Study on the Layout of Intercity Rail Transit Network Based on Traffic Location

Jianmei Tan, Jincheng Liu, Yunhui Xu
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Abstract

The concept of a high-speed passenger traffic location line is proposed by analyzing intercity rail traffic location and network evolution characteristics to improve the effectiveness of intercity rail transit network layout planning. Then, a multilevel intercity rail transit network planning and optimization model is constructed. The model is divided into two levels, namely, the backbone network and the preliminary network. The backbone network optimization model is the minimum spanning tree model, which uses the reciprocal of economical relation intensity as its weight. The preliminary network model is a multi-objective function, which maximizes economical relation intensity and connectivity and minimizes the total length of rail transit lines. The optimization model provides a new method for intercity rail transit network planning. Finally, the rationality and effectiveness of the network layout are verified using the line network within the Wuhan urban agglomeration area as an example.
基于交通区位的城际轨道交通网络布局研究
通过分析城际轨道交通区位和网络演化特征,提出高速客运定位线的概念,以提高城际轨道交通网络布局规划的有效性。在此基础上,构建了多层次城际轨道交通网络规划优化模型。该模型分为两个层次,即骨干网络和初步网络。骨干网优化模型采用最小生成树模型,以经济关系强度的倒数作为其权重。初步网络模型是一个以经济联系强度和连通性最大化、轨道交通线路总长度最小化为目标的多目标函数。该优化模型为城际轨道交通网规划提供了一种新的方法。最后,以武汉城市群内的线路网络为例,验证了网络布局的合理性和有效性。
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