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An Adaptive Controller for Power System Stability Improvement and Power Flow Control by Means of a Thyristor Switched Series Capacitor (TSSC)

机译:借助于晶闸管开关串联电容器(TSSC)的电力系统稳定性改进和潮流控制的自适应控制器

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In this paper, a controller for a thyristor switched series capacitor (TSSC) is presented. The controller aims to stabilize the power system by damping interarea power oscillations and by improving the transient stability of the system. In addition to this, a power flow control feature is included in the controller. The power oscillation damping controller is designed based on a nonlinear control law, while the transient stability improvement feature works in open loop. The damping controller is adaptive and estimates the power system parameters according to a simplified generic model of a two-area power system. It is designed for systems where one poorly damped dominant mode of power oscillation exists. In the paper, a verification of the controller by means of digital simulations of one two-area, four-machine power system, and one 23-machine power system is presented. The results show that the controller improves the stability of both test systems significantly in a number of fault cases at different levels of interarea power flow.
机译:在本文中,提出了一种用于晶闸管开关串联电容器(TSSC)的控制器。该控制器旨在通过抑制区域间功率振荡并通过改善系统的暂态稳定性来稳定电源系统。除此之外,控制器中还包含潮流控制功能。功率振荡阻尼控制器是基于非线性控制律设计的,而暂态稳定性的改善功能则是在开环下工作的。阻尼控制器是自适应的,并且根据两区域电力系统的简化通用模型来估计电力系统参数。它设计用于存在一种阻尼较弱的主振荡模式的系统。在本文中,提出了一种控制器的验证方法,该方法通过对两个区域,四个机器的电源系统和一个23机器的电源系统进行数字仿真来实现。结果表明,该控制器在区域内潮流水平不同的许多故障情况下,显着提高了两个测试系统的稳定性。

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