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An Adaptive Wide-area Damping Controller Based on Generalized Predictive Control and Model Identification

机译:一种基于广义预测控制和模型识别的自适应广域阻尼控制器

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The wide-area damping controller (WADC), using remote signals obtained from a wide-area measurement system (WAMS) as the input, has been employed to enhance the stability of the large-scale inter-connected power system. The time delay caused by transmission of remote signals is one of the key factors influencing the whole system stability and damping performance. This paper presents an adaptive WADC based on generalized predictive control and model identification. The proposed WADC is implemented by adding its output signal to the excitation system of a selected generator. A recursive least-squares algorithm (RLSA) with a varying forgetting factor is used to identify the model of power system. Based on this model, the generalized predictive control considering control output constraints is employed. Simulations studies undertaken on a two-area four-machine power system show that the proposed adaptive WADC not only can damp the inter-area mode oscillations effectively under varying operation conditions and different disturbances, but also has better robustness against to the time delay existing in the remote signals. The comparison studies with the conventional WADC are also provided.
机译:使用从广域测量系统(WAMS)获得的远程信号作为输入的广域阻尼控制器(WADC)已采用,增强大型连接电力系统的稳定性。远程信号传输引起的时间延迟是影响整个系统稳定性和阻尼性能的关键因素之一。本文介绍了一种基于广义预测控制和模型识别的自适应WADC。所提出的WADC是通过将其输出信号添加到所选发生器的激励系统来实现。具有不同遗忘因子的递归最小二乘算法(RLSA)用于识别电力系统的模型。基于该模型,采用了考虑控制输出约束的广义预测控制。模拟在两个面积四机电力系统上进行的研究表明,所提出的自适应WADC不仅可以在不同的运行条件和不同的干扰下有效地抑制区域间振荡,而且还具有更好的鲁棒性,而不是存在于存在的时间延迟远程信号。还提供了与常规卫地的比较研究。

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