Dr . Shishir Dixit - Power and Energy - Best Researcher Award🏆
Madhav Institute of Technology & Science, Gwalior - India
Professional Profiles
Early Academic Pursuits
He commenced his academic journey with a Bachelor's in Electrical Engineering from Government Engineering College Jabalpur in 1995, paving the way for further educational milestones. He pursued a Master's in Design and Production of H.E.E. from Maulana Azad National Institute of Technology, Bhopal, in 2003, followed by a Ph.D. in Electrical Engineering Stream from the same institute in 2014. His educational background laid a robust foundation for his subsequent professional endeavors.
Professional Endeavors
His professional journey spans diverse domains, reflecting his versatile expertise. Starting as a Lecturer/Sr. Lecturer at GuruRamDas Khalsa Institute of Science and Technology-Jabalpur, he gradually ascended the academic ladder, serving as a Lecturer, Assistant Professor, Associate Professor, and eventually assuming the role of a Professor at MITS, GWL. He's held responsibilities involving research guidance, course development, academic leadership, Power and Energy and mentoring students and faculty members.
Additionally, his industry exposure includes pivotal roles at Gabriel (I) Ltd – Dewas and Transfeb Industries – Bhopal, where he demonstrated proficiency in electrical maintenance, project management, quality control, and lean manufacturing principles, contributing significantly to enhanced operational efficiency and maintenance strategies.
Contributions and Research Focus in Power and Energy
His contributions span various spheres, encompassing academic leadership, curriculum development, Power and Energy and research guidance. His research and academic involvement emphasize electrical engineering, encompassing fields such as electrical maintenance, project management, and quality control. He has actively mentored students, published research findings, and secured funding for projects, contributing to both academia and industry.
Accolades and Recognition
Throughout his academic and professional journey, his commitment and contributions have been acknowledged through his progression to leadership roles and his significant impact on curriculum development, student mentoring, and research guidance. His expertise and leadership have been pivotal in elevating academic standards and fostering a culture of innovation.
Impact and Influence
His influence spans across academia and industry, marked by his strategic vision, commitment to educational growth, and advancements in electrical engineering. His multifaceted experience in academia and industry positions him as a catalyst for fostering transformative success and innovation, both within educational institutions and in industrial settings.
Legacy and Future Contributions
His legacy lies in his dedication to academic leadership, research guidance, and industry-relevant contributions. His diverse expertise and leadership qualities pave the way for future contributions, aiming to further enhance educational standards, foster innovation, and contribute meaningfully to the field of electrical engineering, both in academia and industry.
Citations
- Citations 206
- h-index 9
- i10-index 8
Notable Publications
- Optimal placement of SVC for minimizing power loss and improving voltage profile using GA
- Optimal location and size of TCSC for voltage stability enhancement using PSO-TVAC
- Minimization of power loss and voltage deviation by SVC placement using GA
- Power flow analysis using fuzzy logic
- Modified cuckoo search algorithm for optimal reactive power dispatch
- An overview of placement of TCSC for enhancement of power system stability
- Optimal placement and sizing of distributed generation using multi-verse optimization
- Optimal placement of TCSC for enhancement of power system stability using heuristic methods: An overview
- GA based optimal placement of SVC for minimizing installation cost and voltage deviations
- Particle swarm optimization-artificial neural network for power system load flow
- Optimization of reactive power using dragonfly algorithm in DG integrated distribution system
- Takagi-Sugeno Fuzzy based Controllers for Grid Connected PV-Wind-Battery Hybrid System
- Optimal location and sizing of STATCOM for minimizing power loss and improving voltage profile using GA
- DC Side Controllers for Grid Connected Hybrid Renewable Energy Sources
- A forward-backward sweep and ALO based approach for DG allocation in radial distribution system
- Optimal Location and Sizing of SVC for Minimization of Power Loss and Voltage Deviation Using NSGA II
- Power loss sensitivity and GWO-based approach for optimal capacitor and DG allocation in distribution system
- Implementing quality management system in pharmaceutical laboratories
- Optimal Allocation of SVC for Minimization of Power Loss and Voltage Deviation using NSGA-II
- Energy Management in Microgrids with Renewable Energy Sources and Demand Response