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Transient stability analysis in multi-terminal VSC-HVDC grids

机译:多端子VSC-HVDC电网中的暂态稳定性分析

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A novel approach to transient stability analysis in multi-terminal high voltage direct current (MTDC) grids is presented in this paper. A symmetrical three-phase fault in an ac grid connected to a rectifier terminal of the MTDC grid causes the power injected into the dc grid to decrease, which in turn leads to a lower dc voltage in the MTDC grid. If dc voltage drops below a critical voltage limit before the ac fault is cleared, then the dc grid becomes unstable and its operation is disrupted. An analytical approach is proposed in this paper to calculate the critical clearing time of a fault in an ac grid behind a rectifier terminal beyond which dc voltage collapse occurs. A five-terminal MTDC grid modeled in EMTDC/PSCAD is used to validate the results obtained with the analytical method.
机译:本文提出了一种新的多端高压直流(MTDC)电网暂态稳定分析方法。连接到MTDC电网整流端子的交流电网中的对称三相故障会导致注入直流电网的功率降低,进而导致MTDC电网中的直流电压降低。如果在清除交流故障之前直流电压下降到临界电压限制以下,则直流电网将变得不稳定,并且其运行将受到干扰。本文提出了一种分析方法,用于计算整流器端子后面的交流电网中的故障的临界清除时间,超过该时间,直流电压就会崩溃。使用在EMTDC / PSCAD中建模的五端MTDC网格来验证使用分析方法获得的结果。

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