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首页> 外文期刊>Transportation Research Procedia >Multi-objective optimization for short distance trips in an urban area: choosing between motor vehicle or cycling mobility for a safe, smooth and less polluted route
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Multi-objective optimization for short distance trips in an urban area: choosing between motor vehicle or cycling mobility for a safe, smooth and less polluted route

机译:市区短途旅行的多目标优化:选择机动车辆还是骑自行车出行,以确保安全,平稳,污染少的路线

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Mobility in urban areas is highly complex because of the variety of possible facilities and routes, the multitude of origins and destinations, the increase of population density and traffic. Furthermore, people are willing to use more environmentally friendly transportation modes, such as cycling, to do short-distance trips in urban areas. This paper develops a multi-objective model for passengers in urban transportation network for short trips using bicycle or motor vehicle. The main objective of this paper is to improve the urban network mobility in order to decrease traffic congestion, road conflicts between road users and pollution. Furthermore, optimization objectives could comprehensively reflect expectations of passengers from the dimension of traffic and emissions as criteria and use a motor vehicle or a bicycle as an alternative. The methodology of this study was applied based on the real world case study in the city of Aveiro, Portugal. The present work uses a microscopic simulation platform of traffic (VISSIM), road safety (SSAM) and emissions (Vehicle Specific Power – VSP) to analyze traffic operations, road conflicts and to estimate carbon dioxide (CO 2 ) and nitrogen oxide (NO X ) emissions. Three-dimensional Pareto Fronts, which were expressed through traffic performance, road conflicts between motor vehicles and bicycles and emissions, were optimized using the fast Non-Dominated Genetic Algorithm (NSGA-II).
机译:由于各种可能的设施和路线,众多的起点和目的地,人口密度和交通的增加,城市地区的交通十分复杂。此外,人们愿意使用更环保的交通方式,例如骑自行车,在城市地区进行短途旅行。本文为自行车或机动车辆短途旅行的城市交通网络中的乘客开发了一个多目标模型。本文的主要目的是改善城市网络的流动性,以减少交通拥堵,道路使用者之间的道路冲突和污染。此外,优化目标可以从交通和排放的维度全面反映乘客的期望作为标准,并使用机动车辆或自行车作为替代。这项研究的方法是基于葡萄牙阿威罗市的实际案例研究而应用的。本工作使用交通(VISSIM),道路安全(SSAM)和排放(车辆特定功率-VSP)的微观模拟平台来分析交通运营,道路冲突并估算二氧化碳(CO 2)和氮氧化物(NO X) )排放。使用快速非支配遗传算法(NSGA-II)优化了通过交通性能,机动车与自行车之间的道路冲突和排放量表示的三维帕累托线。

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