Air quality monitoring device based on artificial intelligence
A technology for air quality detection and air quality, which is applied in the direction of air quality improvement, measuring devices, and analysis of gas mixtures. It can solve problems such as large data errors, human-operated devices, and failure to realize intelligent control. The effect of precision
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Embodiment 1
[0042] Such as figure 1 , 2 , a kind of artificial intelligence-based air quality monitoring device shown in 3 and 4, including air quality detection box 1, control box 2, pole 3, LED display screen 4, battery 5 and tripod 6, air quality detection box 1 , the control box 2 and the LED display screen 4 are all fixedly installed on the outer wall of the pole 3, the air quality detection box 1 is arranged on the top of the LED display screen 4, and the LED display screen 4 is arranged on the top of the control box 2; the air quality detection box 1 , the control box 2 and the LED display screen 4 are powered by the battery 5, the tripod 6 is fixedly installed on the bottom of the pole 3, the top plate of the air quality detection box 1 is provided with an air inlet 101, and the inside of the air inlet 101 is fixed with a sealing Bearing 102, the upper end of sealed bearing 102 is rotatably installed with intake pipe 103, and the top of intake pipe 103 is provided with intake cov...
Embodiment 2
[0049] Embodiment 2 is a further improvement to Embodiment 1.
[0050] Such as Figure 9 , 10 As shown, the top surface of the air quality detection box 1 is fixed with several round rods 116, and the tops of several round rods 116 are jointly fixed with a rain shield 117, and the rain shield 117 is arranged on the top of the intake pipe 103 and the intake cover 104 .
[0051] When the air quality monitoring device of this embodiment encounters cloudy and rainy weather during use, the rain shield 117 can prevent external rainwater from entering the inside of the air intake cover 104, further preventing rainwater from being sucked into the sensor air chamber by the air pump 113 Inside 115, rainwater will affect the measurement of temperature and humidity parameters, thus ensuring the accuracy of monitoring data.
Embodiment 3
[0053] Embodiment 3 is a further improvement to Embodiment 2.
[0054] Such as figure 1 , 11 As shown, the outer wall of the sensor gas chamber 115 is communicated with an exhaust pipe 118 , and an exhaust fan 119 is installed inside the exhaust pipe 118 .
[0055] During the use of this embodiment, the air pump 113 sucks the external air from the air intake cover 104 and the air intake pipe 103 to the air outlet pipe 112, and then sends it to the sensor air chamber 115 at a flow rate of 300ml / min after passing through the flow regulator 114 , after various sensors inside the sensor air chamber 115 are monitored, the exhaust fan 119 can be powered on, thereby facilitating the rapid discharge of the detected air, avoiding the air staying inside the sensor air chamber 115 for a long time, thereby ensuring The accuracy of the next monitoring data.
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