Investigation of SSR Characteristics of Hybrid Series Compensated Power System with SSSC

R. Thirumalaivasan, M. Janaki, N. Prabhu
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引用次数: 7

Abstract

The advent of series FACTS controllers, thyristor controlled series capacitor (TCSC) and static synchronous Series Compensator (SSSC) has made it possible not only for the fast control of power flow in a transmission line, but also for the mitigation of subsynchronous resonance (SSR) in the presence of fixed series capacitors. SSSC is an emerging controller and this paper presents SSR characteristics of a series compensated system with SSSC. The study system is adapted from IEEE first benchmark model (FBM). The active series compensation is provided by a three-level twenty four-pulse SSSC. The modeling and control details of a three level voltage source converter-(VSC)-based SSSC are discussed. The SSR characteristics of the combined system with constant reactive voltage control mode in SSSC has been investigated. It is shown that the constant reactive voltage control of SSSC has the effect of reducing the electrical resonance frequency, which detunes the SSR. The analysis of SSR with SSSC is carried out based on frequency domain method, eigenvalue analysis and transient simulation. While the eigenvalue and damping torque analysis are based on linearizing the D-Q model of SSSC, the transient simulation considers both D-Q and detailed three phase nonlinear system model using switching functions.
带SSSC混合串联补偿电力系统的SSR特性研究
串联FACTS控制器、晶闸管控制串联电容器(TCSC)和静态同步串联补偿器(SSSC)的出现,不仅可以快速控制传输线中的功率流,而且可以缓解固定串联电容器存在时的次同步谐振(SSR)。SSSC是一种新兴的控制器,本文介绍了基于SSSC的串联补偿系统的SSR特性。该研究系统采用IEEE第一基准模型(FBM)。主动串联补偿由一个三电平24脉冲SSSC提供。讨论了基于三电平电压源变换器(VSC)的SSSC的建模和控制细节。研究了恒无功电压控制方式下并联系统的SSR特性。结果表明,恒无功电压控制具有降低电谐振频率的作用,从而使SSR失谐。基于频域法、特征值分析和瞬态仿真对SSSC进行了SSR分析。特征值和阻尼力矩分析是基于对SSSC的D-Q模型进行线性化,而瞬态仿真则同时考虑D-Q和使用开关函数的详细三相非线性系统模型。
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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