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Real-time energy consumption minimization in railway networks

机译:铁路网络中的实时能耗最小化

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A new timetable must be calculated in real-time when train operations are perturbed. Although energy consumption is becoming a central issue both from the environmental and economic perspective, it is usually neglected in the timetable recalculation. In this paper, we formalize the real-time Energy Consumption Minimization Problem (rtECMP). It finds in real-time the driving regime combination for each train that minimizes energy consumption, respecting given routing and precedences between trains. In the possible driving regime combinations, train routes are split in subsections for which one of the regimes resulting from the Pontryagin's Maximum Principle is to be chosen. We model the trade-off between minimizing energy consumption and total delay by considering as objective function their weighted sum. We propose an algorithm to solve the rtECMP, based on the solution of a mixed-integer linear programming model. We test this algorithm on the Pierrefitte-Gonesse control area, which is a critical area in France with dense mixed traffic. The results show that the problem is tractable and an optimal solution of the model tackled can often be found in real-time for most instances.
机译:当列车运行受到干扰时,必须实时计算新的时间表。尽管从环境和经济角度来看能源消耗已成为一个中心问题,但通常在时间表重新计算中忽略了它。在本文中,我们对实时能耗最小化问题(rtECMP)进行了形式化处理。它会实时找到每列火车的行驶方式组合,从而在考虑到给定的路线和火车之间的优先顺序的情况下将能耗降至最低。在可能的驾驶方式组合中,将火车路线分为多个子部分,为此,将选择庞特里亚金最大原理所产生的一种方式。我们通过将它们的加权总和作为目标函数,在最小化能耗和总延迟之间进行权衡。我们基于混合整数线性规划模型的解决方案,提出了一种解决rtECMP的算法。我们在Pierrefitte-Gonesse控制区(这是法国交通密集的关键区域)上测试了该算法。结果表明,该问题很容易解决,并且在大多数情况下,经常可以实时找到所解决模型的最佳解决方案。

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