一种优化地铁车辆速度分布以使能耗最小化的算法

V. Calderaro, V. Galdi, G. Graber, A. Piccolo, Dario Cogliano
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引用次数: 23

摘要

研究了地铁车辆最佳行驶速度曲线的计算方法,以提高节能效果,从而降低成本。该优化问题分两步求解:第一步,采用动态规划优化(DPO)算法(考虑斜率和曲线效应)寻找一组伪最优速度循环;目标是在行驶时间、行程距离、加速度限制等约束下,最大限度地减少用于牵引的电能。在第二步优化中,在模拟工具中评估速度分布集,以估计通过地铁网络的车辆之间的功率流。对所节省的能量和主要电力变量进行了监测,结果表明了所提出的优化算法性能的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An algorithm to optimize speed profiles of the metro vehicles for minimizing energy consumption
The calculation of optimal driving speed profiles for metro vehicles that improve energy saving and, thus, reduce costs, are investigated. The optimization problem is solved in two different steps: in the first one, a Dynamic Programming Optimization (DPO) algorithm (including slopes and curves effects) is used to find a set of pseudo-optimal speed cycles; the objective is to minimize the electrical energy used for traction subject to constraints such as travel time, trip distance, acceleration limits, etc. In the second optimization step, the speed profiles set are evaluated in a simulation tool implemented to estimate the power flow among vehicles through the metro network. A test campaign monitoring the saved energy and main electric variables have been implemented and the presented results showing the effectiveness of the performance of the proposed optimization algorithm.
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