ISBN-13: 9781774914182 / Twarda / 2024 / 394 str.
Discusses the automation of electricity infrastructures for energy producers, integrating the implementation of IoT technology for distributed energy systems to optimize energy efficiency and wastage. Provides efficient, clean, and safe solutions for interfacing internet technology with energy power grids for smart cities and transportation.
1. Design and Control Using ISOGI-Q Algorithm for Grid Integration of PV-Array 2. Thermal Efficiency Investigation of Solar Parabolic through Collector System Using Two Dissimilar Reflectors 3. Smart Buildings Using IoT and Green Engineering 4. A Novel Electrical Load Forecasting Model Using a Deep Learning Approach 5. Battery Plant Model Development for BMS Application 6. Modeling of Constant Voltage Control in Synchronous Buck and Boost Converters Using Matlab/Simulink for Point-of-Load Application 7. Determination of Open Loop Responses of Switched DC–DC Converters Using Various Modeling Techniques 8. Evolution of Hybrid Ultracapacitors in Solar Microgrids 9. Speed Sensorless Model Predictive Current Control of Induction Motor-Driven Electric Vehicles 10. Performance Analysis of Hybrid Off-Grid Two-Axis Photovoltaic Tracking System/Fuel Cell Energy System Incorporating High-Efficiency Solar Cell 11. Efficient Integration of Distributed Generation in Radial Distribution Network for Voltage Profile Improvement and Power Loss Minimization via Particle Swarm Optimization Pragya 12. Classical and Predictive Control of Interior Permanent Magnet Synchronous Motor for Railway Application 13. Electric Mobility 14. Power Loss Reduction and Voltage Improvement through Capacitors and Their Optimization for the Distribution System 15. Solar Photovoltaic Powered Automatic Irrigation System for the Agriculture Sector 16. Optimal Parameter Estimation of 3-Phase Transmission Line Using a Grey Wolf Optimization Algorithm 17. Network Reconfiguration-Based Outage Management for Reliability Enhancement of Microgrid: A Hardware in Loop Approach 18. A Net Energy Meter-Based Approach for Islanding Detection in Modern Distribution System
Sheila Mahapatra, PhD, is Professor and Head of the Electronics Engineering Department at Alliance College of Engineering and Design, Alliance University, Bangalore, India. She has 18 years in the field of engineering, academics, and research. Her areas of interest include power systems optimization, FACTS devices, renewable energy, energy economics, and sustainability. She has many research publications in SCI, SCIE, and Scopus-indexed journals as well as book chapters and conference proceedings to her credit. She is a reviewer for reputed journals including IEEE Transactions on Power Delivery, IET Generation, Transmission and Distribution, Journal of Power Technologies, International Journal of Modelling and Simulation, Journal of Engineering Science and Technology, Journal of Concurrency and Computation, Practice and Experience,and several others. She is a life member of several professional societies, including the Institution of Engineering and Technology and the International Society for Technology in Education, and is a member of IEEE. Dr. Mahapatra was awarded a PhD in Electrical Engineering (FACTS controllers’ implementation in power transmission system) from The North Cap University, Gurugram, India. She received her BTech degree in Electrical Engineering from Utkal University, Orissa, and MTech in Power Systems and Automation from Andhra University, India.
Mohan Krishna S., PhD, is Associate Professor in the Electrical and Electronics Engineering Department at Alliance College of Engineering and Design, Alliance University, Bangalore, India. His research interests include, electric vehicles, smart homes and IoT-based building energy management system, and state observers for induction motors energy economics and sustainability. He has published his research in SCI/SCIE and Scopus-indexed journals as well as book chapters and conference proceedings. He is an advisory board member to the energy section of Heliyon (Elsevier). He also serves as Associate Editor of the International Journal of Smart Vehicles and Smart Transportation. Additionally, he is a member of the editorial review board of the International Journal of Energy Optimization and Engineering. He is also editing several books in the domain of electric vehicle, smart grids, and energy sustainability. He was awarded a PhD in Electrical Engineering (sensorless control of induction motor drives for EV applications) from Vellore Institute of Technology (VIT), India, and his BTech and MTech degrees from Amrita Vishwa Vidyapeetham, Coimbatore, India. He also acquired a domain-specific MBA (Power Management) from the University of Petroleum and Energy Studies (UPES), Dehradun, India.
B. Chandra Sekhar, PhD, is currently working as Specialist–EV in Transportation Business Unit at L & T Technology Services Limited (LTTS), Bangalore, India. Prior to joining LTTS, he worked as a Technical Lead in the Automotive Business Division at TATA Consultancy Services Limited, Bangalore. Subsequently he worked as a R & D Engineer in the Solar Division at Power One Micro Systems Pvt. Ltd, Bangalore. He is a professional member of IEEE. Dr. Sekhar has published over 21 papers in peer-reviewed journals and conferences. His research areas are hybrid electric vehicles, EV chargers, battery management systems, power electronics converters, DC micro grids, LED drivers, and hybrid renewable energy systems. He received his PhD degree in Electrical Engineering from the Central Power Research Institute Research Centre, Bangalore, Karnataka, India.
Saurav Raj, PhD, is an Assistant Professor with the Electrical Engineering Department at the Institute of Chemical Technology Mumbai, Marathwada Campus, Jalna, India. He has also worked as Assistant Professor at Alliance University, Bangalore, India, and as an Associate Editor of the European Journal of Electrical Engineering and editorial board member of the SCIREA Journal of Electrical Engineering. He has also been serving as a reviewer for conferences and journals, including those published by Elsevier, Springer, Taylor & Francis, IGI Global USA, and others. He has done extensive research work in power system optimization, reactive power planning, swarm and evolutionary optimization techniques, FACTS devices, computational intelligence, and renewable energy. He graduated from R. P. Sharma Institute of Technology, Patna, India, in Electrical and Electronics Engineering. He received PhD from IIT (ISM) Dhanbad, India.
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