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Delayed Feedback Controller for stabilizing subsynchronous oscillations in power systems

机译:延迟反馈控制器,用于稳定电力系统中的次同步振荡

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This paper presents a novel controller based on the delayed feedback control theory for stabilizing unstable torsional oscillations caused by Subsynchronous Resonance (SSR) in power systems. The first system of the IEEE Second Benchmark Model, which consists of a synchronous generator connected to an infinite busbar through two parallel transmission lines, one of which is equipped with a series capacitor, is used to evaluate the controller''s effectiveness. Dynamics of the generator damper windings and the Automatic Voltage Regulator (AVR) are included in the nonlinear model. The controller uses the synchronous generator rotor angular speed as the only input. The difference between the input signal''s value τ-time in the past and its current value is multiplied with a gain to obtain the controller output, which is then combined into the AVR as the stabilizing signal. The effectiveness of the proposed controller in damping the torsional oscillations is demonstrated via time-domain simulations in MATLAB-Simulink. The controller performance index is also introduced to evaluate the effectiveness of the controller.
机译:本文提出了一种基于延迟反馈控制理论的新型控制器,用于稳定电力系统中由次同步谐振(SSR)引起的不稳定扭振。 IEEE第二基准模型的第一个系统由一个同步发电机组成,该发电机通过两条平行的传输线连接到一个无穷大的母线上,其中一条配有串联电容器,用于评估控制器的有效性。发电机阻尼器绕组和自动电压调节器(AVR)的动力学包含在非线性模型中。控制器将同步发电机转子角速度用作唯一输入。将输入信号过去的时间τ-time与当前值之间的差乘以增益以获得控制器输出,然后将其输出到AVR中作为稳定信号。通过在MATLAB-Simulink中进行时域仿真,证明了所提出的控制器在扭转振动阻尼方面的有效性。还引入了控制器性能指标以评估控制器的有效性。

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