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首页> 外文期刊>IEE proceedings. Part C >Iterative techniques for the solution of complex DC-rail-traction systems including regenerative braking
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Iterative techniques for the solution of complex DC-rail-traction systems including regenerative braking

机译:解决包括再生制动在内的复杂直流轨道牵引系统的迭代技术

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摘要

Electric railway traction power systems are usually modelled as branched ladder electrical circuits with many variable power loads changing in time and moving in space. Effective simulation of these traction power networks depends both on understanding the nature of the system and hence accurate modelling, and on selecting efficient algorithms for the iterative part of the solution. Simulation models are normally required to include the effect of regenerative braking and make provision for the calculation of other variables such as rail potential. In this respect, the paper by Cai et al. (1995) considers the performance of various traction network iterative solution algorithms for networks with regenerative loading giving train and rail voltages. However, the paper leaves several important points unaddressed. The purpose of this correspondence contribution is to provide more information on the background to the work including difficulties in verification, and on the provision of realistic models for the rail-to-remote-ground and substation ground conductances.
机译:电力铁路牵引电力系统通常被建模为具有许多随时间变化并且随空间变化的可变电力负载的分支梯形电路。这些牵引电力网络的有效仿真不仅取决于了解系统的本质,进而取决于准确的建模,还取决于为解决方案的迭代部分选择有效的算法。通常需要仿真模型来包括再生制动的影响,并为计算其他变量(例如轨道电势)做好准备。在这方面,蔡等人的论文。 (1995)考虑了具有牵引力的给定列车和轨道电压的网络的各种牵引网络迭代求解算法的性能。但是,本文遗漏了一些要点。进行此通信的目的是提供有关工作背景的更多信息,包括验证困难,以及为轨道到远程地面和变电站地面电导提供现实模型。

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