Mr. Sunil Kumar | Energy Management | Best Researcher Award

Mr. Sunil Kumar | Energy Management | Best Researcher Award

Jamia Millia Islamia , India 

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🌱 Early Academic Pursuits

Sunil Kumar embarked on his academic journey with a Bachelor of Technology (B.Tech) in Electrical Engineering from MDU University, Rohtak, India, in 2012. His early academic pursuits laid a strong foundation in electrical systems, which sparked his interest in renewable energy technologies. Building on this foundation, he pursued a Master of Technology (M.Tech) in Power System Drives from J.C. Bose University of Science & Technology, YMCA, Faridabad, India, in 2018. During his master’s, Sunil Kumar honed his skills in power systems, specializing in the integration of renewable energy sources, microgrid protection, and energy management.

His dedication to learning and innovation led him to pursue a Doctor of Philosophy (Ph.D.) at the prestigious Central University of Jamia Millia Islamia, New Delhi, India. This academic progression reflects his consistent passion for understanding complex systems in the power sector, focusing on emerging technologies and optimizations in the domain of electrical engineering.

⚡ Professional Endeavors

Currently a Research Scholar at Jamia Millia Islamia, Sunil Kumar’s research is centered on addressing key challenges in renewable energy and microgrid protection. His work involves exploring concepts such as Loadability, Synchro-phasor Unit (PMU), and innovative optimization techniques to solve real-world problems related to energy management. His keen interest in hybrid optimization algorithms has driven him to design groundbreaking methods that integrate the strengths of Golden Jackal Optimization (GJO) and Gradient Descent Optimization (GDO) to improve the efficiency and performance of microgrid systems.

Sunil’s professional endeavors also involve collaborating with distinguished scholars like Dr. Ikbal Ali and Anwar Shahzad Siddiqui. These collaborations have helped him engage in meaningful research, publish in high-impact journals, and contribute to the field of renewable energy and electrical engineering.

🔬 Contributions and Research Focus

Sunil Kumar’s contributions to electrical engineering research are both innovative and impactful. His primary focus revolves around renewable energy, microgrid protection, and the enhancement of energy management systems. A key highlight of his research is the development of a hybrid optimization algorithm that merges GJO and GDO. This hybrid method stands out for its ability to enhance convergence speed, improve robustness in diverse search spaces, and efficiently handle large-scale optimization problems.

Some of his notable publications include:

  1. “Protection of Microgrid Feeder Based on Impedance Angle Assisted by Synchro Phasor Unit” (2024) – Published in Journal of Renewable Energy and Environment, this paper showcases his contribution to enhancing microgrid feeder protection using advanced impedance angle techniques.
  2. “Performance Analysis of Different Solar Models Based on the Solar Cell Parameters” (2021) – Published in Indian Journal of Pure & Applied Physics, this study evaluates the performance of various solar models, contributing to the understanding of solar energy optimization.
  3. “DC Microgrid Designed for the Integration of Wind and Solar Energy Sources” (2023) – Featured in AIP Proceedings, this paper presents a novel approach to integrating wind and solar energy into a microgrid system, emphasizing sustainable energy solutions.

🏆 Accolades and Recognition

Though early in his career, Sunil Kumar’s dedication to research and academic excellence has been recognized through various platforms. His research papers have been published in reputed journals such as Journal of Renewable Energy and Environment, Indian Journal of Pure & Applied Physics, and AIP Proceedings. These publications have not only contributed to his recognition in the academic community but have also demonstrated his expertise in renewable energy technologies, making him a promising researcher in his field.

In addition to his publications, Sunil’s innovative hybrid optimization algorithm has garnered attention for its potential to revolutionize energy management processes in microgrid systems. This recognition highlights his contribution to advancing solutions for global energy challenges.

🌍 Impact and Influence

Sunil Kumar’s research has significant implications for the broader field of electrical engineering, especially in the areas of renewable energy and microgrid protection. His work on hybrid optimization methods has the potential to influence the design and management of energy systems worldwide, making them more efficient, reliable, and sustainable.

The integration of renewable energy sources into microgrids is a crucial step toward achieving global energy sustainability. Sunil’s research directly contributes to this goal by addressing key technical challenges and offering innovative solutions that enhance the performance of microgrids. His work could potentially influence future developments in smart grid technologies and sustainable energy management.

🚀 Legacy and Future Contributions

As Sunil Kumar continues his academic journey, his future contributions to electrical engineering and renewable energy are likely to leave a lasting impact. His focus on energy management optimization, coupled with his innovative

approach to microgrid protection, positions him as a thought leader in the energy sector. With the ongoing rise of renewable energy technologies, Sunil’s expertise in hybrid optimization algorithms will be crucial in addressing the complex challenges of integrating renewable sources into existing power systems.

Looking ahead, Sunil Kumar aims to expand his research into more advanced areas such as artificial intelligence (AI)-driven energy management, real-time optimization of power systems, and the development of resilient microgrid systems. His goal is to create smart, adaptive systems capable of handling the growing demands of global energy consumption while reducing reliance on non-renewable energy sources.

His continued collaboration with experts in the field, coupled with his dedication to innovation, will likely result in the development of novel methods and solutions that could reshape the landscape of renewable energy and smart grid systems. Sunil’s legacy will be marked by his commitment to fostering a sustainable energy future, making a significant impact on the global push toward green energy.

In the coming years, Sunil Kumar’s work is expected to influence both academic research and practical applications in renewable energy, leading to more efficient energy systems and contributing to the global effort to combat climate change. His research will not only help in advancing microgrid technologies but will also inspire future researchers to explore innovative solutions for global energy challenges.

By continually pushing the boundaries of electrical engineering and renewable energy research, Sunil Kumar is set to leave a lasting legacy that will benefit both academic communities and real-world applications for generations to come.

Notable Publications

Performance Analysis of Different Solar Models Based on the Solar Cell Parameters

Authors: I Ali, S Kumar, AS Siddiqui

Journal: Indian Journal of Pure & Applied Physics (IJPAP)

Year: 2022

Control of Wind Energy Connected Single Phase Grid with MPPT for Domestic Purposes

Authors: S Kumar, I Ali, AS Siddiqui

Journal: Proceedings of the 2022 2nd International Conference on Intelligent Technologies (CONIT)

Year: 2022

Protection of Microgrid Feeder Based on Impedance Angle Assisted by Synchro Phasor Unit

Authors: S Kumar, I Ali, AS Siddiqui

Journal: Journal of Renewable Energy and Environment

Year: 2024

Fault Detection Analysis of Active Distribution Network Based on Rate of Change of Frequency using RTDS and PMUs

Authors: F Rasool, M Anas, S Kumar, I Ali

Journal: Proceedings of the 2023 9th IEEE India International Conference on Power Electronics (IICPE)

Year: 2023

DC Microgrid Designed for the Integration of Wind and Solar Energy Sources

Authors: P Kant, P Singhal, S Kumar, S Gupta

Journal: AIP Conference Proceedings

Year: 2023

Ms. Ashwini Manchalwar | Peer-to-Peer Energy Trading | Best Researcher Award

Ms. Ashwini Manchalwar | Peer-to-Peer Energy Trading | Best Researcher Award

Visvesvaraya National Institute of Technology Nagpur, India

🔗 Profile

Google Scholar 

📚Early Academic Pursuits 

Ashwini Dnyaneshwar Manchalwar’s academic journey began with a robust foundation in Electrical Engineering. His early education saw impressive achievements, with a B.Tech in Electrical Engineering from VNIT, Nagpur, India, where he maintained a CGPA of 6.81. This period marked the beginning of his fascination with energy systems and their sustainable management. His undergraduate project focused on a grid-connected photovoltaic system, a project designed to integrate solar energy into the existing grid infrastructure. This foundational work not only showcased his aptitude for tackling real-world engineering problems but also set the stage for his future research endeavors in sustainable energy solutions.

Following his undergraduate studies, Ashwini pursued a Master of Technology (M.Tech) in Electrical Engineering at VNIT, Nagpur, achieving a CGPA of 8.71. His master’s research focused on energy management strategies in smart microgrids, emphasizing effective energy distribution and the promotion of energy trading between microgrids. This phase of his academic career solidified his expertise in energy systems and management, providing him with the tools to address complex energy challenges.

💼Professional Endeavors 

Ashwini’s professional career is marked by significant roles and contributions in the field of electrical engineering. As a Design Engineer at LGPS Hybrid Energy Pvt Ltd, he worked on various energy projects, gaining practical experience in energy system design and implementation. This role allowed him to apply theoretical knowledge in a real-world setting, enhancing his skills in project management and technical problem-solving.

Currently, as a Research Scholar at VNIT, Nagpur, Ashwini has been at the forefront of pioneering research in peer-to-peer (P2P) energy trading and smart grid technologies. His role involves developing innovative models for energy trading and management, which are critical for advancing sustainable energy solutions. His work not only contributes to academic knowledge but also has practical implications for improving energy systems and reducing costs.

🔬Contributions and Research Focus 

Ashwini’s research focus lies at the intersection of sustainable energy solutions and advanced technological models. His Ph.D. thesis, titled “Market Design for Peer-to-Peer Energy Trading in a Distribution Network,” involves developing a decentralized P2P energy trading model. This model aims to optimize energy trading by minimizing data sharing among participants, thereby enhancing economic and technical efficiencies. His work in this area is pivotal in reducing energy costs and improving societal welfare by establishing optimal pricing mechanisms.

In addition to his thesis work, Ashwini has contributed significantly to the field through several high-impact publications. His research papers cover various aspects of peer-to-peer energy trading, including the impact of short-term load forecasting and price differentiation in smart grids. Notable publications include:

  • “Peer-to-Peer Energy Trading in a Distribution Network considering the Impact of Short-Term Load Forecasting,” published in Electrical Engineering by Springer.
  • “Decentralized Peer-to-Peer Model of Energy Trading in Smart Grid considering Price Differentiation,” featured in Energy Reports by Elsevier.
  • “Prosumers and Retailers Based Decentralized Energy Trading Model in the Smart Grid Considering Network Constraints,” published in the International Journal of Energy Power and Energy System by Elsevier.

These contributions highlight his role in advancing the understanding and implementation of innovative energy trading models.

🏆Accolades and Recognition 

Ashwini’s excellence has been recognized through several prestigious awards and fellowships. Since 2019, he has been a recipient of the Ph.D. fellowship from the Ministry of Human Resource Development (MHRD), Government of India, underscoring his significant contributions to research. His academic achievements were further acknowledged through the M.Tech scholarship from MHRD during his master’s studies.

In addition, Ashwini’s performance in the Graduate Aptitude Test in Engineering (GATE) has been commendable, with successful qualifications in 2016, 2017, and 2018. These accolades reflect his strong grasp of engineering concepts and his dedication to the field.

🌍Impact and Influence 

Ashwini’s work has a profound impact on both academic research and practical energy management. His innovative approaches to P2P energy trading and smart grid technologies are contributing to more efficient and cost-effective energy systems. His research not only advances theoretical knowledge but also offers practical solutions for real-world energy challenges.

As a reviewer for prominent journals and a member of technical committees for conferences such as ICPEE 2022 and ICEPE 2023, Ashwini plays a crucial role in shaping the future of energy research. His involvement in these activities highlights his influence and leadership within the academic community.

🚀Legacy and Future Contributions 

Ashwini Dnyaneshwar Manchalwar’s career is a testament to his dedication and expertise in the field of electrical engineering. His work in developing sustainable energy solutions and innovative trading models positions him as a leading researcher in his domain. As he approaches the completion of his Ph.D. and continues to contribute to the field, his legacy will likely include significant advancements in energy management and smart grid technologies.

Looking forward, Ashwini’s future contributions are anticipated to further enhance energy sustainability and efficiency. His ongoing research and professional endeavors promise to make lasting impacts on both academic and practical aspects of energy systems.

📚 Publications