论文标题
使用发电机PMU数据和系统动能的受控电力系统分离
Controlled Power System Separation Using Generator PMU Data and System Kinetic Energy
论文作者
论文摘要
随着世界各地严重的系统干扰和停电的越来越多,受控的系统分离正成为越来越重要的系统完整性保护方案(SIP),以使电力系统免于完全或部分瓦解。成功的受控分裂方法至少应该解决以下两个知名和相互关联的问题:“什么时候分裂?”和“在哪里拆分?”。以前的多个出版物分别考虑了这些问题,甚至那些采用合并方法的人也提出了适用性有限的解决方案。在本文中,我们提出了一种基于PMU的新型探测器的同步丢失检测器,该检测器利用发电机转子角度和速度迅速检测到宽面积的转子角度不稳定性。此外,我们正在展示如何将同步检测原理的丧失与已知的受控分裂技术结合起来,以形成一种综合的防御方案,以防止同步性的无意损失。在IEEE 39-BUS测试电源系统上,针对各种类型的不稳定条件展示了这种大区域SIP的性能。
With the growing number of severe system disturbances and blackouts around the world, controlled system separation is becoming an increasingly important system integrity protection scheme (SIPS) to save the electric power system from a complete or partial disintegration. A successful controlled splitting approach should at least tackle the following two well-known and interrelated problems: "when to split?" and "where to split?". Multiple previous publications consider these problems separately, and even those pursuing a combined approach propose solutions with limited applicability. In this paper, we are proposing a novel PMU-based detector of loss of synchronism that utilizes generator rotor angles and speeds to promptly detect rotor angle instabilities over a wide area. Moreover, we are showing how our loss of synchronism detection principle can be coupled with the known controlled splitting techniques to form an integrated defense scheme against unintentional loss of synchronism. The performance of this wide-area SIPS is demonstrated on the IEEE 39-bus test power system for various types of unstable conditions.