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Robust distributed control of reactive power in a hybrid wind‐diesel power system with STATCOM

机译:带有STATCOM的混合风力柴油动力系统中的无功功率鲁棒分布式控制

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Distributed generation is an interesting way to provide electricity, especially for areas that are far from the electrical grid. Because of the unpredictable nature of renewable sources, centralized control schemes are not reliable. In this paper, a robust distributed controller was designed for an isolated hybrid power system (IHPS) with a static synchronous compensator. To this end, a multi-unit hybrid wind-diesel system was investigated. Kharitonov's theorem was used for designing robust PI controller parameters of the IHPS. Moreover, the system stability analysis was conducted by Kharitonov polynomials according to the zero inclusion principle, Hurwitz matrix stability examination, and Mikhail's criterion. By suggesting and accomplishing several scenarios, the performance and robustness of the proposed controller were inspected under different disturbances. For the purpose of ability comparison, the pure PI and fuzzy-PI controllers tuned by the GWO algorithm were applied. Simulation results showed that dynamic responses of the power system were improved by the proposed controller. Furthermore, the results emphasized that the proposed Kharitonov's theorem-based controller was robust against large disturbances.
机译:分布式发电是一种有趣的供电方式,特别是对于远离电网的地区。由于可再生能源的不可预测性,集中控制方案不可靠。本文针对具有静态同步补偿器的隔离式混合动力系统(IHPS)设计了一种鲁棒的分布式控制器。为此,研究了多单元混合风柴油系统。 Kharitonov定理用于设计IHPS的鲁棒PI控制器参数。此外,根据零包含原理,Hurwitz矩阵稳定性检验和Mikhail准则,由Kharitonov多项式进行系统稳定性分析。通过提出并完成几种方案,在不同的干扰下检查了所提出的控制器的性能和鲁棒性。为了进行能力比较,应用了由GWO算法调整的纯PI和模糊PI控制器。仿真结果表明,该控制器改善了电力系统的动态响应。此外,结果强调了拟议的Kharitonov基于定理的控制器对于大干扰具有鲁棒性。

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