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The way ahead for London’s bus priority at traffic signals

机译:伦敦公交车优先考虑交通信号的方法

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摘要

London has a long history of successful schemes for bus priority at traffic signals. Recently, Transport for London (TfL) has procured a modern automatic vehicle location (AVL) system for bus fleet management, passenger information and bus priority. The new system is known as iBUS and is based on global positioning system (GPS) and supporting technologies for bus location. The system eliminates the need for on-street hardware for detecting buses and provides more flexibility and opportunity for using bus detectors. However, bus location based on this system is less accurate than location based on fixed infrastructure (e.g. beacons) and could result in reduced benefits from bus priority. This paper first summarises how bus priority at traffic signals works within iBUS, and then explores the effects of GPS locational errors on bus priority benefits. This is followed by a discussion of opportunities available in the context of iBUS to build an even more efficient and beneficial bus priority system by taking advantage of its cost-effective multiple detection capabilities. The paper is based on various studies carried out by the Transportation Research Group (TRG) at the University of Southampton for TfL.
机译:伦敦有成功的交通信号优先公交计划的悠久历史。最近,伦敦交通局(TfL)已购买了现代化的自动车辆定位(AVL)系统,用于公交车队管理,乘客信息和公交优先级。新系统称为iBUS,它基于全球定位系统(GPS)和公交车定位支持技术。该系统不再需要用于检测总线的路边硬件,并为使用总线检测器提供了更大的灵活性和机会。但是,基于此系统的公交车位置的准确度要低于基于固定基础设施(例如信标)的公交车的准确度,并可能导致公交优先级降低。本文首先总结了iBUS中交通信号灯的公交优先级如何工作,然后探讨了GPS位置误差对公交优先级优势的影响。接下来,将讨论在iBUS中可以利用其具有成本效益的多重检测功能来构建更高效,更有益的总线优先级系统的机会。该论文基于南安普敦大学运输研究小组(TRF)的运输研究小组(TRG)进行的各种研究。

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