Using TCSC scheme for SSR mitigation in a radial transfer corridor

Qianjin Liu, Changchun Zhou, L. Angquist, S. Rudin
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引用次数: 8

Abstract

The thyristor controlled series capacitor (TCSC) has been well known as a potential countermeasure against SSR since it was introduced. This paper uses a real case, a local power plant connected to a remote load center through a series compensated radial transfer corridor, as an example to illustrate the capability of TCSC to mitigate SSR. The TCSC uses a special patented control scheme called synchronous voltage reversal (SVR). The paper is organized into three parts. Firstly, modal analysis is applied to obtain the natural torsional modes of the shaft spring mass model. Secondly, simulation of the generator and the connected electric network is performed, when a small modulation of the generator shaft speed within the SSR frequency range has been applied. As a result the electrical damping can be obtained from the calculated electrical torque. The scanning results under different scenarios show that the units using a fixed series compensation scheme are highly exposed to SSR risk. A novel scheme with TCSC is proposed and the result of frequency scanning shows very good SSR damping performance, where SVR counteracts the most part of the electrical damping of the modes at risk. Furthermore, an add-on control strategy can be easily introduced to pull the remaining slight portion into a secure range. Simulation results with detailed shaft spring-mass model validate TCSC control effect and the feasibility of such transmission schemes.
利用TCSC方案缓解径向传输走廊中的SSR
晶闸管控制串联电容器(TCSC)自问世以来一直被认为是对抗SSR的潜在手段。本文以本地电厂与远程负荷中心通过串联补偿的径向传输走廊相连接的实际情况为例,说明了TCSC缓解SSR的能力。TCSC采用一种特殊的专利控制方案,称为同步电压反转(SVR)。本文共分为三个部分。首先,采用模态分析方法得到了轴弹簧质量模型的固有扭转模态。其次,对发电机和所连接的电网进行了仿真,在SSR频率范围内对发电机轴转速进行了小幅度的调制。因此,电阻尼可以从计算的电转矩中得到。不同情景下的扫描结果表明,采用固定串联补偿方案的机组存在较高的SSR风险。提出了一种新的TCSC方案,频率扫描结果表明,SVR抵消了危险模态的大部分电阻尼,具有良好的SSR阻尼性能。此外,可以很容易地引入附加控制策略,将剩余的少量部分拉入安全范围。通过详细的轴弹簧-质量模型仿真验证了TCSC控制效果和传动方案的可行性。
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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