Design of a robust power system controller with constraints

R. de Girardier, K. Folly
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Abstract

Power system stabilizers (PSSs) are generally used to damp low frequency oscillations. Usually, a classical PSS uses a fixed, second-order model, for which a mere tuning of its parameters is required. These controllers have been implemented successfully for many years. However, conventional PSSs may become inadequate when the operating conditions of the system are changing widely, because of the lack of robustness. For this reason, robust control method, specifically H∞ optimal control, has been proposed and applied to the design of PSSs. A characteristic of H∞ controller is that the order of the synthesized controller is high. This makes the controller complex and its implementation difficult. For easy implementation, it is desirable to obtain a low-order H∞ controller. One way to cope with higher order controller is to use a model reduction technique to reduce the controller's order. However, this may lead to some performance degradation. In this paper, the desired order of the controller is used as a constraint at the outset of the design process. The obtained low order controller is compared with a standard H∼ optimal controller which order has been reduced using conventional reduction techniques. It is shown that the controller obtained by imposing constraints at the design stage performs better than the one obtained using conventional reduction techniques.
具有约束的鲁棒电力系统控制器设计
电力系统稳定器(pss)通常用于抑制低频振荡。通常,经典PSS使用固定的二阶模型,只需调整其参数即可。这些控制器已成功实施多年。然而,当系统的运行条件变化很大时,由于缺乏鲁棒性,传统的pss可能会变得不合适。为此,提出了鲁棒控制方法,特别是H∞最优控制,并将其应用于pss的设计中。H∞控制器的一个特点是合成控制器的阶数高。这使得控制器复杂,实现困难。为了便于实现,我们希望得到一个低阶H∞控制器。处理高阶控制器的一种方法是使用模型约简技术来降低控制器的阶数。然而,这可能会导致一些性能下降。在本文中,控制器的期望阶数被用作设计过程开始时的约束。将得到的低阶控制器与使用常规约简技术降低阶数的标准H ~最优控制器进行比较。结果表明,通过在设计阶段施加约束得到的控制器比采用常规约简技术得到的控制器性能更好。
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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