S
Saroj Kumar Padhan
Researcher at Veer Surendra Sai University of Technology
Publications - 31
Citations - 859
Saroj Kumar Padhan is an academic researcher from Veer Surendra Sai University of Technology. The author has contributed to research in topics: Duality (optimization) & Strong duality. The author has an hindex of 7, co-authored 28 publications receiving 686 citations. Previous affiliations of Saroj Kumar Padhan include Indian Institute of Technology Kharagpur & Indian Institutes of Technology.
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A hybrid firefly algorithm and pattern search technique for automatic generation control of multi area power systems
TL;DR: In this paper, a hybrid Firefly Algorithm and Pattern Search (hFA-PS) technique is proposed for automatic generation control of multi-area power systems with the consideration of Generation Rate Constraint (GRC).
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Application of Firefly Algorithm for Load Frequency Control of Multi-area Interconnected Power System
TL;DR: In this paper, a firefly algorithm is proposed for load frequency control of multi-area power systems and the optimum gains of the proportional integral/proportional integral derivative controller are optimized employing the firefly technique.
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Optimal gravitational search algorithm for automatic generation control of interconnected power systems
TL;DR: In this paper, an attempt is made for the effective application of Gravitational Search Algorithm (GSA) to optimize PI/PIDF controller parameters in Automatic Generation Control (AGC) of interconnected power systems.
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A novel hybrid gravitational search and pattern search algorithm for load frequency control of nonlinear power system
TL;DR: The superiority of the proposed approach is demonstrated by comparing the results with some recently published modern heuristic optimization techniques such as firefly algorithm (FA), differential evolution (DE), bacteria foraging optimization algorithm (BFOA), particle swarm optimization (PSO), hybrid BFOA-PSO, NSGA-II and genetic algorithm (GA) for the same interconnected power system.
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Automatic generation control with thyristor controlled series compensator including superconducting magnetic energy storage units
TL;DR: In this paper, an attempt has been made to understand the dynamic performance of Automatic Generation Control (AGC) of multi-area multi-units thermal-thermal power system with the consideration of Reheat turbine, Generation Rate Constraint (GRC) and Time delay.