Roust Power System Stabilizer Design Using Kharitonov’s Theorem: A Case Study

H. Soliman, Mohammed H. Albadi, Hamood Al-Sheriyani, Hadhifa Al-Azakawi, Ali Al Qutaiti
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引用次数: 1

Abstract

This paper proposes a robust power system stabilizer(PSS) for a steam synchronous generator in Barka II power station. The PSS should be capable of damping small-disturbance oscillations (inherently existing in power systems due to e.g. load changes, lines switching...etc.) within a certain settling time for different load conditions. Also, the proposed PSS must have the conventional structure and its parameters must not be violated. To achieve this goal, robust control provides many advantages. The suggested controller is tuned by the  Kharitonov’s theorem and uses the standard structure employed in industry. The problem is cast into a nonlinear constrained optimization problem to achieve the desired settling time without violating the practical values of the controller parameters. Performance of the robust PSS is evaluated by several simulations in the presence of system uncertainty due to load changes.
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基于Kharitonov定理的电力系统稳压器设计:一个实例研究
本文提出了一种用于巴卡II电站蒸汽同步发电机的鲁棒电力系统稳定器(PSS)。PSS应该能够在一定的稳定时间内,在不同的负载条件下,阻尼小干扰振荡(固有存在于电力系统中,如负载变化,线路切换等)。此外,所提出的PSS必须具有常规结构,其参数不能违反。为了实现这一目标,鲁棒控制提供了许多优势。所建议的控制器由Kharitonov定理调谐,并使用工业中使用的标准结构。将该问题转化为一个非线性约束优化问题,以在不违背控制器参数实际值的情况下实现理想的沉降时间。在系统负荷变化不确定的情况下,通过多次仿真对鲁棒PSS的性能进行了评价。
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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