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Environmental impacts of public transport systems using real-time control method

机译:实时控制方法对公共交通系统的环境影响

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Public Transport (PT) systems rely more and more on online information extracted from both operator's intelligent equipment and user's smartphone applications. This allows for a better fit between supply and demand of the multimodal PT system, especially through the use of PT real-time control actions tactics. In doing so there is also an opportunity to consider environmental-related issues to approach energy saving and reduced pollution. This study investigates and analyses the benefits of using real-time PT operational tactics in reducing the undesirable environmental impacts. A tactic-based control (TBC) optimization model is used to minimize total passenger travel time and maximize direct transfers (without waiting). The model consists of a control policy built upon a combination of three tactics: holding, skip-stops, and boarding limit. The environmental related measure is the global warming potential (GWP) using the life cycle assessment technique. The methodology developed is applied to a real life case study in Auckland, New Zealand. Results show that TBC could reduce the GWP by means of reduction of total passenger travel times and vehicle travel cycle time. That is, the TBC model results in a 5.6% reduction in total GWP per day compared with an existing no-tactic scenario. This study supports the use of real-time control actions to maintain a reliable PT service, reducing greenhouse gas emissions and subsequently moving towards greener PT systems. (C) 2016 Elsevier Ltd. All rights reserved.
机译:公共交通(PT)系统越来越依赖于从运营商的智能设备和用户的智能手机应用程序中提取的在线信息。这使多模式PT系统的供需之间更好地契合,尤其是通过使用PT实时控制动作策略。这样做也有机会考虑与环境有关的问题,以实现节能和减少污染。这项研究调查并分析了使用实时PT作战​​策略来减少不良环境影响的好处。基于战术的控制(TBC)优化模型用于最大程度地减少旅客总旅行时间并最大程度地增加直接转乘(无需等待)。该模型由基于三种策略的控制策略组成:保持,跳停和登机限制。与环境有关的措施是使用生命周期评估技术的全球变暖潜能值(GWP)。所开发的方法应用于新西兰奥克兰的现实生活案例研究。结果表明,TBC可以通过减少总旅客旅行时间和车辆旅行周期时间来减少GWP。也就是说,与现有的无战术方案相比,TBC模型导致每日总GWP减少5.6%。这项研究支持使用实时控制措施来维持可靠的PT服务,减少温室气体排放,并朝着更绿色的PT系统发展。 (C)2016 Elsevier Ltd.保留所有权利。

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