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Implementation of Bus Rapid Transit (BRT) on an optimal segment of a long regular bus route

机译:在较长的常规公交路线的最佳路段上实施公交快速公交(BRT)

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Major public transit routes evolve overtime due to changes in demand caused by variations, for example, in land use, household income. As well there are demand/supply interactions due to implementation of new transit technologies such as Light Rail Transit or Bus Rapid Transit (BRT) and/or changes in mode of service, for example, skip-stop operations. Planning for such transitions must be done carefully and well in advance to enable on-time implementation. In this paper, we consider the transition from a long, regular bus route in a corridor to a route with a limited stop BRT along a segment of the corridor and a modified regular bus service along its full length. This problem is often faced by transit agencies when they try to make decisions regarding the design parameters of a BRT service. This transition can increase the average speed and maximum possible passenger flow on the route. The proposed approach optimizes the headways of the regular and BRT routes, and chooses the termini of the BRT segment as well as the limited BRT stops. Priority for BRT service is given to O-D pairs with a high value of passenger-hours, essentially the 'product of the travel demand and the travel time'. Total optimal system costs before and after the mode transition is considered through analytical modelling, and a simple equation is derived for the difference. If the new optimal total system cost, including costs associated with passenger in-vehicle travel time, waiting time, vehicle operating costs, and system capital costs, is lower, the transition is favoured. Insights into the proposed transition are provided through the analytical modelling approach.
机译:由于诸如土地使用,家庭收入等变化而引起的需求变化,主要的公交路线会随着时间的推移而变化。此外,由于实施了新的运输技术(如轻轨或公共汽车快速公交(BRT))和/或服务模式发生了变化(例如,跳停操作),因此出现了需求/供应交互。为了能够按时实施,必须认真,周密地计划此类过渡。在本文中,我们考虑了从走廊中的长条常规公交车路线过渡到在走廊的一部分上具有有限停靠站BRT的路线,以及沿其全长修改后的规则公交车服务的路线。公交机构在尝试就BRT服务的设计参数做出决策时经常会遇到此问题。这种过渡可以提高路线上的平均速度和最大可能的乘客流量。所提出的方法优化了常规和BRT路线的行进路线,并选择了BRT段的终点以及有限的BRT站点。 BRT服务的优先级给予了具有高乘客小时价值的O-D对,本质上是“出行需求和出行时间的乘积”。通过分析建模,可以考虑模式转换前后的最佳系统总成本,并得出一个简单的等式。如果新的最佳总系统成本(包括与乘客乘车旅行时间,等待时间,车辆运营成本和系统资本成本相关的成本)较低,则支持过渡。通过分析建模方法可以深入了解拟议的过渡。

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