CN217825079U - Building monitoring system based on BIM - Google Patents

Building monitoring system based on BIM Download PDF

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Publication number
CN217825079U
CN217825079U CN202220963388.5U CN202220963388U CN217825079U CN 217825079 U CN217825079 U CN 217825079U CN 202220963388 U CN202220963388 U CN 202220963388U CN 217825079 U CN217825079 U CN 217825079U
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CN
China
Prior art keywords
camera
driving device
rotary driving
bim
protection casing
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Expired - Fee Related
Application number
CN202220963388.5U
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Chinese (zh)
Inventor
邓垚
陈海霞
王越
方绍健
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Anfang Technology Yunnan Co ltd
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Anfang Technology Yunnan Co ltd
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Priority to CN202220963388.5U priority Critical patent/CN217825079U/en
Application granted granted Critical
Publication of CN217825079U publication Critical patent/CN217825079U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to a building monitoring technology field, in particular to a building monitoring system based on BIM; including mount pad, protection casing, support cloud platform, first rotary driving device, second rotary driving device, camera and smog response alarm, the both sides correspondence of protection casing is installed two sets of lights, the same direction of the camera lens orientation of two sets of lights and camera, the camera lens front side of camera is equipped with cleaning device, the top rigid coupling smog response alarm of protection casing. The utility model can realize the purpose of cleaning the camera by arranging the cleaning device; by arranging the illuminating lamp, the illuminating direction of the illuminating lamp is the same as the direction of the camera lens, so that illuminating operation is provided, the illuminating effect is improved, and monitoring is facilitated; through setting up first rotary driving device and second rotary driving device, can realize adjusting the use angle of camera horizontal direction and vertical direction, enlarge monitoring range, improve monitoring effect.

Description

Building monitoring system based on BIM
Technical Field
The utility model relates to a building monitoring technology field, in particular to building monitored control system based on BIM.
Background
The Building Information Model (BIM) is based on various relevant Information data of a Building engineering project, simulates real Information of a Building through digital Information simulation, and realizes functions of project supervision, property management, equipment management, digital processing, engineering management and the like through a three-dimensional Building model. The BIM has eight characteristics of information completeness, information relevance, information consistency, visualization, coordination, simulation, optimization and graphing, and is widely applied to the field of building design. The position and parameter information of the equipment installed in the building can be intuitively and specifically known through the BIM. Along with the increase of population and the development of cities, various high-rise buildings and middle-rise buildings are visible everywhere, and the number of building equipment such as mechanical and electrical equipment, fire-fighting alarm equipment and the like in the buildings is increased along with the increase of floors. In order to ensure the safe operation of the construction equipment, the monitoring requirements on the construction equipment are higher and higher. Due to the fact that the control strategy of the building equipment is determined, the fire rescue work is not facilitated to be carried out in time.
At present, architectural equipment in the building is more, so the monitoring data that corresponds is more, lead to when the building conflagration breaks out, monitoring personnel can't accurately find corresponding monitoring device fast according to a large amount of monitoring data, consequently can waste a lot of time when transferring the control to the conflagration region, be unfavorable for the quick expansion of fire control work, and current monitor probe is generally through mode snap-on such as bolt or rivet under the roof, under the eave or on the wall, the problem of lens surface adhesion dust appears very easily after long-time the use, can lead to the monitoring personnel to see the problem of unclear control picture, in addition, evening during operation, ambient light intensity is low, the shooting effect is not good.
Therefore, a building monitoring system based on BIM is provided.
Disclosure of Invention
An object of the utility model is to provide a building monitored control system based on BIM to solve the problem that proposes in the above-mentioned technique.
In order to achieve the above purpose, the technical solution of the present invention is as follows:
the utility model provides a building monitoring system based on BIM, includes mount pad, protection casing, supports cloud platform, first rotary driving device, second rotary driving device, camera and smog response alarm, it rotates to connect on the mount pad to support the cloud platform, first rotary driving device sets up on the mount pad, just first rotary driving device's output is connected with the support cloud platform, the protection casing sets up on supporting the cloud platform, second rotary driving device sets up in supporting the cloud platform, just second rotary driving device's output wears to establish and supports the cloud platform and be connected with the protection casing, the inside camera that sets up of protection casing, two sets of lights are installed to the both sides correspondence of protection casing, two sets of lights are towards same direction with the camera lens of camera, the camera lens front side of camera is equipped with cleaning device, the top rigid coupling smog response alarm of protection casing.
Optionally, the solar photovoltaic power generation system further comprises a support, a solar power generation panel and a storage battery pack, wherein the support is arranged at the top of the protection shell, the solar power generation panel is obliquely arranged on the support, and the storage battery pack is arranged inside the mounting seat.
Optionally, the first rotation driving device includes a first rotating electrical machine and a first rotating shaft, the first rotating electrical machine is disposed on the mounting seat, one end of the first rotating shaft is connected with an output end of the first rotating electrical machine, and the other end of the first rotating electrical machine is connected with the supporting cradle head.
Optionally, the second rotation driving device includes a second rotating motor and a second rotating shaft, the second rotating motor is disposed in the supporting cradle head, one end of the second rotating shaft is connected with an output end of the second rotating motor, and the other end of the second rotating shaft penetrates through the supporting cradle head and is connected with the protection shell.
Optionally, cleaning device includes step motor, telescopic link, supporting seat and round brush, step motor sets up in the inboard top of protective housing, the upper end and the output of step motor of telescopic link are connected, and the other end and supporting seat connection, the round brush rotates to be connected in one side that the supporting seat corresponds the camera lens.
Optionally, the cleaning device further comprises two sliding blocks, the two sliding blocks are arranged on the left side and the right side of the supporting seat, and sliding grooves matched with the sliding blocks are formed in the left side and the right side of the inner side of the shell.
Optionally, first rotary driving device, second rotary driving device, camera, smoke induction alarm, cleaning device and light all are connected with central processing unit electricity through same signal line, central processing unit is connected with BIM fortune dimension controller through the wire electricity.
The beneficial effects of the utility model are that:
(1) The utility model can realize the purpose of cleaning the dust for the camera by arranging the cleaning device;
(2) The utility model provides a lighting operation by arranging the lighting lamp, which adopts the same lighting direction as the direction of the camera lens, improves the lighting effect and is beneficial to monitoring;
(3) The utility model can realize the adjustment of the use angle of the camera in the horizontal direction and the vertical direction by arranging the first rotary driving device and the second rotary driving device, thereby enlarging the monitoring range and improving the monitoring effect;
(4) The utility model discloses a set up smoke induction alarm, when the conflagration breaing out, accessible signal line gives central processing unit with conflagration information transfer, makes the regional camera of conflagration stand out on BIM fortune dimension controller, realizes the purpose of quick retrieval conflagration site monitoring.
Drawings
Fig. 1 is a schematic structural diagram of a building monitoring system based on BIM according to an embodiment of the present invention;
fig. 2 is a schematic structural view of the inside of the support platform according to the embodiment of the present invention;
fig. 3 is a schematic structural view of the support seat according to the embodiment of the present invention.
Reference numerals: the solar smoke-sensing alarm comprises a mounting seat 1, a first rotating motor 2, a supporting cloud platform 3, a protective shell 4, a support 5, a solar panel 6, a smoke-sensing alarm 7, a stepping motor 8, a telescopic rod 9, a supporting seat 10, a sliding block 11, a sliding groove 12, a camera 13, a lighting lamp 14, a rolling brush 15, a second rotating motor 16 and a second rotating shaft 17.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to the accompanying drawings 1-3, a building monitoring system based on BIM comprises a mounting seat 1, a protection shell 4, a supporting cradle head 3, a first rotary driving device, a second rotary driving device, a camera 13 and a smoke induction alarm 7, wherein the supporting cradle head 3 is rotatably connected to the mounting seat 1, the first rotary driving device is arranged on the mounting seat 1, the output end of the first rotary driving device is connected with the supporting cradle head 3, the protection shell 4 is arranged on the supporting cradle head 3, the second rotary driving device is arranged in the supporting cradle head 3, the output end of the second rotary driving device penetrates through the supporting cradle head 3 and is connected with the protection shell 4, the camera 13 is arranged inside the protection shell 4, two groups of illuminating lamps 14 are correspondingly arranged on the two sides of the protection shell 4, the two groups of illuminating lamps 14 and the camera 13 face to the same direction, a cleaning device is arranged on the front side of the camera 13, and the smoke induction alarm 7 is fixedly connected to the top of the protection shell 4.
Optionally, the solar photovoltaic power generation system further comprises a support 5, a solar power generation panel 6 and a storage battery pack, wherein the support 5 is arranged at the top of the protection shell 4, the solar power generation panel 6 is obliquely arranged on the support 5, and the storage battery pack is arranged inside the mounting seat 1.
Furthermore, the utility model relates to a solar panel 6 and storage battery for electrical components in this device provides the electric energy.
Optionally, the first rotation driving device includes a first rotating electrical machine 2 and a first rotating shaft, the first rotating electrical machine 2 is disposed on the mounting base 1, one end of the first rotating shaft is connected with an output end of the first rotating electrical machine 2, and the other end is connected with the supporting cradle head 3.
Further, the utility model relates to a first rotating electrical machines 2 can drive first rotation axis and support cloud platform 3 and rotate, and then realizes camera 13 pitch angle's adjustment.
Optionally, the second rotation driving device includes a second rotating electrical machine 16 and a second rotating shaft 17, the second rotating electrical machine 16 is disposed in the supporting cradle head 3, one end of the second rotating shaft 17 is connected with an output end of the second rotating electrical machine 16, and the other end of the second rotating electrical machine is connected with the protecting housing 4 through the supporting cradle head 3.
Further, the utility model relates to a second rotating electrical machines 16 can drive second rotation axis 17 and protection casing 4 and rotate, and then realizes the adjustment of camera 13 horizontal rotation.
Further, the utility model relates to a first rotating electrical machines 2 and second rotating electrical machines 16 are double-phase positive and negative motor, and electric wire expense and length can be saved to double-phase positive and negative motor.
Optionally, the cleaning device includes a stepping motor 8, an expansion link 9, a support seat 10 and a rolling brush 15, the stepping motor 8 is disposed at the top of the inner side of the protective casing 4, the upper end of the expansion link 9 is connected with the output end of the stepping motor 8, the other end of the expansion link is connected with the support seat 10, and the rolling brush 15 is rotatably connected to one side of the support seat 10 corresponding to the lens of the camera 13; the cleaning device further comprises two sliding blocks 11, the two sliding blocks 11 are arranged on the left side and the right side of the supporting seat 10, and sliding grooves 12 matched with the sliding blocks 11 are formed in the left side and the right side of the inner side of the shell.
Further, the utility model relates to a step motor 8 for drive telescopic link 9, supporting seat 10 and round brush 15 and reciprocate, and then realize the clearance to camera 13 camera lens, and, through setting up spout 12 and slider 11, be used for injecing the shift position of supporting seat 10, improve the stability of removal.
Optionally, the first rotary driving device, the second rotary driving device, the camera 13, the smoke induction alarm 7, the cleaning device and the illuminating lamp 14 are all electrically connected with the central processing unit through the same signal line, and the central processing unit is electrically connected with the BIM operation and maintenance controller through a wire.
Further, the utility model relates to a smog induction alarm 7 is when using, smog induction alarm 7 responds to the conflagration emergence, pass through the signal line and transmit conflagration information to central processing unit, central processing unit shows with the camera 13 highlight that smog induction alarm 7 is direct to be connected, make the control personnel can find the regional camera 13 of conflagration fast, the timely fire control work that expandes to the conflagration condition, when the visual angle of camera 13 is improper, utilize first rotating electrical machines 2 and second rotating electrical machines 16, and then reconcile the horizontal direction and the every single move direction of camera 13, make the control personnel can be convenient the visual angle of adjustment camera 13, reach the purpose that conveniently commander the conflagration; in addition, through setting up two sets of light 14 for when the conflagration breaks out night, can improve the luminance in camera 13 position through two sets of light 14, and then be convenient for camera 13 to monitor.
To sum up, the utility model relates to a camera 13, utilize step motor 8, be used for driving telescopic link 9, supporting seat 10 and round brush 15 reciprocate, and then realize the clearance to camera 13 camera lens dust, and, through setting up spout 12 and slider 11, be used for injecing the shift position of supporting seat 10, improve the stability of removal, through setting up smoke induction alarm 7, when the conflagration breaks out, can transmit the conflagration information to central processing unit through the signal line, make the regional camera 13 of conflagration stand out on BIM fortune dimension controller, reach the purpose of the silent control of quick transfer conflagration, through setting up first rotating electrical machines 2 and second rotating electrical machines 16, can realize adjusting the use angle of camera 13 horizontal direction and vertical direction; the use of cooperation light 14 for when the conflagration breaks out at night, can improve the luminance in camera 13 position through two sets of light 14, and then the camera 13 of being convenient for monitors.
Finally, although the present invention has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the present invention can be modified or replaced by other means without departing from the spirit and scope of the present invention, which should be construed as limited only by the appended claims.

Claims (7)

1. The utility model provides a building monitored control system based on BIM, includes mount pad, protection casing, supports cloud platform, first rotary driving device, second rotary driving device, camera and smog response alarm, its characterized in that, it rotates to connect on the mount pad to support the cloud platform, first rotary driving device sets up on the mount pad, just first rotary driving device's output is connected with supporting the cloud platform, the protection casing sets up on supporting the cloud platform, second rotary driving device sets up in supporting the cloud platform, just second rotary driving device's output is worn to establish and is supported the cloud platform and be connected with the protection casing, the inside camera that sets up of protection casing, two sets of lights are installed to the both sides correspondence of protection casing, two sets of lights are towards same direction with the camera lens of camera, the camera lens front side of camera is equipped with cleaning device, the top smog rigid coupling response alarm of protection casing.
2. The BIM-based building monitoring system of claim 1, further comprising a support, a solar panel and a storage battery, wherein the support is arranged on the top of the protective shell, the solar panel is obliquely arranged on the support, and the storage battery is arranged inside the mounting seat.
3. The BIM-based building monitoring system of claim 1, wherein the first rotation driving device comprises a first rotation motor and a first rotation shaft, the first rotation motor is disposed on the mounting base, one end of the first rotation shaft is connected to an output end of the first rotation motor, and the other end of the first rotation shaft is connected to the supporting cradle head.
4. The BIM-based building monitoring system according to claim 1, wherein the second rotation driving device comprises a second rotation motor and a second rotation shaft, the second rotation motor is arranged in the supporting cradle head, one end of the second rotation shaft is connected with the output end of the second rotation motor, and the other end of the second rotation shaft penetrates through the supporting cradle head and is connected with the protection shell.
5. The BIM-based building monitoring system of claim 1, wherein the cleaning device comprises a stepping motor, a telescopic rod, a supporting seat and a rolling brush, the stepping motor is arranged at the top of the inner side of the protective shell, the upper end of the telescopic rod is connected with the output end of the stepping motor, the other end of the telescopic rod is connected with the supporting seat, and the rolling brush is rotatably connected to one side of the supporting seat corresponding to the camera lens.
6. The BIM-based building monitoring system of claim 5, wherein the cleaning device further comprises two sliding blocks, the two sliding blocks are arranged on the left side and the right side of the supporting seat, and sliding grooves matched with the sliding blocks are formed in the left side and the right side of the inner side of the shell.
7. The BIM-based building monitoring system of claim 1, wherein the first rotary driving device, the second rotary driving device, the camera, the smoke sensing alarm, the cleaning device and the illuminating lamp are electrically connected with a central processing unit through the same signal wire, and the central processing unit is electrically connected with a BIM operation and maintenance controller through a wire.
CN202220963388.5U 2022-04-25 2022-04-25 Building monitoring system based on BIM Expired - Fee Related CN217825079U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202220963388.5U CN217825079U (en) 2022-04-25 2022-04-25 Building monitoring system based on BIM

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202220963388.5U CN217825079U (en) 2022-04-25 2022-04-25 Building monitoring system based on BIM

Publications (1)

Publication Number Publication Date
CN217825079U true CN217825079U (en) 2022-11-15

Family

ID=83980942

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202220963388.5U Expired - Fee Related CN217825079U (en) 2022-04-25 2022-04-25 Building monitoring system based on BIM

Country Status (1)

Country Link
CN (1) CN217825079U (en)

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Granted publication date: 20221115