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Development of an Electrical Model for Multiple Trains Running on a DC 4th Rail Track

机译:直流4轨上运行的多列火车电气模型的开发

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摘要

The electrical modelling of rail tracks with multiple running trains is complex due to the difficulties of solving the power flow. The trains' positions, speed, and acceleration change instantly which makes the system nonlinear. Additionally, the nonreversible substations are another reason for the nonlinearity of the system. These nonlinear characteristics of the rail system make the power flow analysis more complicated. In this paper, a simple method for modelling electric railways has been used to avoid complicated algorithms to solve the power flow. The method depends mainly on modelling the mechanical and electrical characteristics of the full rail track system using the simulation tool Simscape, which has been developed by MathWorks. The model is able to provide the track voltage and also the trains voltages. Through the implementation of Energy Storage Systems (ESS) it will be possible to improve the energy efficiency of electric railways by effectively controlling the rail track voltage and the trains contact voltages.
机译:由于难以解决潮流,具有多个运行列车的铁轨的电气建模非常复杂。火车的位置,速度和加速度会立即变化,从而使系统非线性。另外,不可逆变电站是系统非线性的另一个原因。轨道系统的这些非线性特性使潮流分析更加复杂。在本文中,已使用一种简单的电力铁路建模方法来避免复杂的算法来求解潮流。该方法主要取决于使用由MathWorks开发的仿真工具Simscape对全轨系统的机械和电气特性进行建模。该模型能够提供轨道电压以及列车电压。通过实施储能系统(ESS),可以通过有效地控制轨道电压和列车接触电压来提高电力铁路的能源效率。

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