A multi-objective construction scheduling optimization method based on a BIM cloud platform

By establishing a link between the steel structure BIM model and the construction schedule on the BIM cloud platform, binding resource and cost information, and constructing a multi-objective scheduling optimization model, the problem of independent construction period, cost, and quality in large and complex steel structure projects is solved, and the scientific nature and real-time performance of construction scheduling are improved.

CN122414864APending Publication Date: 2026-07-17CRCC HARBOR & CHANNEL ENG BUREAU GRP
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
CRCC HARBOR & CHANNEL ENG BUREAU GRP
Filing Date
2026-04-16
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

In the construction of large and complex steel structure projects, the management of multiple objectives such as schedule, cost and quality is independent of each other. Traditional construction plans have failed to establish a collaborative optimization mechanism for schedule, cost and quality, resulting in a lack of data support for decision-making and an inability to adjust the schedule plan, cost accounting and quality assessment in a synchronized manner.

Method used

Based on the BIM cloud platform, by establishing the association between the steel structure BIM model and the construction schedule, binding resource and cost information, a multi-objective scheduling optimization model is constructed. The optimization algorithm is used to solve the problem and the weight coefficients are determined by combining the fuzzy hierarchical analysis method to generate the optimal scheduling scheme. The optimization results are displayed through 3D visualization and pushed to mobile devices.

Benefits of technology

It achieves dynamic collaborative optimization of construction period, cost, and quality, improves the scientific nature, real-time performance, and operability of construction scheduling, and supports closed-loop adaptive adjustment of construction plans.

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Abstract

本发明提供一种基于BIM云平台的多目标施工调度优化方法,包括以下步骤:将资源信息和成本信息绑定至各工序,形成调度优化的基础数据模型;将所述随机变量的分布参数与BIM云平台的控制强度和控制系数相关联;采用优化算法对所述调度优化模型进行求解,计算每个调度方案的适应度值,通过迭代寻优输出最优解集;将最优解集中的调度方案在BIM云平台中进行施工进度模拟,以三维可视化形式展示各方案的施工过程和资源调配情况,并将优化结果推送至现场管理终端。本发明结合动态重调度机制实现了施工计划的闭环自适应调整,提升了钢结构施工调度的科学性、实时性和可操作性。
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