可控硅控制串联电容抑制机电振荡的鲁棒反馈线性化控制器设计

M. Barkhordary, S. Nabavi, M. Motlagh, A. Kazemi
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引用次数: 8

摘要

诸如TCSC之类的FACTS器件能够控制潮流,提高暂态稳定性,减轻次同步谐振(SSR)并减小故障电流。为了确保最佳地利用TCSC,需要一个有效的控制方案。传统的控制策略是基于固定结构和参数的近似线性化模型。但事实上,电力系统的本质不仅是高度非线性的,而且还表现出某种不确定性。为此,设计了一种鲁棒反馈线性化控制器。首先,采用合适的微分同构变换对标称模型进行线性化。然后,采用递归方法完成自适应控制律。所得到的控制器在不确定参数值属于一个预设的封闭区域的情况下,可以使不确定系统保持稳定。在系统中应用了两种不同的故障。应用了发生在发电机母线和输电线路中点的对称三相短路故障以及突然卸荷故障。通过对不同工况和扰动的计算机仿真,验证了所提鲁棒非线性控制器的有效性。所设计的控制器不需要任何复杂的计算,在不同的工况下都能提供良好的性能,具有一定的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Robust Feedback Linearization Controller Design for Thyristor Control Series Capacitor to Damp Electromechanical Oscillations
FACTS devices such as TCSC are capable of controlling power flow, improving transient stability, mitigating sub synchronous resonance (SSR), and reducing fault currents. An efficient control scheme is required to ensure the best use of TCSC. Conventional control strategies are based on approximate linearized model with fixed structures and parameters. But in fact, the nature of a power system not only is highly nonlinear but also exhibits some kind of uncertainty. In this paper, a robust feedback linearization controller is designed for this purpose. First, a suitable diffeomorphism transformation is used to linearize the nominal model. Then, a recursive method is used to complete the adaptive control law. The obtained controller can stabilize the uncertain system if the value of the uncertain parameter belongs to a presupposed closed region. Two different faults have been applied in the system. A symmetrical three-phase short-circuit fault which occurs at the generator bus and at the midpoint of the transmission line as well as a sudden load removing fault are applied. By using computer simulation of different operating conditions and disturbances, the effectiveness of the proposed robust nonlinear controller is established. The designed controller is applicable as it doesn't need any complicated computation while providing good performance in different operating conditions.
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