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Decision Trees Using Synchronized Phasor Measurements for Wide-Area Response-Based Control

机译:基于同步相量测量的决策树用于基于广域响应的控制

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摘要

This paper proposes using phasor measurement unit (PMU) data to trigger one-shot control in response to loss of synchronism detection. Decision trees (DTs) are trained to associate voltage magnitude and angle measurements with loss of synchronism. Different approaches to the DT construction process are illustrated in an early section of the paper by restricting the input vector to only two elements. Response-based control is obtained by triggering one-shot control the first time the DT classifies measurements as “Unstable”. The same combination of one-shot controls is applied to any event the first time the DT outputs “Unstable”. The method is demonstrated on a 176-bus reduced-order model of the western U.S. interconnection. An effective one-shot control consists of a combination of fast power changes on four buses. This control is similar to 500-MW fast power increases on two HVDC interties and it reduces angle differences in the AC network.
机译:本文提出使用相量测量单元(PMU)数据来触发单触发控制,以响应同步检测的丢失。训练决策树(DT),以将电压幅度和角度测量与同步损失相关联。通过将输入向量限制为仅两个元素,在本文的早期部分中说明了DT构造过程的不同方法。 DT首次将测量分类为“不稳定”时,触发一次触发控制即可获得基于响应的控制。 DT首次输出“不稳定”时,任何事件都将使用一键式控制的相同组合。该方法在美国西部互连网络的176总线降序模型中得到了证明。有效的单触发控制包括四个总线上快速功率变化的组合。此控制类似于两个HVDC互连上的500 MW快速功率增加,并且它减小了AC网络中的角度差。

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