Robust nonlinear control for a power system with multiple machines connected to the common bus terminal

L. Zhang, Y. Wang, G. Guo, D. J. Hill
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引用次数: 1

Abstract

In this paper, we propose a robust design method for excitation control of a power system for the typical case where different machines are connected to the common bus terminal. In the design method, we do not need to equalize the generators. We design one controller for each specified generator independently without knowing the parameters of other generators. Thus all the problems caused by the equalization are automatically eliminated. Using only local variables at the transformer ends, we can design the controllers for each generator separately despite the nonlinearities and interconnections among different generators. A two-generator example test system is presented to illustrate the effectiveness of the proposed excitation control system. For comparison, simulation between the proposed approach and the equalization approach, and the proposed approach and PSS are given. The results show that the equalization approach is not accurate in analysis of power system transient stability, but the proposed controller can effectively enhance the system transient stability and improve the system damping.
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多机连接的电力系统的鲁棒非线性控制
本文针对不同机器连接到公共母线终端的典型情况,提出了一种电力系统励磁控制的鲁棒设计方法。在设计方法中,我们不需要对发电机进行均衡。在不知道其他发电机参数的情况下,为每台指定发电机单独设计一个控制器。这样,所有由均衡引起的问题都自动消除了。利用变压器两端的局部变量,可以不考虑发电机之间的非线性和互连性,单独设计每台发电机的控制器。最后给出了一个双发电机测试系统实例,验证了所提励磁控制系统的有效性。为了进行比较,对该方法与均衡方法进行了仿真,并对该方法与PSS进行了仿真。结果表明,均衡方法在电力系统暂态稳定性分析中并不准确,但所提出的控制器能有效地增强系统暂态稳定性,改善系统阻尼。
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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