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A robust multilevel hybrid compensation system for 25-kV electrified railway applications

机译:适用于25 kV电气化铁路应用的稳健的多级混合补偿系统

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On many electrified railway systems with single-phase 25-kV industrial frequency supply, the power quality can be particularly poor when conventional thyristor based locomotives are operating, and this constrains the amount of power that can be delivered to the locomotives. This paper presents a hybrid shunt compensation system consisting of alternatively a cascaded or a reduced topology multilevel active power filter, and a low rating passive damping filter. The active power filter is controlled by a novel hysteresis current regulation strategy, and both mitigates low-order voltage harmonic distortion along the feeder and provides root mean squared voltage support. The passive filter damps harmonic resonances that are typical in such 25-kV traction systems. The results show that the filter system can significantly increase traction system power transfer capacity with only a relatively small capital investment, allowing older thyristor based locomotives and increased traffic levels to be supported without necessarily requiring a complete system upgrade. Simulation and experimental results are included showing the performance of the filter for both steady state and transient conditions.
机译:在许多具有单相25 kV工业频率电源的电气化铁路系统上,当基于常规晶闸管的机车运行时,电能质量可能特别差,并且这限制了可以传递给机车的电能量。本文提出了一种混合并联补偿系统,该系统由级联或简化拓扑的多级有源功率滤波器和低额定值无源阻尼滤波器组成。有源功率滤波器由一种新颖的磁滞电流调节策略控制,既可以减轻沿馈线的低阶电压谐波失真,又可以提供均方根电压支持。无源滤波器可抑制这种25 kV牵引系统中常见的谐波谐振。结果表明,该过滤器系统仅需相对较小的投资即可显着提高牵引系统的电力传输能力,从而无需支持完整的系统升级即可支持基于晶闸管的老式机车和增加的交通流量。包括的仿真和实验结果显示了滤波器在稳态和瞬态条件下的性能。

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