Khamies Mohamed, Magdy Gaber, Ebeed Mohamed, Kamel Salah
Electrical Engineering Department, Faculty of Engineering, Aswan University, 81542 Aswan, Egypt.
Department of Electrical Engineering, Faculty of Energy Engineering, Aswan University, Aswan 81528, Egypt.
ISA Trans. 2021 Nov;117:118-138. doi: 10.1016/j.isatra.2021.01.052. Epub 2021 Jan 28.
This paper proposes a novel robust controller for frequency stabilization of electrical systems taken into consideration a high renewable energy sources (RESs) penetration. The suggested controller, robust PID (RPID) controller, is combination of a proportional-integral-derivative (PID) controller and a linear quadratic gaussian (LQG) controller. Furthermore, the Improved lightning attachment procedure optimization (ILAPO) technique is applied for determining the optimal setting of the parameters of the introduced RPID controller. A studied power system with RESs is used as a test system to justify the performance of the RPID controller. The superiority of the introduced robust controller is verified through a comparison of its performance under system uncertainties with those of other robust controllers presented in the literature. The results elucidate that the RPID controller can effectually enhance frequency stability and guarantee reliable performance for power grids supplied with high share of renewable energy for all studied scenarios. Consequently, the proposed RPID controller purveys creditable for modern power systems considering RESs.
本文提出了一种新型鲁棒控制器,用于考虑高可再生能源渗透率的电力系统频率稳定。所建议的控制器,即鲁棒PID(RPID)控制器,是比例积分微分(PID)控制器和线性二次高斯(LQG)控制器的组合。此外,改进的雷电附着过程优化(ILAPO)技术用于确定所引入的RPID控制器参数的最优设置。一个含可再生能源的研究电力系统被用作测试系统,以验证RPID控制器的性能。通过将其在系统不确定性下的性能与文献中提出的其他鲁棒控制器的性能进行比较,验证了所引入的鲁棒控制器的优越性。结果表明,对于所有研究场景,RPID控制器能够有效地提高频率稳定性,并保证为高比例可再生能源供电的电网提供可靠性能。因此,所提出的RPID控制器为考虑可再生能源的现代电力系统提供了可靠的方案。