Remedial Action Scheme based on Automatic Load Shedding for Power Oscillation Damping

M. Toro, J. Segundo, Ciro Nunez, N. Visairo, A. Esparza
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引用次数: 1

Abstract

This paper presents an algorithm for automatic load shedding as a Remedial Action Scheme (RAS) for power oscillation damping. The algorithm computes the exact amount of power for the load shedding in all buses and then detects the critical areas in the system. Therefore, the trip actions are only in the areas where are necessary. In addition to this, the RAS is equipped with an oscillation monitoring stage since the system presents oscillatory transitions. The proposed RAS methodology is based on the online computation of the PV curves and the voltage stability margin for calculating the amount of power to trip and used a load shedding strategy based on modal participation factors to identify the most critical areas. On the other hand, the algorithm identifies ringdown data for the detection of oscillations, and Prony's analysis monitors the damping of oscillations to determine online if the load disconnection has the desired effect. Performance evaluation of the proposed scheme has been made on a 12-bus network and, the results show excellent damping of oscillations for critical contingencies and an increase in the stability margin of the whole power system.
基于自动减载的电力振荡阻尼补救措施方案
本文提出了一种自动减载算法,作为电力振荡阻尼的一种补救措施。该算法精确计算出所有总线的减载功率,然后检测出系统中的关键区域。因此,行程操作只在必要的区域进行。除此之外,由于系统呈现振荡过渡,RAS还配备了振荡监测级。提出的RAS方法基于PV曲线的在线计算和用于计算跳闸功率的电压稳定裕度,并使用基于模态参与因子的减载策略来识别最关键的区域。另一方面,该算法识别衰铃数据用于检测振荡,并且proony的分析监测振荡的阻尼,以在线确定负载断开是否具有期望的效果。在一个12母线网络上对该方案进行了性能评估,结果表明该方案对关键突发事件的振荡有良好的阻尼,并提高了整个电力系统的稳定裕度。
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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