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Road train motion stability in BRT system

机译:BRT系统中的公路列车运动稳定性

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The peculiarities of organization and perspectives of mass passenger transportation in the city and beyond are considered with the use of "Bus Rapid Transport" (BRT) or Metrobus. Different aspects of study of motor vehicles (MV) controllability and stability are analyzed. It is substantiated that it is sufficient to consider the potential stability of the MV itself, in order to guarantee the stability of the "driver MV" system with a large reserve. A mathematical model of a three-axle bus train consisting of a bus and two trains (metrobus) is developed and the factors influencing the critical speed as the main index of the stability of its movement are determined. It is established that the increase of the critical speed of the metrobus can be achieved by increasing the base of the bus, the first and the second trailer, as well as the mass of the bus and the coefficients of resistance of the drive wheels of the bus driving axle and the trailers axles. At the same time, increasing the distance from the mass center to the bus rear axle, increasing the distance from the mass center to the point of the coupling of the bus with the first trailer, increasing the mass of trailers and the resistance of the resistance of the wheel drive of the bus axis lead to a decrease in the critical speed of the metrobus. This must be taken into account both when designing metrobuses, and when operating them.
机译:通过使用“公共汽车快速运输”(BRT)或Metrobus,可以考虑城市及其他地区的组织特点和大规模客运的前景。分析了汽车(MV)可控性和稳定性研究的不同方面。证实了足以考虑MV本身的潜在稳定性,以保证具有大量储备的“驱动器MV”系统的稳定性。建立了由三辆客车组成的三轴客车的数学模型,并确定了影响临界速度的因素,作为其运动稳定性的主要指标。已经确定,可以通过增加公共汽车的基础,第一和第二拖车,以及公共汽车的质量和车辆的驱动轮的阻力系数来实现地铁的临界速度的增加。公交车驱动轴和拖车轴。同时,增加从质量中心到公交车后轴的距离,增加从质量中心到公交车与第一个挂车的连接点的距离,增加挂车的质量和阻力总线轴的车轮驱动力的下降会导致地铁的临界速度降低。设计地铁和操作地铁时都必须考虑到这一点。

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