Transient stabilization of power swing by controllable PV farm equipped with optimal fuzzy gain scheduling of PID controller

T. Chaiyatham, I. Ngamroo
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Abstract

The severe faults in power systems may cause the power swing and transient instability. On the other hand, recently, the large photovoltaic (PV) farms have been extensively installed in power systems. With the ability of PV inverter, it is possible to control the PV output power quickly to stabilize the power swing. This paper proposes an optimal fuzzy gain scheduling of PID (FGS-PID) controller equipped with the PV inverter for stabilization of power swing. Without trial and error, the scale factors, membership functions and control rules of the FGS-PID controller are automatically obtained by a bee colony optimization. Simulation study in a single machine infinite bus system confirms the superior stabilizing effect of the PV with proposed FGS-PID in comparison to the PV with MPPT and the PV with PID.
基于PID控制器最优模糊增益调度的可控光伏电站功率波动暂态稳定
电力系统的严重故障会引起电力系统的振荡和暂态失稳。另一方面,近年来,大型光伏电站已广泛安装在电力系统中。有了光伏逆变器的能力,就可以快速控制光伏输出功率,稳定功率波动。本文提出了一种安装在光伏逆变器上的最优模糊增益调度PID (FGS-PID)控制器,用于稳定光伏逆变器的功率波动。通过蜂群优化自动获得FGS-PID控制器的尺度因子、隶属函数和控制规则,无需反复试验。在单机无限总线系统中的仿真研究证实了采用FGS-PID控制的PV比采用MPPT控制的PV和采用PID控制的PV具有更好的稳定效果。
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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