CN213123084U - House building engineering's construction management platform system - Google Patents

House building engineering's construction management platform system Download PDF

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Publication number
CN213123084U
CN213123084U CN202021672968.6U CN202021672968U CN213123084U CN 213123084 U CN213123084 U CN 213123084U CN 202021672968 U CN202021672968 U CN 202021672968U CN 213123084 U CN213123084 U CN 213123084U
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module
management
charging
data processing
mobile terminal
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CN202021672968.6U
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徐克娜
王�琦
王龙
王炳奎
吴瑞龙
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Fujian Dexing Construction Engineering Co ltd
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Fujian Dexing Construction Engineering Co ltd
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Abstract

The utility model provides a construction management platform system of house building engineering, which comprises a remote management terminal, a management mobile terminal and a user mobile terminal; the remote management terminal is connected with the management removal end, and the management removal end includes fuselage, base and locomotive portion, and the locomotive portion front side is provided with touch screen and camera, and the fuselage front side is provided with the cavity, and fixed mounting has the access cabinet that charges in the cavity, and it has a plurality of users to remove the end to charge to peg graft in the access cabinet, installs control mechanism in the fuselage, and the base bottom is provided with the universal wheel. The utility model discloses well management removes the end and for arranging the mobilizable intelligent robot at the job site, can carry out the operation of checking card of working on duty through touch-control screen and camera to take out the user in the access cabinet that charges and remove the end as communication tool, remove the data interaction between end and the user removal end through remote management terminal, management, the convenience is managed in a flexible way job site and personnel, and the data sharing in the work progress is also faster safety.

Description

House building engineering's construction management platform system
Technical Field
The utility model relates to a construction technical field, specifically speaking relates to a housing construction engineering's construction management platform system.
Background
The construction management of the existing house building engineering is to arrange a fence at a construction site, arrange a card swiping machine or other card punching equipment at a gate, store personnel data, progress data and the like of general construction management in a personal computer, slow the timeliness of data sharing in the construction process and inflexible personnel management.
SUMMERY OF THE UTILITY MODEL
In order to solve the defects of the prior art, the utility model aims to provide a construction management platform system for house building engineering to overcome the defects in the prior art.
In order to achieve the above object, the utility model provides a construction management platform system of housing construction engineering, which comprises a remote management terminal, a management mobile terminal and a user mobile terminal; the management mobile terminal comprises a machine body, a machine base and a machine head part, wherein a touch screen and a camera are arranged on the front side of the machine head part, a cavity is formed in the front side of the machine body, a charging storage cabinet is fixedly installed in the cavity, a control mechanism is installed in the machine body, and universal wheels are arranged at the bottom of the machine base; the control mechanism comprises a main controller, a power module, a driving module, a data processing module, a first wireless transceiving module and a first positioning module, wherein the main controller is respectively electrically connected and in signal connection with the power module, the driving module, the data processing module, the first wireless transceiving module and the first positioning module; the touch screen is electrically connected and in signal connection with the main controller and the data processing module, the main controller is awakened through the touch screen and an action instruction is input into the main controller, and the data processing module provides a display interface for the touch screen; the camera is electrically connected and in signal connection with the driving module and the data processing module, the driving module drives the camera to acquire a video stream so as to acquire a face recognition image or a construction site image, and the camera transmits the face recognition image or the construction site image to the data processing module for data processing; the charging access cabinet is respectively electrically connected and signal-connected with the power supply module, the driving module and the data processing module, a plurality of user moving ends are inserted in the charging access cabinet, the power supply module supplies power for the charging access cabinet to charge the user moving ends, the driving module drives the charging access cabinet to push out or lock the user moving ends, the data processing module manages and records the use conditions of the plurality of user moving ends inserted in the charging access cabinet, and the data processing module performs data interaction with each user moving end; the universal wheel is electrically connected and in signal connection with the driving module, and the driving module drives the universal wheel to control and manage the movement of the moving end; the remote management terminal is connected with the management mobile terminal through a first wireless transceiver module, and the first wireless transceiver module is respectively electrically connected with the main controller, the data processing module and the first positioning module and is in signal connection with the main controller, the data processing module and the first positioning module, so that the management mobile terminal and the remote management terminal can perform data interaction.
According to the technical scheme, the management mobile terminal is a movable intelligent robot arranged on a construction site, the card punching operation of working and working can be carried out through the touch screen and the camera, the user mobile terminal in the charging access cabinet is taken out to serve as a communication tool, and the user mobile terminal can be associated with the management mobile terminal to form a regional communication network; the management mobile terminal and the remote management terminal establish data interaction, information such as construction completion degree, constructors and construction material conditions can be inquired through the management mobile terminal on a construction site, the construction site and the constructors can be managed flexibly, and data sharing in the construction process is faster and safer.
As to house building engineering's construction management platform system further explain, preferably, the cavity is opened or is closed through first electrically operated gate, and first electrically operated gate is connected and signal connection with the drive module electricity, and the first electrically operated gate of drive module drive is opened or is closed.
Through above-mentioned technical scheme, remove the end in order to protect the user through setting up first electrically operated gate, after the success of checking the card, first electrically operated gate is opened, and constructor can take away the user and remove the end as communication tool, perhaps removes the end as and manages and establish data interaction, conveniently manages the job site.
As to house building engineering's construction management platform system further explain, preferably, the rear side of fuselage is provided with the second electrically operated gate so that the fuselage is opened or is closed, the second electrically operated gate is connected with the drive module electricity and signal connection, drive module drive second electrically operated gate is opened or is closed.
Through the technical scheme, maintenance personnel can carry out daily maintenance to the control mechanism in the fuselage through setting up the second electrically operated gate, can start the second electrically operated gate to open for the people who has the authority through remote management terminal setting.
As right house building engineering's construction management platform system further explain, preferably, the front side of base is provided with laser radar, laser radar is connected and signal connection with drive module, data processing module electricity, drive module drives laser radar and opens in the drive universal wheel, data processing module receives the detection signal that comes from laser radar and handles the detection signal, and then main control unit control drive module adjusts the walking direction of universal wheel.
Through above-mentioned technical scheme, set up laser radar and remove the end walking in-process and can avoid the management to remove the end and produce the collision with the foreign object in the management, the management of being convenient for removes the end and removes nimble the removal, is applicable to the management and removes the end and regularly shoots the construction scene image and pass back to the remote management terminal to and the management removes the end location and look for the condition that a certain user removed the end.
As a further explanation of the construction management platform system for building construction engineering of the present invention, preferably, the control mechanism further includes a charging module, a charging induction coil is disposed at the rear side of the base, and the management moving end generates electromagnetic induction with the charging pile through the charging induction coil; the charging induction coil is electrically connected with the charging module and is in signal connection with the power module, the charging module is electrically connected with the power module and is in signal connection with the power module, and the charging module receives the electromagnetic signal of the charging induction coil and generates current to charge the power module.
Through above-mentioned technical scheme, set up the module of charging and be convenient for carry out wireless charging to the management mobile terminal.
The utility model has the advantages as follows: the utility model discloses a management mobile terminal is the mobilizable intelligent robot who arranges in the job site, can carry out the operation of checking card of going to work or leaving work through touch-control screen and camera to take out the user mobile terminal in the storage cabinet of charging as communication tool, the user mobile terminal can establish the relation with the management mobile terminal, forms the communication network of a region; the management mobile terminal and the remote management terminal establish data interaction, information such as construction completion degree, constructors and construction material conditions can be inquired through the management mobile terminal on a construction site, the construction site and the constructors can be managed flexibly, and data sharing in the construction process is faster and safer.
Drawings
Fig. 1 is a schematic structural view of the construction management platform system for housing construction engineering of the present invention.
Fig. 2 is a schematic diagram of the construction management platform system of the building construction project of the present invention.
Detailed Description
In order to further understand the structure, characteristics and other objects of the present invention, the following detailed description is given with reference to the accompanying preferred embodiments, which are only used to illustrate the technical solution of the present invention and are not intended to limit the present invention.
As shown in fig. 1 and 2, a construction management platform system for a housing construction project includes a remote management terminal 1, a management mobile terminal 2, and a user mobile terminal 3; one remote management terminal 1 can be connected to a plurality of management mobile terminals 2, and each management mobile terminal 2 can be connected to a plurality of user mobile terminals 3.
As shown in fig. 1, the management mobile terminal 2 includes a body 21, a base 22 and a head part 23, a touch screen 24 and a camera 25 are arranged on the front side of the head part 23, a cavity is arranged on the front side of the body 21, a charging access cabinet 26 is fixedly mounted in the cavity, a plurality of user mobile terminals 3 are inserted in the charging access cabinet 26, a control mechanism 29 is mounted in the body 21, and universal wheels 210 are arranged at the bottom of the base 22. The management mobile terminal 2 is a mobile intelligent robot arranged on a construction site, the card punching operation of working and working can be carried out through the touch screen 24 and the camera 25, the user mobile terminal 3 in the charging access cabinet 26 is taken out to be used as a communication tool, the user mobile terminal 3 can be associated with the management mobile terminal 2 to carry out data interaction, an area communication network is formed, the user mobile terminal 3 can be set as a machine with the functions of talkback, display and positioning, the talkback function can be realized among the user mobile terminals 3 in one communication network, the management mobile terminal 2 can find the position of a certain user mobile terminal 3 according to the positioning automatic walking, and the user mobile terminal 3 can also display the positioning of the management mobile terminal 2 and find the management mobile terminal 2 without being in a fixed place; the management mobile terminal 2 and the remote management terminal 1 establish data interaction, and information such as construction completion, constructors and construction material conditions can be inquired through the management mobile terminal 2 on a construction site, so that the construction site can be managed and protected conveniently.
The management mobile terminal 2 implements functions such as card punching through the control mechanism 29, specifically, as shown in fig. 2, the control mechanism 29 includes a main controller 291, a power module 292, a driving module 294, a data processing module 295, a first wireless transceiver module 296, and a first positioning module 297, and the main controller 291 is electrically connected and signal-connected to the power module 292, the driving module 294, the data processing module 295, the first wireless transceiver module 296, and the first positioning module 297, respectively.
The touch screen 24 is electrically connected and signal-connected with the main controller 291 and the data processing module 295, so that the touch screen 24 wakes up the main controller 291 and inputs an action instruction to the main controller 291, and the data processing module 295 provides a display interface for the touch screen 24.
The camera 25 is electrically connected and in signal connection with the driving module 294 and the data processing module 295, so that the driving module 294 drives the camera 25 to acquire a video stream to acquire a face recognition image or a construction site image, and the camera 25 transmits the face recognition image or the construction site image to the data processing module 295 for data processing.
The charging access cabinet 26 is electrically connected and signal-connected with the power module 292, the driving module 294 and the data processing module 295 respectively, a plurality of user mobile terminals 3 are inserted in the charging access cabinet 26, the power module 292 provides power for the charging access cabinet 26 to charge the user mobile terminals 3, the driving module 294 drives the charging access cabinet 26 to push out or lock the user mobile terminals 3, the data processing module 295 manages and records the use conditions of the plurality of user mobile terminals 3 inserted in the charging access cabinet 26, and the data processing module 295 performs data interaction with each user mobile terminal 3. The access cabinet that charges refers to the precious structure of sharing that charges among the prior art.
The universal wheel 210 is electrically and signally connected to the driving module 294, and the driving module 294 drives the universal wheel 210 to control and manage the movement of the mobile terminal 2.
The remote management terminal 1 is connected to the management mobile terminal 2 through the first wireless transceiver 296, and the first wireless transceiver 296 is electrically connected and signal-connected to the main controller 291, the data processing module 295, and the first positioning module 297, respectively, so that the management mobile terminal 2 and the remote management terminal 1 perform data interaction. The data processing module 295 has a memory, and dynamically stores the display interface of the touch screen 24, the face recognition image of the constructor, the usage and power of the user mobile terminal 3 in the charging access cabinet 26, and the data information acquired by the user mobile terminal 3, which are acquired by the remote management terminal 1. The data processing module 295 recognizes the face image of the constructor and feeds back the recognition result to the main controller 291, and the main controller 291 sends a signal to the driving module 294 to control the charging access cabinet 26 to push out the user mobile terminal 3.
As shown in fig. 1 and 2, preferably, the cavity in the main body 21 of the mobile terminal 2 is opened or closed by a first power door 27, the first power door 27 is electrically and signally connected to a driving module 294, and the driving module 294 drives the first power door 27 to open or close to protect the user mobile terminal 3.
As shown in fig. 1 and 2, preferably, a second power door 28 is further disposed at the rear side of the main body 21 to open or close the main body 21, the second power door 28 is electrically and signally connected to a driving module 294, and the driving module 294 drives the second power door 28 to open or close, so that a maintenance person can perform routine maintenance on the control mechanism 29 in the main body 21.
As shown in fig. 1 and 2, a laser radar 211 is disposed on the front side of the base 22, the laser radar 211 is electrically connected to a driving module 294, and a data processing module 295 is electrically connected to and signal-connected to the driving module 294, the driving module 294 drives the laser radar 211 to be turned on while driving the universal wheels 210, the data processing module 295 receives detection signals from the laser radar 211 and processes the detection signals, and then the main controller 291 controls the driving module 294 to adjust the traveling direction of the universal wheels 210, so as to prevent the management moving end 2 from colliding with foreign objects, so that the management moving end 2 can flexibly move, and the management moving end 2 is suitable for managing that the moving end 2 periodically shoots construction site images and transmits the construction site images back to the remote management terminal 1, and managing that the moving end 2 locates and searches for the situation of a certain user.
As shown in fig. 1 and fig. 2, the control mechanism 29 further includes a charging module 293, a charging induction coil 212 is disposed at the rear side of the base 22, and the management mobile terminal 2 generates electromagnetic induction with the charging pile through the charging induction coil 212; charging induction coil 212 is connected with the module 293 electricity that charges and signal connection, and charging module 293 is connected with power module 292 electricity and signal connection, and charging module 293 receives charging induction coil 212's electromagnetic signal and produces the electric current and charge for power module 292, is convenient for carry out wireless charging to management mobile terminal 2.
The charging module 293 can be a structure and a circuit for realizing wireless charging of the mobile robot in the prior art, the power module 292 is a main controller, a charging access cabinet, power supplies for each part such as a driving module, the main controller 291 can monitor the electric quantity of the power module 292, and control and management of the mobile terminal 2 to automatically find a charging pile for charging, the driving module 294 integrates a motor or other driving mechanisms for controlling the first electric door 27 and the second electric door 28 to open and close, a driving mechanism for controlling universal wheels to flexibly move like the mobile robot in the prior art, the charging access cabinet and the like, a control signal is given by the main controller 291, and the driving module 294 performs corresponding driving operation.
It should be noted that the above mentioned embodiments and embodiments are intended to demonstrate the practical application of the technical solution provided by the present invention, and should not be interpreted as limiting the scope of the present invention. Various modifications, equivalent substitutions and improvements will occur to those skilled in the art and are intended to be within the spirit and scope of the present invention. The protection scope of the present invention is subject to the appended claims.

Claims (5)

1. A construction management platform system of house building engineering is characterized by comprising a remote management terminal (1), a management mobile terminal (2) and a user mobile terminal (3); wherein the content of the first and second substances,
the management moving end (2) comprises a machine body (21), a machine base (22) and a machine head part (23), a touch screen (24) and a camera (25) are arranged on the front side of the machine head part (23), a cavity is arranged on the front side of the machine body (21), a charging access cabinet (26) is fixedly installed in the cavity, a control mechanism (29) is installed in the machine body (21), and universal wheels (210) are arranged at the bottom of the machine base (22);
the control mechanism (29) comprises a main controller (291), a power supply module (292), a driving module (294), a data processing module (295), a first wireless transceiver module (296) and a first positioning module (297), wherein the main controller (291) is electrically and signal-connected with the power supply module (292), the driving module (294), the data processing module (295), the first wireless transceiver module (296) and the first positioning module (297) respectively; wherein the content of the first and second substances,
the touch screen (24) is electrically connected and in signal connection with the main controller (291) and the data processing module (295), the main controller (291) is awakened through the touch screen (24) and an action instruction is input into the main controller (291), and the data processing module (295) provides a display interface for the touch screen (24);
the camera (25) is electrically connected and in signal connection with the driving module (294) and the data processing module (295), the driving module (294) drives the camera (25) to acquire a video stream so as to acquire a face recognition image or a construction site image, and the camera (25) transmits the face recognition image or the construction site image to the data processing module (295) for data processing;
the charging access cabinet (26) is electrically connected and in signal connection with the power supply module (292), the driving module (294) and the data processing module (295) respectively, the plurality of user mobile terminals (3) are inserted in the charging access cabinet (26), the power supply module (292) provides power for the charging access cabinet (26) to charge the user mobile terminals (3), the driving module (294) drives the charging access cabinet (26) to push out or lock the user mobile terminals (3), the data processing module (295) manages and records the use conditions of the plurality of user mobile terminals (3) inserted in the charging access cabinet (26), and the data processing module (295) performs data interaction with each user mobile terminal (3);
the universal wheel (210) is electrically connected and in signal connection with the driving module (294), and the driving module (294) drives the universal wheel (210) to control and manage the movement of the moving end (2);
the remote management terminal (1) is connected with the management mobile terminal (2) through a first wireless transceiver module (296), and the first wireless transceiver module (296) is respectively electrically connected and in signal connection with the main controller (291), the data processing module (295) and the first positioning module (297), so that the management mobile terminal (2) and the remote management terminal (1) perform data interaction.
2. The construction management platform system for housing construction work, as set forth in claim 1, characterized in that the cavity is opened or closed by a first power door (27), the first power door (27) being electrically and signally connected to a driving module (294), the driving module (294) driving the first power door (27) to open or close.
3. The construction management platform system for house building engineering of claim 1, wherein a second power door (28) is provided at a rear side of the body (21) to open or close the body (21), the second power door (28) is electrically and signally connected to the driving module (294), and the driving module (294) drives the second power door (28) to open or close.
4. The construction management platform system for house building engineering of claim 1, wherein a laser radar (211) is disposed on a front side of the machine base (22), the laser radar (211) is electrically and signal-connected with the driving module (294) and the data processing module (295), the driving module (294) drives the laser radar (211) to be turned on while driving the universal wheel (210), the data processing module (295) receives and processes a detection signal from the laser radar (211), and the main controller (291) controls the driving module (294) to adjust a traveling direction of the universal wheel (210).
5. The construction management platform system for house building engineering according to claim 1, wherein the control mechanism (29) further comprises a charging module (293), a charging induction coil (212) is disposed at the rear side of the base (22), and the management mobile terminal (2) generates electromagnetic induction with the charging pile through the charging induction coil (212); the charging induction coil (212) is electrically connected and in signal connection with the charging module (293), the charging module (293) is electrically connected and in signal connection with the power module (292), and the charging module (293) receives electromagnetic signals of the charging induction coil (212) and generates current to charge the power module (292).
CN202021672968.6U 2020-08-12 2020-08-12 House building engineering's construction management platform system Active CN213123084U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021672968.6U CN213123084U (en) 2020-08-12 2020-08-12 House building engineering's construction management platform system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021672968.6U CN213123084U (en) 2020-08-12 2020-08-12 House building engineering's construction management platform system

Publications (1)

Publication Number Publication Date
CN213123084U true CN213123084U (en) 2021-05-04

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Application Number Title Priority Date Filing Date
CN202021672968.6U Active CN213123084U (en) 2020-08-12 2020-08-12 House building engineering's construction management platform system

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CN (1) CN213123084U (en)

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