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

Visvesvaraya National Institute of Technology Nagpur, India

đź”— 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.

đź“š Publications

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

You May Also Like