Muhammad Yasir Ali Khan | Power system | Best Researcher Award

Dr. Muhammad Yasir Ali Khan | Power system | Best Researcher Award

Post Doctoral Fellow , Hohai University , China

Muhammad Yasir Ali Khan is a Post Doctorate Research Fellow at Hohai University, China, specializing in Electrical Engineering, particularly in Microgrids and Power Electronics. Born on March 13, 1992, in Pakistan, he has a strong academic and professional background in electrical engineering with expertise in power systems, renewable energy, and energy storage technologies. His work combines theoretical research with practical applications, aiming to develop efficient, sustainable, and resilient power systems. Muhammad has contributed to numerous high-impact research papers and has an international academic and industry experience. He is dedicated to advancing the field of energy engineering through his innovative research, contributing to the global transition to renewable energy solutions.

Profile

Strengths for the Award

  1. Strong Academic Background:
    • Ph.D. in Electrical Engineering from Hohai University, with a focus on Microgrids and Power Electronics.
    • M.S. and B.S. degrees in Electrical Engineering with specialization in Power Electronics and Human Machine Interface, showcasing a solid foundational knowledge in electrical engineering.
  2. Research Contributions and Publications:
    • Muhammad Yasir Ali Khan has contributed to various high-impact research papers in reputable journals like IEEE Access, Journal of Energy Storage, and IET Renewable Power Generation.
    • His research topics are cutting-edge, with contributions in areas like Microgrids, Power Electronics, Hybrid AC/DC Microgrids, Maximum Power Extraction in Photovoltaic Systems, and Sustainable Alternatives to SF6 in High Voltage Applications.
    • He has co-authored review articles and original research papers, demonstrating his ability to synthesize existing knowledge and advance new findings.
  3. Citations and Impact:
    • His papers have received a respectable number of citations, reflecting the relevance and impact of his research in the field. For instance, his paper on “Distributed Secondary Control for Islanded Microgrids” has garnered 3 citations since publication, indicating interest from the research community.
    • Another paper on maximum power extraction methods in photovoltaic systems has received 9 citations, highlighting the significance of his work in renewable energy.
  4. Interdisciplinary Expertise:
    • His research spans multiple aspects of electrical engineering, from power systems to renewable energy technologies like photovoltaics. He also explores the integration of advanced control strategies in microgrids, indicating his ability to tackle complex, interdisciplinary problems.
    • The inclusion of innovative topics such as sustainable materials in high-voltage applications (e.g., the SF6 alternative paper) demonstrates his foresight in tackling global challenges in energy systems.
  5. Leadership and Collaboration:
    • His role as a Research Assistant at COMSATS University and as a Post Doctorate Research Fellow at Hohai University demonstrates leadership qualities, including teamwork, problem-solving, and technical writing.
    • His collaborative efforts with other researchers, particularly in joint papers, highlight his strong communication and teamwork skills.
  6. Global Exposure and Contribution:
    • Muhammad has international experience, having worked in China at Hohai University and his prior experience in Pakistan with Bahria Town Private Limited. This international exposure is beneficial for networking, knowledge exchange, and collaborating on global research efforts.

Areas for Improvement

  1. Further Increase in Citation Impact:
    • While his research has garnered citations, the overall citation count could be improved. Increased visibility of his work could come from publishing in even higher-impact journals or contributing to more widely-cited reviews and seminal papers.
  2. Broader Research Network:
    • Building a broader network of collaborators across different regions or institutions could further elevate his visibility in the research community and open new avenues for cross-disciplinary collaborations.
  3. Outreach and Dissemination:
    • There may be opportunities to engage more with industry, presenting his research at major conferences or writing white papers that are more accessible to a broader audience. This could further enhance the practical application of his work, particularly in areas like microgrid systems and power electronics.
  4. Diversity in Research Topics:
    • While his focus on microgrids and power electronics is well-defined, exploring additional emerging topics (e.g., artificial intelligence in power systems, grid resilience, or energy storage technologies) could enhance his research portfolio and help stay ahead of the curve in these rapidly developing fields.

Education 

Muhammad Yasir Ali Khan completed his Ph.D. in Electrical Engineering from Hohai University, China, specializing in Microgrids and Power Electronics (2019–2023). He also holds a Master’s in Electrical Engineering from COMSATS University Islamabad, Pakistan, where he focused on Power Electronics (2016–2018). Muhammad completed his Bachelor’s in Electrical (Electronics) Engineering from COMSATS Institute of Information Technology, Pakistan, with research in Human-Machine Interfaces (2010–2014). His academic journey has been marked by rigorous research in energy systems, with a strong foundation in electronics and electrical engineering principles. During his doctoral studies, he developed expertise in the integration of renewable energy systems, advanced control methods, and microgrid technologies. His educational background, along with his research experience, has equipped him with the skills to address complex energy challenges and contribute to the development of sustainable power systems.

Experience 

Muhammad Yasir Ali Khan has accumulated valuable experience in both academic research and industry. As a Post Doctorate Research Fellow at Hohai University, he is engaged in advanced research in Microgrids and Power Electronics. Prior to this, he worked as a Research Assistant at COMSATS University Islamabad, where he contributed to projects in Power Electronics and Energy Systems (2018-2019). His industry experience includes roles as a Test Engineer (Protection) and Technical Officer at Bahria Town Private Limited, where he worked on high-voltage electrical grid stations (220/132 kV) and security systems (2014–2015). These roles allowed him to apply his technical knowledge in practical settings, further enriching his research and development capabilities. Muhammad’s academic and industry experiences enable him to bridge the gap between theory and real-world applications, particularly in renewable energy integration and microgrid systems.

Research Focus 

Muhammad Yasir Ali Khan’s research primarily focuses on Microgrids, Power Electronics, and Renewable Energy Systems. His work aims to improve the efficiency, reliability, and sustainability of energy systems through advanced control strategies and power electronics technologies. Key areas of his research include the integration of renewable energy sources such as solar and wind power into microgrids, the development of hybrid AC/DC systems, and advanced power conversion techniques for optimal energy management. His research also explores energy storage solutions, such as carbon and metal-organic framework materials, for enhancing grid stability and performance. Additionally, he investigates communication delays and secondary control schemes for islanded and grid-connected microgrids. His work on sustainable dielectric mixtures as alternatives to SF6 gas in high-voltage applications further underscores his commitment to advancing eco-friendly solutions in power systems. Muhammad’s research aims to contribute to the global shift towards sustainable, smart, and resilient energy systems.

Publications 

  1. “A comprehensive review on recent advancements in new carbon and metal-organic framework-based energy storage materials and devices” 🌱⚡
  2. “Distributed secondary frequency control scheme with A-symmetric time-varying communication delays and switching topology” 🔄🕒
  3. “Hybrid AC/DC Microgrid: Systematic Evaluation of Interlinking Converters, Control Strategies, and Protection Schemes: A Review” 🔌⚙️
  4. “Distributed Secondary Control for Islanded Microgrids Considering Communication Delays” 🌐⚡
  5. “Hybrid Maximum Power Extraction Methods for Photovoltaic Systems: A Comprehensive Review” ☀️🔋
  6. “A unified distributed hierarchical control of a microgrid operating in islanded and grid-connected modes” 🌍🔌
  7. “Dichlorodifluoromethane-carbon dioxide: A dielectric mixture as a sustainable alternative to SF6 in high-voltage applications” 💨⚡
  8. “Distributed hierarchical control strategy for multi-bus AC microgrid to achieve seamless synchronization” 🔗🔋
  9. “Design and Performance Evaluation of a Step-Up DC–DC Converter with Dual Loop Controllers for Two Stages Grid Connected PV Inverter” 🔌🌞
  10. “Design of a multiport bidirectional DC-DC converter for low-power PV applications” ⚡🔄

Conclusion

Muhammad Yasir Ali Khan is a highly promising researcher with a robust academic background and significant contributions to the fields of microgrids, power electronics, and renewable energy systems. His strong publication record, the relevance of his research topics, and his leadership abilities position him as an excellent candidate for the “Best Researcher Award.By enhancing his citation impact and continuing to expand his research network and outreach efforts, Muhammad can further strengthen his position as a leading expert in his field. His work already has a solid foundation, and with continued effort, he is likely to make even more substantial contributions to the advancement of electrical engineering and energy systems.

Mehdi Shafiee | Power system | Best Researcher Award

Dr. Mehdi Shafiee | Power system | Best Researcher Award

Faculty member, Technical and vocational university, Iran

Dr. Mehdi Shafiee, born on February 12, 1983, is an Assistant Professor and the Head of the Electrical Engineering Department at the Technical and Vocational University (TVU) in Tehran, Iran. With a specialization in Power Systems, Dr. Shafiee has made significant contributions to the field through his research, teaching, and publications. His work focuses on the flexibility and resiliency of power systems, smart grids, and energy economics. Dr. Shafiee is also deeply involved in mentoring students and leading innovative research projects.

Profile

Google Scholar

Strengths for the Award

  1. Extensive Academic Background:
    • Dr. Shafiee has an impressive academic trajectory, with a PhD from Ferdowsi University of Mashhad, a well-regarded institution. His research in “Probabilistic Modeling of Electric Vehicles Aggregator in Distribution Systems Integrated by Distributed Generations” is highly relevant and innovative in the field of power systems.
  2. Diverse Research Interests:
    • Dr. Shafiee’s research spans across several critical areas, including power system flexibility, smart grids, energy economics, and renewable energy resources. His ability to contribute to multiple facets of electrical engineering demonstrates his versatility and depth of knowledge, which are crucial for the Best Researcher Award.
  3. Substantial Publication Record:
    • With numerous publications in both English and Farsi, Dr. Shafiee has contributed significantly to the academic community. His work has been featured in high-impact journals such as Electric Power Systems Research, Energy Reports, and International Journal of Smart Electrical Engineering, showcasing his consistent output and relevance in his field.
  4. Leadership and Teaching Experience:
    • As the Head of the Electrical Engineering Department at the Technical and Vocational University (TVU) in Tehran, Dr. Shafiee has shown leadership and a commitment to educating the next generation of engineers. His teaching experience across various levels, from undergraduate to Ph.D. students, highlights his dedication to advancing the field through education.
  5. Innovative Research Contributions:
    • Dr. Shafiee’s research on renewable energy, electric vehicles, and smart grids is not only academically rigorous but also practical in addressing global energy challenges. His work on the optimization and management of energy systems positions him as a forward-thinking researcher with a clear impact on the future of power systems.

Areas for Improvement

  1. International Collaboration:
    • While Dr. Shafiee has a robust publication record, increasing his international collaborations could enhance the global impact of his research. Engaging with researchers from diverse geographic and academic backgrounds could lead to more groundbreaking findings and broader recognition.
  2. Focus on High-Impact Journals:
    • Although Dr. Shafiee has published extensively, concentrating on high-impact journals with broader readerships could further elevate his academic profile. This strategic focus would increase the visibility of his work and its influence on global research agendas.
  3. Expansion of Research Funding:
    • Securing more international research grants could be beneficial. By doing so, Dr. Shafiee could expand his research capabilities, take on more ambitious projects, and contribute to larger, more influential studies in his field.

Education 🎓

Dr. Shafiee earned his Ph.D. in Electrical Engineering from Ferdowsi University of Mashhad (FUM) in 2018, under the supervision of Prof. Reza Ghazi. His doctoral thesis focused on the probabilistic modeling of electric vehicles’ aggregators in distribution systems integrated by distributed generations. He completed his M.Sc. at Amirkabir University of Technology in 2008, where he studied security-constrained unit commitment and generation scheduling under the guidance of Prof. Behroz Vahidi. He received his B.Sc. in Electrical Engineering from Shahid Bahonar University in 2006, completing a thesis on the internal protection of generators.

Experience 📚

Dr. Shafiee has extensive teaching experience at both undergraduate and postgraduate levels. He has taught a variety of courses including Power System Reliability, Power System Operation, Renewable Energy, Smart Grids, and Control Theory at M.Sc. and Ph.D. levels. At the B.Sc. level, his courses have included Power Systems Analysis, Electrical Machinery, and Electric Circuits. Dr. Shafiee’s pedagogical approach emphasizes practical applications and cutting-edge research, making him a respected figure in the academic community.

Research Interests 🔬

Dr. Shafiee’s research interests are diverse and centered around key areas in power systems, including:

  • Power System Flexibility and Resiliency
  • Smart Grids
  • Energy Economics
  • Power System Planning and Operation
  • Power System Optimization
  • Energy Management and Demand Response
  • Renewable Energy Resources
  • FACTS Devices
  • Dynamic System and Control

His work often integrates advanced optimization techniques, probabilistic modeling, and game theory to address complex challenges in modern power systems.

Awards & Honors 🏆

Dr. Mehdi Shafiee has been recognized for his academic and research excellence with various awards and honors. As a leading researcher and educator, he has contributed significantly to the advancement of power systems engineering. His achievements include nominations for prestigious awards and his involvement in high-impact research projects that have garnered international attention.

Selected Publications 📚

Dr. Shafiee has authored numerous influential papers in renowned journals. Here are some of his notable publications, complete with hyperlinks and citation information:

Sharifi, V., Iranmanesh, E., Shafiee, M., & Abdollahi, A. (2024). Robust optimization of transactive flexibility oriented scheduling of joint electricity and gas supplies. Electric Power Systems Research, 232, 110435. Cited by 10 articles.

Jahromi, S. N., Abdollahi, A., Heydarian‐Forushani, E., & Shafiee, M. (2024). A comprehensive framework for predicting electric vehicle’s participation in ancillary service markets. IET Smart Grid. Cited by 5 articles.

Sharikabadi, R., Abdollahi, A., Rashidinejad, M., & Shafiee, M. (2023). Probabilistic–Possibilistic modeling of V2G parking lot with the approach of improving flexibility in the Security-Constrained Unit Commitment. TABRIZ Journal of Electrical Engineering. Cited by 3 articles.

Zamani, A. A., Shafiee, M., & Sajadinia, M. (2023). Optimal self-tuning fractional order fuzzy Load Frequency Control considering sustainable energy sources and electric vehicle. International Journal of Ambient Energy. Cited by 7 articles.

Shafiee, M., Jazebi, S., Zamani, A. A., & Karimzadeh, F. (2023). Power Management and Dynamic Assessment of a Hybrid Wind, PV, and Battery Energy System. International Journal of Smart Electrical Engineering. Cited by 4 articles.

Conclusion

Dr. Mehdi Shafiee is a strong candidate for the Best Researcher Award, given his significant contributions to power systems and renewable energy research. His academic achievements, extensive publication record, and leadership in the academic community demonstrate his excellence and commitment to advancing electrical engineering. By enhancing his international collaborations and focusing on publishing in high-impact journals, Dr. Shafiee could further solidify his position as a leading researcher in his field. His work not only contributes to the academic community but also addresses critical global challenges, making him a deserving candidate for this prestigious award.