An information management method and system for an intelligent construction site
By dividing the area and marking the construction machinery information in the smart construction site, generating the operation plan and conducting real-time monitoring, the problem of chaotic construction machinery management in the smart construction site is solved, and the overall monitoring and management of all construction machinery is achieved.
Patent Information
- Application Number
- CN202210422286.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-04-21
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2042-04-21
AI Technical Summary
During the construction of smart construction sites, it is difficult to achieve overall planning and management of all construction machinery, resulting in relatively chaotic management.
By extracting the electronic map information of the smart construction site, the area is divided, the basic information of the construction machinery is obtained and marked, the engineering data and operation plan are generated, and the normal operation and movement status of the construction machinery is judged through real-time operation detection and motion route information monitoring.
The monitoring and management of all construction machinery on smart construction sites has been realized, the level of intelligence has been improved, and the normal operation and mobile status of construction machinery has been ensured.
Smart Images

Figure CN114757646B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of intelligent construction site management, and particularly relates to an intelligent construction site information management method and system. Background Art
[0002] An intelligent construction site is the industrial embodiment of the concept of the intelligent planet in the engineering field and is a brand-new concept for the whole life cycle management of projects. It mainly refers to using information technology means to accurately design and simulate the construction of a project through a three-dimensional design platform, establishing an information-based ecosystem for construction projects with interconnected collaboration, intelligent production, and scientific management around the construction process management, and mining and analyzing this data with the engineering information collected by the Internet of Things in a virtual reality environment to provide process trend prediction and expert preplans, realizing visual intelligent management of engineering construction, so as to improve the informatization level of project management, and gradually realizing green construction and ecological construction.
[0003] More high-tech technologies such as artificial intelligence, sensing technology, and virtual reality are implanted into various objects such as buildings, machinery, personnel wearing facilities, and site access checkpoints in an intelligent construction site, and are generally interconnected to form the "Internet of Things", which is then integrated with the "Internet" to realize the integration of engineering management relationships and the engineering construction site. The core of an intelligent construction site is to improve the way of interaction between various related organizations and personnel positions in the project in a "smarter" way, so as to improve the clarity, efficiency, flexibility, and response speed of the interaction.
[0004] During the construction process of an intelligent construction site, a lot of construction machinery is needed, such as: cement mixers, transport vehicles, elevators, and cranes, etc. In daily use, the start and stop and management of various equipment are usually the responsibility of the users, and it is difficult to achieve overall planning of all the machinery in the entire intelligent construction site, and the management is relatively chaotic. Summary of the Invention
[0005] The technical problem to be solved by the present invention is to provide an intelligent construction site information management method and system to improve the intelligent level.
[0006] To solve the above technical problem, the present invention provides an intelligent construction site information management method, including:
[0007] Extracting the electronic map information of the intelligent construction site, dividing the construction site into regions, and generating region labels;
[0008] Obtaining the basic information of the construction machinery inside the intelligent construction site, and marking the construction machinery to generate engineering data, where the engineering data includes the position information, type, and number of the construction machinery, and the number is used to distinguish different individual construction machinery of the same type;
[0009] Obtain the production plan information of the intelligent construction site, derive the usage information of the construction machinery according to the production plan information, and generate an operation schedule;
[0010] Obtain the operation information of the construction machinery, compare it with the operation schedule, and determine whether the construction machinery is in a normal operation state.
[0011] Further, the position information of the construction machinery is the area label of the construction area where the construction machinery is located, and for the construction machinery that needs to move during the work process, its position information includes the area labels of all areas passed through by the construction machinery during the work process.
[0012] Further, the method further includes:
[0013] Obtain the movement route information of the construction machinery;
[0014] Analyze the movement route information of the construction machinery to obtain the construction areas passed through by the construction machinery during the movement process;
[0015] Extract the area labels of the construction areas passed through by the construction machinery during the movement process, compare the area labels with the engineering data of the construction machinery, and determine whether the construction machinery is in a normal movement state.
[0016] Further, the types of the construction machinery include immovable, locally adjustable, locally passable, and fully passable. The immovable means that the position of the construction machinery cannot be changed; the locally adjustable means that the construction machinery can move within the construction area where it is located; the locally passable means that the construction machinery can move within multiple construction areas but does not include all construction areas; the fully passable means that the construction machinery can move within all construction areas.
[0017] Further, when dealing with the production outside the intelligent construction site plan, the following steps are specifically executed:
[0018] Obtain the temporary production plan information, where the temporary production plan information includes the construction area for executing the temporary production plan and the engineering data of the construction machinery;
[0019] Generate a temporary work schedule;
[0020] Obtain the operation status and movement route information of the construction machinery, and determine whether the construction machinery is in a normal operation state and a normal movement state.
[0021] Further, after extracting the movement route information of the construction machinery, if the type of the construction machinery is local passage and the construction area passed by it contains a construction area not recorded in the temporary production plan information, then the abnormal movement state of the construction machinery is determined.
[0022] When it is necessary to change the production plan of the smart construction site, the steps include:
[0023] Extract the updated production plan information and generate an operation schedule;
[0024] Replace the original operation schedule with the updated operation schedule.
[0025] The present invention also provides a smart construction site information management system, including:
[0026] A regional division module that divides the construction site area according to the electronic map information of the smart construction site;
[0027] A marking module that marks the construction machinery according to the basic information of the construction machinery inside the smart construction site and generates engineering data;
[0028] A production plan module that obtains the usage information of the construction machinery according to the production plan information of the smart construction site and generates an operation schedule;
[0029] An operation detection module that compares with the operation schedule according to the operation information of the construction machinery to determine whether the construction machinery is in a normal operation state.
[0030] Further, the system further includes a movement detection module, and the movement detection module is used to obtain the movement route information of the construction machinery and determine whether the construction machinery is in a normal moving state according to the movement route data.
[0031] Further, the system further includes a temporary production module, and the temporary production module is used to receive a temporary production plan and generate a temporary work schedule according to the temporary production plan.
[0032] Implementing the present invention has the following beneficial effects: The present invention divides the intelligent construction site into regions, marks and numbers different construction machinery in the construction site, analyzes and obtains the usage of different construction machinery in the construction site according to the actual production plan of the intelligent construction site, and then judges whether the construction machinery is in a normal operating state according to real-time operation detection; and by obtaining the movement route information of the construction machinery, the project can be further monitored, and in combination with the divided construction site areas and the preset construction machinery types, it can be determined whether the construction machinery is in a normal moving state. Compared with the conventional control method, the present invention can monitor all construction machinery in the construction site. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained according to these drawings.
[0034] Figure 1 It is a flowchart of an intelligent construction site information management method according to Embodiment 1 of the present invention.
[0035] Figure 2 It is another flowchart of an intelligent construction site information management method according to Embodiment 1 of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0036] The following descriptions of the embodiments are with reference to the drawings, which are used to illustrate specific embodiments in which the present invention can be implemented.
[0037] The present invention divides the intelligent construction site into regions, marks and numbers different construction machinery in the construction site, analyzes and obtains the usage of different construction machinery in the construction site according to the actual production plan of the intelligent construction site, and then judges whether the construction machinery is in a normal operating state according to real-time operation detection; and by obtaining the movement route information of the construction machinery, the project can be further monitored, and in combination with the divided construction site areas and the preset construction machinery types, it can be determined whether the construction machinery is in a normal moving state.
[0038] The following describes the specific implementation of the present invention in detail in combination with specific embodiments:
[0039] Please refer to Figure 1As shown in the figure, Embodiment 1 of the present invention provides a method for intelligent construction site informatization management, which is applied to devices that can be connected to the Internet in real time. Such devices can be communication devices such as mobile phones, tablets, and computers, and no specific limitations are set in this embodiment. The intelligent construction site informatization management method includes:
[0040] Step S100: Extract the electronic map information of the intelligent construction site, divide the construction site into regions, and generate region labels.
[0041] Step S200: Obtain the basic information of the construction machinery inside the intelligent construction site, mark the construction machinery, and generate engineering data. The engineering data includes the position information of the construction machinery, the type and number of the construction machinery, and the number is used to distinguish different individual construction machinery of the same type.
[0042] Step S300: Obtain the production plan information of the intelligent construction site, obtain the usage information of the construction machinery according to the production plan information, and generate an operation schedule.
[0043] Step S400: Obtain the operation information of the construction machinery, compare it with the operation schedule, and judge whether the construction machinery is in a normal operation state.
[0044] In one case of this embodiment, the position information of the construction machinery is the region label of the construction area where the construction machinery is located. For construction machinery that needs to move during the work process, its position information includes the region labels of all regions passed through by the construction machinery during the work process.
[0045] In addition, as Figure 2 shown in the figure, in another preferred embodiment of the present invention, the method further includes:
[0046] Step S500: Obtain the movement route information of the construction machinery.
[0047] Step S600: Analyze the movement route information of the construction machinery to obtain the construction areas passed through by the construction machinery during the movement process.
[0048] Step S700: Extract the region labels of the construction areas passed through by the construction machinery during the movement process, compare the region labels with the engineering data of the construction machinery, and judge whether the construction machinery is in a normal moving state.
[0049] It can be understood that in another case of this embodiment, the types of construction machinery include immovable, partially adjustable, partially passable, and fully passable. The immovable means that the position of the construction machinery cannot be changed; the partially adjustable means that the construction machinery can move within the work area where it is located; the partially passable means that the construction machinery can move within multiple work areas, but does not include all work areas; the fully passable means that the construction machinery can move within all work areas.
[0050] In another case of this embodiment, when dealing with production outside the smart construction site plan, the following steps are specifically executed:
[0051] Step S101, obtain temporary production plan information, where the temporary production plan information includes the work area for executing the temporary production plan and the engineering data of the construction machinery;
[0052] Step S102, generate a temporary work schedule;
[0053] Step S103, obtain the operating conditions and movement route information of the construction machinery, and determine whether the construction machinery is in a normal operating state and a normal moving state.
[0054] In one preferred embodiment of the present invention, after extracting the movement route information of the construction machinery, if the type of the construction machinery is partially passable and the work areas it passes through include work areas not recorded in the temporary production plan information, then the abnormal movement state of the construction machinery is determined.
[0055] In one case of this embodiment, when it is necessary to change the production plan of the smart construction site, the steps include:
[0056] Extract the updated production plan information and generate an operation schedule;
[0057] Replace the original operation schedule with the updated operation schedule.
[0058] Corresponding to a smart construction site information management method in Embodiment 1 of the present invention, Embodiment 2 of the present invention provides a smart construction site information management system, including:
[0059] A regional division module that divides the work area of the construction site according to the electronic map information of the smart construction site;
[0060] A marking module that marks the construction machinery according to the basic information of the construction machinery inside the smart construction site and generates engineering data;
[0061] The production planning module obtains the usage information of the construction machinery according to the production plan information of the intelligent construction site and generates an operation schedule;
[0062] The operation detection module compares the operation information of the construction machinery with the operation schedule to determine whether the construction machinery is in a normal operation state.
[0063] It should be noted that in another case of this embodiment, the system further includes a motion detection module, which is used to obtain the motion route information of the construction machinery and judge whether the construction machinery is in a normal moving state according to the motion route data.
[0064] In another preferred embodiment of the present invention, the system further includes a temporary production module, which is used to receive a temporary production plan and generate a temporary work schedule according to the temporary production plan.
[0065] Regarding the working principle and process of an intelligent construction site information management system in this embodiment, please refer to the description of Embodiment 1 of the present invention above, and details will not be repeated here.
[0066] As can be seen from the above description, compared with the prior art, the beneficial effects of the present invention are as follows: The present invention divides the intelligent construction site into regions, marks and numbers different construction machinery in the construction site, analyzes and obtains the usage of different construction machinery in the construction site according to the actual production plan of the intelligent construction site, and then judges whether the construction machinery is in a normal operation state according to real-time operation detection; and by obtaining the motion route information of the construction machinery, the project can be further monitored, and combined with the divided construction site areas and the pre-set construction machinery types, it can be determined whether the construction machinery is in a normal moving state. Compared with the conventional management and control methods, the present invention can monitor all construction machinery in the construction site.
[0067] The above-disclosed are only the preferred embodiments of the present invention. Of course, the scope of the rights of the present invention cannot be limited by this. Therefore, equivalent changes made according to the claims of the present invention still fall within the scope covered by the present invention.
Claims
1. An information management method for intelligent construction sites, characterized in that, it includes: Extract the electronic map information of the intelligent construction site, divide the construction site into areas, and generate area labels; Obtain the basic information of the construction machinery inside the intelligent construction site, and mark the construction machinery to generate engineering data. The engineering data includes the location information of the construction machinery, the type and number of the construction machinery. The number is used to distinguish different individuals of the same type of construction machinery; Obtain the production plan information of the intelligent construction site, obtain the usage information of the construction machinery according to the production plan information, and generate an operation schedule; Obtain the operation information of the construction machinery, compare it with the operation schedule, and judge whether the construction machinery is in a normal operation state; The method further includes: Obtain the movement route information of the construction machinery; Analyze the movement route information of the construction machinery to obtain the construction site areas passed by the construction machinery during movement; Extract the area labels of the construction site areas passed by the construction machinery during movement, compare the area labels with the engineering data of the construction machinery, and judge whether the construction machinery is in a normal movement state.
2. The information management method for intelligent construction sites according to claim 1, characterized in that, The location information of the construction machinery is the area label of the construction site area where the construction machinery is located. For construction machinery that needs to move during the work process, its location information includes the area labels of all areas passed by the construction machinery during the work process.
3. The information management method for intelligent construction sites according to claim 2, characterized in that, The types of the construction machinery include immovable, locally adjustable, locally passable, and fully passable. The immovable means that the location of the construction machinery cannot be changed; the locally adjustable means that the construction machinery can move within the construction site area where it is located; the locally passable means that the construction machinery can move within multiple construction site areas, but does not include all construction site areas; the fully passable means that the construction machinery can move within all construction site areas.
4. The information management method for intelligent construction sites according to claim 3, characterized in that, When dealing with production outside the intelligent construction site plan, the following steps are specifically executed: Obtain temporary production plan information, where the temporary production plan information includes the construction site area for executing the temporary production plan and the engineering data of the construction machinery; Generate a temporary work schedule; Obtain the operation status and movement route information of the construction machinery, and judge whether the construction machinery is in a normal operation state and a normal movement state.
5. The information management method for intelligent construction sites according to claim 4, characterized in that, After extracting the movement route information of the construction machinery, if the type of the construction machinery is locally passable and the construction site areas passed by it include construction site areas not recorded in the temporary production plan information, then judge the abnormal movement state of the construction machinery.
6. The information management method for intelligent construction sites according to claim 1, characterized in that, When it is necessary to change the production plan of the intelligent construction site, the steps include: Extract the updated production plan information and generate an operation schedule; Replace the original operation schedule with the updated one.
7. An information management system for an intelligent construction site, characterized in that, it includes: A regional division module that divides the construction site area according to the electronic map information of the intelligent construction site; A marking module that marks the construction machinery according to the basic information of the construction machinery inside the intelligent construction site and generates engineering data; A production plan module that obtains the usage information of the construction machinery according to the production plan information of the intelligent construction site and generates an operation schedule; An operation detection module that judges whether the construction machinery is in a normal operation state according to the operation information of the construction machinery and compares it with the operation schedule; The system further includes: A motion detection module for obtaining the motion route information of the construction machinery, analyzing the motion route information of the construction machinery, obtaining the construction site areas passed by the construction machinery during the motion process, extracting the area labels of the construction site areas passed by the construction machinery during the motion process, comparing the area labels with the engineering data of the construction machinery, and judging whether the construction machinery is in a normal moving state.
8. The information management system for an intelligent construction site according to claim 7, characterized in that, The system further includes a temporary production module, and the temporary production module is used to receive a temporary production plan and generate a temporary work schedule according to the temporary production plan.
Citation Information
Patent Citations
Intelligent chemical site data management method and system
CN113408142A