Remote controller-based air conditioner control method, device, equipment and air conditioner

By collecting the indoor ambient temperature through the temperature sensor on the remote control, determining the temperature range, and adjusting the frequency of the air conditioner compressor, the problem of the difference between the indoor ambient temperature and the user's perceived temperature is solved, thereby reducing electricity costs and improving the user experience.

CN119222723BActive Publication Date: 2025-12-19QINGDAO HAIER AIR CONDITIONER GENERAL CORP LTD +3
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202310790264.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-29
Publication Date
2025-12-19
Estimated Expiration
2043-06-29

AI Technical Summary

Technical Problem

Existing air conditioners detect a difference between the indoor ambient temperature and the temperature felt by the user, leading to increased electricity costs and a reduced user experience.

Method used

The indoor ambient temperature is collected by the temperature sensor of the remote control. The temperature range is determined by the set temperature and the compensation temperature value. Based on the comparison results, the operating frequency of the air conditioner compressor is adjusted to regulate the indoor ambient temperature.

Benefits of technology

Precisely regulate indoor temperature, reduce electricity costs, and improve user experience.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119222723B_ABST
    Figure CN119222723B_ABST
Patent Text Reader

Abstract

The application provides an air conditioner control method and device based on a remote controller, an air conditioner and an air conditioner equipment, and relates to the technical field of air conditioners. The method comprises the following steps: collecting the temperature of an indoor environment by using the temperature sensor of the remote controller to obtain an indoor environment temperature; determining an indoor temperature range according to a set temperature and a set compensation temperature value; comparing and processing the indoor environment temperature and the indoor temperature range to obtain a temperature comparison result; and adjusting the operation frequency of the compressor of the air conditioner according to the temperature comparison result, so as to adjust the indoor environment temperature to be a target indoor temperature. The embodiment provided by the application collects the indoor environment temperature by using the temperature sensor of the remote controller, and then compares the indoor environment temperature with the indoor temperature range, so that the operation of the compressor is flexibly adjusted according to the comparison result. Not only can the power cost be reduced, but also the experience of the user is greatly improved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of air conditioners, and in particular to an air conditioner control method and device based on a remote controller, an air conditioner control equipment based on a remote controller and an air conditioner. BACKGROUND

[0002] With the development of science and technology and the progress of life, air conditioners have become intelligent devices that we often use in life. In hot summer, air conditioners can cool and reduce the indoor environment temperature, and in cold winter, air conditioners can heat and increase the indoor environment temperature, thereby providing a better experience for users.

[0003] In related technologies, in order to better provide a better cooling or heating for users, it is usually necessary to collect the indoor environment temperature, so as to adjust the air conditioner. However, the indoor environment temperature detection method of the existing air conditioner has an indoor unit side sensor and a line controller side sensor. The indoor unit side sensor is located inside the ceiling, and the line controller is generally installed on the door wall, both of which are away from the actual location of the user (bedroom bed, sofa, etc.), and there is a problem that the indoor environment temperature detected by the air conditioner is greatly different from the user's body temperature, for example, when the user's body temperature reaches the set temperature, the air conditioner still does not stop, which not only increases the power cost, but also reduces the user's experience. SUMMARY

[0004] The present application provides an air conditioner control method and device based on a remote controller, an air conditioner control equipment based on a remote controller and an air conditioner. The indoor environment temperature is collected by the temperature sensor of the remote controller, and then the indoor environment temperature and the indoor temperature range are compared, so that the compressor operation is flexibly adjusted according to the comparison result, which not only reduces the power cost, but also greatly improves the user's experience.

[0005] In a first aspect, the present application provides an air conditioner control method based on a remote controller, applied to a controller, wherein the controller is connected with the remote controller through a communication signal, and the remote controller comprises a temperature sensor. The air conditioner control method based on the remote controller comprises the following steps.

[0006] Collecting the temperature of the indoor environment by the temperature sensor of the remote controller to obtain the indoor environment temperature;

[0007] Determining the indoor temperature range according to the set temperature and the set compensation temperature value;

[0008] Comparing and processing the indoor environment temperature and the indoor temperature range to obtain a temperature comparison result;

[0009] Adjusting the running frequency of the compressor of the air conditioner according to the temperature comparison result, so as to adjust the indoor environment temperature to the target indoor temperature.

[0010] Preferably, the application provides a remote controller-based air conditioner control method,

[0011] The temperature comparison result at least includes: a first temperature result, a second temperature result;

[0012] The comparison between the indoor environment temperature and the indoor temperature range obtains a temperature comparison result, including:

[0013] When the indoor environment temperature is less than the lower limit value of the indoor temperature range, the first temperature result is obtained;

[0014] When the indoor environment temperature is greater than or equal to the upper limit value of the indoor temperature range, the second temperature result is obtained.

[0015] Preferably, the application provides a remote controller-based air conditioner control method,

[0016] The adjustment of the operating frequency of the compressor of the air conditioner according to the temperature comparison result includes:

[0017] Judging the operating mode of the air conditioner;

[0018] In the case that the operating mode of the air conditioner indicates the cooling mode and the temperature comparison result indicates the first temperature result, the operating frequency of the compressor is reduced, and in the case that the reduction duration of the reduced operating frequency reaches a preset duration, the compressor is controlled to stop;

[0019] In the case that the operating mode of the air conditioner indicates the cooling mode and the temperature comparison result indicates the second temperature result, a first increasing instruction for increasing the operating frequency is issued to the compressor, so that the compressor increases the operating frequency according to the first increasing instruction, and in the case that the indoor environment temperature is less than the upper limit value of the indoor temperature range, the execution of the first increasing instruction is stopped;

[0020] In the case that the operating mode of the air conditioner indicates the heating mode and the temperature comparison result indicates the first temperature result, a second increasing instruction for increasing the operating frequency is issued to the compressor, so that the compressor increases the operating frequency according to the second increasing instruction, and in the case that the indoor environment temperature is greater than or equal to the upper limit value of the indoor temperature range, the execution of the second increasing instruction is stopped;

[0021] In a case where the operation mode of the air conditioner is indicated as the heating mode and the temperature comparison result is indicated as the second temperature result, the operation frequency of the compressor is reduced, and in a case where the reduction duration of the operation frequency reaches the preset duration, the compressor is controlled to stop.

[0022] Preferably, the air conditioner control method based on a remote controller provided by the application comprises at least: a positioning component, a voice broadcast component, and the method further comprises:

[0023] The positioning information of the remote controller is obtained by using the positioning component, and the installation position information of the indoor unit of the air conditioner is obtained.

[0024] According to the positioning information and the installation position information, the control distance between the remote controller and the indoor unit is determined.

[0025] The control distance and a preset distance threshold are compared.

[0026] In a case where the control distance is greater than or equal to the distance threshold, the voice broadcast component is used to broadcast prompt information that the control distance exceeds the distance threshold.

[0027] Preferably, the air conditioner control method based on a remote controller provided by the application comprises at least: an indoor unit humidity sensor and a remote controller humidity sensor, and the method further comprises:

[0028] The indoor environment humidity is obtained by using the indoor unit humidity sensor, and the remote controller humidity is obtained by using the remote controller humidity sensor.

[0029] The indoor environment humidity and the remote controller humidity are compared to obtain a remote controller comparison result.

[0030] Based on the remote controller comparison result, the air conditioner is controlled to execute a target operation mode.

[0031] Preferably, the air conditioner control method based on a remote controller provided by the application comprises at least:

[0032] The target operation mode comprises at least: a ventilation mode.

[0033] Based on the remote controller comparison result, the air conditioner is controlled to execute a target operation mode, which comprises:

[0034] In a case where the remote controller comparison result indicates that the remote controller humidity is greater than or equal to the indoor environment humidity, the remote controller humidity and a preset humidity threshold value are compared to obtain a humidity comparison result, and the air conditioner is controlled to execute the target operation mode according to the humidity comparison result.

[0035] In a case where the remote controller comparison result indicates that the remote controller humidity is less than the indoor environment humidity, a ventilation mode instruction is generated, and the air conditioner is controlled to execute a ventilation mode according to the ventilation mode instruction.

[0036] Preferably, the application provides a remote controller-based air conditioner control method,

[0037] The target operation mode at least includes a dehumidification mode.

[0038] The controlling the air conditioner to execute the target operation mode according to the humidity comparison result includes:

[0039] In a case where the humidity comparison result indicates that the remote controller humidity is less than or equal to the humidity threshold value, a dehumidification mode instruction is generated, and the air conditioner is controlled to execute the dehumidification mode according to the dehumidification mode instruction.

[0040] In a case where the humidity comparison result indicates that the remote controller humidity is greater than the humidity threshold value, humidity warning information is generated, and the humidity warning information is broadcast by using the voice broadcast component.

[0041] In a second aspect, the application further provides a remote controller-based air conditioner control device applied to a controller, wherein the controller is connected with a remote controller through a communication signal, the remote controller includes a temperature sensor, and the remote controller-based air conditioner control device includes:

[0042] An acquisition module is configured to acquire a temperature of an indoor environment by using the temperature sensor of the remote controller to obtain an indoor environment temperature.

[0043] A determination module is configured to determine an indoor temperature range according to a set temperature and a set compensation temperature value.

[0044] A comparison module is configured to compare the indoor environment temperature and the indoor temperature range to obtain a temperature comparison result.

[0045] An adjustment module is configured to adjust a running frequency of a compressor of an air conditioner according to the temperature comparison result to adjust the indoor environment temperature to a target indoor temperature.

[0046] In a third aspect, the present application provides an electronic device, comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor implements the steps of the remote controller-based air conditioner control method according to any one of the above aspects when executing the program.

[0047] In a fourth aspect, the present application provides a non-transitory computer-readable storage medium, having a computer program stored thereon, wherein the computer program, when executed by a processor, implements the steps of the remote controller-based air conditioner control method according to any one of the above aspects.

[0048] In a fifth aspect, the present application provides a computer program product, comprising a computer program, wherein the computer program, when executed by a processor, implements the steps of the remote controller-based air conditioner control method according to any one of the above aspects.

[0049] In a sixth aspect, the present application provides an air conditioner, comprising a controller connected to a remote controller through a communication signal, wherein the remote controller comprises at least a temperature sensor, a positioning component, a voice broadcast component, and a remote controller humidity sensor, and the controller implements the steps of the remote controller-based air conditioner control method according to any one of the above aspects.

[0050] The remote controller-based air conditioner control method, device, electronic device, and air conditioner provided by the present application can collect the indoor environment temperature by using the temperature sensor of the remote controller, determine the indoor temperature range according to the set temperature and the set compensation temperature value, compare the indoor environment temperature with the indoor temperature range to obtain a temperature comparison result, and adjust the operating frequency of the compressor of the air conditioner according to the temperature comparison result to adjust the indoor environment temperature to the target indoor temperature. The indoor environment temperature is collected by using the temperature sensor of the remote controller, and the indoor environment temperature is compared with the indoor temperature range to flexibly adjust the operation of the compressor according to the comparison result, which not only reduces the power cost, but also greatly improves the user experience. BRIEF DESCRIPTION OF DRAWINGS

[0051] In order to more clearly illustrate the technical solutions in the present application or the prior art, the following will briefly introduce the drawings needed in the embodiments or prior art description. Obviously, the drawings in the following description are some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor.

[0052] Figure 1 is one of the flowcharts of the remote controller-based air conditioner control method provided by the present application;

[0053] Figure 2This is a second schematic diagram of the air conditioner control method based on a remote control provided by the present invention;

[0054] Figure 3 This is a schematic diagram of the structure of the remote control-based air conditioner control device provided by the present invention;

[0055] Figure 4 This is a schematic diagram of the structure of the electronic device provided by the present invention. Detailed Implementation

[0056] To make the objectives, technical solutions, and advantages of this invention clearer, the technical solutions of this invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this invention. All other embodiments obtained by those skilled in the art based on the embodiments of this invention without creative effort are within the scope of protection of this invention.

[0057] The following is combined Figures 1-4 This invention describes a remote control-based air conditioner control method, apparatus, device, and air conditioner. The embodiments provided by this invention utilize the temperature sensor of the remote control to collect the indoor ambient temperature, and then compare the indoor ambient temperature with the indoor temperature range to flexibly adjust the compressor operation based on the comparison result. This not only reduces electricity costs but also greatly improves the user experience.

[0058] like Figure 1 As shown, it is one of the implementation flow diagrams of an air conditioner control method based on a remote control provided by an embodiment of the present invention. An air conditioner control method based on a remote control may include, but is not limited to, steps S100 to S400.

[0059] S100, the temperature of the indoor environment is collected by the temperature sensor of the remote control to obtain the indoor environment temperature;

[0060] S200 determines the indoor temperature range based on the set temperature and the set compensation temperature value;

[0061] S300, compare the indoor ambient temperature and the indoor temperature range to obtain a temperature comparison result;

[0062] S400, based on the temperature comparison result, adjust the operating frequency of the air conditioner's compressor to adjust the indoor ambient temperature to the target indoor temperature.

[0063] It should be noted that the executing entity of the air conditioner control method based on a remote control in this application embodiment can be a hardware device with data information processing capability and / or the necessary software to drive the hardware device to work.

[0064] Optionally, the execution subject can include but is not limited to a workstation, a server, a computer, a user terminal and other intelligent devices. Among them, the user terminal includes but is not limited to a mobile phone, a computer, a smart voice interaction device, a smart home appliance, a vehicle-mounted terminal and the like.

[0065] In step S100 of some embodiments, the temperature sensor of the remote controller is used to collect the temperature of the indoor environment, and the indoor environment temperature is obtained.

[0066] It can be understood that the remote controller is built-in with a temperature sensor, and the temperature sensor built-in the remote controller can be used to collect the temperature of the indoor environment, and the indoor environment temperature is obtained, which is T1.

[0067] In step S200 of some embodiments, the indoor temperature range is determined according to the set temperature and the set compensation temperature value.

[0068] It can be understood that after the step of collecting the temperature of the indoor environment by the temperature sensor of the remote controller to obtain the indoor environment temperature in step S100 is executed, the specific execution step can be that the set temperature of the user is T2, the set compensation temperature is T3, the set temperature T2 and the compensation temperature T3 are calculated and processed to obtain the lower limit value T4 and the upper limit value T5.

[0069] T2-T3=T4, T2+T3=T5

[0070] Among them, T2 is the set temperature, T3 is the compensation temperature, T4 is the lower limit value of the temperature, and T5 is the upper limit value of the temperature.

[0071] The range composed of the lower limit value T4 of the temperature and the upper limit value T5 of the temperature is the indoor temperature range.

[0072] In step S300 of some embodiments, the indoor environment temperature and the indoor temperature range are compared and processed to obtain a temperature comparison result.

[0073] It should be noted that the temperature comparison result at least includes a first temperature result and a second temperature result.

[0074] It can be understood that after the step of determining the indoor temperature range according to the set temperature and the set compensation temperature value in step S200 is executed, the specific execution step can be that when the indoor environment temperature T1 is less than the lower limit value T4 of the indoor temperature range, the first temperature result is obtained.

[0075] When the indoor environment temperature T1 is greater than or equal to the upper limit value T5 of the indoor temperature range, the second temperature result is obtained.

[0076] In step S400 of some embodiments, according to the temperature comparison result, the operating frequency of the compressor of the air conditioner is adjusted to adjust the indoor environment temperature to the target indoor temperature.

[0077] It can be understood that after the step of comparing the indoor environment temperature with the indoor temperature range in step S300 to obtain the temperature comparison result, the specific execution step can be:

[0078] First, the operating mode of the air conditioner is determined.

[0079] In a case where it is determined that the operating mode of the air conditioner indicates the cooling mode and the temperature comparison result indicates the first temperature result, the operating frequency of the compressor is reduced, and in a case where the reduction duration of the reduced operating frequency reaches a preset duration, the compressor is controlled to stop.

[0080] It can be understood that, when the air conditioner operates in the cooling mode and the currently detected indoor environment temperature T1 is less than the lower limit value T4 of the indoor temperature range set by the user, for example, T4 is 19 degrees Celsius and the currently detected indoor environment temperature T1 is 18 degrees Celsius, it indicates that the current cooling effect of the air conditioner is very good, and therefore the operating frequency of the compressor needs to be reduced. In a case where the reduction duration of the reduced operating frequency reaches a preset duration, the compressor is controlled to stop, because the indoor environment temperature is already very low and meets the cooling demand of the user, if it continues to operate, not only the electricity is wasted, but also it is too cold, which affects the user experience. Therefore, by reducing the operating frequency of the compressor and controlling the compressor to stop, not only the power cost can be saved, but also the user experience can be ensured to be the best.

[0081] In a case where the operating mode of the air conditioner indicates the cooling mode and the temperature comparison result indicates the second temperature result, a first increasing instruction for increasing the operating frequency of the compressor is issued to the compressor, so that the compressor increases the operating frequency according to the first increasing instruction, and in a case where the indoor environment temperature is less than the upper limit value of the indoor temperature range, the execution of the first increasing instruction is stopped.

[0082] It can be understood that, if the air conditioner is running in the cooling mode, and the currently detected indoor environment temperature T1 is greater than or equal to the upper limit value T5 of the indoor temperature range set by the user, for example, T5 is 20 degrees Celsius, and the currently detected indoor environment temperature T1 is 25 degrees Celsius, it indicates that the current cooling effect of the air conditioner is very poor, and therefore the operating frequency of the compressor needs to be increased to achieve rapid cooling, and until the indoor environment temperature T1 is less than the upper limit value T5 of the indoor temperature range, the first increasing instruction is stopped to be executed, so that the compressor of the air conditioner runs at a normal operating frequency. In this way, the compressor operation can be more accurately controlled to accurately adjust the indoor environment temperature to provide a better experience for the user.

[0083] In a case where the operating mode of the air conditioner indicates the heating mode and the temperature comparison result indicates the first temperature result, a second increasing instruction of increasing the operating frequency of the compressor is issued to the compressor, so that the compressor increases the operating frequency according to the second increasing instruction, and in a case where the indoor environment temperature is greater than or equal to the upper limit value of the indoor temperature range, the second increasing instruction is stopped to be executed.

[0084] It can be understood that, if the air conditioner is running in the heating mode, and the currently detected indoor environment temperature T1 is less than the lower limit value T4 of the indoor temperature range set by the user, for example, T4 is 19 degrees Celsius, and the currently detected indoor environment temperature T1 is 16 degrees Celsius, it indicates that the current heating effect of the air conditioner is very poor, and therefore the operating frequency of the compressor needs to be increased to achieve rapid heating, and until the indoor environment temperature T1 is greater than or equal to the upper limit value T5 of the indoor temperature range, the second increasing instruction is stopped to be executed, so that the compressor of the air conditioner runs at a normal operating frequency. In this way, the compressor operation can be more accurately controlled to accurately adjust the indoor environment temperature for heating to provide a better experience for the user.

[0085] In a case where the operating mode of the air conditioner indicates the heating mode and the temperature comparison result indicates the second temperature result, the operating frequency of the compressor is reduced, and in a case where the reduction duration of the operating frequency reaches the preset duration, the compressor is controlled to be stopped.

[0086] It can be understood that the air conditioner is operated in the heating mode, and the current detected indoor environment temperature T1 is greater than or equal to the upper limit value T5 of the indoor temperature range set by the user, for example, T5 is 20 degrees Celsius, and the current detected indoor environment temperature T1 is 25 degrees Celsius, which indicates that the current refrigeration effect of the air conditioner is very good, and the heating demand of the user has been met, and the operating frequency of the compressor needs to be reduced to avoid the overheating of the indoor environment temperature affecting the experience of the user. Therefore, the operating frequency of the compressor is reduced. In the case that the reduction duration of the operating frequency reaches the preset duration, the compressor is controlled to stop to increase the service life of the compressor.

[0087] In some embodiments of the application, the remote controller at least includes a positioning component and a voice broadcast component, and the method further includes:

[0088] The positioning information of the remote controller is obtained by using the positioning component, and the installation position information of the indoor unit of the air conditioner is obtained.

[0089] According to the positioning information and the installation position information, the control distance between the remote controller and the indoor unit is determined.

[0090] The control distance and the preset distance threshold are compared.

[0091] In the case that the control distance is greater than or equal to the distance threshold, the voice broadcast component is used to broadcast the prompt information that the control distance exceeds the distance threshold.

[0092] It can be understood that the remote controller at least includes but is not limited to a positioning component and a voice broadcast component. The positioning component is used to obtain the position information of the remote controller, and the voice broadcast component is used to broadcast the voice information determined by the controller.

[0093] The positioning information of the remote controller is obtained by using the positioning component of the remote controller, and the installation position information of the indoor unit of the air conditioner is obtained. The installation position information is usually fixed information determined during installation and stored in a database.

[0094] According to the positioning information of the remote controller and the installation position information of the indoor unit, the control distance d between the remote controller and the indoor unit is calculated, and the control distance d and the preset distance threshold f are compared. If the control distance d is greater than or equal to the distance threshold f, it indicates that the distance between the remote controller and the indoor unit has exceeded the controllable distance, and the indoor unit cannot receive the control signal issued by the remote controller. Therefore, the voice broadcast component is used to broadcast the prompt information that the control distance exceeds the distance threshold, so as to remind the user to control the air conditioner by using the remote controller within the controllable range.

[0095] In some embodiments of the present application, the indoor unit comprises at least an indoor unit humidity sensor, the remote controller comprises at least a remote controller humidity sensor, and the method further comprises:

[0096] The indoor environment humidity is obtained by using the indoor unit humidity sensor, and the remote controller humidity is obtained by using the remote controller humidity sensor;

[0097] The indoor environment humidity and the remote controller humidity are compared to obtain a remote controller comparison result;

[0098] Based on the remote controller comparison result, the air conditioner is controlled to execute a target operation mode.

[0099] It should be noted that the target operation mode at least includes a dehumidification mode and a ventilation mode.

[0100] It can be understood that the humidity information of the indoor environment is detected by using the indoor unit humidity sensor to obtain the indoor environment humidity, and the humidity of the remote controller is collected by using the remote controller humidity sensor to obtain the remote controller humidity.

[0101] Let the indoor environment humidity be H1 and the remote controller humidity be H2, the indoor environment humidity H1 and the remote controller humidity H2 are compared to obtain a remote controller comparison result.

[0102] In a case where the remote controller comparison result indicates that the remote controller humidity is greater than or equal to the indoor environment humidity, the remote controller humidity and a preset humidity threshold value are compared to obtain a humidity comparison result, and the air conditioner is controlled to execute the target operation mode according to the humidity comparison result.

[0103] In a case where the remote controller comparison result indicates that the remote controller humidity is less than the indoor environment humidity, a ventilation mode instruction is generated, and the air conditioner is controlled to execute the ventilation mode according to the ventilation mode instruction.

[0104] When the remote controller humidity is greater than or equal to the indoor environment humidity, it indicates that the remote controller humidity is relatively large, and in a case where the humidity comparison result indicates that the remote controller humidity is less than or equal to the humidity threshold value, it indicates that the remote controller humidity is greater than the indoor environment humidity, but the humidity degree does not exceed the normal humidity threshold value, therefore, a dehumidification mode instruction is automatically generated at this time, the dehumidification instruction is sent from the remote controller to the indoor unit, so as to control the air conditioner to execute the dehumidification mode according to the dehumidification mode instruction, so as to reduce the humidity of the remote controller and the indoor environment, and avoid damage of the remote controller due to excessive humidity.

[0105] When the remote controller humidity is less than the indoor environment humidity, it indicates that the remote controller humidity is relatively small, and thus a ventilation mode instruction is generated, and the ventilation mode instruction is sent from the remote controller to the indoor unit to control the air conditioner to execute the ventilation mode according to the ventilation mode instruction, so as to keep the indoor environment dry.

[0106] In some embodiments of the present application, the controlling the air conditioner to execute the target operation mode according to the humidity comparison result comprises:

[0107] When the humidity comparison result indicates that the remote controller humidity is less than or equal to the humidity threshold value, a dehumidification mode instruction is generated, and the air conditioner is controlled to execute the dehumidification mode according to the dehumidification mode instruction.

[0108] When the humidity comparison result indicates that the remote controller humidity is greater than the humidity threshold value, humidity warning information is generated, and the humidity warning information is broadcasted by the voice broadcast component.

[0109] It can also be understood that when the remote controller humidity is greater than or equal to the indoor environment humidity, it indicates that the remote controller humidity is relatively large, and then the remote controller humidity H2 and the preset humidity threshold value H3 are compared, if the remote controller humidity H2 is greater than or equal to the humidity threshold value H3, it indicates that the remote controller humidity has exceeded the normal humidity threshold value range, and has lost the accurate control performance, and thus the humidity warning information is generated, and the humidity warning information is broadcasted by the voice broadcast component, to remind the user that the remote controller humidity is too large and may not be able to be normally used and needs to be repaired.

[0110] Figure 2 Fig. 2 is a schematic diagram of the remote controller-based air conditioner control method provided by the present application, which is used when the distance between the remote controller and the user is very close, usually less than 0.3 meters. The remote controller is provided with a remote controller temperature sensor, and the indoor unit is also provided with an indoor unit temperature sensor. The indoor unit is usually far away from the user, and the wire controller is usually arranged on the wall. The physical hardware corresponding to the execution subject "controller" of the remote controller-based air conditioner control method can be the wire controller. The wire controller is also a certain distance away from the user and the indoor unit. Therefore, the indoor environment temperature collected by the indoor unit temperature sensor is not particularly accurate, and the indoor environment temperature collected by the remote controller temperature sensor is closer to the user's body temperature. Therefore, when collecting the indoor environment temperature, it is usually determined whether the indoor environment temperature is collected by the remote controller temperature sensor or the indoor unit temperature sensor. The indoor environment temperature collected by the indoor unit temperature sensor is used to control the operation of the air conditioner, which can more accurately control the air conditioner to adjust the indoor environment temperature to be as close as possible to the user's body temperature, thereby improving the user's experience.

[0111] The application provides an air conditioner control method and device based on a remote controller, an air conditioner and an air conditioner control equipment.

[0112] The application provides an air conditioner control device based on a remote controller, and the air conditioner control device based on a remote controller described below can be correspondingly referred to the air conditioner control method based on a remote controller described above.

[0113] As shown in Figure 3 FIG. 1 is a structural schematic diagram of an air conditioner control device based on a remote controller, which is applied to a controller connected with a remote controller through a communication signal, and the remote controller comprises a temperature sensor.

[0114] The acquisition module 310 is configured to acquire the temperature of an indoor environment by using the temperature sensor of the remote controller, and obtain an indoor environment temperature.

[0115] The determination module 320 is configured to determine an indoor temperature range according to a set temperature and a set compensation temperature value.

[0116] The comparison module 330 is configured to compare the indoor environment temperature with the indoor temperature range, and obtain a temperature comparison result.

[0117] The adjustment module 340 is configured to adjust the running frequency of a compressor of an air conditioner according to the temperature comparison result, so as to adjust the indoor environment temperature to a target indoor temperature.

[0118] Preferably, according to the air conditioner control device based on a remote controller, the temperature comparison result at least comprises a first temperature result and a second temperature result.

[0119] When the indoor environment temperature is less than the lower limit value of the indoor temperature range, the first temperature result is obtained.

[0120] When the indoor environment temperature is greater than or equal to the upper limit value of the indoor temperature range, the second temperature result is obtained.

[0121] Preferably, the air conditioner control device based on the remote controller provided by the application comprises an adjusting module 340, configured to determine the operation mode of the air conditioner.

[0122] When the operation mode of the air conditioner indicates the cooling mode and the temperature comparison result indicates the first temperature result, the operation frequency of the compressor is reduced, and when the reduction duration of the operation frequency reaches a preset duration, the compressor is controlled to stop.

[0123] When the operation mode of the air conditioner indicates the cooling mode and the temperature comparison result indicates the second temperature result, a first increase instruction for increasing the operation frequency of the compressor is issued, so that the compressor increases the operation frequency according to the first increase instruction, and when the indoor environment temperature is less than the upper limit value of the indoor temperature range, the execution of the first increase instruction is stopped.

[0124] When the operation mode of the air conditioner indicates the heating mode and the temperature comparison result indicates the first temperature result, a second increase instruction for increasing the operation frequency of the compressor is issued, so that the compressor increases the operation frequency according to the second increase instruction, and when the indoor environment temperature is greater than or equal to the upper limit value of the indoor temperature range, the execution of the second increase instruction is stopped.

[0125] When the operation mode of the air conditioner indicates the heating mode and the temperature comparison result indicates the second temperature result, the operation frequency of the compressor is reduced, and when the reduction duration of the operation frequency reaches the preset duration, the compressor is controlled to stop.

[0126] Preferably, the air conditioner control device based on the remote controller provided by the application comprises a positioning component and a voice broadcast component, and the device is further specifically configured to acquire the positioning information of the remote controller by using the positioning component, and acquire the installation position information of the indoor unit of the air conditioner.

[0127] According to the positioning information and the installation position information, the control distance between the remote controller and the indoor unit is determined.

[0128] The control distance and a preset distance threshold value are compared.

[0129] In a case where the control distance is greater than or equal to the distance threshold, a prompt information that the control distance exceeds the distance threshold is broadcast by using the voice broadcast component.

[0130] Preferably, the air conditioner control device based on a remote controller provided by the present application, the indoor unit at least includes an indoor unit humidity sensor, the remote controller at least includes a remote controller humidity sensor, the device is further specifically used for obtaining the indoor environment humidity by using the indoor unit humidity sensor, and obtaining the remote controller humidity by using the remote controller humidity sensor.

[0131] The indoor environment humidity and the remote controller humidity are compared to obtain a remote controller comparison result.

[0132] Based on the remote controller comparison result, the air conditioner is controlled to execute a target operation mode.

[0133] Preferably, the air conditioner control device based on a remote controller provided by the present application, the target operation mode at least includes a ventilation mode; the device is further specifically used for, in a case where the remote controller comparison result indicates that the remote controller humidity is greater than or equal to the indoor environment humidity, comparing the remote controller humidity with a preset humidity threshold to obtain a humidity comparison result, and controlling the air conditioner to execute the target operation mode according to the humidity comparison result.

[0134] In a case where the remote controller comparison result indicates that the remote controller humidity is less than the indoor environment humidity, a ventilation mode instruction is generated, and the air conditioner is controlled to execute the ventilation mode according to the ventilation mode instruction.

[0135] Preferably, the air conditioner control device based on a remote controller provided by the present application, the target operation mode at least includes a dehumidification mode; the device is further specifically used for, in a case where the humidity comparison result indicates that the remote controller humidity is less than or equal to the humidity threshold, generating a dehumidification mode instruction, and controlling the air conditioner to execute the dehumidification mode according to the dehumidification mode instruction; in a case where the humidity comparison result indicates that the remote controller humidity is greater than the humidity threshold, generating humidity early warning information, and broadcasting the humidity early warning information by using the voice broadcast component.

[0136] The application provides an air conditioner control method and device based on a remote controller, and an air conditioner, wherein the temperature sensor of the remote controller is used to collect the temperature of an indoor environment, and the indoor environment temperature is obtained; the indoor temperature range is determined according to the set temperature and the set compensation temperature value; the indoor environment temperature and the indoor temperature range are compared, and the temperature comparison result is obtained; and the operating frequency of the compressor of the air conditioner is adjusted according to the temperature comparison result, so that the indoor environment temperature is adjusted to the target indoor temperature. The temperature sensor of the remote controller is used to collect the indoor environment temperature, and the indoor environment temperature and the indoor temperature range are compared, so that the operating frequency of the compressor is flexibly adjusted according to the comparison result, which not only reduces the power cost, but also greatly improves the user experience.

[0137] Figure 4 An example of a schematic diagram of a physical structure of an electronic device is shown in Figure 4 The electronic device can include a processor 410, a communications interface 420, a memory 430, and a communications bus 440, wherein the processor 410, the communications interface 420, and the memory 430 can communicate with each other through the communications bus 440. The processor 410 can call the logical instructions in the memory 430 to execute an air conditioner control method based on a remote controller, which includes: using the temperature sensor of the remote controller to collect the temperature of an indoor environment, and obtaining the indoor environment temperature; determining the indoor temperature range according to the set temperature and the set compensation temperature value; comparing the indoor environment temperature and the indoor temperature range, and obtaining the temperature comparison result; and adjusting the operating frequency of the compressor of the air conditioner according to the temperature comparison result, so that the indoor environment temperature is adjusted to the target indoor temperature.

[0138] In addition, the logical instructions in the memory 430 described above can be implemented in the form of a software function unit and sold or used as an independent product, and can be stored in a computer readable storage medium. Based on such understanding, the technical solutions of the application essentially or the part that contributes to the prior art or part of the technical solutions can be embodied in the form of a software product, and the computer software product is stored in a storage medium, including a plurality of instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the method described in the embodiments of the application. The aforementioned storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM, Read-Only Memory), a random access memory (RAM, Random Access Memory), a magnetic disk or an optical disk, and various storage medium that can store program codes.

[0139] In another aspect, the present application also provides a computer program product comprising a computer program, which can be stored on a non-transitory computer readable storage medium, and the computer program, when executed by a processor, enables a computer to perform a remote controller-based air conditioner control method provided by any of the above methods, which comprises: collecting a temperature of an indoor environment by using the temperature sensor of the remote controller to obtain an indoor environment temperature; determining an indoor temperature range according to a set temperature and a set compensation temperature value; comparing the indoor environment temperature with the indoor temperature range to obtain a temperature comparison result; and adjusting a running frequency of a compressor of an air conditioner according to the temperature comparison result to adjust the indoor environment temperature to a target indoor temperature.

[0140] In another aspect, the present application also provides a non-transitory computer readable storage medium having a computer program stored thereon, which, when executed by a processor, implements a remote controller-based air conditioner control method provided by any of the above methods, which comprises: collecting a temperature of an indoor environment by using the temperature sensor of the remote controller to obtain an indoor environment temperature; determining an indoor temperature range according to a set temperature and a set compensation temperature value; comparing the indoor environment temperature with the indoor temperature range to obtain a temperature comparison result; and adjusting a running frequency of a compressor of an air conditioner according to the temperature comparison result to adjust the indoor environment temperature to a target indoor temperature.

[0141] The device embodiments described above are merely illustrative, wherein the units described as separate components can or can not be physically separate, and the components displayed as units can or can not be physical units, i.e., can be located in one place, or can be distributed on multiple network units. Part or all of the modules can be selected to achieve the purpose of the embodiment according to actual needs. Those skilled in the art can understand and implement without creative labor.

[0142] From the above description of the embodiments, those skilled in the art can clearly understand that the embodiments can be implemented by means of software plus necessary universal hardware platforms, and of course can also be implemented by hardware. Based on such understanding, the above technical solutions, essentially or in terms of the contribution to the prior art, can be embodied in the form of a software product, which can be stored in a computer readable storage medium, such as a ROM / RAM, a magnetic disk, or an optical disk, and includes a plurality of instructions to make a computer device (which can be a personal computer, a server, or a network device, etc.) execute the methods described in each embodiment or some parts of the embodiments.

[0143] It should be pointed out finally that the above embodiments are only used to illustrate the technical solutions of the present application, but not to limit the same; and although the present application has been described in detail with reference to the foregoing embodiments, it should be appreciated by those skilled in the art that the technical solutions recorded in the foregoing embodiments can be modified, or some technical features thereof can be replaced equivalently; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A remote controller-based air conditioner control method, characterized by, The application is applied to a controller connected with a remote controller through a communication signal, the remote controller comprises a temperature sensor, and the remote controller-based air conditioner control method comprises the following steps: Collecting the temperature of an indoor environment by using the temperature sensor of the remote controller to obtain an indoor environment temperature; Determining an indoor temperature range according to a set temperature and a set compensation temperature value; Comparing the indoor environment temperature with the indoor temperature range to obtain a temperature comparison result; Adjusting the operation frequency of a compressor of an air conditioner according to the temperature comparison result to adjust the indoor environment temperature to a target indoor temperature; wherein the indoor unit of the air conditioner at least comprises an indoor unit humidity sensor, and the remote controller at least comprises a remote controller humidity sensor; Obtaining the indoor environment humidity by using the indoor unit humidity sensor and obtaining the remote controller humidity by using the remote controller humidity sensor; Comparing the indoor environment humidity with the remote controller humidity to obtain a remote controller comparison result; Controlling the air conditioner to execute a target operation mode based on the remote controller comparison result; The target operation mode at least comprises a ventilation mode; The controlling the air conditioner to execute a target operation mode based on the remote controller comparison result comprises the following steps: In the case that the remote controller comparison result indicates that the remote controller humidity is greater than or equal to the indoor environment humidity, comparing the remote controller humidity with a preset humidity threshold to obtain a humidity comparison result, and controlling the air conditioner to execute the target operation mode according to the humidity comparison result; In the case that the remote controller comparison result indicates that the remote controller humidity is less than the indoor environment humidity, generating a ventilation mode instruction, and controlling the air conditioner to execute the ventilation mode according to the ventilation mode instruction.

2. The remote controller-based air conditioner control method according to claim 1, wherein The temperature comparison result at least comprises a first temperature result and a second temperature result; The comparing the indoor environment temperature with the indoor temperature range to obtain a temperature comparison result comprises the following steps: When the indoor environment temperature is less than the lower limit value of the indoor temperature range, the first temperature result is obtained; When the indoor environment temperature is greater than or equal to the upper limit value of the indoor temperature range, the second temperature result is obtained.

3. The remote controller-based air conditioner control method according to claim 2, wherein The adjusting the operation frequency of a compressor of an air conditioner according to the temperature comparison result comprises the following steps: Judging the operation mode of the air conditioner; In the case that the operation mode of the air conditioner indicates a refrigeration mode and the temperature comparison result indicates the first temperature result, reducing the operation frequency of the compressor, and in the case that the reduction time length of the reduced operation frequency reaches a preset time length, stopping the compressor. In a case where the operation mode of the air conditioner indicates the cooling mode and the temperature comparison result indicates the second temperature result, a first increasing instruction for increasing the operation frequency of the compressor is issued to the compressor, so that the compressor increases the operation frequency according to the first increasing instruction, and in a case where the indoor environment temperature is less than the upper limit value of the indoor temperature range, the execution of the first increasing instruction is stopped; In a case where the operation mode of the air conditioner indicates the heating mode and the temperature comparison result indicates the first temperature result, a second increasing instruction for increasing the operation frequency of the compressor is issued to the compressor, so that the compressor increases the operation frequency according to the second increasing instruction, and in a case where the indoor environment temperature is greater than or equal to the upper limit value of the indoor temperature range, the execution of the second increasing instruction is stopped; In a case where the operation mode of the air conditioner indicates the heating mode and the temperature comparison result indicates the second temperature result, the operation frequency of the compressor is reduced, and in a case where the reduction duration of the operation frequency reaches the preset duration, the compressor is controlled to be stopped.

4. The remote control based air conditioner control method of claim 1, wherein, The remote controller at least comprises a positioning component and a voice broadcast component, and the method further comprises: obtaining positioning information of the remote controller by using the positioning component, and obtaining installation position information of an indoor unit of the air conditioner; determining a control distance between the remote controller and the indoor unit according to the positioning information and the installation position information; comparing the control distance with a preset distance threshold value; in a case where the control distance is greater than or equal to the distance threshold value, broadcasting prompt information that the control distance exceeds the distance threshold value by using the voice broadcast component.

5. The air conditioner control method based on a remote controller according to claim 4, wherein the target operation mode at least comprises a dehumidification mode; and the controlling the air conditioner to execute the target operation mode according to the humidity comparison result comprises: generating a dehumidification mode instruction in a case where the humidity comparison result indicates that the humidity of the remote controller is less than or equal to the humidity threshold value, and controlling the air conditioner to execute the dehumidification mode according to the dehumidification mode instruction; and generating humidity warning information in a case where the humidity comparison result indicates that the humidity of the remote controller is greater than the humidity threshold value, and broadcasting the humidity warning information by using the voice broadcast component. The air conditioner control device based on a remote controller is applied to a controller connected with a remote controller through a communication signal, the remote controller comprises a temperature sensor, and the air conditioner control device based on a remote controller comprises: an acquisition module configured to acquire a temperature of an indoor environment by using the temperature sensor of the remote controller to obtain an indoor environment temperature; 6. A remote control based air conditioner control apparatus, characterized by, a determination module configured to determine an indoor temperature range according to a set temperature and a set compensation temperature value; a comparison module configured to compare the indoor environment temperature with the indoor temperature range to obtain a temperature comparison result; and a control module configured to control the air conditioner to execute a target operation mode according to the temperature comparison result. ​ The adjusting module is configured to adjust a running frequency of a compressor of the air conditioner according to the temperature comparison result, so as to adjust the indoor environment temperature to a target indoor temperature; wherein the indoor unit of the air conditioner at least comprises an indoor unit humidity sensor, and the remote controller at least comprises a remote controller humidity sensor; The indoor environment humidity is obtained by using the indoor unit humidity sensor, and the remote controller humidity is obtained by using the remote controller humidity sensor; The indoor environment humidity and the remote controller humidity are compared to obtain a remote controller comparison result; The air conditioner is controlled to execute a target running mode based on the remote controller comparison result; The target running mode at least comprises a ventilation mode; The air conditioner is controlled to execute the target running mode based on the remote controller comparison result, which comprises: In a case where the remote controller comparison result indicates that the remote controller humidity is greater than or equal to the indoor environment humidity, the remote controller humidity is compared with a preset humidity threshold to obtain a humidity comparison result, and the air conditioner is controlled to execute the target running mode according to the humidity comparison result; In a case where the remote controller comparison result indicates that the remote controller humidity is less than the indoor environment humidity, a ventilation mode instruction is generated, and the air conditioner is controlled to execute the ventilation mode according to the ventilation mode instruction.

7. An electronic device comprising a memory, a processor, and a computer program stored on the memory and executable on the processor, characterized in that, The processor executes the program to implement the steps of the air conditioner control method based on the remote controller according to any one of claims 1 to 5.

8. A non-transitory computer-readable storage medium having stored thereon a computer program, characterized in that, The computer program is executed by the processor to implement the steps of the air conditioner control method based on the remote controller according to any one of claims 1 to 5.

9. An air conditioner comprising a controller connected with a remote controller through a communication signal, the remote controller comprising at least a temperature sensor, a positioning component, a voice broadcast component, and a remote controller humidity sensor, characterized in that, The controller implements the steps of the air conditioner control method based on the remote controller according to any one of claims 1 to 5.

Citation Information

Patent Citations

  • One-key intelligent remote control of air conditioner

    CN201531971U

  • Drone remote control unit convenient to carry

    CN208641754U