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首页> 外文期刊>Intelligent automation and soft computing >VOLTAGE COLLAPSE AVOIDANCE IN POWER SYSTEMS: A RECEDING HORIZON APPROACH
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VOLTAGE COLLAPSE AVOIDANCE IN POWER SYSTEMS: A RECEDING HORIZON APPROACH

机译:电力系统中的电压崩溃避免:一种地平线方法

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摘要

In this paper, a receding horizon control approach is developed for voltage stabilization in power systems. The primary focus is on a benchmark system proposed in the context of a European project. The system is termed hybrid due to the finite set of control inputs, state automata description of the voltage primary controller and their interactions with the load nonlinear continuous dynamics. Moreover, the network topology imposes hard constraints on the states. All these make the control problem quite challenging. For different realistic scenarios, the proposed control algorithm is shown to stabilize the bus voltages at acceptable levels. The computational demand fits the real time allowed slot, making the scheme attractive for large scale applications as an area central controller.
机译:本文提出了一种后退水平控制方法,用于电力系统中的电压稳定。主要重点是针对欧洲项目提出的基准系统。由于控制输入的有限集,电压主控制器的状态自动机描述及其与负载非线性连续动力学的相互作用,因此将该系统称为混合动力系统。而且,网络拓扑对状态施加了严格的约束。所有这些使控制问题变得非常具有挑战性。对于不同的实际情况,所示的控制算法可将总线电压稳定在可接受的水平。计算需求适合实时允许的时隙,使该方案作为区域中央控制器对大规模应用具有吸引力。

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