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Impacts of Three MMC-HVDC Configurations on AC System Stability Under DC Line Faults

机译:直流线路故障下三种MMC-HVDC配置对交流系统稳定性的影响

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This paper analyzes the dc line fault transient stability characteristics of AC/DC power systems with three different modular multilevel converter based high voltage direct current (MMC-HVDC) configurations. The first configuration is half bridge sub-module based MMC (H-MMC) HVDC configuration, which clears dc line faults by tripping the ac circuit breakers. The clamp double sub-module (CDSM) based MMC (C-MMC) HVDC configuration with dc line fault clearance ability constitutes the second configuration. A line-commutated converter (LCC) and MMC hybrid HVDC configuration with dc line fault clearance ability, named LCC-diode-MMC (LCC-D-MMC), is the third configuration. The detailed processes of clearing dc line faults in three MMC-HVDC configurations are analyzed. The equal area criterion is utilized to analyze the dc line fault transient processes. Besides, to evaluate the power system transient stability characteristics in three MMC-HVDC configurations, an index, called critical ac transmitted power , is proposed. Under the same dc line to ground fault, transient stability characteristics of three test systems based on the three different MMC-HVDC configurations are compared. Excellent performance of the LCC-D-MMC HVDC configuration under the dc line fault is demonstrated through comparison of in the three test systems. Finally, the study is extended to a modified New England 39-bus system, and the simulation results also correspond with the theoretical analysis.
机译:本文分析了基于三种不同的模块化多电平转换器的高压直流(MMC-HVDC)配置的AC / DC电力系统的直流线路故障瞬态稳定性特征。第一种配置是基于半桥子模块的MMC(H-MMC)HVDC配置,该配置通过使交流断路器跳闸来清除直流线路故障。具有直流线路故障清除能力的基于钳位双子模块(CDSM)的MMC(C-MMC)HVDC配置构成第二种配置。第三种配置是具有直流线路故障清除能力的线换向转换器(LCC)和MMC混合HVDC配置,称为LCC-二极管-MMC(LCC-D-MMC)。分析了三种MMC-HVDC配置中清除直流线路故障的详细过程。等面积准则用于分析直流线路故障的瞬态过程。此外,为了评估三种MMC-HVDC配置中的电力系统暂态稳定特性,提出了一个指标,称为临界交流传输功率。在同一条直流线路到地故障的情况下,比较了基于三种不同MMC-HVDC配置的三种测试系统的暂态稳定特性。通过在三个测试系统中进行比较,证明了直流线路故障下LCC-D-MMC HVDC配置的出色性能。最后,将研究扩展到改进的新英格兰39总线系统,仿真结果也与理论分析相符。

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