Mitigation of subsynchronous resonance by SVC using PMU-acquired remote generator speed

R. Varma, S. Auddy
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引用次数: 17

Abstract

Subsynchronous resonance (SSR) is a potential problem in power systems having series compensated transmission lines. Flexible AC transmission systems (FACTS) controllers are widely applied to mitigate subsynchronous oscillations (SSO). With the advent of wide area measurement (WAM) technology, it is possible to measure the states of a large interconnected power system with synchronized phasor measurement units (PMU). In this paper the concept of using remote signals acquired through PMU has been proposed to damp SSR. An auxiliary subsynchronous damping controller (SSDC) for a static VAr compensator (SVC) using the remote generator speed as the stabilizing signal has been designed to damp subsynchronous oscillations. The IEEE first benchmark model is used to show the effectiveness of the controller. Extensive simulation results in EMTDC/PSCAD show that an SVC already installed in a transmission system with the primary objective of improving power transfer capability can also damp SSR with the auxiliary controller using remote generator speed. Finally, the effect of signal transmission delay is discussed
基于pmu获取的远端发电机转速的SVC抑制次同步谐振
在串联补偿输电线路中,次同步谐振是一个潜在的问题。柔性交流输电系统(FACTS)控制器被广泛应用于抑制次同步振荡(SSO)。随着广域测量(WAM)技术的出现,利用同步相量测量单元(PMU)测量大型互联电力系统的状态成为可能。本文提出了利用PMU获取的远程信号来抑制SSR的概念。针对静态无功补偿器(SVC),设计了一种以远端发电机转速为稳定信号的辅助次同步阻尼控制器(SSDC)来抑制次同步振荡。采用IEEE第一基准模型验证了该控制器的有效性。EMTDC/PSCAD的大量仿真结果表明,以提高电力传输能力为主要目标的输电系统中已经安装的SVC也可以通过远程发电机转速辅助控制器来抑制SSR。最后,讨论了信号传输延迟的影响
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