A new control strategy for SSSC to improve low-frequency oscillations damping

J. Gholinezhad, M. Ebadian, M. R. Aghaebrahimi
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Abstract

When power systems are expanded and connected together with weak tie lines, the low-frequency oscillations are increased and the stability margin of the power system decreases. Therefore, when designing the transmission system to be used, it is necessary to maintain the dynamic stability of the power system, and to make sure to have the most possible stability margin. SSSC is a FACTS device connected in series with power transmission lines. SSSC can control power flow very effectively and can inject series inductive or capacitive voltages into the line. In this paper, a new control strategy based on voltage measurement for the SSSC is proposed. The commonly used strategy for SSSC is based on line current measurement; consequently, the injected voltage is in quadrature with the line current. But in the proposed strategy, the injected voltage is in quadrature with the ac voltage at the point of common coupling (PCC) of SSSC. With modifications done in the proposed strategy, compared with the conventional control method, it can be adjusted easily to control the power flow of the transmission line. The simulation is performed in single-machine and multi-machine power systems. The analysis of the results under different disturbances show that the proposed strategy has an appropriate response with respect to the changes in the system states and it is relatively faster in damping power system oscillations, compared with the conventional strategy.
一种新的SSSC控制策略以改善低频振荡阻尼
当电力系统扩容并与弱电联线连接时,低频振荡增大,电力系统的稳定裕度减小。因此,在设计要使用的输电系统时,必须保持电力系统的动态稳定,并确保具有最大的稳定裕度。SSSC是一种与输电线路串联的FACTS设备。SSSC可以非常有效地控制功率流,并可以向线路注入串联的电感或电容电压。本文提出了一种基于电压测量的SSSC控制策略。SSSC常用的策略是基于线路电流测量;因此,注入电压与线路电流成正交。但在该策略中,注入电压在SSSC的共耦合点(PCC)与交流电压正交。通过对该策略的改进,与传统的控制方法相比,该策略可以很容易地进行调整,从而控制输电线路的潮流。仿真分别在单机和多机电源系统中进行。在不同干扰下的结果分析表明,该策略对系统状态变化有较好的响应,且与常规策略相比,能较快地抑制电力系统的振荡。
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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