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Multicriteria Evaluation of Transport Plan for High-Speed Rail: An Application to Beijing-Xiongan

机译:高速铁路运输计划的多标准评价:北京 - 熊申请

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Beijing has an enormous transportation challenge: to relieve the extreme congestion that has arisen, largely due to overpopulation. To meet this challenge, the city administration has decided to extend its territory; a new city will be planned and built. This new city, Xiongan, will reduce the burden on the capital. A new high-speed railway (HSR) line is designed to transport millions of people every day within less than an hour. This study applies the potential of Geographical Information Systems (GIS) and multicriteria methods, Analytic Hierarchy Process (AHP) and Preference Ranking Organization Method for Enrichment Evaluations (PROMETHEE II), to determine the best alternative of transportation for the new high-speed railway line between Beijing and Xiongan, comparing different ones. The methodology consists of two stages. In the first stage remote sensing datasets such as ASTER DEM and LANDSAT images and GIS software such as ERDAS IMAGINE and ArcGIS have been used to determine settlement distribution, station location, elevation model, slope percentage, vegetation percentage, and route alignment for a new high-speed railway line for better understanding of its spatial distribution pattern over the study area. The second phase of the study focusing on assessing the various alternatives of transportation has been determined, and three approaches to choosing the best alternative have been introduced. In the paper we examine criteria associated with travel and economic criteria: travel time, the number of train stops, public satisfaction with transport, the number of seats per day, connectivity, operating costs, profit, and the payback period. Six alternatives of transportation have been studied. The stops in Guan and stations in the metro’s rings have been investigated. In the second stage, the Analytic Hierarchy Process (AHP) and PROMETHEE II methods have been used to select the best alternative. The first approach uses only criteria related to the trip, as the criterion to choose the best alternative is the maximum of the net outranking flows by PROMETHEE II method; the second approach applies two independent criteria: the ratio of normalized operating costs and the normalized net outranking flows, and the ratio of the normalized payback period and the normalized net outranking flows; the third approach includes all defined criteria, and the criterion of choosing the best alternative is the maximum of net outranking flows as calculated by the PROMETHEE II method. The approaches have been analyzed with the purpose of comparing the results. The result indicates that it is expedient to have a station in Guan, which will increase the connection and connectivity among the cities while providing fast mobility options for a large number of inhabitants of Guan city. Furthermore, the result from Remote Sensing and GIS analysis demonstrates that the proposed high-speed railway line will be environmentally sustainable and is economically/socially feasible and that it will certainly attract current and future passengers because of their needs.
机译:北京有一个巨大的交通挑战:为了减轻出现的极端拥堵,主要是由于过度疏忽。为满足这一挑战,城市管理局决定扩大其领土;将计划和建造一个新的城市。这个新城市兴甘将减少首都的负担。新的高速铁路(HSR)系列旨在每天运输数百万人,不到一小时。本研究适用地理信息系统(GIS)和多标准方法,分析层次过程(AHP)和偏好排名组织方法进行丰富评估(Promethee II),以确定新的高速铁路线路的最佳替代方案在北京和熊之间,比较不同的。该方法由两个阶段组成。在第一阶段遥感数据集如艾斯特DEM和LANDSAT图像和GIS软件,如ERDAS和ARCGIS,用于确定新高的结算分布,站点,高程模型,斜率百分比,植被百分比和路线对准 - 在研究区内更好地了解其空间分布模式的速度。已经确定了重点评估各种运输替代方案的研究的第二阶段,并介绍了三种选择最佳替代品的方法。在论文中,我们检查与旅行和经济标准相关的标准:旅行时间,火车站的数量停止,运输的公众满意度,每天座位数,连通性,运营成本,利润和投资回收期。已经研究过六种运输替代品。已经调查了Guaan和Metro Rings的电台的停止。在第二阶段,分析层次过程(AHP)和Promethee II方法已被用于选择最佳替代品。第一种方法仅使用与旅程相关的标准,因为选择最佳替代方案的标准是普通丙烯II方法的最大净出口流动;第二种方法适用两个独立的标准:标准化运营成本和标准化净出口流量的比率,以及标准化的回收期和标准化净出口流量的比率;第三种方法包括所有定义的标准,并且选择最佳替代方案的标准是由Promethee II方法计算的最大净出口流量。已经分析了这种方法,目的是比较结果。结果表明,有利的是在关联中拥有一站,这将增加城市之间的连接和连接,同时为关城区的大量居民提供快速移动性选项。此外,遥感和GIS分析的结果表明,所提出的高速铁路线将是环境可持续的,经济/社会可行,并且由于其需求而肯定会吸引当前和未来的乘客。

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