中国铁路2024,Issue(7) :69-76.DOI:10.19549/j.issn.1001-683x.2024.06.21.002

基于代价图的铁路线路走向通道智能规划方法

Intelligent Planning Method of Railway Alignment Corridor Based on Cost Diagram

郑志霖
中国铁路2024,Issue(7) :69-76.DOI:10.19549/j.issn.1001-683x.2024.06.21.002

基于代价图的铁路线路走向通道智能规划方法

Intelligent Planning Method of Railway Alignment Corridor Based on Cost Diagram

郑志霖1
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作者信息

  • 1. 中国铁路设计集团有限公司线路站场枢纽设计研究院,天津 300308
  • 折叠

摘要

在铁路智能选线中,线路走向通道规划是一个至关重要的步骤,是后续线路方案设计的基础.针对分析总结现有线路走向通道规划方法的优缺点,提出基于代价图的铁路线路走向通道智能规划方法.基于线路技术标准进行地形快速探查,构建桥隧高代价面域;基于各类面域的边界特征线,通过三角剖分构建无向图,并形成代价图;基于差异演化算法,计算最优代价参数集;基于代价图,使用改进的Dijkstra算法生成多样化走向通道;基于走向通道,进行站位的智能推荐.应用验证结果表明,该方法能够快速生成多个线路走向通道,为线路方案决策提供参考,有效提高设计效率.

Abstract

During intelligent railway line selection,alignment corridor planning is a crucial step and the basis for subsequent line scheme design.Aiming at analyzing and summarizing the advantages and disadvantages of existing alignment corridor planning methods,this paper proposes an intelligent railway alignment corridor planning method based on cost diagram.This paper carries out rapid terrain exploration based on line technical standards to acquire high-cost surface areas of bridges and tunnels;an undirected graph is developed through triangulation based on boundary feature lines of various surface areas,and a cost diagram is formed;the optimal cost parameter set is calculated based on differential evolution algorithm;diversified alignments corridors are generated by using improved Dijkstra algorithm based on cost diagrams;intelligent recommendation of station locations is made based on alignment corridors.The application verification results show that the method can quickly generate multiple alignment corridors,which provides references for line scheme decision-making and effectively improves design effficiency.

关键词

铁路智能选线/走向通道规划/站位推荐/代价图/差异演化算法/Dijkstra算法

Key words

intelligent railway line selection/alignment corridor planning/recommendation of station location/cost diagram/differential evolution algorithm/Dijkstra algorithm

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基金项目

中国国家铁路集团有限公司科技研究开发计划项目(K2022G001)

中国铁路设计集团有限公司科技开发重点项目(2022A02238009)

出版年

2024
中国铁路
中国铁道科学研究院

中国铁路

CSTPCD北大核心
影响因子:0.407
ISSN:1001-683X
参考文献量13
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