Intelligent perception device for air station building
By integrating multi-dimensional sensors and a solar power supply system, combined with a central processor and remote control, the problems of limited environmental sensing capabilities, fixed ventilation systems, and reliance on external power grids in air quality monitoring stations have been solved, enabling intelligent, efficient operation and safety assurance of air quality monitoring stations.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HUATONG INTELLIGENT MFG (SHANDONG) INTELLIGENT TECH GRP CO LTD
- Filing Date
- 2025-07-08
- Publication Date
- 2026-07-17
AI Technical Summary
Existing air monitoring stations have limited environmental sensing capabilities, lack multi-dimensional parameter monitoring and linkage control, have fixed ventilation systems leading to low air collection efficiency, rely on external power grids for power supply which makes continuous operation difficult in remote areas, and have dispersed security protection functions with insufficient remote monitoring capabilities.
It integrates temperature, humidity, smoke detectors, wind vanes, and angle sensors, and uses a central processor to monitor and control multi-dimensional environmental parameters. It uses angle sensors to adjust ventilation direction and combines a solar power system to achieve adaptive power supply. It integrates cameras and suspended fire extinguishers for intelligent fire early warning and linkage, and a remote control system to monitor equipment status.
It enables real-time and accurate acquisition of multi-dimensional environmental parameters, adaptive adjustment of the ventilation system, provision of sustainable power supply, automatic fire early warning and linkage fire suppression, and improves the intelligence and operational reliability of the air station.
Smart Images

Figure CN224517824U_ABST
Abstract
Claims
1. An air station building intelligent sensing device, characterized in that, The system includes a station building body, inside which is an integrated panel equipped with a temperature sensor, a humidity sensor, and a smoke detector. An air conditioning system is installed on the inner walls of the station building. A controller and power supply equipment are located at the bottom of the station building. A camera and a suspended automatic fire extinguisher are installed on the top of the station building. A vertical pole with a wind vane connected to an angle sensor is also installed on the top of the station building. A first motor is also installed on the station building, connected to a rotating shaft. The rotating shaft is connected to a rotating disk and a rotating cylinder. The rotating cylinder has a first air pipe, a second air pipe, and a third air pipe, which are respectively connected to a first fan, a second fan, and a third fan. The angle sensor, temperature sensor, humidity sensor, first motor, camera, smoke detector, and suspended fire extinguisher are all connected to the controller.
2. The air station smart sensing device of claim 1, wherein, The station building is equipped with a roof railing at the top, a staircase on one side, and a support frame around its perimeter.
3. The air station smart sensing device of claim 1, wherein, The rotating cylinder is equipped with several solar panels. The solar panels are connected to a converter, which is connected to a storage battery. The storage battery is connected to a temperature sensor, a humidity sensor, a smoke alarm, an angle sensor, a camera, a suspended automatic fire extinguisher, a first motor, a controller, a first fan, a second fan, and a third fan, respectively.
4. The air station smart sensing device of claim 1, wherein, The wind vane rotates with the wind direction, which in turn drives the angle sensor to rotate. The angle sensor senses the angle of the wind vane and transmits the angle information to the controller. The controller obtains the real-time wind direction through the angle information from the angle sensor. Based on the real-time wind direction, the controller controls the first motor to rotate by a certain angle. The first motor drives the rotating component to rotate, which in turn drives the steering cylinder to rotate. The steering cylinder drives the first air pipe and the first air tube to change their orientation, so that they face the wind to draw in air and face away from the wind to expel air.
5. The air station smart sensing device of claim 1, wherein, The controller includes a central processing unit, a temperature sensor control module, a smoke alarm control module, a humidity sensor control module, an air conditioning system control module, a camera control module, an angle sensor control module, an information transmission module, an information reception module, and a solar panel control module. The temperature sensor control module, smoke alarm control module, humidity sensor control module, air conditioning system control module, camera control module, angle sensor control module, information transmission module, information reception module, and solar panel control module are all connected to the central processing unit.
6. The intelligent air station sensing device as described in claim 5, characterized in that, The temperature sensor control module is connected to the temperature sensor, the smoke alarm control module is connected to the smoke alarm, the humidity sensor control module is connected to the humidity sensor, the air conditioning system control module is connected to the air conditioning system, the camera control module is connected to the camera, the angle sensor control module is connected to the angle sensor, and the solar panel control module is connected to the solar panel.
7. The air station smart sensing device of claim 4, wherein, The first and second air pipes are arranged horizontally in a straight line, with the first and second air pipes facing opposite directions. The third air pipe is located on the side of the rotating cylinder and is arranged circumferentially along the side wall of the rotating cylinder. The rotating cylinder drives the solar panel to rotate circumferentially to absorb solar energy. 8.The air station smart sensing device of claim 1, wherein, The first, second, and third fans are respectively connected to the air quality monitoring equipment in the air station building. 9.The air station building intelligent perception device of claim 1, wherein, The rotating cylinder has a first air chamber, a second air chamber, and a third air chamber. The rotating disk has a first air cavity, a second air cavity, and a third air cavity. A rotating shaft is rotatably mounted on the axis of the rotating cylinder and the rotating disk. The rotating shaft is connected to a first motor. The rotating shaft has a first air passage, a second air passage, and a third air passage. One end of the first air passage is connected to the first air chamber, and the other end is connected to the first air cavity. One end of the second air passage is connected to the second air chamber, and the other end is connected to the second air cavity. One end of the third air passage is connected to the third air chamber, and the other end is connected to the third air cavity. The first air chamber, the second air chamber, the third air chamber, the first air cavity, the second air cavity, and the third air cavity are all annular structures.