Traffic assignment from cities along the Qingdao-Jinan Corridor to the Beijing-Shanghai high-speed railway and the Beijing-Shanghai second line

Yang Liu, Zhimei Wang
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Abstract

The second line of the Beijing-Shanghai high-speed railway is planned to be completed in 2025. The opening of the second line of the Beijing-Shanghai high-speed railway will help ease the tight transportation capacity of the Beijing-Shanghai high-speed railway. This paper mainly studies the assignment of passenger flow to the Beijing-Shanghai high-speed railway and Beijing-Shanghai Second High-Speed Railway. The passenger flow is mainly generated in the cities along the Qingdao-Jinan Corridor and attracted to southern cities. Firstly, the volume of passengers in the cities along the Qingdao-Jinan Corridor is predicted according to the grey prediction method, and then the prediction results are applied to the gravity model to predict the OD passenger flow. After that, a high-speed railway network is established, and the k shortest path algorithm is used to find valid paths among each OD pair, taking travel time cost, fare and penalty cost into consideration of path impedance. The logit model is established to calculate the sharing rate of different paths, and the method of successive average is used to solve the passenger flow assignment model. Finally, this paper analyzes the impact of the fare rate level and travel time on the passenger flow assignment of the Beijing-Shanghai high-speed railway second line. The results show that when the fare rate of the Beijing-Shanghai high-speed railway second line is around 0.47, the passenger flow sharing on the high-speed rail network is basically stable.
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青岛-济南走廊沿线城市到京沪高铁和京沪二线的交通分配
京沪高铁第二条线路计划于2025年完工。京沪高铁二线的开通将有助于缓解京沪高铁运力紧张的局面。本文主要研究京沪高铁和京沪第二高铁的客流分配问题。客流主要产生于青济走廊沿线城市,并向南方城市转移。首先采用灰色预测方法对青济走廊沿线城市客流量进行预测,然后将预测结果应用于重力模型对OD客流量进行预测。然后建立高速铁路网络,利用k最短路径算法在各OD对之间寻找有效路径,同时考虑路径阻抗,考虑行程时间成本、票价和处罚成本。建立logit模型计算不同路径的共享率,采用逐次平均法求解客流分配模型。最后,分析了京沪高铁二线票价水平和出行时间对客流分配的影响。结果表明:京沪高铁二线运价率在0.47左右时,高铁网客流分担基本稳定;
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