Integration of STP and WTS in multi-area AGC Studies Considering GHA Optimized TIDF Controller

Sanjeev Kumar Bhagat, Lalit Chandra Saikia, Naladi Ram Babu, Satish Kumar Ramoji, Biswanath Dekaraja, Manoja Kumar Behera
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Abstract

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 grass hopper algorithm (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
考虑GHA优化TIDF控制器的多区域AGC研究中STP和WTS的集成
本文探讨了太阳能热风系统在AGC研究中的应用。区1、区2的热、风机组为热、光热系统,区3为热、风系统。采用一种新的二级控制器TIDF,并采用跳草算法(GHA)对其参数进行同步优化。仿真研究表明,与PI和PID控制器相比,TIDF控制器的响应性能更好。对STP和WTS集成对系统动力学的影响也进行了评估和探讨,系统动力学随着可再生能源的集成而改善。此外,通过灵敏度分析验证了控制器在不同负载条件下的鲁棒性
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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