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A discrete-event model of the train traffic on a linear metro line

机译:线性地铁线上的火车流量的离散事件模型

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We present in this article a mathematical model for the traffic on a linear metro line (a metro line without junction), taking into account the train dynamics and the passenger travel demand. The train dynamics are modeled as a discrete event dynamic system, written linearly in the Max-plus algebra. The model permits an analytic derivation of phase diagrams for the train dynamics depending on the passenger travel demand. By this, the physics of traffic on linear metro lines is wholly understood and interpreted. We introduce into the model the passenger capacity of trains, and derive analytically an indicator for the passenger comfort inside the trains, as a function of the number of trains and of the level of the passenger demand. By this model, metro operators can adjust the train dwell times at platforms depending on the level of the passenger demand. They can also optimize the train frequency with respect to the number of trains, and depending on the level of the passenger demand. Furthermore, the level of the passenger comfort inside the trains can be taken as the result of a compromise between the passengers' satisfaction, in one side, and the number of trains as well as the passenger capacity of trains, in terms of the economic criteria of the operator, in the other side.
机译:我们在本文中展示了线性地铁线路(无交界线的地铁线路的流量的数学模型,考虑到火车动态和乘客旅行需求。火车动态被建模为离散事件动态系统,在MAX-PLUS代数中线性写入。该模型允许根据乘客旅行需求进行列车动态的相图的分析推导。由此,线性地铁线路的流量物理完全理解和解释。我们介绍了火车乘客能力的模型,并在列车内部的乘客舒适度获得了分析的指标,作为列车的函数和乘客需求的水平。通过这种模式,地铁运营商可以根据乘客需求的水平在平台上调整火车停留时间。它们还可以在列车的数量方面优化列车频率,并取决于乘客需求的水平。此外,在经济标准方面,在乘客的满意度与火车的数量和列车的数量之间,列车内部的乘客舒适的水平可以是在乘客之间的折衷之后。在另一方面的操作员。

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