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Study on the site selection for synchronous condenser responding to commutation failures of multi-infeed HVDC system

机译:多进料HVDC系统响应换向故障的站点选择研究

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摘要

Power system shows increasingly prominent characteristic of ‘strong DC and weak AC’ at the primary construction stage of ultrahigh-voltage AC/DC hybrid power grid. Faults occurring in the receiving-end AC grid of the multi-infeed high-voltage DC (HVDC) system may result in simultaneous commutation failures (CFs) and short-time huge power shortage, which are great threats to the stability of power grid. Owing to the strong support ability in reactive power, rotary inertia, and capacity of short circuit, synchronous condenser (SC) has received more and more attention in restraining CFs of multi-infeed HVDC and speeding up transient recovery process after faults. From the angle of interplay between multi-infeed HVDC systems, this study analyses SCs’ superiority in restraining CFs, and then determines the optimal dynamic reactive power compensation site layer by layer combining with multi-infeed interaction factor, multi-infeed effective short-circuit ratio, and relative-transient-voltage-drop-area index. Finally, this study proposes a reliable and applicable site selection scheme for SCs to restrain CFs of the multi-infeed HVDC system.
机译:电力系统在超高压AC / DC混合动力电网的主要施工阶段显示了“强直流和弱AC”的越来越突出的特性。在多进料高压DC(HVDC)系统的接收端AC电网中发生的故障可能导致同时换向故障(CFS)和短时巨大的功率短缺,这对电网稳定性有很大的威胁。由于由于无功,旋转惯性和短路容量的强劲支持能力,同步冷凝器(SC)在抑制多送型HVDC的CFS时,同步冷凝器(SC)在抑制了多送型HVDC的CFS并加速了故障后的瞬态恢复过程。从多送热器系统之间的相互作用角度来看,该研究分析了抑制CFS的SCS的优势,然后通过多进料交互因子的层组合来确定最佳动态无功补偿站点层,多进一步的有效短路比率和相对瞬态电压下降区域指数。最后,本研究提出了一种可靠且适用的位点选择方案,用于抑制多送热带系统的CFS。

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