Utilizing synchrophasor-based protection systems with VSC-HVDC controls to mitigate voltage instability

R. Leelaruji, L. Vanfretti
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引用次数: 4

Abstract

This article rationalizes the need of coordination between protective systems and VSC-HVDC controls to steer power systems away from voltage instability conditions. The concept of coordination involves the use of feasible communication mechanisms which can be exploited by protection systems to send out a “protective information set” to an algorithm which will determine preventive, corrective, and protective actions particularly by taking advantage of the availability of VSC-HVDC. This “protective information set” considers synchrophasor vector processing capabilities which allows for the exploitation of phasor measurements while satisfying protective relaying data transmission and processing requirements. Coordination refers to the ability of the protective systems and VSC-HVDCs to cooperate and to synchronize their actions so that voltage instability can be avoided.
利用基于同步相量的保护系统与VSC-HVDC控制,以减轻电压不稳定
本文合理化了保护系统和直流直流控制之间协调的必要性,以引导电力系统远离电压不稳定状态。协调的概念涉及使用可行的通信机制,保护系统可以利用该机制向算法发送“保护信息集”,该算法将确定预防、纠正和保护行动,特别是通过利用vcs - hvdc的可用性。这种“保护信息集”考虑了同步相量矢量处理能力,允许在满足保护中继数据传输和处理要求的同时利用相量测量。协调是指保护系统和直流直流控制系统相互配合并同步动作以避免电压不稳定的能力。
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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