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Damping of Inter-Area Low Frequency Oscillation Using an Adaptive Wide-Area Damping Controller

机译:用自适应广域阻尼控制器阻尼区域间低频振荡

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摘要

This paper presents an adaptive wide-area damping controller (WADC) based on generalized predictive control (GPC) and model identification for damping the inter-area low frequency oscillations in large-scale inter-connected power system. A recursive least-squares algorithm (RLSA) with a varying forgetting factor is applied to identify online the reduced-order linearlized model which contains dominant inter-area low frequency oscillations. Based on this linearlized model, the generalized predictive control scheme considering control output constraints is employed to obtain the optimal control signal in each sampling interval. Case studies are undertaken on a two-area fourmachine power system and the New England 10-machine 39-bus power system, respectively. Simulation results show that the proposed adaptive WADC not only can damp the inter-area oscillations effectively under a wide range of 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 lead-lag WADC are also provided.
机译:本文提出了一种基于广义预测控制(GPC)和模型辨识的自适应广域阻尼控制器(WADC),用于阻尼大规模互联电网中的区域间低频振荡。应用具有可变遗忘因子的递归最小二乘算法(RLSA)在线识别包含主要区域间低频振荡的降阶线性化模型。基于此线性化模型,采用考虑了控制输出约束的广义预测控制方案,可以在每个采样间隔中获得最佳控制信号。案例研究分别在两区域的四机电源系统和新英格兰的10机39总线电源系统上进行。仿真结果表明,所提出的自适应WADC不仅可以有效地抑制大范围的工作条件和不同干扰下的区域间振荡,而且对远程信号存在的时延具有更好的鲁棒性。还提供了与常规超前滞后WADC的比较研究。

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