Small-signal-stability enhancement using a power-system stabilizer based on the cuckoo-search algorithm against contingency N-1 in the Sulselrabar 150-kV system

M. Djalal, M. Y. Yunus, H. Setiadi, A. Krismanto
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引用次数: 16

Abstract

Small-signal stability is one of the main factors limiting power transmission in conventional power systems. This concern is primarily handled by adding damper windings of a synchronous generator and power-system stabilizer (PSS). However, due to the impact of the N-1 contingency, damper windings and a conventional PSS are insufficient to overcome this problem. Proper placement and design of the PSS are crucial for improving stability. One approach to optimizing the placement and tuning of the PSS is to use an artificial-intelligence method. Here, the cuckoo-search algorithm (CSA) is proposed to optimize the PSS tuning and placement. Based on simulation, it is found that a PSS based on the CSA can enhance the system's small-signal stability. The critical, local, and inter-area modes of the investigated system improve significantly. The oscillatory condition is more highly damped, as indicated by a smaller overshoot and faster settling time. It is also found that the CSA can be used to tune the PSS parameter under an N-1 contingency. From the analytical results of the N-1 contingency condition, optimal tuning of the PSS parameters was obtained, resulting in PSS-placement options for generators 1 to 7 and 12 to 15, producing a minimum damping of 0.611.
基于布谷鸟搜索算法的Sulselrabar 150-kV系统小信号稳定性增强
在常规电力系统中,小信号稳定性是制约电力传输的主要因素之一。这个问题主要是通过增加同步发电机和电力系统稳定器(PSS)的阻尼器绕组来解决的。然而,由于N-1偶然性的影响,阻尼器绕组和传统的PSS不足以克服这个问题。PSS的正确放置和设计对于提高稳定性至关重要。一种优化放置和调整PSS的方法是使用人工智能方法。在此,提出了布谷鸟搜索算法(CSA)来优化PSS的调谐和放置。仿真结果表明,基于CSA的PSS可以提高系统的小信号稳定性。所研究系统的关键、局部和跨区域模式显著改善。振荡条件更大的阻尼,表明更小的超调和更快的沉降时间。本文还发现,在N-1偶然性下,CSA可以用于调整PSS参数。根据N-1偶发条件的分析结果,对PSS参数进行了最优调整,得到了1 ~ 7号发电机和12 ~ 15号发电机的PSS布置方案,产生的最小阻尼为0.611。
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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