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An Optimal Reactive Power Control Strategy for UHVAC/DC Hybrid System in East China Grid

机译:华东电网UHVAC / DC混合系统的无功优化控制策略

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During the holidays, the power load of the East China Grid dropped significantly, resulting in excess capacitive reactive power, which makes the grid voltage increase significantly. For ultra-high voltage alternating current/direct current (UHVAC/DC) hybrid system, restricted by the minimum input number of the alternating current filter (ACF) in the dc converter stations, multiple dc stations that operate at a low-power transmission mode will inject a large capacitive reactive power to 500 kV ac grid, leading to a dramatic voltage rise. In addition, the 1000 kV UHVAC system may also transport a large capacitive reactive power to 500 kV ac grid during the holidays. In this paper, an optimal reactive power control strategy based on multi-dc power modulation has been proposed. It includes two steps. First, the minimized reactive power interchange control strategy which minimizes the reactive power interchange (RPI) between the UHVAC grid and the 500 kV ac grid has been executed. After that, if the grid voltage still exceeds the upper limit, the multi-dc power modulation is used to minimize the RPI between the dc converter stations and the 500 kV ac grid. The example analysis shows that the proposed optimal reactive power control strategy can effectively optimize the reactive power distribution in the UHVAC/DC hybrid system, thus reasonably controling the grid voltage.
机译:放假期间,华东电网的用电负荷明显下降,产生的容性无功功率过大,使电网电压明显上升。对于超高压交流/直流(UHVAC / DC)混合系统,受直流换流站中交流滤波器(ACF)的最小输入数量的限制,多个以低功率传输模式运行的直流站会向500 kV交流电网注入较大的容性无功功率,导致电压急剧上升。此外,在假期期间,1000 kV UHVAC系统还可以将大容量无功功率传输到500 kV交流电网。提出了一种基于多直流功率调制的无功最优控制策略。它包括两个步骤。首先,已经执行了使UHVAC电网与500 kV交流电网之间的无功功率交换(RPI)最小化的最小化无功功率交换控制策略。此后,如果电网电压仍超过上限,则使用多直流功率调制来最小化直流换流站与500 kV交流电网之间的RPI。实例分析表明,提出的最优无功控制策略可以有效地优化UHVAC / DC混合系统的无功分配,从而合理地控制电网电压。

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