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Decarbonisation and Digitization of the Energy System: Proceedings of the 2nd International Conference on Smart Grid Energy Systems and Control, Sgesc

ISBN-13: 9789819976294 / Angielski

Ashwani Kumar; S. N. Singh; Pradeep Kumar
Decarbonisation and Digitization of the Energy System: Proceedings of the 2nd International Conference on Smart Grid Energy Systems and Control, Sgesc Ashwani Kumar S. N. Singh Pradeep Kumar 9789819976294 Springer - książkaWidoczna okładka, to zdjęcie poglądowe, a rzeczywista szata graficzna może różnić się od prezentowanej.

Decarbonisation and Digitization of the Energy System: Proceedings of the 2nd International Conference on Smart Grid Energy Systems and Control, Sgesc

ISBN-13: 9789819976294 / Angielski

Ashwani Kumar; S. N. Singh; Pradeep Kumar
cena 806,99 zł
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Kategorie:
Technologie
Kategorie BISAC:
Technology & Engineering > Power Resources - Electrical
Technology & Engineering > Machinery
Business & Economics > Industries - Energy
Wydawca:
Springer
Seria wydawnicza:
Lecture Notes in Electrical Engineering
Język:
Angielski
ISBN-13:
9789819976294

Optimal Energy Scheduling And Feasibility Analysis In Microgrid Considering The Hospital Load Model With Isolated Grid.- Optimal Allocation And Sizing Of Distributed Generation In IEEE-85 Bus System Considering Various Load Models Using Multi-Objective Metaheuristic Algorithms.- A Sustainable Privacy-Preserving Aggregation Authentication Protocol For Smart Grid.- A Low-Cost WECS For Remote Area Electrification. Optimal Sizing Of Grid-Connected Hybrid Renewable Energy System Using The GWO Algorithm And Adapting The Time Of Use Tariff Rates.- Comparative Analysis Of Load Forecasting By Using Ann, Fuzzy Logic And ANFIS.- A Practical Approach To Volt Var Optimization In An Unbalanced Radial Distribution System.- A Construction Of Secure And Efficient Lightweight Authenticated Key Agreement Based On Elliptic Curve Cryptography For Smart Grid.- A Case Study With Analysis For Photovoltaic Array Under Shaded Conditions.- Multi Objective Hybrid Optimal Algorithm For Distribution System Feeder Reconfiguration.- Forecasting Of Daily Average Power Demand For The Chhattisgarh State Of India.- Optimal Placement And Sizing Of Active Power Filters In RDS Using TLBO For Harmonic Distortion Reduction.- Small-Signal Stability Analysis Of Synchronverter Based Ac Microgrid In Islanded Mode.- Feasibility Study Of PV/Wind Hybrid System With Recycled Retired Electric Vehicle Batteries.- A Crest Factor Based Voltage Sag Quantification Method.

Dr. Ashwani Kumar did his B. Tech. in Electrical Engineering from Govind Vallabh Pant University of Agriculture and Technology. Pant Nagar, Uttrakhand in 1988 with honors, did his M. Tech. in Power Systems from Punjab University Chandigarh in 1993 with honors, and his Ph.D. degree from IIT Kanpur in 2003 in the area of power systems. He holds a post-doctoral position in 2008 at Tennessee Tech. University, USA. He is currently a Professor in the Department of Electrical Engineering at NIT Kurukshetra and coordinator School of Renewable Energy and Efficiency, SREE. He has an interest in the areas of power system operation, Power Systems Restructuring, Distributed Generation and Renewable Energy Systems, FACTS applications to Power Systems, Demand Side Management, and Smart grid/microgrid technology. He has completed sponsored projects awarded by DST and a project during his Post Doc. Program at Tennessee Technological University USA. He has guided 14 PhDs and 55 M. Tech. scholars. He has 120 publications to his credit in archival journals of repute and 165 publications in IEEE Confs and Scopus-indexed confs. He has received POSOCO Power System awards a joint venture of Power Grid and FITT IIT Delhi for guiding the best M. Tech. thesis among the top 25 in India consecutively in the years 2013 to 2018. He is a recipient of best paper awards from the National System Conference NSC NIT Surathkhal, Litteratti award by the International Journal of Emerald IJESM. He has organized IEEE conferences and Int. conferences on Smart Grid, Energy Systems and Control, SGESC-2021, and 2023. He visited the USA, Italy, Australia, Netherlands, Uni. Of Malasiya for academic activities. 5 PhD scholars and 3 M.Tech. Scholars are doing a thesis under his guidance currently. He is involved with various administrative activities in the Institute and is presently is coordinator of the School of Renewable Energy and Efficiency, SREE. He is a fellow member of the Institution of Engineers, a Fellow IETE, India, a Senior member of IEEE, life member of ISTE. 

Prof. S.N. Singh obtained his M. Tech. and Ph. D. in Electrical Engineering from the Indian Institute of Technology Kanpur in 1989 and 1995. Presently, he is Director of ABV-IIITM Gwalior, India, and on leave from the position of Professor (HAG), Department of Electrical Engineering, Indian Institute of Technology Kanpur, India. He was also Vice-Chancellor of the Madan Mohan Malviya University of Technology Gorakhpur from April 2027 to July 2020. His research interests include power system restructuring, FACTS, power system optimization and control, security analysis, and wind power. He has published over 550 papers in international and national journals and conferences. He has also written two books on Electric Power Generation, Transmission and Distribution, and Basic Electrical Engineering, published by PHI, India. Prof Singh has completed over 36 projects in India and abroad.

Dr. Pradeep Kumar is an Assistant Professor in the Department of Electrical Engineering at the National Institute of Technology (NIT) in Kurukshetra, India. His areas of research are artificial intelligence Applications in Power Systems, Smart Grid, Substation Design especially, Earthing and Bonding based on IEEE-80 2000 (with ETAP), Direct Stroke Lightning Protection using IEEE 998, and Insulation coordination. Transmission Line Design and Planning, Power Quality.

The book contains select proceedings of the International Conference on Smart Grid Energy Systems and Control (SGESC 2023). The proceedings are divided into 02 volumes, and this volume focuses on the Decarbonisation and Digitization of the Energy System. The book covers the important topics on the smart grid/microgrids and control aspects, optimal energy scheduling, distributed generation, wind energy for remote electrification, forecasting of loads and daily energy demand, reactive power management, Volt-Var control, reactive power procurement, and ancillary services, the role of FACTS devices for reactive power management and control, feasibility study of PV/Wind hybrid systems, electricity markets, stability of the power system network, energy storage systems and electrical vehicles. This book is a unique collection of 27 chapters from different areas with a common theme and will be immensely useful to academic researchers and practitioners in the industry.



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