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首页> 外文期刊>IEEE Transactions on Power Systems >Power Oscillation Damping Improvement by Adding Multiple Wind Farms to Wide-Area Coordinating Controls
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Power Oscillation Damping Improvement by Adding Multiple Wind Farms to Wide-Area Coordinating Controls

机译:通过将多个风电场添加到广域协调控制中来改善功率振荡阻尼

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摘要

This paper examines the feasibility of coordinating variable-speed wind farms with other power system devices, such as flexible ac transmission systems and synchronous generators, to damp low-frequency oscillations. For this purpose, an observer-based state-feedback approach is used to build a power oscillation damping (POD) controller, implemented through coordinated actions of multiple control devices, and able to manage several measurement channels. The wide-area POD controller also presents a time-delay compensation stage to mitigate adverse effects of latency involved in wide-area communication systems. Several practical issues are discussed and analyzed, such as measurement and control selection, model-order reduction, transmission time-delay compensation, impact of the POD control on wind farms, and robustness aspects. The control performance is evaluated and compared with other control schemes using eigenvalue analyses and nonlinear time-domain simulations over a wide range of operating conditions, for example, severe system faults, $N-1$ outage contingencies, load/generation shedding, and line tripping.
机译:本文研究了将变速风电场与其他电力系统设备(如柔性交流输电系统和同步发电机)协调以抑制低频振荡的可行性。为此,使用基于观察者的状态反馈方法来构建功率振荡阻尼(POD)控制器,该控制器通过多个控制设备的协调动作来实现,并且能够管理多个测量通道。广域POD控制器还提供了一个时延补偿阶段,以减轻广域通信系统中涉及的延迟的不利影响。讨论并分析了一些实际问题,例如测量和控制选择,模型阶数减少,传输时延补偿,POD控制对风电场的影响以及鲁棒性方面。使用特征值分析和非线性时域仿真在广泛的运行条件下(例如严重的系统故障,$ N-1 $紧急事故,负载/发电量下降和线路)对控制性能进行评估并与其他控制方案进行比较绊倒。

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