基于车辆-列车集中控制系统的自主路径研究

Zheng Qiao, T. Tang, Lei Yuan
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引用次数: 0

摘要

在车辆集中式列车控制设计中,路由功能由联锁设备转移到车辆上,这就要求列车具有自主调度可行路线的能力。提出了一种基于图论的自主路由调度模型。首先,将轨道网络的关键要素转化为有向图节点,并根据路段运行时间的预测标记出弧线的权值,建立反映铁路结构特征的拓扑图模型;根据图模型,采用启发式算法搜索最短过境时间的可行路线。考虑到分散控制设计中列车采集的轨道状态信息的局限性,基于列车之间的通信实时更新弧权(预测轨道段内通行时间),从而根据路段的可用性动态调整路线调度。在北京大兴机场站进行了计算试验。结果表明,该模型在寻找具有合理通行时间的路线上是可行的。还分析了基于干扰和解决延迟的重新路由的潜力。
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Autonomous routing research based on vehicle-centralized train control system
In vehicle-centralized train control design, the routing function is transferred from interlocking equipment to vehicle, which asks for the ability of train to schedule feasible route autonomously. This paper describes an autonomous routing schedule (ARS) model based on graph theory. Firstly, by converting key elements of rail network into directed graph nodes and marking the weights of arcs based on section transit time’s prediction, a topological graph model reflecting railway structure’s characteristic is set up. According to the graph model, a heuristic algorithm is used to search the feasible route with shortest transit time. Considering the limitation of rail state’s information gathered by trains in decentralized control design, arc’s weight (the prediction of transit time in rail section) is updated in real time based on the communication between trains so that the routing schedule can be dynamically adjusted based on section’s availability. The computational tests are performed on Beijing Daxing Airport Station. The result shows the feasibility of model in searching route with reasonable transit time. It’s potential for rerouting based on disturbances and resolve delays is also analyzed.
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