This article investigates the integration solar thermal and wind system in AGC studies. Thermal and wind units in area-1, area-2 consists of thermal and solar thermal system and area-3 consist of thermal and wind syst...
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ISBN:
(纸本)9781665425360
This article investigates the integration solar thermal and wind system in AGC studies. Thermal and wind units in area-1, area-2 consists of thermal and solar thermal system and area-3 consist of thermal and wind system. A new secondary controller named by TIDF is used and its parameters are simultaneously optimized by grasshopperalgorithm (GHA). The simulation study reveals that the responses with the TIDF controller outperform in compared to PI and PID controller. The effects on system dynamics with integration of STP and WTS also evaluate and explore that the dynamics of the system improves with integration of renewables sources. Moreover, the sensitivity analysis is executed to check the controller robustness at diverse loading conditions of the system
This article presents a new meta-heuristic algorithm. optimized secondary controller called Integral minus Tilt-Derivative (I -TD) for automatic generation control of three area multi -source system. Area-1 comprises ...
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This article presents a new meta-heuristic algorithm. optimized secondary controller called Integral minus Tilt-Derivative (I -TD) for automatic generation control of three area multi -source system. Area-1 comprises of thermal and solar thermal units, area-2 comprises of two thermal units and area-3 comprises of thermal and wind systems. Comparison of system responses using proposed I-TD controller and some other commonly used controller revels better dynamics characteristics of the proposed one. Dynamic responses of the system corresponding to various meta heuristic optimization technique like firefly algorithm (FA), grey-wolf optimization (GWO), grass -hopperalgorithm (GHA) explore that GHA provides slightly better dynamics than the other and also converges faster. Further, sensitivity analysis suggests that system dynamics with GHA optimized I-TD controller at various loading conditions are robust and are not reset again.
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