Modular Multilevel Converter Based Advanced Traction Power Transmission Substation for High Speed Railway Network in India

Venkatasupura Vemulapati, Y. Vijaykumar, N. Visali, K. Kumar
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Abstract

The current power transmission system for Indian railways facing difficulties with voltage unbalance, harmonics and circulation of negative sequence current throughout the power transmission line. In addition, the existence of neutral sections between two adjacent traction substations will cause the speed reduction and is considered as the main limitation for high speed. Traction load is a single phase in nature and it is very difficult to estimate the power flow from adjacent substations to locomotive as well as the location of the train. In this paper advanced common phase traction power transmission system is designed which is much appropriate for high speed railway (HSR) by eliminating neutral sections (NS) and overcome all the fore mentioned power quality (PQ) issues. A simplex algorithm is proposed to estimate the power flow and location of the train. The simulation results are analysed and low scale prototype model is built to validate the simulation outcomes. The results obtained are satisfactory and indicates the system suitability for high speed railway network.
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基于模块化多电平变换器的印度高速铁路网先进牵引变电所
目前,印度铁路输电系统面临着电压不平衡、谐波和负序电流在输电线路上的循环等问题。此外,相邻两个牵引变电所之间存在的中性段也会造成速度降低,被认为是高速运行的主要限制因素。牵引负荷本质上是单相的,很难估计从相邻变电站到机车的潮流以及列车的位置。本文设计了一种先进的共相牵引输电系统,该系统消除了中性点区段,克服了上述电能质量问题,更适合高速铁路使用。提出了一种单纯形算法来估计列车的潮流和位置。对仿真结果进行了分析,并建立了小尺寸原型模型,验证了仿真结果。仿真结果令人满意,表明该系统适用于高速铁路网。
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