Reference to Universities of North-East India”
R. Singh, R. Srivastava
2019
This research analyzes doctoral dissertations from libraries and science departments in North-East India.

“Awareness and Use of Social Networking Tools Among the Ph.D. Research Scholars of Bundelkhand University, Jhansi”
R. Singh, P.V.P. Khare
VSRD International Journal of Technical & Non-Technical Research, 6
2015
This article investigates the awareness and usage of social networking tools by Ph.D. scholars.

“Content Analysis of Doctoral Dissertations in Library andΒ  Science”
R. Singh, P.R. Srivastava
National Conference on Marketing Products and Services, pp. 207-210
2021
This conference paper focuses on the content analysis of doctoral dissertations.

“Big Data: An Overview”
R. Singh
Strategies of Library Management in Digital Era, pp. 341-348
2023
This chapter discusses the significance of big data in modern library management.

“Use and Impact of Internet of Things in the Library”
R. Singh
Emerging Trends for Smart Libraries, pp. 125-128
2019
This book chapter explores how IoT can be utilized within libraries to enhance service delivery.

“Scientometric Evaluation of Cutting-Edge Research on Sustainable Development and Environmental Concern”
R. Singh
Sustainable Development
An assessment of contemporary research on sustainability and environmental issues.

“Content Analysis of Doctoral Dissertations of Library and Science in India”
R. Singh
Jhansi
This analysis provides insights into the trends and focus areas of doctoral research in the field of library andΒ  science across India.

“Content Analysis: A Brief Overview”
R. Singh
Ajanta, Vol. 10, No. 4
2021
This paper offers a succinct overview of content analysis methodologies.

Ndjana Nkoulou, Joseph Emmanuel | Radiation Protection and Dosimetry | Best Researcher Award

Dr. Ndjana Nkoulou, Joseph Emmanuel | Radiation Protection and Dosimetry | Best Researcher Award

Β Dr. Institute of Geological and Mining Research, Cameroon

I am currently a Research Officer at the Radiation Protection Laboratory, Research Centre of Nuclear Science and Technology (CRSTN) within the Institute of Geological and Mining Research (IRGM), Cameroon. This year, I defended my PhD thesis in Nuclear Physics, focusing on public exposure to natural radioactivity in Cameroonian homes. My work involves environmental radioactivity monitoring and public dose studies in mining areas, alongside various IAEA projects to mitigate radon levels. With over a decade of experience, I am eager to engage in new research opportunities in Nuclear Physics to further enhance radiation safety and public health.

 

Professional Profiles:

Education πŸŽ“

2019–2023: PhD in Physics, specialty in Dosimetry and Radiation Protection, CEPAMOQ, University of Douala, Cameroon. πŸ“š2008–2010: MSc in Physics, specialty in Material Sciences, Faculty of Science, University of Yaounde 1, Cameroon. πŸ”¬2004–2007: BSc in Physics, University of Yaounde 1, Cameroon. πŸŽ“

Professional and Research Activities Abstract πŸŒπŸ”¬

I am currently a Research Officer leading the Radiation Protection Laboratory at the Research Centre of Nuclear Science and Technology (CRSTN), part of the Institute of Geological and Mining Research (IRGM) under Cameroon’s Ministry of Scientific Research and Innovation (MINRESI). This year, I defended my PhD thesis in Nuclear Physics, focusing on Dosimetry and Radiation Protection at the Center for Atomic Molecular Physics and Quantum Optics (CEPAMOQ), University of Douala, Cameroon. My research examines public exposure to natural radioactivity in Cameroonian homes. πŸ“ŠπŸ My daily responsibilities involve monitoring environmental radioactivity and studying public doses in mining regions. I am actively engaged in various nuclear science projects, including those with the International Atomic Energy Agency (IAEA), aimed at mitigating radon levels through the National Radon Plan. πŸŒπŸ”As a co-author of about twenty scientific publications, I have garnered recognition for my contributions, including the Best Junior Researcher Award in 2021. With extensive experience since 2011, I am eager to participate in new research projects, including postdoctoral and collaborative ventures, to advance radiation safety and public health globally. 🌟🌍

Research Interests πŸ”¬

Radiation DetectionExperimental Nuclear PhysicsRadioactivityRadiation PhysicsGamma SpectrometryRadiation ProtectionIonizing RadiationRadiation DosimetryNuclear SciencesEnvironmental RadioactivityRadiobiologyRadioecologyHealth PhysicsRadonThoronRadon DaughtersUraniumThoriumRadionuclidesRadiation ChemistryLiquid Scintillation Counting (LSC)Nuclear SafetyRadioactive TracersGamma IrradiationXRF SpectrometryHeavy Metals

Professional Experience πŸ…

October 2023: Rapporteur at the Cameroon Academy of Sciences on climate change and national development strategy. 🌿Since February 2023: Applied for Senior Research Officer in Nuclear Physics, Dosimetry, and Radiation Protection at CRSTN. πŸ“ˆ2020–2023: Member of IAEA Technical Cooperation Project (CMR 9010) on strengthening the national radon action plan. 🌐2018–2020: Member of IAEA Technical Cooperation Project (CMR 9009) on establishing the National Radon Plan. πŸ“‰December 2022: Participated in workshops on radon regulation and radioactive contamination management in Cameroon and Austria. πŸ› οΈJuly 2022: Attended IAEA Training Courses on radon calibration systems. πŸ”§May 2021: Regional workshop on radon protection in workplaces. 🏒March 2019: IAEA Fellow on radiation protection at the University of Cantabria, Spain. 🌍2018–Current: Research Officer in Nuclear Physics at CRSTN. πŸ“ŠDecember 2017: IAEA Regional Training Course on virtual instrumentation for nuclear instruments in Algeria. πŸ†November 2013: IAEA Regional Training Course on virtual instrumentation in Nigeria. πŸ‡³πŸ‡¬2011–2018: Research Assistant in Nuclear Physics at CRSTN. πŸ§ͺ

Awards πŸ†

2021: Best Junior Researcher Award during the Excellence Week for Scientific Research and Innovation in Cameroon. 🌟2016: Nominated β€œYoung Scientist” at the 14th International Congress of the International Radiation Protection Association in South Africa. 🌍

✍️Publications Top Note :

Lithological Impact on Radon Levels: A Study of Indoor and Soil Gas Radon in the Centre Region of Cameroon

Authors: Ndjana Nkoulou, J.E., SaΓ―dou, Hamadou Yerima, A., Yoho, B., Kwato Njock, M.G.

Journal: Journal of Geophysical Research: Atmospheres, 2024, 129(13), e2024JD040843

Abstract: The study investigates the influence of different lithological formations on radon concentrations in indoor and soil gas environments within the Centre Region of Cameroon. By analyzing various geological settings, the research aims to understand how different rock types affect radon levels and their implications for radon mitigation strategies in residential and mining areas.

2. Natural Radioactivity in Building Materials, Indoor Radon Measurements, and Assessment of the Associated Risk Indicators in Some Localities of the Centre Region, Cameroon

Authors: Ndjana Nkoulou II, J.E., Manga, A., SaΓ―dou, Sainz-Fernandez, C., Kwato Njock, M.G.

Journal: Environmental Science and Pollution Research, 2022, 29(36), pp. 54842–54854

Abstract: This paper presents an assessment of natural radioactivity in building materials and indoor radon levels across various localities in the Centre Region of Cameroon. It provides an analysis of risk indicators associated with radon exposure and evaluates potential health risks based on the measured radon levels in different types of buildings.

3. Simultaneous Indoor Radon, Thoron and Thoron Progeny Measurements in Betare-Oya Gold Mining Areas, Eastern Cameroon

Authors: Ndjana Nkoulou, J.E., Ngoa Engola, L., SaΓ―dou, S., Kwato Njock, M.G., Tokonami, S.

Journal: Radiation Protection Dosimetry, 2019, 185(3), pp. 391–401

Abstract: This article focuses on the simultaneous measurement of radon, thoron, and their progeny in the Betare-Oya gold mining areas of Eastern Cameroon. The study aims to understand the radon and thoron exposure levels in mining environments and their potential impacts on the health of workers and local residents.

4. Natural Radioactivity Measurements and External Dose Estimation by Car-Borne Survey in Douala City, Cameroon

Authors: Takoukam Soh, S.D., Saidou, Hosoda, M., Bouba, O., Tokonami, S.

Journal: Radioprotection, 2018, 53(4), pp. 255–263

Abstract: This research employs a car-borne survey to measure natural radioactivity and estimate external doses in Douala city, Cameroon. The study provides insights into the spatial distribution of radioactivity in urban areas and the potential external dose exposure for residents.

5. Air Absorbed Dose Rate Measurements and External Dose Assessment by Car-Borne Survey in the Gold Mining Areas of Betare-Oya, Eastern-Cameroon

Authors: Ngoa Engola, L., Ndjana Nkoulou, J.E., Hosoda, M., Kwato Njock, M.G., Tokonami, S.

Journal: Japanese Journal of Health Physics, 2018, 53(1), pp. 5–11

Abstract: This paper reports on air absorbed dose rate measurements and external dose assessments conducted in the gold mining areas of Betare-Oya, Eastern Cameroon. The study evaluates the environmental radiation levels and estimates the external dose exposures to miners and nearby communities.

Dr. Changmin Shi | mechanical device | Best Researcher Award

Dr. Changmin Shi | mechanical device | Best Researcher Award

Β Dr.Brown University, United State

Changmin Shi is a Postdoctoral Research Associate at Brown University, specializing in energy materials mechanics and thermal energy management. He earned his Ph.D. in Materials Science and Engineering from the University of Maryland, focusing on high-energy-density lithium-sulfur batteries. He has an M.S. from Columbia University and a B.Eng. from the University of Science and Technology Beijing. Shi has secured significant research funding, received numerous awards, and delivered various invited talks. He has extensive teaching and mentoring experience and actively participates in DEI initiatives. His research interests include advancing thermal energy management, developing novel battery materials, and innovating mechanical devices for energy materials.

 

Professional Profiles:

Education and Training πŸ“šπŸŽ“

Brown University (Providence, RI) 🏫 2023–PresentPostdoctoral Research Associate, School of EngineeringAdvisor: Dr. Brian W. SheldonResearch: Energy Materials Mechanics and Thermal Energy ManagementUniversity of Maryland (UMD) (College Park, MD) πŸ›οΈ 2019–2023Ph.D., Materials Science and EngineeringAdvisor: Dr. Eric D. WachsmanDissertation: High-Energy-Density Lithium-Sulfur Batteries Using Garnet Solid Electrolyte: Performance and CharacterizationDissertation Committee: Dr. Liangbing Hu, Dr. Yifei Mo, Dr. Paul Albertus, Dr. Chunsheng WangColumbia University (New York, NY) πŸ—½ 2017–2019M.S. Materials Science and EngineeringAdvisor: Dr. Yuan YangResearch: Flexible Lithium-ion Batteries with High Energy DensityUniversity of Science and Technology Beijing (USTB) (Beijing, CN) 🏯 2013–2017B.Eng. Metallurgical EngineeringAdvisor: Dr. Xindong WangDissertation: Pitting Corrosion Analysis of TiN-coated Metallic Bipolar Plates for PEM Fuel Cells

Research Interests (Materials and Mechanics) πŸ”¬βš™οΈ

Advancing thermal energy management materials and systems for space thermoregulation πŸš€Developing novel materials for low-strain cathodes, safe composite polymer electrolytes, and new battery recycling approaches πŸ”‹Innovating mechanical devices for investigating the mechanical properties of energy materials

Honors & Awards πŸ†

All America Chinese Youth Federation Top 40 Under 30 (2024) 🌟Polymers Exceptional Reviewer (2024) 🌟Batteries Travel Grant (2024) 🌟Guest Editor, Batteries (2024) 🌟Princeton Pathways into the Academy Program, Princeton University (2024) 🌟ECS-IOP Trusted Reviewer (Top 15% awarded) (2024) 🌟Nano Research Energy Young Star Researcher Gold Award (2023) 🌟Editorial Board Member, Assistant Editor of Nano Research Energy (2023–Present) 🌟Best Editor Award, Nano Research Energy (2023) 🌟Early Career Distinguished Scholar Program, Honorable Mention, UC Irvine (2023) 🌟Postdoctoral Research Associate Conference Travel Fund, Brown University (2023) 🌟Chinese Government Award for Outstanding Self-Financed Students Abroad (2023) 🌟Youth Editorial Board Member of Nano Research Energy (2023) 🌟Jacob K. Goldhaber Travel Grant, UMD (2022) 🌟Future Faculty Program Fellow, UMD (2022) 🌟Outstanding Graduate Assistance Award (Teaching Excellence), UMD (2020) 🌟Dean’s Fellowship, UMD (2019–2020) 🌟Distinguished Outstanding Undergraduate, USTB (2017) 🌟Outstanding Undergraduate Dissertation, USTB (2017)

Teaching Experience πŸ‘©β€πŸ«

Brown University 🏫ENGN 2920H Materials and Interfaces for Energy Storage Materials πŸ”‹Responsibility: Designed and led lithium-ion battery assembly lab session**ENGN 1420 K

✍️Publications Top Note :

Rechargeable solid-state lithium metal batteries with vertically aligned ceramic nanoparticle/polymer composite electrolyte
X Wang, H Zhai, B Qie, Q Cheng, A Li, J Borovilas, B Xu, C Shi, T Jin, …
Nano Energy, 60, 205-212 πŸͺ«πŸ”‹, 2019

Full Dissolution of the Whole Lithium Sulfide Family (Li2S8 to Li2S) in a Safe Eutectic Solvent for Rechargeable Lithium–Sulfur Batteries
Q Cheng, W Xu, S Qin, S Das, T Jin, A Li, AC Li, B Qie, P Yao, H Zhai, …
Angewandte Chemie, 131 (17), 5613-5617 πŸ’§πŸ”‹, 2019

Accordion-like stretchable Li-ion batteries with high energy density
C Shi, T Wang, X Liao, B Qie, P Yang, M Chen, X Wang, A Srinivasan, …
Energy Storage Materials, 17, 136-142 πŸ’ͺπŸ”‹, 2019

High‐energy‐density foldable battery enabled by zigzag‐like design
X LiaoΒ§, C ShiΒ§ (co-first author), T WangΒ§, B QieΒ§, Y Chen, P Yang, …
Advanced Energy Materials, 9 (4), 1802998 πŸ”„πŸ”‹, 2019

Extreme lithium-metal cycling enabled by a mixed ion-and electron-conducting garnet three-dimensional architecture
GV Alexander, C Shi, J O’Neill, ED Wachsman
Nature Materials, 22 (9), 1136-1143 βš‘πŸ”‹, 2023

Flexible Solid-State Lithium-Sulfur Batteries Based on Structural Designs
C Shi, M Yu
Energy Storage Materials, 57, 429–459 πŸ”§πŸ”‹, 2023

3D Asymmetric Bilayer Garnet-Hybridized High-Energy-Density Lithium–Sulfur Batteries
C Shi, T Hamann, S Takeuchi, GV Alexander, AM Nolan, M Limpert, Z Fu, …
ACS Applied Materials & Interfaces, 15 (1), 751–760 πŸ› οΈπŸ”‹, 2023

High Sulfur Loading and Capacity Retention in Bilayer Garnet Sulfurized‐Polyacrylonitrile/Lithium‐Metal Batteries with Gel Polymer Electrolytes
C Shi, S Takeuchi, GV Alexander, T Hamann, J O’Neill, JA Dura, …
Advanced Energy Materials, 13 (42), 2301656 βš›οΈπŸ”‹, 2023

Precipitation behavior of carbides in high-carbon martensitic stainless steel
Q Zhu, J Li, C Shi, W Yu, C Shi, J Li
International Journal of Materials Research, 108 (1), 20-28 πŸ—οΈπŸ”¬, 2017

All-Solid-State Garnet Type Sulfurized Polyacrylonitrile/Lithium-Metal Battery Enabled by an Inorganic Lithium Conductive Salt and a Bilayer Electrolyte Architecture
C Shi, GV Alexander, J O’Neill, K Duncan, G Godbey, ED Wachsman
ACS Energy Letters, 8 (4), 1803-1810 βš™οΈπŸ”‹, 2023

Evolution of CaO–MgO–Al2O3–CaS–(SiO2) inclusions in H13 die steel during electroslag remelting process
H Wang, CM Shi, J Li, CB Shi, YF Qi
Ironmaking & Steelmaking, 45 (1), 6-16 πŸ­πŸ”¬, 2018

New Insights into Nail Penetration of Li‐Ion Batteries: Effects of Heterogeneous Contact Resistance
M Chen, Q Ye, C Shi, Q Cheng, B Qie, X Liao, H Zhai, Y He, Y Yang
Batteries & Supercaps πŸ”©πŸ”‹, 2019

A facile and effective design for dynamic thermal management based on synchronous solar and thermal radiation regulation
N Guo, L Yu, C Shi, H Yan, M Chen
Nano Letters, 24 (4), 1447-1453 πŸŒžβ„οΈ, 2024

Radiative-coupled evaporative cooling: Fundamentals, development, and applications
L Yu, Y Huang, W Li, C Shi, BW Sheldon, Z Chen, M Chen
Nano Research Energy, 3 (2) πŸ’§πŸŒ‘οΈ, 2024

3D bridge-arch-structured dual-side evaporator for practical, all-weather water harvesting and desalination
M Chen, S Li, X Chen, Y Huang, B Liu, H Yan, BW Sheldon, Q Li, …
Journal of Materials Chemistry A, 12 (16), 9574-9583 πŸ’§πŸ—οΈ, 2024

Optimum slagging materials smelting in combined-blowning converter based on single-slag steelmaking
YAOY WU Long, SHI Chang-min, LI Jing, XU Zhong-bo, HAN Xiao
Iron and Steel, 52 (1), 32-37 βš™οΈπŸ”¬, 2017

High-energy-density deformable batteries
Y Yang, G Qian, X Chen, L Xiangbiao, C Shi, T Wang
US Patent App. 16/979,312 πŸ”‹πŸ’‘, 2021

Challenges and Opportunities for Passive Thermoregulation
N Guo, C ShiΒ§,* (co-first and corresponding author), N Warren, …
Advanced Energy Materials, 2401776 πŸ”„πŸŒ‘οΈ, 2024

Blocking Li metal dendrites with piezoelectric solid polymer electrolytes through coupled piezoelectricity, mechanics, and electrochemistry effects
C Shi, S Kim, Y Qi, A Kingon, B Sheldon
American Chemical Society Spring 2024 Meeting πŸ“…πŸ”‹, 2024

A mechanical-optical coupling design on solar and thermal radiation modulation for thermoregulation
N Guo, C Shi* (corresponding author), B Sheldon, H Yan, M Chen
Journal of Materials Chemistry A πŸŒžπŸ› οΈ, 2024

Masoud Safarishaal | Power system | Best Researcher Award

Mr. Masoud Safarishaal | Power system | Best Researcher Award

Β Mr. University of Oklahoma, United State

Currently pursuing a Ph.D. in Electrical Engineering, I am a dynamic professional with over 8 years of hands-on experience in power electronics, renewable energy, and power systems. Successfully leading projects from design and simulation to product delivery that meets stringent industry standards, I specialize in electrical circuit design, product development, and testing within these fields. My contributions include a pivotal role in three national satellite projects adhering to ECSS standards. With a track record of managing over 10 projects within budgets and timelines, I bring proven skills and innovation to your team. I have authored 15+ published papers, showcasing my dedication to advancing the field.

 

Professional Profiles:

Education πŸŽ“

May 2022 – Expected date for graduation (Fall 2024/Spring 2025)
PhD (Electrical Engineering): University of Oklahoma, Norman, Oklahoma, USA
Thesis: Advanced Fault Detection in Inverter-based Power Systems2011 – 2014
MS (Electrical Engineering): Imam Khomeini International University, Qazvin, Iran
Thesis: Control of Multi-Output Forward DC-DC Converters using Evolutionary Algorithms for Application in Photovoltaic Systems.2006 – 2011
BD (Electrical Engineering): Amirkabir University of Technology, Tehran, Iran
Thesis: Simulation of speed control of Permanent Magnet Linear Synchronous Motor (PMLSM) using V / f constant method.

Core Competencies πŸ”§

Specialization in Power Electronics: Expertise in the design and implementation of power electronics components, including battery chargers, converters, and inverters.Renewable Energy Systems: Specialized knowledge in designing and optimizing systems for harnessing renewable energy, with a focus on solar technologies.Advanced Battery Technology: Expertise in advanced battery technology, particularly for electric vehicles and energy storage solutions.Project Leadership: Demonstrated success in leading and supervising projects across the production lifecycle, ensuring adherence to industry standards.Electrical Circuit Design: Over 8 years of hands-on expertise in designing intricate electrical circuits for diverse applications.Product Development: Proven ability to take projects from conceptualization through design to successful product delivery.Testing and Quality Assurance: Extensive experience in rigorous product testing to meet and exceed industry standards.Compliance and Standards: Track record of contributing to projects that meet and exceed European Cooperation for Space Standardization (ECSS) standards.

Professional Experience πŸ’Ό

Graduate Research Assistance: University of Oklahoma (2022 – Present)Project: Advanced Transient Detection in Inverter-based Power System
Competencies: Power Electronics, Power SystemConducting doctoral research on ‘Advanced Transient Detection in Inverter-based Power Systems,’ employing experimental tests, IBRs, Digital Relays, PSCAD simulations, and MATLAB analysis to propose an enhanced fault detection method.Managed the laboratory operations as the lab manager, overseeing and coordinating testing setups for a research group focused on inverter-based power systems.Head of System Engineering: Iran University of Science and Technology (2021 – 2022)Project: Zafar 2 Satellite Prepared to Launch
Competencies: Leadership, Product Development, Quality Assurance, Compliance and StandardsSupervised all satellite disciplines groups (Power System, Electronics, Telecommunications, Satellite Control, Thermodynamic, Mechanic, and Software), coordinating their efforts to deliver a high-quality satellite.Solved technical challenges for the Zafar 2 satellite, providing effective solutions to ensure project success as leader of system engineering.Manager of Structure Group: Iran University of Science and Technology (2020 – 2021)Project: Zafar 1 Satellite Launched 2020/Zafar 2 Prepared to Launch
Competencies: Leadership, Product Development, Quality Assurance, Compliance and StandardsLed a successful team in guaranteeing the satellite structure met design and performance requirements, overseeing the entire process from design to assembly.Organized and managed several assembly teams, collaborating with external companies to assemble all satellite components from wiring to final tested satellite.Achieved the delivery of a high-quality satellite, meeting all project requirements through effective leadership and management as Manager of the Structure Group.Head of Power System Group: Iran University of Science and Technology (2015 – 2020)Project: Zafar 1 Satellite Launched 2020
Competencies: Power Electronics, Renewable Energy, Batteries, Leadership, Product Development, Quality AssuranceLed and supervised the design, assembly, and rigorous testing of the satellite power system circuits (Solar Panels, MPPT Unit, Batteries Pack, Battery Charger, Battery Management Unit, Converters, and Power Distribution and Protection Unit) for the successful launch of the Zafar 1 Satellite in 2020.Attained the highest performance ratings as group manager for three consecutive years (2018-2020).Directed and coordinated the intricacies from the conceptual design to final testing phases of satellite components, ensuring meticulous adherence to ECSS requirements.Satellite Electrical Power Engineer: Iran University of Science and Technology (2014 – 2015)Project: Tadbir Satellite Launched 2015/ Zafar 1 Satellite Launched 2020Competencies: Power Electronics, Renewable Energy, Batteries, Circuit Design, Power System DesignDesigned, manufactured, and tested solar panels and power electronics equipment for the Tadbir Satellite project.Developed and tested the Battery Charge Regulator and MPPT board, ensuring they met design and performance requirements for the Tadbir Satellite.

Professional Computer Software Skills πŸ’»

Proficient in MATLAB: for data analysis and simulation.Experienced in using Pspice and PSCAD: for circuit design and analysis.Skilled in Altium PCB Designer: for printed circuit board layout and design.Experienced in using Microcontroller Programming Languages: C++, Python.

Electrical Equipment Expertise βš™οΈ

DC/DC Converters (5-200W), DC/AC Inverters (1kW), and Power Distribution Units (DC 200W): Designed and implemented electrical systems, ensuring compliance with ECSS-E-ST-20-08C for “Space Engineering – Electrical, Electronic and Electromechanical (EEE) Components” and ECSS-Q-ST-60-02C for “Quality Assurance.”Solar Panels (10-500W): Engineered solar panel systems in alignment with ECSS standards.Maximum Power Point Trackers, Battery Charge Regulators (Li-Ion) Battery Management, and Battery Pack: Demonstrated proficiency in power circuit and PCB design while adhering to ECSS compliance requirements.

✍️Publications Top Note :

1. Optimal Load Sharing Strategy for a Wind/Diesel/Battery Hybrid Power System Based on Imperialist Competitive Neural Network Algorithm

Authors: M Safari, M Sarvi
Journal: IET Renewable Power Generation
Volume: 8, Issue 8
Pages: 937-946
Year: 2014
Citations: 26

2. Fuzzy, ANFIS, and ICA Trained Neural Network Modeling of Ni-Cd Batteries Using Experimental Data

Authors: M Sarvi, M Safari
Journal: World Applied Programming
Volume: 3, Issue 3
Pages: 93-100
Year: 2013
Citations: 9

3. A Fuzzy Model for Ni-Cd Batteries

Authors: M Sarvi, M Safari
Journal: IAES International Journal of Artificial Intelligence
Volume: 2, Issue 2
Pages: 81
Year: 2013
Citations: 7

4. New Hybrid Maximum Power Point Tracking Methods for Fuel Cell Using Artificial Intelligence

Authors: M Safarishaal, M Sarvi
Journal: AIP Advances
Volume: 13, Issue 4
Year: 2023
Citations: 5*

5. Estimation the Performance of a PEM Fuel Cell System at Different Operating Conditions Using Neuro Fuzzy (ANFIS)

Authors: M Safari, M Sarvi
Journal: World Applied Programming
Volume: 3
Pages: 355-360
Year: 2013
Citations: 5

6. A New Fuzzy Control Method for Maximum Power Point Tracking of PEMFC’s System

Authors: M Sarvi, M Safarishaal
Conference: The Second Conference on Hydrogen & Fuel Cell (HFCConf)
Year: 2012
Citations: 3

7. Refined Convolution-Based Measures for Real-Time Harmonic Distortions Estimation in Power System Dominated by Inverter-Based Resources

Authors: RS Kandezy, M Safarishaal, R Hemmati, JN Jiang
Journal: IET Power Electronics
Volume: 16, Issue 16
Pages: 2708-2723
Year: 2023
Citations: 2

8. Single Pole-To-Earth Fault Detection and Location on the Tehran Railway System Using ICA and PSO Trained Neural Network

Author: M Safarishaal
Source: arXiv preprint arXiv:2107.03791
Year: 2021
Citations: 2

9. Impact of Phase Displacement among Coupled Inverters on Harmonic Distortion in MicroGrids

Authors: R Hemmati, RS Kandezy, M Safarishaal, M Zoghi, JN Jiang, D Wu
Conference: 2023 IEEE Transportation Electrification Conference & Expo (ITEC)
Pages: 1-6
Year: 2023
Citations: 1

10. Nonlinear Impact of Topological Configuration of Coupled Inverter-Based Resources on Interaction Harmonics Levels of Power Flow

Authors: M Safarishaal, R Hemmati, R Saeed Kandezy, JN Jiang, C Lin, D Wu
Journal: Energies
Volume: 17, Issue 11
Article Number: 2512
Year: 2024

11. Optimizing Weighted Voltage Mode Control for Enhanced Output Cross-Regulation in Multi-Output DC/DC Converters

Authors: M Safarishaal, M Sarvi
Journal: Future Technology
Volume: 3, Issue 1
Pages: 32-39
Year: 2024

12. Comparative Analysis of Power Consumption Time Series in Deprived and Developed Regions of Iran

Author: M Safarishaal
Journal: Future Energy
Volume: 3, Issue 1
Pages: 13-17
Year: 2023

13. Tracking the Maximum Power Point of the Polymer Fuel Cell System (PEMFC) with the PSO, CFAPSO, SIWPSO Algorithms (Farsi)

Authors: I Soltani, M Safarishaal
Conference: PSC Conference, Tehran
Year: 2013

14. Analysis and Comparison of Time Series of Power Consumption of Sistan and Tehran Distribution Networks (Farsi)

Authors: M Safarishaal, MM Kazeminasab
Conference: The 15th Iranian Students Conference on Electrical Engineering, Kashan
Year: 2012

15. MPPT by Fuzzy Method for a Solar Hydrogen System Considering Efficiency of Fuel Cell for Non-Linear Load (Farsi)

Authors: M Kazeminasab, M Safarishaal
Conference: Annual Clean Energy Conferences, Kerman
Year: 2012

16. Short Term Load Forecasting Using Adaptive Neuro Fuzzy Inference System (ANFIS) for Tehran Region

Authors: M Safarishaal, M Kazeminasab
Conference: The 15th Iranian Students Conference on Electrical Engineering, Kashan
Year: 2012

17. Design a Solar Hydrogen-Based Maximum Power Point Tracking with Fuzzy Logic Method

Authors: M Kazeminasab, M Safarishaal
Conference: 15th Iranian Student Conference on Electrical Engineering, Kashan University
Year: 2012