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Illustrating the implications of moving blocks on railway traffic flow behavior with fundamental diagrams

机译:说明移动块对具有基础图的移动块对铁路交通流量行为的影响

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Many railroads are currently developing advanced train control systems incorporating moving blocks with the potential to shift train separation principles from a system based on discrete control blocks to one where trains directly interact with each other, similar to a highway. This research develops a simple, flexible analytical framework consisting of rail fundamental diagrams describing density-flow relationships for rail traffic in specific situations such as closely following trains operating in platoons, or fleets, or double-track with directional running. It is shown that rail fundamental diagram curves depicting rail traffic flow under fixed blocks exhibit a sawtooth pattern due to the discrete nature of the control blocks. Equivalent curves describing rail traffic flow under moving blocks resemble continuous flow relationships from the highway domain. The proposed methodology can be used for a number of practical purposes including calculating shockwave effects from bottlenecks such as vertical grades, showing the dampening effect of fixed block control systems on rail traffic flow perturbations, and illustrating interactions between trains operating in a fleet, or platoon. As a complement to more detailed but time-intensive methods such as simulation, railway planners and researchers can use the rail fundamental diagram framework to quickly analyze rail traffic flow behavior under different train control systems and operating conditions.
机译:许多铁路目前正在开发具有移动块的高级列车控制系统,其可能性地将基于基于离散控制块的系统从系统转换到列车直接相互交互的系统,类似于高速公路。该研究开发了一种简单,灵活的分析框架,包括轨道基础图,描述了在特定情况下的轨道流量的密度流动关系,例如紧密遵循凝块的火车,或舰队,或双轨道与定向跑步。结果表明,由于控制块的离散性质,轨道基波图曲线描绘了固定块下的轨道交通流量呈现出锯齿形图案。相同的曲线描述移动块下的轨道交通流量类似于来自公路域的连续流动关系。所提出的方法可以用于许多实际目的,包括计算来自诸如垂直等级的瓶颈的冲击波效应,显示了固定块控制系统对轨道交通流量扰动的阻尼效果,并说明了在车队中操作的列车之间的相互作用。作为更详细但时间密集的方法的补充,如模拟,铁路规划者和研究人员可以使用轨道基础图框架,以便在不同的列车控制系统和操作条件下快速分析轨道交通流量行为。

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