Intelligent building monitoring device
By designing a smart building monitoring device that integrates real-life monitoring module and sensor module, the problem of single functions of the existing monitoring device is solved, real-time monitoring of the building environment and timely fire detection are achieved, and the efficiency and reliability of safety management are improved.
Patent Information
- Application Number
- CN202421569672.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-04
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-07-04
AI Technical Summary
The existing monitoring devices used in smart buildings have relatively single functions, and they cannot monitor and analyze multiple environmental parameters in real time, resulting in the inability to detect fire and other dangerous situations in a timely manner.
A smart building monitoring device integrating real-life monitoring module and sensor module is designed, including temperature sensors, smoke sensors and image collectors. These components monitor the building environment in real time and detect dangerous situations such as fires in a timely manner.
Real-time monitoring of the building environment is realized, and dangerous situations such as fires can be detected in a timely manner, improving the efficiency and reliability of building safety management.
Smart Images

Figure CN223005567U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of intelligent buildings, and particularly relates to an intelligent building monitoring device. Background Art
[0002] An intelligent building refers to the intelligent transformation of a building through technical means such as the Internet of Things, cloud computing, big data, artificial intelligence, etc., to achieve automatic control and information management of various facilities, and improve the safety, comfort and intelligence level of the building.
[0003] Intelligent building is a marginal and cross-disciplinary subject, involving computer technology, automatic control, communication technology, building technology, etc., and more and more new technologies are applied in intelligent buildings. Through the building control system, using computer control technology, management software and energy-saving system programs, the equipment in the building's mechanical and electrical systems or the building complex can operate orderly, comprehensively coordinated and scientifically, so as to effectively ensure a comfortable working environment in the building, achieve energy conservation, save maintenance management workload and operation costs.
[0004] An intelligent building can achieve the safety management of the building interior through means such as video monitoring, access control system, fire protection system, etc. For example, through face recognition technology, the identity authentication and recording of people entering and leaving can be realized, and through devices such as smoke detectors and temperature sensors, the fire risk inside the building can be monitored in real time, and alarms can be given in time and corresponding measures can be taken. An intelligent building can achieve the energy management of the building interior through means such as intelligent lighting, air conditioning system, elevator system, etc. For example, through devices such as light sensors and infrared sensors, the automatic perception and adjustment of indoor light and temperature can be realized, achieving energy conservation and environmental protection. An intelligent building can achieve the operation and maintenance management of the building interior through means such as big data analysis, operation management platform, etc. For example, through big data analysis of various data and information inside the building, predictive maintenance and optimization of facilities can be carried out to improve the operation efficiency and reliability of the facilities. In the intelligent building control system, various monitoring devices play a crucial role. From the monitoring and early warning of various accident information to the video monitoring in daily operation, they highly rely on monitoring devices. At present, the functions of conventional monitoring devices are relatively single, and digital signals need to be centrally fed back to the background and analyzed to obtain valuable information. Summary of the Invention
[0005] The utility model aims at the technical defects of the prior art, and provides an intelligent building monitoring device to solve the technical problem that the functions of ordinary monitoring devices for intelligent buildings are relatively single at present.
[0006] To achieve the above technical purposes, the utility model adopts the following technical solutions:
[0007] An intelligent building monitoring device, comprising a protective shell, a mounting post, a chuck, an annular groove, a sealing ring, a support ring, a temperature sensor, a support, a top post, a fixing pin, a protruding handle, a smoke sensor, a connector, and an image collector; the lower side of the protective shell is not closed, and there is a mounting hole on the top surface of the protective shell. A chuck is fixedly arranged at the mounting hole. The mounting post passes through the mounting hole and is fixed by the chuck. There are multiple annular grooves on the mounting post, and a sealing ring is sleeved in the annular groove. At least one sealing ring is located between the mounting post and the inner wall of the mounting hole. The support ring is located on the mounting post. The temperature sensor is fixedly connected to the lower side of the support ring. There is a blind hole under the temperature sensor. The top post is located at the top of the support, and the top post is inserted into the blind hole. The fixing pin passes through the temperature sensor and the top post to fix the two. There is a protruding handle under the support, and a smoke sensor is connected to the protruding handle. A connector is arranged on the outer side of the protective shell, and an image collector is arranged on the inner side of the protective shell. The image collector is connected to the connector.
[0008] Preferably, the area of the lower port of the protective shell is larger than the area of its upper end, and a fixing rod is connected between the top wall of the protective shell and the image collector.
[0009] Preferably, the protective shell is made of a flexible material, and a rigid lining plate is built into the top wall of the protective shell.
[0010] Preferably, screws and nuts are used to replace the fixing pin.
[0011] Preferably, a strip-shaped hole is arranged on the side of the blind hole, and a horizontal round hole is arranged on the top post. The nut passes through the strip-shaped hole and the round hole to pass through the temperature sensor and the top post, and is tightly connected to the nut.
[0012] Preferably, an audible and visual alarm is also installed in the protective shell.
[0013] In the structure of the present utility model, the protective shell plays roles such as shielding and protecting; the mounting post is used to install components such as a temperature sensor and a smoke sensor; the mounting post passes through the mounting hole and penetrates into the protective shell and is fixed by the chuck, so the insertion position of the sensor can be controlled; the annular groove is used to install the sealing ring, and multiple sealing rings enable at least one sealing ring to be kept between the mounting post and the inner wall of the mounting hole no matter how large the insertion amount of the mounting post is, thereby achieving a sealing effect on the mounting hole; the support ring is used to install the temperature sensor; the top post on the support is inserted into the blind hole on the lower side of the outer shell of the temperature sensor and is fixed by the fixing pin, playing a role of installation and fixation. The support serves as a spacer between the temperature sensor and the smoke sensor and can also be used for wiring; the protruding handle is used to install the smoke sensor; the smoke sensor and the temperature sensor monitor the building environment in real time to detect potential dangers such as fires in a timely manner; the connector is used to wire the image collector; the image collector can collect image information of the surrounding environment in real time, playing a role of on-site monitoring.
[0014] The utility model discloses a smart building monitoring device. This device integrates a real - scene monitoring module and a sensor module, and can monitor the image information and fire information of the building environment in real time. The temperature sensor and the smoke sensor complement each other, and can detect fire hazards in time. Moreover, the utility model is provided with a sleeve - shaped external protection structure, so that the core components of the device are not easily accidentally touched. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 is the first overall view of the utility model;
[0016] Figure 2 is the second overall view of the utility model;
[0017] Figure 3 is a partial view of the protective shell;
[0018] Figure 4 is a partial view of the joint and the image collector;
[0019] Figure 5 is the overall view of the utility model after hiding the protective shell, the joint and the image collector;
[0020] Figure 6 is the split view of the utility model after hiding the protective shell, the joint and the image collector;
[0021] Wherein:
[0022] 1. Protective shell; 2. Mounting column; 3. Chuck; 4. Annular groove
[0023] 5. Sealing ring; 6. Support ring; 7. Temperature sensor; 8. Support
[0024] 9. Top column; 10. Fixed pin; 11. Protruding handle; 12. Smoke sensor
[0025] 13. Joint; 14. Image collector. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0026] The following will describe the detailed embodiments of the utility model in detail. In order to avoid too many unnecessary details, the well - known structures or functions will not be described in detail in the following embodiments. The approximate language used in the following embodiments can be used for quantitative description, indicating that a certain change in quantity is allowed without changing the basic function. Unless otherwise defined, the technical and scientific terms used in the following embodiments have the same meaning as commonly understood by those skilled in the art to which the utility model belongs.
[0027] Embodiment 1
[0028] A smart building monitoring device, as shown in Figures 1 to 6, including a protective case 1, a mounting post 2, a chuck 3, an annular groove 4, a sealing ring 5, a support ring 6, a temperature sensor 7, a support 8, a top post 9, a fixing pin 10, a protruding handle 11, a flue gas sensor 12, a connector 13, and an image collector 14; the lower side of the protective case 1 is not enclosed, and the top surface of the protective case 1 is provided with a mounting hole, at which the chuck 3 is fixedly arranged, the mounting post 2 passes through the mounting hole and is fixed by the chuck 3, there are multiple annular grooves 4 on the mounting post 2, and the sealing ring 5 is sleeved in the annular groove 4, and at least one sealing ring 5 is located between the mounting post 2 and the inner wall of the mounting hole, the support ring 6 is located on the mounting post 2, the temperature sensor 7 is fixedly connected to the lower side of the support ring 6, there is a blind hole under the temperature sensor 7, the top post 9 is located at the top of the support 8, the top post 9 is inserted into the blind hole, and the fixing pin 10 passes through the temperature sensor 7 and the top post 9 to fix the two, there is a protruding handle 11 under the support 8, the flue gas sensor 12 is connected to the protruding handle 11, the connector 13 is arranged on the outer side of the protective case 1, and the image collector 14 is arranged on the inner side of the protective case 1, and the image collector 14 is connected to the connector 13.
[0029] Among them, the protective case 1 plays roles such as shielding and protection; the mounting post 2 is used to install components such as the temperature sensor 7 and the flue gas sensor 12; the mounting post 2 passes through the mounting hole and penetrates into the protective case 1 and is fixed by the chuck 3, so the insertion position of the sensor can be controlled; the annular groove 4 is used to install the sealing ring 5, and multiple sealing rings 5 ensure that at least one sealing ring 5 remains between the mounting post 2 and the inner wall of the mounting hole regardless of the insertion amount of the mounting post 2, thereby achieving a sealing effect on the mounting hole; the support ring 6 is used to install the temperature sensor 7; the top post 9 on the support 8 is inserted into the blind hole on the lower side of the shell of the temperature sensor 7 and is fixed by the fixing pin 10, playing a role of installation and fixation, and the support 8 serves as a spacer between the temperature sensor 7 and the flue gas sensor 12 and can also be used for wiring; the protruding handle 11 is used to install the flue gas sensor 12; the flue gas sensor 12 and the temperature sensor 7 monitor the building environment in real time to detect potential dangers such as fires in a timely manner; the connector 13 is used to connect wires for the image collector 14; the image collector 14 can collect image information of the surrounding environment in real time and plays a role of on-site monitoring.
[0030] Embodiment 2
[0031] A smart building monitoring device, see Figures 1 to 6, including a protective shell 1, a mounting post 2, a chuck 3, an annular groove 4, a sealing ring 5, a support ring 6, a temperature sensor 7, a support 8, a top post 9, a fixing pin 10, a protruding handle 11, a flue gas sensor 12, a connector 13, and an image collector 14; the lower side of the protective shell 1 is not closed, the top surface of the protective shell 1 is provided with a mounting hole, a chuck 3 is fixedly arranged at the mounting hole, the mounting post 2 passes through the mounting hole and is fixed by the chuck 3, there are multiple annular grooves 4 on the mounting post 2, a sealing ring 5 is sleeved in the annular groove 4, at least one sealing ring 5 is located between the mounting post 2 and the inner wall of the mounting hole, the support ring 6 is located on the mounting post 2, the temperature sensor 7 is fixedly connected to the lower side of the support ring 6, there is a blind hole under the temperature sensor 7, the top post 9 is located at the top of the support 8, the top post 9 is inserted into the blind hole, the fixing pin 10 passes through the temperature sensor 7 and the top post 9 horizontally to fix the two, there is a protruding handle 11 under the support 8, a flue gas sensor 12 is connected to the protruding handle 11, a connector 13 is arranged on the outer side of the protective shell 1, an image collector 14 is arranged on the inner side of the protective shell 1, and the image collector 14 is connected to the connector 13. The lower port area of the protective shell 1 is larger than its upper end area, and a fixing rod is connected between the top wall of the protective shell 1 and the image collector 14. The protective shell 1 is made of a flexible material, and a rigid lining plate is built in the top wall of the protective shell 1. The fixing pin 10 is replaced by a screw and a nut. A strip-shaped hole is arranged on the side of the blind hole, a horizontal round hole is provided on the top post 9, and the nut passes through the strip-shaped hole and the round hole to pass through the temperature sensor 7 and the top post 9 horizontally and is tightly connected to the nut. An audible and visual alarm is also installed in the protective shell 1.
[0032] The above has described the embodiments of the present invention in detail, but the above content is only the preferred embodiments of the present invention and is not used to limit the present invention. Any modifications, equivalent replacements, and improvements made within the scope of the application of the present invention shall be included within the protection scope of the present invention.
Claims
1. A smart building monitoring device, characterized in that: The invention comprises a protective shell (1), a mounting column (2), a chuck (3), an annular groove (4), a sealing ring (5), a support ring (6), a temperature sensor (7), a support (8), a top column (9), a fixing pin (10), a protruding handle (11), a smoke sensor (12), a joint (13), and an image collector (14); the lower side of the protective shell (1) is not closed, a mounting hole is provided on the top surface of the protective shell (1), a chuck (3) is fixedly provided at the mounting hole, the mounting column (2) passes through the mounting hole and is fixed by the chuck (3), a plurality of annular grooves (4) are provided on the mounting column (2), a sealing ring (5) is sleeved in the annular groove (4), and at least one sealing ring (5) is located on the mounting column ( 2) and the inner wall of the mounting hole, the support ring (6) is located on the mounting column (2), the temperature sensor (7) is fixedly connected to the lower side of the support ring (6), a blind hole is provided on the lower side of the temperature sensor (7), a top column (9) is located on the top of the support (8), the top column (9) is inserted into the blind hole, a fixing pin (10) crosses the temperature sensor (7) and the top column (9) to fix the two, a protruding handle (11) is provided on the lower side of the support (8), a smoke sensor (12) is connected to the protruding handle (11), a joint (13) is provided on the outer side of the protective shell (1), an image collector (14) is provided on the inner side of the protective shell (1), and the image collector (14) is connected to the joint (13).
2. The smart building monitoring device according to claim 1, characterized in that: The area of the lower end of the protective shell (1) is larger than the area of the upper end thereof, and a fixing rod is connected between the top wall of the protective shell (1) and the image collector (14).
3. The smart building monitoring device according to claim 1, characterized in that: The protective shell (1) is made of a flexible material, and a hard lining plate is built into the top wall of the protective shell (1).
4. The smart building monitoring device according to claim 1, characterized in that: Replace the fixing pin (10) with a screw and nut.
5. The intelligent building monitoring device according to claim 4, characterized in that: A strip hole is provided on the side of the blind hole, and a horizontal round hole is provided on the top column (9). The nut passes through the temperature sensor (7) and the top column (9) through the strip hole and the round hole, and is tightly connected with the nut.
6. The intelligent building monitoring device according to claim 1, characterized in that: An audible and visual alarm is also installed in the protective shell (1).