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Classification and regression tree-based adaptive damping control of inter-area oscillations using wide-area signals

机译:基于分类和回归树的广域信号对区域间振荡的自适应阻尼控制

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摘要

An adaptive damping control scheme based on classification and regression tree (CART) using wide-area signals is proposed in this study. A family of robust controllers is designed off-line and are used in real-time after the corresponding operating point is retrieved from phasor measurement unit (PMU) data with CART interpolation. When the power system is operating precisely at a pre-selected operating point, only the corresponding controller is active. When the power system is not exactly at the operating point, a combined controller is formed for damping. A 68-bus, 16-generator system is used as a test system. A thyristor-controlled series capacitor, a static var compensator and an energy storage device are used as actuators, and remote PMUs frequencies as added inputs are employed as the example control. The simulation results demonstrate the effectiveness and robustness against the wider range of operating changes even without knowing precisely the model of disturbances that occurred in the dynamic system.
机译:提出了一种基于分类和回归树(CART)的广域信号自适应阻尼控制方案。一系列鲁棒的控制器是离线设计的,并在通过CART插值从相量测量单元(PMU)数据中检索到相应的工作点后实时使用。当电源系统精确地在预先选择的运行点运行时,只有相应的控制器处于活动状态。当电源系统不完全处于工作点时,将形成一个组合控制器来进行阻尼。 68总线,16发电机系统用作测试系统。晶闸管控制的串联电容器,静态无功补偿器和能量存储设备用作致动器,远程PMU频率作为附加输入用作示例控制。仿真结果表明,即使不精确知道动态系统中发生的干扰的模型,也能有效应对各种运行变化。

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