[HTML][HTML] Efficient load frequency control in multi-source interconnected power systems using an innovative intelligent control framework

S Tavakoli, AA Zamani, A Khajehoddin - Energy Reports, 2024 - Elsevier
The goal of this paper is to develop an innovative intelligent controller, called TID-IC, to
improve the efficiency and stability of multi-area multi-source power systems. The paper …

Optimal α-variable model-free adaptive barrier function fractional order nonlinear sliding mode control for four area interconnected hybrid power system with …

OA AM, L Peng, GA Amran, H AlSalman, MA AA… - IEEE …, 2024 - ieeexplore.ieee.org
This paper proposes an optimal-variable model-free adaptive barrier-function fractional-
order nonlinear sliding mode control (-MF-ABFFONSMC) for the load frequency control …

Mountain Gazelle Optimizer-Tuned PID Controller for Frequency Stabilization of PV-Reheat Thermal Power System

D Izci, S Ekinci, L Abualigah… - 2024 8th …, 2024 - ieeexplore.ieee.org
Due to its vital function in controlling power generation and demand, the load frequency
control (LFC) system is the focus of this study. As uncertainty around renewable energy …

Modified puma-optimized novel control strategy for seven-level modular multilevel converter-based static synchronous compensator in grid-connected photovoltaic …

V Naresh, P Balachandar, T Sarada Devi… - Electrical …, 2024 - Springer
The use of standalone microgrids has increased because they are more flexible to supply
energy as per consumer needs and increase pollution. Integrating renewable energy …