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Transient active power control of HVDC links through impedance-based voltage angle comparison

机译:通过基于阻抗的电压角度比较的HVDC链路的瞬态电力控制

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This paper provides a control approach for Voltage Source Converter (VSC) High-Voltage Direct Current (HVDC) systems based on data from Phasor Measurement Units (PMU) to improve transient stability during contingencies. Using graph theory and the shortest-path-problem, a strategy for PMU placement and for defining a control radius were carried out. The lowest electrical distance/impedance between the converters was identified to define the range of controllability of the HVDC and avoid loop flows. Further sensitivity analyses showed the importance of the input control signals. Based on the resulting area of controllability, a control scheme for a transient active power controller is introduced. It is shown that an impedance-based voltage angle control increases the stability of the power system during transients.
机译:本文提供了一种基于来自相量测量单元(PMU)的数据的电压源转换器(VSC)高压直流(HVDC)系统的控制方法,以改善突发化期间的瞬态稳定性。 使用图论和最短路径问题,执行了PMU放置和定义控制半径的策略。 识别转换器之间的最低电距离/阻抗以定义HVDC的可控性范围,并避免环路流。 进一步的敏感性分析显示了输入控制信号的重要性。 基于所得到的可控区域,引入了用于瞬态有源电力控制器的控制方案。 结果表明,基于阻抗的电压角度控制在瞬变期间增加了电力系统的稳定性。

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