Energy-saving air conditioner controller controlled as required and control method
An energy-saving air conditioner and controller technology, applied in energy-saving ICT, heating and ventilation control systems, heating methods, etc., can solve the problems of air-conditioning meaningless work, waste of electric energy, air-conditioning setting temperature, etc., to achieve easy implementation and low price Low, easy-to-operate effect
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Embodiment 1
[0052] like figure 1 As shown, an energy-saving air-conditioning controller controlled on demand is characterized in that it includes a power supply module 1, a button module 2, a display module 3, a temperature acquisition module 4, a wireless receiving module 5, a control module 6 and a human body detection module 8;
[0053] The power supply module 1 provides power to the display module 3, the acquisition module 4 and the wireless receiving module 5;
[0054] The temperature acquisition module 4 sends the detected ambient temperature to the control module 6;
[0055] The human body detection module 8 wirelessly sends the collected number of people to the wireless receiving module 5 through infrared detection;
[0056] The wireless receiving module 5 receives the infrared detection wireless, wireless remote control radio frequency signal and smart home wireless signal emitted by the human body detection module 8, and sends them to the control module 6;
[0057] The button ...
Embodiment 2
[0092] A control method for an energy-saving air-conditioner controller with on-demand control applied to an energy-saving air-conditioner controller with on-demand control according to claim 1, comprising the following steps:
[0093] a. Single-chip microcomputer initialization: set the upper and lower limits of the temperature control interval in cooling mode and heating mode; the lower limit of the temperature control interval in the cooling mode is smaller than the upper limit of the temperature control interval in the heating mode; set the wind speed to low speed, and set the air conditioner Working environment and area.
[0094] b. Collect indoor temperature data;
[0095] c. Judging whether the indoor temperature is within the working range, if not, turn to step b;
[0096] d. Determine whether a radio frequency signal is received, if not, go to step b;
[0097] e. Wireless signal analysis and processing;
[0098] f. Determine whether the infrared detection wireless ...
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