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Application of Optimal Stabilizer and Variable Structure Controller for Power System Stability with Free Chattering

机译:最优稳定器和变结构控制器在自由抖振电力系统稳定中的应用。

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摘要

This paper proposes two novel techniques for improving the dynamic stability of power system. The first technique utilizes the optimal stabilizer with preview steps. The second technique makes use of the variable structure system and employs the generator speed to obtain a stabilizing signal to increase the damping torque of the synchronous machine. Supplementary stabilizing signals are also introduce into the power system to increase the damping torque of the synchronous machine. This improves the transient stability of the power system. The plant augmentation method is used to solve the existing control chattering problem. Augmenting the plant by a pure integrator places control chattering at the augmented plant input instead of the original plant input. The optimal stabilizer is synthesized and implemented and its applicability and robustness are demonstrated. The simulation results demonstrate that the proposed two techniques yield a good dynamic performance with less overshoot and shorter settling time in step response. These two techniques can be used as effective mean of increasing the damping torque and hence improving the dynamic stability of the power system.
机译:本文提出了两种提高电力系统动态稳定性的新技术。第一种技术是利用带有预览步骤的最佳稳定器。第二种技术利用可变结构系统,并利用发电机转速来获得稳定信号,以增加同步电机的阻尼扭矩。补充的稳定信号也被引入到动力系统中,以增加同步电机的阻尼扭矩。这提高了电力系统的瞬态稳定性。植物增强方法用于解决现有的控制抖动问题。通过纯积分器对工厂进行增强,可以使控制颤动位于增强的工厂输入处,而不是原始的工厂输入处。合成并实现了最佳稳定剂,并证明了其适用性和鲁棒性。仿真结果表明,所提出的两种技术可产生良好的动态性能,并且在阶跃响应中具有较少的过冲和较短的建立时间。可以将这两种技术用作增加阻尼扭矩并因此改善电力系统动态稳定性的有效手段。

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