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The economics and engineering of bus stops: Spacing, design and congestion

机译:公交车站的经济学和工程学:间距,设计和拥堵

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This paper re-considers the problem of choosing the number of bus stops along urban routes, first by estimating the probability of stopping in low demand markets, and second by analysing the interplay between bus stop size, bus running speed, spacing and congestion in high demand markets. A comprehensive review of the theory and practice on the location and spacing of bus stops is presented. Using empirical data from Sydney, Australia, we show that the widely used Poisson model overestimates the probability of stopping in an on-call bus stopping regime, and consequently underestimates the optimal number of bus stops that should be designed. For fixed-stop services, we show that bus running speed, frequency and dwell time are crucial to determining the relationship between bus stop spacing and demand, with bus stop congestion in the form of queuing delays playing a key role. In particular, we find that bus stop spacing should be decreased if demand increases at a constant bus running speed; however, if both bus running speed and the speed of the passenger boarding process increase, then the distance between bus stops should be kept long even at high demand levels, a result that is consistent with the implementation of Bus Rapid Transit (BRT) systems that feature high bus running speeds and long distances between stops relative to conventional bus services.
机译:本文重新考虑了在城市路线上选择公交车站数量的问题,首先是通过估计低需求市场中停车的可能性,其次是通过分析公交车站的规模,公交运行速度,间距和拥挤程度之间的相互作用。需求市场。介绍了有关公交车站的位置和间距的理论和实践的综述。使用来自澳大利亚悉尼的经验数据,我们表明,广泛使用的泊松模型高估了在候车公交车站停车制度中停车的可能性,因此低估了应设计的最佳公交车站数量。对于固定站点服务,我们证明了公交车的运行速度,频率和停留时间对于确定公交站点的间距与需求之间的关系至关重要,而公交站点的拥挤以排队延误的形式发挥着关键作用。特别是,我们发现,如果在恒定的公交车运行速度下需求增加,则应该减少公交车站的间距;但是,如果公共汽车的行驶速度和乘客登机过程的速度都提高了,那么即使在高需求水平下,公共汽车站之间的距离也应保持较长,这与实施快速公交系统(BRT)一致与传统的公交服务相比,其具有较高的公交车运行速度和站点之间的长距离。

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