Piyush Pratap Singh
Also known as: Piyush P. Singh
National Institute of Technology Meghalaya, National Institute of Technology Silchar, National Institute of Technology Hamirpur, Dr. Ram Manohar Lohia Avadh University
About
Piyush Pratap Singh, (SMIEEE'21, M-IEEE'16, GSM-IEEE’12) was born in Gorakhpur, India in December 1989. He received the Bachelor of Technology degree in Electronics and Communication Engineering from Institute of Engineering and Technology, Dr. R. M. L. Awadh University Faizabad, Uttar-Pradesh, in 2008 and the Master of Technology in Signal Processing and Control under Department of Electrical Engineering from National Institute of Technology Hamirpur, Himachal Pradesh, in 2012. Ph.D. in Control and Industrial Automation under Department of Electrical Engineering from National Institute of Technology Silchar, Assam, in 2016. Presently, he is working as an Assistant Professor in the Department of Electrical Engineering at NIT Meghalaya, Shillong. His research interest includes nonlinear control, chaos control in nonlinear systems, power systems, biological systems and control of complex networks. He has published more than 60 research papers in SCI and Scopus indexed journals and conferences. He is a senior member of IEEE Society and a life member of the Institute of Engineers (IE).
Employment
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National Institute of Technology Meghalaya Assistant Professor2016 - Present
Education
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National Institute of Technology Silchar Ph. D.2012 - 2016
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National Institute of Technology Hamirpur M.Tech2010 - 2012
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Dr. Ram Manohar Lohia Avadh University B.Tech2004 - 2008
Projects & Funding
Projects & funding information is unavailable.
Publications (70)
- Enhancing Grid Frequency Support by Integrating RTEM and P2P Energy Trading Models in Coordination With AGC System Save
- Observer-based synchronization in nearest-neighbor and globally coupled complex dynamical networks Save
- Investigating the feasibility of a renewable energy-based standalone microgrid for remote area applications: An opto-techno-economic and environmental perspective Save
- Integer cum fractional ordered active-adaptive synchronization to control vasospasm in chaotic blood vessels to reduce risk of COVID-19 infections Save
- Dynamic Surface Sliding Mode Control-Based LFC Design for RES-Dominated Power Systems With a Provision of Grid-Scale Virtual Energy Storage Save
- A realizable chaotic system with interesting sets of equilibria, characteristics, and its underactuated predefined-time sliding mode control Save
- Chaos control of RESs integrated power system model using adaptive higher order PID SMC and comparison of different adaptive SMC techniques Save
- Joint contribution of RTEM and AGC system for frequency stabilisation in renewable energy integrated power system Save
- Level Control of Coupled Tank System using Fuzzy PI Feedforward Technique Save
- Radar Communication via Asymmetric and Wideband Chaotic Signal Save