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图学学报 ›› 2026, Vol. 47 ›› Issue (1): 216-222.DOI: 10.11996/JG.j.2095-302X.2026010216

• 建筑与城市信息模型 • 上一篇    下一篇

基于图论及改进A*算法的屋面设备检修动线设计智能分析

何瑞琦1,2, 曹盈1, 许璟琳1,3(), 余芳强4   

  1. 1 上海建工四建集团有限公司上海 201103
    2 上海交通大学船舶海洋与建筑工程学院上海 200240
    3 浙江大学工程师学院浙江 杭州 310015
    4 上海建工集团股份有限公司上海 200080
  • 收稿日期:2025-04-11 接受日期:2025-07-01 出版日期:2026-02-28 发布日期:2026-03-16
  • 通讯作者:许璟琳,E-mail:jinglin.xu@qq.com
  • 基金资助:
    上海市东方英才计划青年项目(QNKJ2024047)

Intelligent analysis of design about roof equipment inspection paths based on graph theory and improved A* algorithm

HE Ruiqi1,2, CAO Ying1, XU Jinglin1,3(), YU Fangqiang4   

  1. 1 Shanghai Construction No.4(Group) Co. Ltd, Shanghai, 201103, China
    2 School of Naval Architecture, Ocean and Civil Engineering, Shanghai Jiao Tong University, Shanghai 200240, China
    3 Polytechnic Institute, Zhejiang University, Hangzhou Zhejiang 310015, China
    4 Shanghai Construction Group Co. Ltd, Shanghai 200080, China
  • Received:2025-04-11 Accepted:2025-07-01 Published:2026-02-28 Online:2026-03-16
  • Supported by:
    Shanghai Eastern Talent Plan(QNKJ2024047)

摘要:

在屋面工程设计中,设备检修动线的合理性直接影响检修效率与安全性,传统设计方法常依赖经验判断,难以在设计阶段充分评估动线设计的合理性。针对此问题,提出了一种基于图论及改进A*算法结合的混合算法,并结合建筑信息模型(BIM)技术,开发了一种基于该算法的屋面设备检修动线智能分析设计工具,通过数字化模型进行动线分析,弥补传统设计的不足。首先,采用碰撞检测与八叉树算法将屋面转化为带有权重的等效网格图;然后采用改进A*算法优化检修路径,综合考虑设备碰撞体积和空间限制,计算最优检修动线并评估动线区域深化设计合理性;最后,使用以该算法为基础的检修动线智能分析设计工具对实际项目进行实验。实验结果表明,该算法不仅能够精准揭示设计中可能存在的空间冲突和不合理布局,为优化设计提供数据支持,提高了设计的合理性和可操作性,且比传统人工设计效率提高了5倍以上。目前基于该算法的智能分析工具已在上海建工四建集团的多项实际项目中使用。

关键词: 屋面检修, BIM, 动线优化, A*算法, 图论, 八叉树算法

Abstract:

In roof engineering design, the rationality of equipment maintenance circulation routes directly impacts maintenance efficiency and safety. Traditional design methods often rely on empirical judgment, making it difficult to sufficiently evaluate the rationality of these routes during the design phase. To address this, a hybrid algorithm combining graph theory with an improved A* algorithm was developed. Integrated with Building Information Modeling (BIM) technology, an intelligent analysis and design tool for roof equipment maintenance circulation routes was created to address the shortcomings of traditional design via digital model-based route analysis. First, the roof was converted into a weighted equivalent grid map using collision detection and an octree algorithm. Next, an improved A* algorithm was employed to optimize the maintenance paths, comprehensively considering equipment collision volumes and spatial constraints to calculate the optimal maintenance circulation route and evaluate the rationality of detailed route-area design. Finally, the intelligent analysis and design tool based on this algorithm was tested on an actual project. Experimental results demonstrated that the algorithm accurately revealed potential spatial conflicts and irrational layouts, providing data to support design optimization, and enhanced design rationality and operability; it also improved efficiency by more than five times compared with traditional manual design. The intelligent analysis tool based on this algorithm is currently in use in several projects by the Shanghai Construction (No.4) Group Co., Ltd.

Key words: roof maintenance, BIM, route optimization, A* algorithm, graph theory, octree algorithm

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