Ismail Kamdar | Renewable Energy | Best Researcher Award

Dr. Ismail Kamdar | Renewable Energy | Best Researcher Award

Dr. Ismail Kamdar, Nanjing University of Aeronautics and Astronautics, China.

Dr. Ismail Kamdar is a dedicated renewable energy researcher with a multidisciplinary academic and professional background spanning over 8 years. Based in Nanjing, China, he is currently a Postdoctoral Fellow at the prestigious Nanjing University of Aeronautics and Astronautics. Dr. Kamdar specializes in energy technology, particularly in the development and application of grey systems theory and multi-criteria decision-making techniques for sustainable energy systems. With a robust publication record in high-impact journals, his work has attracted over 300 citations, underscoring his influence in the fields of wind and solar energy, waste management, and GIS-based energy planning. His research is aimed at advancing sustainable energy development, especially in developing economies, through a blend of theoretical rigor and practical application. Dr. Kamdar is also active in academic dissemination, having presented at international conferences and conducted workshops to share his knowledge on scientific tools and energy assessment frameworks.

👨‍🎓 Profile

Scopus

 Orcid

🎓 Education Background

Dr. Kamdar holds a PhD in Energy Technology (2022) and an MSc in Sustainable Energy Management (2019) from Prince of Songkla University, Thailand. During his doctoral research under the supervision of Prof. Juntakan Taweekun, he investigated wind energy development in Southern Thailand, using models and tools such as WAsP and GIS. His master’s thesis applied a GIS-AHP methodology for evaluating solid waste landfill sites, highlighting his early commitment to integrating sustainability with geospatial intelligence. Prior to this, he earned his BSc in Electrical (Power) Engineering from COMSATS University, Pakistan, where he built a strong foundation in power generation, circuit analysis, and energy systems. Dr. Kamdar’s academic journey showcases a seamless progression from electrical engineering fundamentals to advanced renewable energy applications, with a strong focus on interdisciplinary and technological integration. This rich educational trajectory has positioned him as a well-rounded expert capable of bridging theoretical frameworks with real-world environmental and energy challenges.

💼 Professional Experience

Dr. Kamdar is currently serving as a Postdoctoral Researcher (2023–2025) at Nanjing University of Aeronautics and Astronautics, where he developed a novel dynamic grey relational analysis model integrated with TOPSIS and AHP to assess solar energy development barriers in China. He has also served as a Research Associate at Thaksin University (2022–2023), contributing to three major publications on solar energy for tropical hospitals and islands. His academic roles include lecturing on energy management and conducting international workshops on research software tools like OriginLab and Mendeley. Before academia, Dr. Kamdar gained hands-on industrial experience as an Electrical Trainee Engineer at Islamabad Electric Supply Company (2016–2017), focusing on power distribution, load forecasting, and system optimization. This blend of academic insight and industrial exposure has equipped him with a holistic understanding of energy systems—both from a theoretical and practical standpoint—making him an asset to multidisciplinary renewable energy initiatives worldwide.

🌱 Research Interests

Dr. Kamdar’s research interests are deeply rooted in sustainable energy systems, with particular emphasis on renewable energy resource assessment, municipal waste-to-energy conversion, and offshore renewable technologies. He is an expert in integrating Multi-Criteria Decision-Making (MCDM) techniques such as AHP, TOPSIS, and dynamic grey relational analysis to prioritize energy strategies in complex socio-political and geographic contexts. His recent work focuses on the levelized cost of energy (LCOE) analysis, techno-economic assessments, and policy frameworks guiding photovoltaic and wind energy deployment. Dr. Kamdar also explores the application of grey systems theory and geographic information systems (GIS) to optimize energy planning and landfill siting. His interdisciplinary approach draws from engineering, data analytics, environmental science, and policy studies, ensuring a well-rounded solution framework for real-world energy challenges. He is committed to sustainable development goals and actively collaborates on projects that influence national and regional renewable energy policies, particularly in developing nations across Asia.

🏆 Awards and Recognition

Dr. Kamdar’s research excellence has been recognized through several notable achievements. Most recently, he received the Best Paper Award at an international energy conference for his innovative application of dynamic grey relational analysis in evaluating solar energy barriers. His article in Resources, Conservation and Recycling (IF: 11.2) was marked as a Highly Cited Paper, reflecting its significant academic and practical impact. Additionally, his contributions to Sustainability (2021) and the International Journal of Renewable Energy Development (2023) have been recognized for their citation performance. As an early-career researcher, these acknowledgments underscore his growing influence in global energy discourse. His interdisciplinary work is not only pushing the boundaries of energy systems modeling but also creating pathways for smarter, greener decision-making in developing regions. His dedication to knowledge dissemination, policy impact, and technical development positions him as a top candidate for awards recognizing scientific innovation, impact, and leadership in the renewable energy domain.

📚 Publications

Evaluating underlying barriers and development pathways for photovoltaic solar energy in China

Prioritizing barriers for solar energy in China

Wind characteristics in Thailand

Wind farm site selection using WAsP tool

Landfill siting using GIS-AHP

Solar PV for Thai hospitals

Hybrid Microgrid in Koh Samui

1 MW rooftop solar in Thailand

Conclusion

Dr. Ismail Kamdar exemplifies the qualities of an impactful researcher whose work bridges theory and application in the field of sustainable energy. His outstanding record of publications in high-impact journals, pioneering methodologies in grey systems, and practical insights into GIS and renewable energy modeling reflect a commitment to solving real-world energy challenges. With over 300 citations and multiple highly cited papers, he has made a mark in global academic and policy-oriented research landscapes. His interdisciplinary approach, technical depth, and forward-thinking mindset make him an ideal nominee for any prestigious research award in renewable energy and sustainability. Recognizing his contributions will not only honor his individual excellence but also spotlight emerging methodologies and practices essential to the global transition toward clean energy. He is poised to make further breakthroughs and inspire future innovations in the renewable energy sector.

Wang Yanming | Proton Exchange Membrane Fuel Cell | Best Researcher Award

Assist. Prof. Dr. Wang Yanming – Proton Exchange Membrane Fuel Cel – Best Researcher Award

Alignment with Award Category

Yanming Wang’s research and professional accomplishments align perfectly with the criteria for the Best Researcher Award. His outstanding contributions to the fields of material science, energy storage, and fuel cell technology exemplify the excellence and innovation required for this prestigious award. Wang’s ability to merge cutting-edge research with real-world applications in sustainable energy solutions makes him an ideal candidate for recognition in this category.

Hebei University of Engineering | China

         Profile

🎓Early Academic Pursuits 

Education and Training

Yanming Wang, born in 1985, is a distinguished Doctor and Associate Professor specializing in material science and engineering. His academic journey began with his undergraduate and postgraduate studies, culminating in his doctoral degree from the Lanzhou Institute of Chemical Physics in December 2015. His dedication to advancing knowledge in materials science led him to specialize in areas such as nanocomposite materials, tribological performance, and biodegradable plastics.

 

💼Professional Endeavors 

Academic Positions

Throughout his academic career, Yanming Wang has built a solid foundation in the realm of research and development. As the deputy director of the Hebei Modified Plastic Technology Innovation Center, he has contributed significantly to the advancement of modified plastic technology. His expertise is sought after in a variety of domains, including the preparation and tribological performance of nanocomposite materials, the service failure mechanism of polymer and composite materials, and hydrogen fuel cell membranes.

 

📚Contributions and Research Focus on Sustainability Strategies

Yanming Wang’s research primarily focuses on four main areas: Nanocomposite Materials: The preparation and tribological performance of these materials have been a key part of his research, with a particular emphasis on understanding their mechanical and tribological properties. Polymer and Composite Materials: He investigates the service failure mechanisms of these materials, exploring their durability and performance under different environmental conditions. Hydrogen Fuel Cell Membrane Electrodes: Wang’s research on fuel cell technologies aims to contribute to the development of more efficient and durable fuel cell membranes for sustainable energy applications. Biodegradable Plastics: Given the growing concern over plastic pollution, his work on biodegradable plastics reflects his commitment to environmental sustainability.

 

🏆Accolades and Recognition 

Yanming Wang has received significant recognition for his contributions to material science. His research has been published in prestigious journals such as Tribology Transactions, Polymer Composites, and Materials Today Communications. His work has not only been published extensively but has also garnered attention for its practical applications in clean energy technologies and sustainable materials.

 

🌍 Impact and Influence 

Community Impact

Yanming Wang has had a profound impact on the field of material science through his innovative research. His work in nanocomposite materials, polymer failure mechanisms, and hydrogen fuel cells has contributed to advancing technologies that are vital for energy storage, clean energy production, and sustainable materials. Furthermore, his focus on biodegradable plastics underscores his commitment to addressing global environmental challenges, such as plastic waste and pollution.

 

🔮Legacy and Future Contributions 

Looking ahead, Yanming Wang is poised to continue making substantial contributions to the field of materials science, with a particular focus on sustainable technologies and clean energy solutions. His ongoing research on hydrogen fuel cell membranes and biodegradable plastics reflects his dedication to creating materials that address both environmental and energy challenges. As he continues to develop and refine these technologies, his work will undoubtedly have a lasting impact on the global push for a more sustainable and eco-friendly future.

 

Conclusion

In conclusion, Yanming Wang is an exceptional scientist whose research on nanocomposites, fuel cells, and sustainable materials places him at the forefront of material science innovation. His professional endeavors, extensive research contributions, and impactful leadership continue to shape the future of energy and material technologies. Through his ongoing work, he aims to contribute to a cleaner, more sustainable world, further solidifying his legacy as a key player in the global scientific community.

 

📚Publications

    • Effect of T6 Heat Treatment on Microstructure and Properties of Ti@(Al-Si-Ti)p/A356Al Composites Fabricated via Powder Thixoforming | T6 热处理对粉末触变成形技术制备 Ti@(Al-Si-Ti)p/ A356Al 复合材料组织和性能的影响

      Authors: Zhiguo, Z., Tijun, C., Xuezheng, Z., Yanming, W.

      Journal: Xiyou Jinshu Cailiao Yu Gongcheng/Rare Metal Materials and Engineering

    • Nano-injectable pH/NIR-responsive hydrogel for chemo-photothermal synergistic drug delivery

      Authors: Zhao, Q., Yue, X., Miaomiao, L., Yanming, W., Wu, G.

      Journal: Journal of Biomaterials Applications

    • Different doses of oxaliplatin chemotherapy for colorectal cancer and adverse effects on nervous system

      Authors: Pengyu, C., Xuelin, W., Yanming, W.

      Journal: Cancer Research and Clinic

    • Influence of die temperature and moisture content on the densification of bamboo powder using die heating method

      Authors: Yanming, W., Zhongjia, C., Xiangyue, Y., Guosheng, Y.

      Journal: Wood Research

Anthony Bagherian | Sustainable Energy | Best Researcher Award

Prof. Anthony Bagherian – Sustainable Energy – Best Researcher Award

 

International School of Management Paris | Germany

      Profiles

📍Current Position

Anthony Bagherian is currently working as a Quality Manager at Vectrus System Corporations in Stuttgart, Germany.

 

📝Publication Achievements 

Journals Published

Anthony has published numerous research articles in top-ranking journals such as Emeralds, Elsevier, Taylor & Francis, and Wiley. His publications include: “Smart Factory Advancement in Industry 4.0: Exploring Barriers and Strategic Approaches through Empirical Investigation” (Research Square, 2024.  “Correction to: Data-driven prioritization of performance variables for flexible manufacturing systems: revealing key metrics with the best–worst method” (International Journal of Advanced Manufacturing Technology, 2024) “Evaluating the Ranking of Performance Variables in Flexible Manufacturing System through the Best-Worst Method” (Designs, 2024)

🔍Ongoing Research 

Anthony’s ongoing research focuses on exploring barriers and strategic approaches to smart factory advancement in Industry 4.0. He is also investigating the prioritization of performance variables in flexible manufacturing systems.

 🔬Research Interests 

Anthony’s research interests include: Six Sigm , Operational management ,Business Statistics.

🎓Academic Background 

Anthony completed his Ph.D. studies at ISM (International School of Management, Paris). He earned both his Bachelor’s and Master’s degrees at Linköping Technical University in Sweden, specializing in Quality Management.

🏆Scholarships and Awards 

Anthony has received scholarships and awards for his academic excellence and research contributions.

🧬Bioinformatics 

Anthony has expertise in bioinformatics and has applied statistical methods to analyze complex biological data.

🌐Professional Associations 

Anthony is a member of professional associations related to quality management and operational research.

 📚Training & Workshops 

Anthony has participated in training and workshops on Six Sigma, operational management, and business statistics.

 🎤Oral Presentations and🗣️Thought Leadership 

Anthony has presented his research at international conferences and seminars.

 🧑‍🔬Tasks Completed as a Researcher 

Anthony has completed various research projects, including  Investigating barriers to smart factory advancement in Industry 4.  Developing strategic approaches to improve operational efficiency Analyzing performance variables in flexible manufacturing systems

 🚀Success Factors 

Anthony’s success factors include: Strong research background and expertise in Six Sigma and operational management Excellent analytical and problem-solving skills Effective communication and presentation skills

 🧪Publications & Laboratory Experience

Anthony’s publications and laboratory experience highlight his expertise in quality management, operational research, and business statistics. His research has contributed to the advancement of smart factories and flexible manufacturing systems.

Citations

Citations          112

h-index            6

i10-index        3


📚Publications

Correction to: Data-driven prioritization of performance variables for flexible manufacturing systems: revealing key metrics with the best–worst method (The International Journal of Advanced Manufacturing Technology,

     Authors: Bagherian, A., Chauhan, G., Srivastav, A.L.

Evaluating the Ranking of Performance Variables in Flexible Manufacturing System through the Best-Worst Method

    Authors: Bagherian, A., Chauhan, G., Srivastav, A.L., Kumar Sharma, R.

Analyzing the relationship between digitalization and energy sustainability: A comprehensive ISM-MICMAC and DEMATEL approach

    Authors: Bagherian, A., Gershon, M., Kumar, S., Kumar Mishra, M.

   

Enhancing the journey to six sigma excellence: identifying critical success factors

    Authors: Bagherian, A., Gerschon, M., Kumar, S.

Data-driven prioritization of performance variables for flexible manufacturing systems: revealing key metrics with the best–worst method

    Authors: Bagherian, A., Chauhan, G., Srivastav, A.L.

    Journal: International Journal of Advanced Manufacturing Technology