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Estimation of travel time and the benefits of upgrading the fare payment technology in urban bus services

机译:估计旅行时间以及升级城市公交服务中的票价支付技术的好处

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Multiple regression models are estimated to analyse bus travel times in an urban network. We identify variables that have a significant influence on the variation of bus travel time, and estimate the percentage of time that buses take at each stage of a trip (i.e., non-stop running time, delay due to traffic lights, delay due to roundabouts and time lost at bus stops), which is useful to categorise the sources of delay along a route. By using estimates of passenger boarding times with alternative fare payment methods (cash, magnetic strip, contactless card and off-board payment), we calculate operational speed and benefits of upgrading the fare payment technology, including savings on fleet size requirements, fuel and labour cost, travel time for users and air pollution. A comparative assessment of speed gains with two policies aimed at reducing bus travel times - providing dedicated busways and upgrading the fare collection system - shows that the number of passengers is crucial in determining the advantage of one or the other in increasing bus operating speed.
机译:估计有多个回归模型来分析城市网络中的公交车旅行时间。我们确定对公交车出行时间变化有重大影响的变量,并估算公交车在出行的每个阶段所花费的时间百分比(即,不间断运行时间,交通信号灯引起的延误,环形交叉路口引起的延误)以及在公交车站浪费的时间),这有助于对沿途延迟的来源进行分类。通过使用其他的票价支付方式(现金,磁条,非接触式卡和车外支付)估算乘客的登机时间,我们可以计算运营速度和升级票价支付技术的收益,包括节省机队规模,节省燃油和人工成本,使用者的出行时间和空气污染。通过两种旨在减少公交车出行时间的政策(提供专用公交车道和升级票价收集系统)对增速进行了比较评估,结果表明,乘客人数对于确定彼此之间在提高公交车运行速度方面的优势至关重要。

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