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Power Quality Compensation and Power Flow Control in AC Railway Traction Power Systems

机译:交流铁路牵引电力系统的电能质量补偿和潮流控制

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摘要

Rail transport is one of the transportation methods on earth that is very frugal in energy consumption. Electric railway technology has many advantages and disadvantages as well. The most important disadvantage of this technology is the creation power quality problems in the upstream power system. In other words, electric railway traction systems due to continuous load variations, Reactive power demand, asymmetry and harmonic Pollution can be challenged for the upstream power system. In this paper, after introducing the structure of the AC electric railway network and its related power quality issues, the railway power quality compensator (RPQC) is introduced. Also, in order to active power transfer between the various lines of electric railway, a railway interline power flow controller (RIPFC) has been introduced. The proposed structure RIPFC is in parallel, unlike the conventional one which is installed in series with the lines. RPQC and RIPFC contains two Separate single phase converters that are connected back to back (B2B) by sharing the same dc link. Extraction of compensating currents for RPQC and RIPFC is based on current measurement and its separation into active, reactive and harmonic components. Moreover, a controller is proposed to maintain the dc-link voltage. The simulation results using PSCAD/EMTDC are provided to demonstrate that the proposed strategies is very effective.
机译:铁路运输是地球上的一种非常节约能源的运输方式。电力铁路技术也有许多优点和缺点。该技术最重要的缺点是上游电源系统中产生电能质量问题。换句话说,由于连续的负载变化,无功功率需求,不对称性和谐波污染,电力铁路牵引系统对于上游电力系统可能面临挑战。本文在介绍了交流电力铁路网的结构及其相关的电能质量问题之后,介绍了铁路电能质量补偿器(RPQC)。另外,为了在电力铁路的各个线路之间进行有功功率传输,已经引入了铁路线间电力流控制器(RIPFC)。所提出的结构RIPFC是并联的,与传统的与线路串联安装的结构不同。 RPQC和RIPFC包含两个单独的单相转换器,它们通过共享同一直流链路而背对背(B2B)连接。 RPQC和RIPFC的补偿电流的提取基于电流测量并将其分为有功,无功和谐波分量。此外,提出了一种控制器来维持直流链路电压。提供了使用PSCAD / EMTDC的仿真结果,以证明所提出的策略非常有效。

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