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Evaluation of negative-sequence-current compensators for high-speed electric railways

机译:高速电力铁路的负序电流补偿器评估

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This paper evaluates three alternative topologies for a static compensator (StatCom), suitable to eliminate the negative-sequence currents in a railway system. The compensator is placed in a transformer substation, which feeds two separate sections of the catenary. The major requirements of this converter is to: (i) symmetrize the railway load as seen from the high-voltage side, (ii) control the catenary voltage to a defined level, and (iii) compensate for the harmonics generated by the rolling stock. The topologies investigated here are: (a) a 2-level converter with a common dc-bus capacitor, (b) a delta-connected modular multilevel converter (MMC) based on full-bridge submodules, and (c) a double-star MMC based on half-bridge submodules. The evaluation is based on the minimum device-rating requirements of each converter that fulfill the application requirements in the steady-state. Simulation results are provided to support the conclusions of this evaluation.
机译:本文评估了适用于消除铁路系统中负序电流的静态补偿器(StatCom)的三种替代拓扑。补偿器放置在变电站中,该变电站为悬链线的两个独立部分供电。该转换器的主要要求是:(i)从高压侧看,对称化铁路负载,(ii)将悬链线电压控制在定义的水平,以及(iii)补偿机车车辆产生的谐波。这里研究的拓扑是:(a)具有公共直流总线电容器的2级转换器,(b)基于全桥子模块的三角形连接的模块化多级转换器(MMC),以及(c)双星形基于半桥子模块的MMC。评估基于每个转换器的最低器件额定值要求,这些要求满足稳态下的应用要求。提供仿真结果以支持该评估的结论。

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