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An electromechanical moving load fixed node position and fixed node number railway power supply systems optimization model

机译:机电动载荷固定节点位置和固定节点数铁路供电系统优化模型。

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摘要

This paper presents an optimization model for simulations of railway power supply systems. It includes detailed power systems modeling, train movements in discretized time considering running resistance and other mechanical constraints, and the voltage-drop-induced reduction of possible train tractive forces. The model has a fixed number of stationary power system nodes, which alleviates optimized operation overtime. The proposed model uses SOS2 (Special Ordered Sets of type 2) variables to distribute the train loads to the two most adjacent power system nodes available. The impacts of the number of power system nodes along the contact line and the discretized time step length on model accuracy and computation times are investigated. The program is implemented in GAMS. Experiences from various solver choices are also discussed. The train traveling times are minimized in the example. Other studies could e.g. consider energy consumption minimization. The numerical example is representative for a Swedish decentralized, rotary-converter fed railway power supply system. The proposed concept is however generalizable and could be applied for all kinds of moving load power system studies.
机译:本文提出了用于铁路供电系统仿真的优化模型。它包括详细的动力系统建模,考虑行驶阻力和其他机械约束的离散时间的列车运动,以及电压降引起的列车牵引力的减小。该模型具有固定数量的固定电力系统节点,从而减轻了优化的超时运行。所提出的模型使用SOS2(类型2的特殊顺序集)变量将列车负载分配给两个最相邻的可用电力系统节点。研究了沿接触线的电力系统节点数量和离散时间步长对模型精度和计算时间的影响。该程序在GAMS中实现。还讨论了各种求解器选择的经验。在该示例中,火车的行进时间被最小化。其他研究可以例如考虑使能耗最小化。数值示例代表了瑞典的分散式,旋转转换器馈电式铁路供电系统。然而,所提出的概念是可推广的,并且可以应用于各种移动负载电力系统研究。

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