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Efficiency and cost estimation for a static frequency converter and a rail power conditioner based on an indirect modular multilevel converter in railways applications

机译:基于间接模块化多电平转换器的静态变频器和铁路功率调节器的效率和成本估算在铁路应用中

摘要

This paper presents a comparative study between two different power electronics solutions for electrified railway substations to overcome some drawbacks which could appear on the public grid side. These drawbacks or troubles on the public grid side are mainly the harmonics and the negative sequence components (NSCs) of currents, which could become clear in the case of feeding single-phase locomotives or unbalanced loads. The static frequency converters (SFCs) and the rail power conditioners (RPCs) based on an indirect AC/DC/AC modular multilevel converter (MMC) are the main area of interest in this study, taking into consideration the costs estimation analysis between solutions, the efficiency and the power quality on the public grid side. Both systems of SFC and RPC based on an indirect MMC operate on medium voltage levels to feed the catenary line and to solve the problems of harmonics and NSCs. Along the paper are described the system architecture, the control algorithm, the inherent benefits, the estimated cost of implementation, and the operation efficiency based on computational simulation results for each system.
机译:本文针对电气化铁路变电站的两种不同电力电子解决方案进行了比较研究,以克服公共电网方面可能出现的一些缺点。公共电网方面的这些缺陷或麻烦主要是电流的谐波和负序分量(NSC),这在馈入单相机车或负载不平衡的情况下会变得很明显。考虑到解决方案之间的成本估算分析,基于间接AC / DC / AC模块化多电平转换器(MMC)的静态变频器(SFC)和铁路功率调节器(RPC)是本研究的主要领域,公共电网方面的效率和电能质量。基于间接MMC的SFC和RPC系统均在中压水平下运行,以为悬链线供电并解决谐波和NSC的问题。本文根据每个系统的计算仿真结果描述了系统架构,控制算法,固有收益,估计的实施成本以及运行效率。

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