Construction progress management method based on combination of live-action image and information model
By combining real scene images and information models, a three-dimensional three-dimensional model is established, the complexity of construction progress management in building construction is solved, and the reasonable and orderly progress of the construction site and the improvement of progress management efficiency is achieved.
Patent Information
- Application Number
- CN202510082002.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-20
- Publication Date
- 2025-05-06
AI Technical Summary
During the construction process, it is difficult for the existing technology to effectively manage the construction progress, resulting in unreasonable and unsmooth project progress. Especially in metallurgical industrial projects, cross-operation of multiple specialties increases management complexity.
The construction progress management method based on the combination of real scene images and information models is adopted, and the real scene images of the construction site are taken through drones, and a three-dimensional three-dimensional model is established to compare them to judge the construction progress, adjust resource allocation, and optimize on-site construction.
All-round monitoring and progress management at the construction site have been realized, helping project management personnel to adjust and schedule in a timely manner, ensuring the reasonable and orderly progress of the project, and improving the management level and progress management efficiency of the construction site.
Smart Images

Figure CN119940734A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of building construction, and in particular to a construction progress management method based on the combination of real-scene images and information models. Background Art
[0002] The construction industry is a pillar industry of the national economy and provides strong support for the sustained and healthy development of my country's economy. However, the construction production method is still relatively extensive and there is still a big gap from the relevant requirements of high-quality development, especially for metallurgical industrial projects (involving multi-professional cross-operations such as civil engineering structure construction, steel structure and electromechanical installation). It is also necessary to vigorously promote the transformation of the construction industry to industrialized and digital construction methods, and promote the extension of construction progress management to production management electronic systems based on enterprise resource planning platforms. Summary of the invention
[0003] The present invention aims to solve the above problems, thereby providing a construction progress management method based on the combination of real-scene images and information models to ensure the reasonable and orderly advancement of the project.
[0004] The present invention solves the above-mentioned problem by adopting the following technical solution: A construction progress management method based on the combination of real-scene images and information models includes the following steps: S1: Use drones to regularly photograph and monitor the physical progress of the construction site, fully control the progress of the construction site project, and form a real-life image of the construction site.
[0005] S2: Establish a three-dimensional model of the project progress.
[0006] S3: Compare the real-life image with the 3D model to determine the construction progress and adjust resource allocation.
[0007] S4: Through the combination of three-dimensional models and real-life images, planar resources are integrated to maximize the use of limited space.
[0008] Compared with the prior art, the present invention adopting the above technical solution has the following outstanding features: The three-dimensional model of the project is established by acquiring the real scene of the construction site and combining the real scene image with the information model to innovate the project progress management mode, which helps to adjust the site scheduling in time and ensure the reasonable and orderly progress of the project. BRIEF DESCRIPTION OF THE DRAWINGS
[0009] Figure 1 It is a schematic diagram of the process structure of the present invention; DETAILED DESCRIPTION
[0010] The present invention will be further described below in conjunction with embodiments, the purpose of which is only to provide a better understanding of the content of the present invention. Therefore, the examples given do not limit the protection scope of the present invention.
[0011] A construction progress management method based on the combination of real-scene images and information models includes the following steps: S1: Use drones to regularly film and monitor the physical progress of the construction site, fully control the progress of the construction site, form a real-life image of the construction site, and use drone-mounted cameras for aerial photography. The video images can be transmitted to the back-end management platform in real time through wireless modules: Project management personnel regularly use drones to collect real-life conditions such as the project progress, construction site layout, road utilization, and the location of large construction machinery, and transmit them to the digital construction site platform of the project department's smart center to form a real-life image of the construction site.
[0012] S2: Establish a 3D model of the project progress and use SketchUp to establish the project progress model. Project managers use SketchUp to establish a 3D BIM information model of the project construction progress, site layout, and mechanical equipment relocation.
[0013] S3: Compare the real-life image with the three-dimensional model to determine the construction progress and adjust resource allocation. In the digital intelligence center of the project department, use the drone's camera function to shoot the on-site construction situation according to a certain schedule and identify the current progress of the site. By comparing the BIM information model at the same time point, determine the construction progress of the project, and appropriately adjust resources such as machinery and equipment and labor allocation to optimize the on-site construction progress.
[0014] S4: Through the three-dimensional model combined with real-life images, the plane resources are comprehensively integrated to maximize the use of limited space. By comparing the real scene of the construction site with the BIM progress model, the plane resources can be fully coordinated and integrated to realize the concept of maximizing the use of limited space. According to the progress plan and the image of the project stage, combined with the site use requirements, the plane layout is dynamically adjusted using construction simulation. The on-site road traffic is orderly and smooth; the work surface is neat and orderly, the material stacking is reasonable, and the efficiency of mechanical resources is maximized. For example: the road is not smooth, resulting in the inability to transport construction materials to the installation site; the unreasonable layout of the steel bar site results in the need for secondary transportation of semi-finished products, which affects the construction progress, etc. Through the construction progress management method based on the combination of real-life images and information models of the present invention, project managers can instantly grasp the overall progress and resource allocation of the construction site, providing information guarantee for the smooth performance of the project. By applying a construction progress management method based on the combination of real-life images and information models at the construction site, the project site management level can be effectively improved and the overall construction progress management efficiency of the project can be ensured. The use of this construction progress management system can improve the project progress management level. The progress management work is transformed from passive management after the event to active management before the event. With the application of the Internet of Things and big data technology, it is possible to actively identify specific accidents and conduct active early warnings, and kill the delay in construction progress in the bud. At the same time, it can effectively control human resource input, machinery configuration and construction site layout, ensure the overall effect of construction site progress management, effectively prevent safety accidents, improve construction quality and safety, avoid increased investment costs, create more economic benefits for enterprises, and create high-quality and safe construction projects.
[0015] The above description is only a preferred feasible embodiment of the present invention, and does not limit the scope of rights of the present invention. All equivalent changes made using the contents of the present specification and its drawings are included in the scope of rights of the present invention.
Claims
1. A construction progress management method based on the combination of real-scene images and information models, characterized in that: The steps include: S1: Use drones to regularly photograph and monitor the physical progress of the construction site, fully control the progress of the construction site, and form a real-life image of the construction site; S2: Establish a three-dimensional model of the project progress; S3: Compare the real-life image with the 3D model to determine the construction progress and adjust resource allocation; S4: Through the combination of three-dimensional models and real-life images, planar resources are integrated to maximize the use of limited space.