Control method of kitchen air conditioner
A control method and air-conditioning technology, applied in heating and ventilation control systems, high-efficiency regulation technology, climate sustainability, etc., can solve problems such as poor experience, motor speed affecting the safety performance of kitchen air-conditioning, discomfort in use, etc., to achieve a comfortable kitchen environment Effect
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Embodiment 1
[0048] See attached figure 1 A control method of a kitchen air conditioner according to the present invention includes the following steps:
[0049] Step S1: Obtain the current rotational speed of the fan; during the operation of the kitchen air conditioner, obtain the current rotational speed of the fan.
[0050] Step S2: determine the relationship between the current speed of the fan and the preset speed of the fan;
[0051] Step S3: If the current speed of the fan is greater than or lower than the preset speed, then obtain the current adjustment amount of the fan; if the current speed of the fan is equal to the preset speed, then maintain the current speed of the fan to run;
[0052] Step S4: Adjust the current working current of the fan according to the adjustment amount of the fan current, and control the speed of the fan according to the adjusted control current of the fan.
[0053] In step S3, if the current speed of the fan is greater than the preset speed of the fan...
Embodiment 2
[0057] See attached figure 2 , the difference from Embodiment 1 is that in step S4: after controlling the speed of the fan according to the adjusted control current of the fan, the following steps are also included:
[0058] Step S5: obtain the adjusted control current of the fan and the real-time speed of the fan;
[0059]Step S6: obtain the real-time power of the fan according to the adjusted control current of the fan and the real-time rotating speed of the fan;
[0060] Step S7: determine whether the real-time power of fan is within the preset target power range;
[0061] If the real-time power of the fan is within the preset target power range, enter step S8: maintain the adjusted control current of the fan and the real-time speed of the fan until the end of the program;
[0062] If the real-time power of the fan is not within the preset target power range, return to step S2 to determine the relationship between the current speed of the fan and the preset speed of the ...
Embodiment 3
[0065] See attached image 3 , the difference from Embodiment 1 is that step S3 is specifically:
[0066] Step S31: If the current speed of the fan is greater than the preset speed, then obtain the adjustment amount of the fan's deceleration current;
[0067] Step S32: If the current speed of the fan is less than the preset speed, then obtain the speed-up current adjustment of the fan;
[0068] Step S33: If the current speed of the fan is equal to the preset speed, then maintain the current speed of the fan to run.
[0069] The current speed of the fan is adjusted by the adjustment amount of the fan current. If the current speed of the fan is greater than the preset speed, the current speed of the fan needs to be reduced, and the current adjustment amount of the fan's speed reduction is obtained; if the current speed of the fan is lower than the preset speed, it needs to be increased. The current speed of the fan, the adjustment amount of the fan's speed-down and speed-up is...
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