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VDCOL parameters design of multi-infeed HVDC based on a simplified model of DC P-Q coupling recovery

机译:基于DC P-Q耦合恢复简化模型的多馈HVDC VDCOL参数设计

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When several high voltage direct current (HVDC) systems simultaneously recover after severe faults, absorbing large amounts of reactive power from the receiving AC systems, presents new challenges for the transient voltage stability of multi-infeed HVDC (MIDC) systems. Actually DC power recovery characteristics could be controllable to some extent by selecting voltage dependant current order limiter (VDCOL) parameters, but the quantitative relationship is complex and not easy to use. This paper, with experiment method based on PSCAD/EMTDC package and the CIGRE HVDC benchmark system, explored the converter bus voltage profile and the relationship of HVDC MW (P)and reactive power (Q) consumed by the converter during and after various faults. Through numerical analysis, the characteristic equation on P-Q has been fit out. With which and VDCOL characteristics, a simplified model of DC P-Q coupling recovery was constructed. Finally, based on the above model, a design method of VDCOL parameters was proposed with an objective function considering minimum sum of reactive power demand peaks of MIDC recovery. Some examples with different rated power combinations of MIDC systems were studied to demonstrate the feasibility of the proposed method.
机译:当多个高压直流(HVDC)系统在严重故障后同时恢复时,会从接收的交流系统中吸收大量无功功率,这给多馈HVDC(MIDC)系统的瞬态电压稳定性提出了新的挑战。实际上,通过选择电压相关的电流阶跃限制器(VDCOL)参数,可以在一定程度上控制DC功率恢复特性,但其定量关系复杂且不易使用。本文采用基于PSCAD / EMTDC软件包和CIGRE HVDC基准测试系统的实验方法,探讨了变频器母线电压曲线以及各种故障期间和故障后变频器消耗的HVDC MW(P)与无功功率(Q)的关系。通过数值分析,拟合出了P-Q上的特征方程。利用VDCOL特性和VDCOL特性,构建了DC P-Q耦合恢复的简化模型。最后,基于上述模型,提出了一种具有目标函数的VDCOL参数设计方法,该方法考虑了MIDC恢复的无功需求峰值的最小和。研究了具有不同额定功率组合的MIDC系统的一些示例,以证明该方法的可行性。

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