Construction management system

By introducing a portable smart construction site digital command and control center into the construction management system, integrating management and control components and combining fixed and mobile monitoring components, the problem of low hardware reuse rate is solved, and efficient resource reuse and cost reduction are achieved.

CN224679207UActive Publication Date: 2026-08-25BEIJING ZHONGLIU DIGITAL IND MANAGEMENT CO LTD +1
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Patent Information

Application Number
CN202521773524.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-20
Publication Date
2026-08-25
Estimated Expiration
2035-08-20

AI Technical Summary

Technical Problem

The existing construction management system has a low hardware reuse rate, resulting in wasted resources.

Method used

Design a portable smart construction site digital command and control cabin, integrating management and control components into the portable cabin, supporting overall relocation, and combining fixed and mobile on-site monitoring components to achieve reuse in multiple sites.

Benefits of technology

It improved the reuse rate of hardware equipment, reduced production management costs, and achieved efficient reuse of resources.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application relates to a construction management system, including a portable smart construction site digital command and control cabin and at least one fixed on-site monitoring component. The portable smart construction site digital command and control cabin includes a cabin body and a management and control component installed within the cabin body. The cabin body can be migrated as a whole. The fixed on-site monitoring component includes a frame and an information acquisition module installed on the frame body. The information acquisition module communicates with the management and control component. The frame body includes at least one support leg, and an installation component is provided at the lower end of the support leg. The installation component includes a support member, a positioning plate, and a fixing member. The upper end of the support member is hinged to the support leg, and the lower end of the support member is provided with a first support surface. One end of the positioning plate is sleeved on the support member. The fixing member is located at the end of the positioning plate away from the support member. A fixing hole is provided on the positioning plate. The fixing hole is elongated and can move along the length of the fixing hole. It is suitable for switching between multiple construction sites.
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Description

Technical Field

[0001] This application belongs to the field of construction management technology, and specifically relates to a construction management system. Background Technology

[0002] A construction management system encompasses a comprehensive oversight of all construction processes, including but not limited to construction process control systems, construction safety and environmental monitoring systems, construction safety management systems, personnel management systems, and dispatch systems. Typically, it consists of a central control room system, a display system, and on-site data acquisition equipment. With the completion of the construction project, much of this hardware is discarded, with only a small amount reusable, resulting in low hardware reuse rates and wasted resources. Utility Model Content

[0003] Based on the aforementioned technical needs, this application provides a construction management system to solve the technical problems of low hardware reuse rate and resource waste in existing construction management systems.

[0004] To achieve the above objectives, the technical solution of this application is as follows: A construction management system includes a portable smart construction site digital command and control cabin and at least one fixed on-site monitoring component. The portable smart construction site digital command and control cabin includes a cabin body and a management and control component disposed within the cabin body. The cabin body can be moved as a whole. The fixed on-site monitoring component includes a frame and an information acquisition module disposed on the frame body. The information acquisition module communicates with the management and control component. The frame body includes at least one support leg. An installation component is disposed at the lower end of the support leg. The installation component includes a support member, a positioning plate, and a fixing member. The upper end of the support member is hinged to the support leg. The lower end of the support member is provided with a first support surface. One end of the positioning plate is sleeved on the support member so that the positioning plate can rotate about the support member as an axis. The fixing member is disposed at the end of the positioning plate away from the support member. A fixing hole is formed on the positioning plate. The fixing hole is elongated and the fixing member can move along the length direction of the fixing hole.

[0005] Preferably, the system further includes a traction module, on which the cabin is mounted.

[0006] Preferably, the cabin is provided with a migration assistance component; or the cabin is provided with wheels.

[0007] Preferably, the management and control component includes at least one of a power module, a control module, a storage module, an auxiliary module, and a communication module.

[0008] Preferably, the cabin is also equipped with a main station monitoring component, which includes one or more of the following: a camera module, a temperature and humidity sensing module, a dust detection module, a wind detection module, an audible and visual early warning module, a light detection module, and a harmful gas detection module.

[0009] Preferably, the cabin is also equipped with a module lifting rod, and some of the main station monitoring components can be installed on the module lifting rod.

[0010] Preferably, a display module is provided on the cabin.

[0011] Preferably, it further includes at least one mobile on-site monitoring component, which includes a mobile carrier and an information acquisition module disposed on the mobile carrier. The mobile carrier is selected from at least one of a drone, a self-propelled robot, and a mechanical dog.

[0012] Preferably, it also includes at least one display component that communicates with the portable smart construction site digital command and control center.

[0013] By adopting the above technical solution, compared with the prior art, this application has at least the following beneficial effects: This application features a fully portable cabin that integrates miniaturized and compact management and control components. On one hand, this design allows for seamless switching between multiple construction sites. After completion at one site, the portable smart construction site digital command and control cabin can be moved entirely to the next site for reuse, effectively improving the reusability of hardware and resources. On the other hand, the miniaturized and compact design of the portable smart construction site digital command and control cabin facilitates centralized management and maintenance, reducing production and management costs. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the structure of a portable smart construction site digital command and control cabin in one embodiment.

[0015] Figure 2 This is a schematic diagram of the equipment connection relationship of a building construction management system in one embodiment.

[0016] Figure 3 This is a schematic diagram of a fixed field monitoring component in one embodiment.

[0017] Figure 4 for Figure 3 Enlarged view of part A in the middle.

[0018] The diagram shows: a mobile smart construction site digital command and control center 100, a cabin body 110, a management and control component 120, a migration auxiliary component 130, a main station monitoring component 140, a module lifting pole 150, a display module 160, a construction management system 10, a fixed on-site monitoring component 200, a frame 210, an information acquisition module 220, outriggers 211, an installation component 212, a support component 2121, a positioning plate 2122, a fixing component 2123, a first support surface 2124, a fixing hole 2125, and a display component 300. Detailed Implementation

[0019] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The technical solutions of this application will be further described below with reference to the accompanying drawings of the embodiments, and this application is not limited to the following specific implementation methods.

[0020] It should be understood that the same or similar reference numerals in the accompanying drawings of the embodiments correspond to the same or similar components. In the description of this application, it should be understood that if terms such as "upper," "lower," "inner," "outer," "left," "right," "front," "rear," "top," and "bottom" indicate directions or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, they are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the structure or component referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the terms describing positional relationships in the accompanying drawings are for illustrative purposes only and should not be construed as limitations on this patent. Those skilled in the art can understand the specific meaning of the above terms according to the specific circumstances.

[0021] The following is in conjunction with the appendix Figure 1 To be continued Figure 4 The present application will be further described in detail with reference to specific embodiments.

[0022] In one embodiment, a portable smart construction site digital command and control center 100 includes a cabin body 110 and a management and control component 120 disposed within the cabin body, wherein the cabin body 110 can be migrated as a whole.

[0023] In the specific implementation of this application, the core technical concept is to integrate the management and control components 120 that can be used in the construction process into a cabin 110 that can be moved as a whole. Therefore, after the construction at one construction site is completed, the entire movable smart construction site digital command and control cabin 100 can be moved to be used for the next newly built construction site. At the same time, the compact and miniaturized setting mode facilitates on-site layout.

[0024] The management and control component 120 may optionally include existing hardware facilities for monitoring, sensing, and communication suitable for construction sites. For example, the management and control component 120 may include at least one of a power module, a control module, a storage module, an auxiliary module, and a communication module.

[0025] The power module is used to provide power to other device modules, and may include batteries, circuits, and circuit devices such as converters for converting current to voltage, regulators for adjusting circuit current and voltage, relays, and protectors.

[0026] The control module is mainly used to implement management and control functions. It can be implemented through hardware or software. Possible control modules can be selected from microcontrollers and industrial control systems (ICS) (including but not limited to computer centralized control systems (CCS), distributed control systems (DCS), and fieldbus control systems (FCS)).

[0027] The storage module is mainly used to store construction information.

[0028] The communication module is mainly used to complete the information exchange with the host computer and the slave computer. For example, it can be a data transmission unit (DTU) including a router or switch.

[0029] The auxiliary modules are mainly used to maintain the stable operation of the portable smart construction site digital command and control cabin 100. These auxiliary modules may include temperature and humidity regulating components for regulating the temperature and humidity balance inside the cabin 110, power supply guarantee components (e.g., EPS emergency power supply), etc.

[0030] The cabin 110 can be moved as a whole, and the method of moving the whole can be any of the existing technology.

[0031] In one specific embodiment, the portable smart construction site digital command and control cabin further includes a traction module, on which the cabin body is mounted. These traction modules (not shown in the illustration) can be vehicles with traction capabilities, such as trucks. In another specific embodiment, the cabin body 110 is provided with a migration assistance component 130, which can be, for example, a hook enabling the cabin body 110 to be lifted by a crane, or a pallet enabling the cabin body 110 to be transported by a forklift or AGV. In yet another embodiment, the cabin body 110 is provided with wheels (not shown in the illustration), allowing the cabin body 110 to be towed or pushed by any form of traction device.

[0032] In some specific implementations, to enhance the functionality of the portable smart construction site digital command and control cabin, further save space, and facilitate installation, a main station monitoring component 140 is also provided on the cabin body 110. The main station monitoring component 140 includes one or more of the following: a camera module, a temperature and humidity sensing module, a dust detection module, a wind detection module, an audible and visual early warning module, a light detection module, and a harmful gas detection module.

[0033] Specifically, the camera module is used to acquire image information around the cabin 110, for example, it can be a monitoring device, a video recording device or a photography device.

[0034] The temperature and humidity sensing module is used to acquire temperature and humidity information around the cabin 110; the dust detection module is used to detect dust conditions around the cabin 110; the wind detection module is used to detect meteorological information such as wind direction and wind intensity near the cabin 110; the light detection module is used to acquire light information such as light intensity and ultraviolet intensity near the cabin 110; the harmful gas detection module is used to detect the content of harmful gases near the cabin 110; and the sound and light warning module is used to issue alarm information in the form of sound or light.

[0035] Preferably, the cabin 110 is also equipped with a module lifting rod 150, on which some of the main station monitoring components 140 can be mounted. For example, main station monitoring components 140 that require higher installation positions, such as camera modules, temperature and humidity sensing modules, dust detection modules, wind detection modules, light detection modules, and harmful gas detection modules, can be mounted on the module lifting rod 150. Of course, when the cabin 110 is being transported, the module lifting rod 150 is in a lowered state to reduce height occupation; when the cabin 110 is fixed in place, the module lifting rod 150 is in an extended state to allow the main station monitoring components 140 to effectively perform their functions.

[0036] In some specific embodiments, a display module 160 is provided on the cabin 110 to display necessary on-site information such as current construction status information and environmental factor information.

[0037] In another embodiment of this application, a construction management system 10 includes a portable smart construction site digital command and control cabin 100 as described above.

[0038] It should be noted that the portable smart construction site digital command and control center 100 mentioned in this application mainly includes relevant hardware equipment for the construction site. These portable smart construction site digital command and control centers 100 can be equipped with other hardware equipment according to actual needs to form a complete construction management system. For example, they can be equipped with entrance and exit detection devices to form an access control system; or they can be equipped with environmental detection devices to form a work environment detection system, etc.

[0039] In one specific embodiment, the construction management system 10 further includes at least one fixed on-site monitoring component 200. The on-site monitoring component 200 includes a frame 210 and an information acquisition module 220 installed on the frame 210. The information acquisition module 220 communicates with the management control component 120.

[0040] The fixed on-site monitoring component 200 is mainly used to monitor and detect the personnel, machinery, equipment, materials, and environmental conditions at various locations on the construction site, and to feed back the monitoring and detection information to the management and control component 120. The information acquisition module 220 can also be used to receive and execute instructions issued by the management and control component 120. In some embodiments, the information acquisition module 220 can be one or more of the following: a camera module, a temperature and humidity sensing module, a dust detection module, a wind detection module, a light detection module, a harmful gas detection module, and an audible and visual early warning module. The functions of the above modules are the same as described above and will not be repeated.

[0041] The frame 210 supports the information acquisition module 220 and can be a pole or a telescopic pole with lifting function. In one preferred embodiment, the frame 210 is configured as a triangular bracket for easy on-site installation and dismantling. Preferably, the triangular bracket is foldable for easy carrying. Preferably, each leg of the triangular bracket is telescopic for easy carrying.

[0042] In a preferred embodiment, to address the technical problem of inconvenient on-site installation caused by uneven ground or uneven level at the construction site, the frame 210 includes at least one support leg 211. The lower end of each support leg 211 is provided with an installation assembly 212. The installation assembly 212 includes a support member 2121, a positioning plate 2122, and a fixing member 2123. The upper end of the support member 2121 is connected to the support leg 211, and the lower end of the support member 2121 is provided with a first support surface 2124. One end of the positioning plate 2122 is sleeved on the support member 2121, allowing the positioning plate 2122 to rotate about the support member 2121 as an axis. The fixing member 2123 is located at the end of the positioning plate 2122 away from the support member 2121 to fix the positioning plate.

[0043] When installing the frame 210, first unfold the outriggers 211 and fix at least one of the support members 2121 so that at least one support surface 2124 is in stable contact with the mounting surface. At this time, the other support surfaces 2124 may not be in stable contact with the mounting surface. Then, rotate the positioning plate 2122 so that the support surface of the fixing member 2123 can be in stable contact with the mounting surface, or so that the fixing member 2123 can be securely fixed. Fix the fixing member 2123 to complete the installation of the frame 210. By setting a rotatable positioning plate 2122, the contact range between the outriggers 211 and the mounting surface is expanded, overcoming the problem of inconvenient installation caused by uneven mounting surfaces.

[0044] Preferably, the positioning plate 2122 has a fixing hole 2125, and the fixing member 2123 can move along the length or width of the fixing hole 2125 or in any direction to further expand the contact range between the fixing member 2123 and the ground, facilitating installation. For example, the fixing hole 2125 is elongated.

[0045] In some embodiments, the support member 2121 is hinged to the lower end of the leg 211.

[0046] In some preferred embodiments, the construction management system 10 further includes at least one mobile on-site monitoring component. The mobile on-site monitoring component includes a mobile carrier and an information acquisition module 220 mounted on the mobile carrier. The mobile carrier is selected from at least one of a drone, a self-propelled robot, or a robotic dog. In some usage scenarios, for example, when it is necessary to temporarily obtain information on construction dynamics, personnel dynamics, or environmental conditions at a certain location, this can be quickly achieved through the mobile on-site monitoring component, thereby compensating for the deficiency of the fixed on-site monitoring component 200, which, due to its fixed location, cannot accurately obtain information on construction dynamics, personnel dynamics, and environmental conditions at some construction locations.

[0047] In a preferred embodiment, the construction management system 10 further includes a display component 300, which communicates with the management control component 120. The display component 300 can be installed anywhere on the construction site. Preferably, the display component 300 is installed in the central control room so that construction workers can view the construction dynamics, personnel movements, or environmental conditions at the construction site at any time.

[0048] In a specific application scenario, the construction management system 10 includes a portable smart construction site digital command and control cabin 100, several fixed on-site monitoring components 200, at least one mobile on-site monitoring component, and at least one display component 300. The portable smart construction site digital command and control cabin 100 houses a power module, a control module, a storage module, a communication module, and auxiliary modules. Its main function is to acquire monitoring data from the various fixed and mobile on-site monitoring components 200, analyze and process the data, and generate visualization results. The display component 300 is used to present the visualization results. Generally, the portable smart construction site digital command and control cabin 100 is placed outdoors for easy transport. In this case, the portable smart construction site digital command and control cabin 100 should also include protective components, such as sunshades. The fixed on-site monitoring components 200 are distributed at necessary locations on the construction site; these locations are determined by the construction personnel and are not fixed. The fixed on-site monitoring component 200 is mainly used to monitor construction dynamics, personnel dynamics, environmental dynamics, and other information at the construction site, and feeds it back to the control module of the portable smart construction site digital command and control center 100 for information processing. The fixed on-site monitoring component 200 is also used to receive early warning information issued by the control module of the portable smart construction site digital command and control center 100 and issue early warning information with sound, fire, and light signals. The mobile on-site monitoring component is generally placed near the portable smart construction site digital command and control center 100 or distributed anywhere on the construction site. When it is necessary to further confirm the construction site status, the mobile on-site monitoring component responds to the instructions of the control component of the portable smart construction site digital command and control center 100, reaches the designated location, and obtains accurate construction status information at the designated location, providing support for the accurate judgment of the control component of the portable smart construction site digital command and control center 100.

[0049] Obviously, the above embodiments of this application are merely examples for clearly illustrating this application, and are not intended to limit the implementation of this application. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A construction management system, characterized in that, The system includes a portable smart construction site digital command and control cabin and at least one fixed on-site monitoring component. The portable smart construction site digital command and control cabin includes a cabin body and a management and control component installed within the cabin body. The cabin body can be moved as a whole. The fixed on-site monitoring component includes a frame and an information acquisition module installed on the frame body. The information acquisition module communicates with the management and control component. The frame body includes at least one support leg. The lower end of the support leg is provided with an installation component. The installation component includes a support member, a positioning plate, and a fixing member. The upper end of the support member is hinged to the support leg. The lower end of the support member is provided with a first support surface. One end of the positioning plate is sleeved on the support member so that the positioning plate can rotate about the support member as an axis. The fixing member is located at the end of the positioning plate away from the support member. The positioning plate has a fixing hole, which is elongated and allows the fixing member to move along the length of the fixing hole.

2. The construction management system as described in claim 1, characterized in that, It also includes a traction module, on which the cabin is mounted.

3. A construction management system as described in claim 1, characterized in that, The cabin is equipped with a migration assistance component; or the cabin is equipped with wheels.

4. A construction management system as described in claim 1, characterized in that, The management and control components include at least one of a power module, a control module, a storage module, an auxiliary module, and a communication module.

5. A construction management system as described in claim 1, characterized in that, The cabin is also equipped with a main station monitoring component, which includes one or more of the following: a camera module, a temperature and humidity sensing module, a dust detection module, a wind detection module, an audible and visual early warning module, a light detection module, and a harmful gas detection module.

6. A construction management system as described in claim 5, characterized in that, The cabin is also equipped with a module lifting rod, and some of the main station monitoring components can be installed on the module lifting rod.

7. A construction management system as described in claim 1, characterized in that, A display module is installed on the cabin.

8. The construction management system as described in claim 1, characterized in that, It also includes at least one mobile on-site monitoring component, which includes a mobile carrier and an information acquisition module mounted on the mobile carrier. The mobile carrier is selected from at least one of a drone, a self-propelled robot, and a mechanical dog.

9. The construction management system as described in claim 1, characterized in that, It also includes at least one display component that communicates with the portable smart construction site digital command and control center.