Følg
Sumit Kumar Jha
Sumit Kumar Jha
Research Associate, Indian Institute of Technology, Bhubaneswar, India.
Verificeret mail på bitmesra.ac.in
Titel
Citeret af
Citeret af
År
Demand Side Management for Stand-Alone Microgrid Using Coordinated Control of Battery Energy Storage System and Hybrid Renewable Energy Sources
DK Sumit Kumar Jha
Electric Power Components and Systems, 2019
272019
Assessment of battery energy storage system with hybrid renewable energy sources to voltage control of islanded microgrid considering demand-side management capability
SK Jha, D Kumar
Iranian Journal of Science and Technology, Transactions of Electrical …, 2020
242020
Modified V-I droop based adaptive vector control scheme for demand side management in a stand-alone microgrid
ML Sumit Kumar Jha, Deepak Kumar
International Journal of Electrical Power & Energy Systems 130, 2021
162021
Smart demand response management of islanded microgrid using voltage-current droop mechanism
SK Jha, D Kumar, I Kamwa
International Journal of Emerging Electric Power Systems 19 (1), 20170238, 2018
112018
Demand-side management of self-sustained droop based standalone microgrid using conservation voltage reduction strategy
SK Jha, D Kumar, PR Tripathi, SR Samantaray, I Kamwa
IEEE Systems Journal, 2022
52022
Voltage reduction strategy for V–I droop-based stand-alone microgrid considering demand side management capability
DKM Sumit Kumar Jha, Deepak Kumar
Electrical Engineering, 2022
52022
Assessment of V–I droop mechanism to create power reserve for stand-alone microgrid
SK Jha, N Ali, D Kumar
Design, Analysis, and Applications of Renewable Energy Systems, 365-392, 2021
52021
Robust decentralized control of parallel type autonomous microgrid structure
SK Jha, D Kumar
2018 International Conference on Applied Electromagnetics, Signal Processing …, 2018
52018
A power saving approach to self-sustained microgrid
SK Jha, D Kumar
2018 International Conference on Power Energy, Environment and Intelligent …, 2018
52018
An adaptive vector control method for inverter‐based stand‐alone microgrids considering voltage reduction and load shedding schemes
SK Jha, D Kumar, PR Tripathi, B Appasani, HM Zawbaa, S Kamel
IET Generation, Transmission & Distribution 17 (12), 2703-2717, 2023
22023
Conservation Voltage Reduction Strategy for Autonomous Microgrid with Improved Voltage-CurrentDroop-Based Inverter Control Framework
SK Jha, D Kumar, SR Samantaray
International Transactions on Electrical Energy Systems 2023, 2023
22023
Adapting the control strategies of microgrid to propel the future research towards demand side management: A review
SK Jha, D Kumar
Advances in Smart Grid Automation and Industry 4.0: Select Proceedings of …, 2021
22021
Investigating the Demand Side Management Capability of Stand-Alone Microgrid with VI Droop Approach
SK Jha, D Kumar
2021 1st International Conference on Power Electronics and Energy (ICPEE), 1-6, 2021
22021
Predicting the Performance of Electrical Machines using Machine Learning
VJ Manohar, SK Jha
2023 8th International Conference on Information Technology Research (ICITR …, 2023
2023
Demand-Side-Management-Entwicklungssystem eines autarken, auf Statik basierenden, eigenständigen Mikronetzes unter Verwendung einer Strategie zur Reduzierung der Spannungserhaltung
IN Jha, Sumit Kumar, Ranchi, Jharkhand, IN, Kumar, Deepak, Ranchi, Jharkhand
DE Patent DE 20 2023 104 604 U1, 2023
2023
Real-Time Validation of VI Droop Enabled Stand-Alone Microgrid Characterizing Power Saving Capability
SK Jha, D Kumar
2021 IEEE Bombay Section Signature Conference (IBSSC), 1-6, 2021
2021
Enabling the Technologies for Incorporating Battery Energy Storage System with Standalone Microgrid
SK Jha, D Kumar
Advances in Smart Grid Automation and Industry 4.0: Select Proceedings of …, 2021
2021
Power Distribution Systems Using Bit-Shift Operator Based MOSOA
D Kumar, A Ghosh, SR Samantaray, SK Jha
International Journal of Emerging Electric Power Systems 20 (6), 20180329, 2019
2019
Assessment of Demand Side Management for Power Saving in Standalone Microgrid
SK Jha
Mesra, 0
Systemet kan ikke foretage handlingen nu. Prøv igen senere.
Artikler 1–19