A method for intelligently setting air-conditioning targets
A targeted and intelligent technology, applied in the field of air conditioning, can solve problems such as the ineffectiveness of humidity regulation and the inability to meet the comfort of the human body, and achieve the effect of reducing energy consumption in operation
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Embodiment 1
[0042] When the actual wet bulb temperature is 16°C figure 2 ), the step △ is 1;
[0043] The temperature 23.3°C collected by the MCU in real time is not within the range of the ideal temperature upper limit of 26°C and the ideal temperature lower limit of 24°C. The collected 24.3°C is greater than the ideal temperature lower limit of 24°C. At this time, the real-time collected humidity will decrease to 60% with the increase of temperature, and the actual wet bulb temperature will increase with the increase of temperature; In the interval, perform the following operations directly. According to the data collected in real time at a temperature of 24.3°C and a humidity of 60%, a new wet bulb temperature of 18.855°C is calculated, and compared with the set target wet bulb temperature of 18.8°C, the new wet bulb temperature of 18.855°C is close to the set target The value of wet bulb temperature is 18.8℃ and it is satisfied with temperature range: 24℃~26℃, humidity range: 54.5%~...
Embodiment 2
[0045] When the actual wet bulb temperature is 20°C > the target wet bulb temperature is 18.8°C, the real-time temperature collected by the microcontroller is 37°C (such as Figure 5 ), the step △ is 1;
[0046] The microcontroller first judges that the real-time collected temperature of 37°C is not within the range of the ideal temperature upper limit of 26°C and the ideal temperature lower limit of 24°C, then performs a cooling operation, and the real-time collected temperature of 37°C-11*1=26 ℃, 26 ℃ collected in real time = the upper limit of ideal temperature 26 ℃, the humidity collected in real time will increase to 55% with the decrease of temperature, and the actual wet bulb temperature will increase with the decrease of temperature Decrease; if it is within the interval, then directly perform the following operations; calculate a new wet bulb temperature of 19.526°C based on the data collected in real time at a temperature of 26°C and a humidity of 55% For comparison...
Embodiment 3
[0048] When the actual wet bulb temperature is 18.8°C = the target wet bulb temperature is 18.8°C, the real-time temperature collected by the microcontroller is 37°C (such as Figure 6 );
[0049] The microcontroller first judges whether the real-time collected temperature of 37°C is within the range of the ideal temperature upper limit of 26°C and the ideal temperature lower limit of 24°C, and if the real-time collected temperature of 37°C > the ideal temperature upper limit of 26°C, the temperature will be lowered Operate so that the lower limit of the ideal temperature is 24°Cthe target wet bulb temperature.
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