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Determination of minimum level of available carrying capacity of sections where the effective use of connected train formation and driving technology is possible

机译:确定有效使用连接的列车形成和驾驶技术的部分可用承载能力的最小水平

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Periods of section work are established when using the connected train driving technology (CT), which does not depend on the level of section loads yminload. In other cases, efficiency of the CT technology depends on the effect produced by increasing carrying capacity. Minimum level of load yminload, if possible, is determined by the amount of traffic, for which delays of trains start when approaching to the sections. To determine the value yminload, a method of statistical simulation of train operation is developed (Monte Carlo method). Train flow dimensions are determined due to the fact that daily distribution can be described by a normal distribution law. Exceeding the daily amount of traffic as compared with available carrying capacity of sections allows determining the number of delayed trains on the way to the section. A computer program is developed; mass calculations are made for the average amount of traffic from 40 to 100 freight trains per day. The obtained value yminload equals to 0.8. This value may be applied at the practical work of JSC RZD when using the connected train driving technology.
机译:在使用连接的列车驾驶技术(CT)时建立了部分工作的句点,这不依赖于截面级别的级别yminload。在其他情况下,CT技术的效率取决于通过增加承载能力产生的效果。如果可能的话,如果可能的话,负载级别的最小级别由流量的数量决定,在接近部分时,列车的延迟开始。为了确定值Yminload,开发了一种列车操作的统计模拟方法(Monte Carlo方法)。由于日常分布可以通过正态分布法描述的事实,确定火车流量尺寸。与可用搬运能力相比,超过日常流量允许确定延迟列车的数量。开发了计算机程序;群众计算是每天40到100个货运列车的平均交通量。所获得的值Yminload等于0.8。当使用连接的列车驾驶技术时,可以在JSC RZD的实际工作中应用该值。

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