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首页> 外文期刊>IEEE Transactions on Power Delivery >Optimal impedance termination of 25-kV electrified railway systems for improved power quality
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Optimal impedance termination of 25-kV electrified railway systems for improved power quality

机译:25 kV电气化铁路系统的最佳阻抗端接,可改善电能质量

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摘要

Many single-phase 25-kV electrified railway systems today are loaded with conventional ac-dc thyristor-based locomotives, which draw current rich in harmonic content. The flow of this harmonic current through the feeder impedance can result in a distorted pantograph voltage waveform, which, in turn, can constrain the amount of power delivered to the locomotives. A possible solution to improve the supply quality is to connect a hybrid power-quality conditioner consisting of active and passive elements at the end of the traction feeder. However, if not appropriately designed, the installation of a power-quality conditioner can result in harmonic amplification at some points along the feeder. This paper now presents an analysis to study how the power-quality conditioner must function to implement an optimal impedance termination at the end of the feeder to achieve uniform harmonic suppression along the whole feeder length. The theoretical concepts presented have been confirmed in simulation and experimentally using a model traction system.
机译:如今,许多单相25 kV电气化铁路系统都装有传统的基于交直流可控硅的机车,这些机车汲取的谐波含量丰富。该谐波电流通过馈线阻抗的流动会导致受电弓电压波形失真,进而会限制传递给机车的功率。改善供电质量的一种可能解决方案是在牵引馈线的末端连接一个混合动力质量调节器,该调节器由有源和无源元件组成。但是,如果设计不当,则安装电能质量调节器会导致沿馈线的某些点产生谐波放大。现在,本文提出了一项分析,以研究电能质量调节器如何发挥作用,以在馈线末端实现最佳阻抗终端,以在整个馈线长度上实现均匀的谐波抑制。所提出的理论概念已在仿真和使用模型牵引系统的实验中得到证实。

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