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Techno-economic assessment of the potential of intelligent transport systems to reduce CO2 emissions

机译:智能交通系统减少CO 2 排放潜力的技术经济评估

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摘要

This study assesses the technical feasibility, economic affordability and social acceptability of low-greenhouse gas (GHG) emissions intelligent transport systems (ITS) that could be implemented in the European road infrastructure over the next 40 years for passenger and freight traffic. Three ITS applications are considered: driver assistance systems and the automated highway system (AHS) for passenger traffic and commercial vehicle operations for freight traffic. These technologies are anticipated to lead to a more efficient use of the existing road network, while potentially reducing GHG emissions generated by vehicles. The impact of ITS on road capacity and vehicle's CO2 emissions is determined. Assessment is based on a reference system, which consists of the average new vehicle in the road network of the EU-27 countries. The various opportunities offered by the selected ITS technologies are specified and the major constraints for reducing GHG emissions are identified. Costeffectiveness and sensitivity analysis is carried out. The results are validated by a suitably designed expert-based survey. It is found that ITS have the potential to improve capacity and reduce emissions. The most significant benefits are offered by the deployment of AHS. Social acceptability issues such as privacy and liability need to be further addressed to facilitate wide deployment of ITS.
机译:这项研究评估了低温室气体(GHG)排放智能运输系统(ITS)的技术可行性,经济承受能力和社会可接受性,该系统可在未来40年的欧洲道路基础设施中用于客运和货运。考虑了三种ITS应用程序:驾驶员辅助系统和用于客运的自动公路系统(AHS),以及用于货运的商用车操作。预计这些技术将导致更有效地利用现有道路网络,同时潜在地减少车辆产生的温室气体排放。确定了ITS对道路通行能力和车辆CO 2 排放的影响。评估基于参考系统,该参考系统由EU-27国家的道路网中的平均新车组成。确定了所选ITS技术提供的各种机会,并确定了减少温室气体排放的主要限制因素。进行成本效益和敏感性分析。通过适当设计的基于专家的调查对结果进行验证。发现ITS具有提高容量和减少排放的潜力。部署AHS可带来最大的好处。需要进一步解决诸如隐私和责任之类的社会可接受性问题,以促进ITS的广泛部署。

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  • 来源
    《Intelligent Transport Systems, IET》 |2012年第4期|p.355-363|共9页
  • 作者单位

    Department of Transportation Planning and Engineering, School of Civil Engineering, National Technical University of Athens, 5 Iroon Polytechniou Street, Zografou Campus, Athens 15773, Greece;

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