An air conditioning humidification method, device, electronic equipment and computer readable medium

By acquiring humidity and temperature data from the air conditioner, determining the target humidity threshold, and adopting different humidification modes, the problem of the air conditioner not being able to adjust humidity on its own is solved, improving user comfort and experience.

CN112413851BActive Publication Date: 2026-04-10GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
GREE ELECTRIC APPLIANCE INC OF ZHUHAI
Filing Date
2020-11-25
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Air conditioners cannot automatically adjust humidity based on the user's perceived humidity, resulting in inconsistent comfort levels for different users in different environments.

Method used

By acquiring the current humidity data and temperature of the air-conditioned service area, the target humidity threshold is determined, and different humidification modes are used for humidification according to the temperature conditions, including a first humidification mode and a second humidification mode, wherein the humidification intensity of the first humidification mode is greater than that of the second humidification mode.

Benefits of technology

It improves the user's humidity comfort, meets the user's humidity needs at different temperatures, and enhances the user experience of air conditioning.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides an air conditioner humidifying method and device, electronic equipment and computer readable medium, and belongs to the technical field of air conditioners. The method comprises: obtaining current humidity data and current temperature of an air conditioner service area, and determining a target humidity threshold according to obtained humidity operation instructions; in the case that the current humidity data is less than the target humidity threshold and the current temperature meets a preset temperature condition, a first humidifying mode is used for humidifying; in the case that the current humidity data is less than the target humidity threshold and the current temperature does not meet the preset temperature condition, a second humidifying mode is used for humidifying, wherein the humidifying intensity of the first humidifying mode is greater than the humidifying intensity of the second humidifying mode. In the application, because the temperature of the environment in which the user is located is different, humidifying is carried out through the humidifying mode corresponding to the temperature, the humidity body sensation of the user is improved, and the user experience is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of air conditioners, and in particular to an air conditioner humidification method and device, an electronic device, and a computer readable medium. BACKGROUND

[0002] An air conditioner can be used to adjust the temperature and humidity in the air. A human body feels more comfortable when the humidity is between 30% and 70%. However, different users have different most comfortable humidities. In addition, the climate in different regions is different, which causes temperature differences. The humidity of a user's body is also different at different temperatures. An air conditioner cannot automatically adjust the humidity according to the user's body feeling. SUMMARY

[0003] Embodiments of the present application provide an air conditioner humidification method, device, electronic device, and computer readable medium to solve the problem of different user body humidities. The specific technical solutions are as follows.

[0004] In a first aspect, an air conditioner humidification method is provided. The method includes:

[0005] obtaining current humidity data and current temperature of an air conditioner service area, and determining a target humidity threshold according to an obtained humidity operation instruction;

[0006] in a case where the current humidity data is less than the target humidity threshold and the current temperature meets a preset temperature condition, using a first humidification mode for humidification;

[0007] in a case where the current humidity data is less than the target humidity threshold and the current temperature does not meet the preset temperature condition, using a second humidification mode for humidification, wherein the humidification intensity of the first humidification mode is greater than the humidification intensity of the second humidification mode.

[0008] Optionally, the determining of the target humidity threshold according to the obtained humidity operation instruction includes:

[0009] in response to the humidity query instruction, querying historical humidity data of the air conditioner;

[0010] generating first humidity data according to a humidity use number and the historical humidity data, wherein the first humidity data is humidity data that meets a target user habit, and the humidity use number corresponds to a historical start number of the air conditioner;

[0011] in a case where a humidity adjustment instruction has been received, generating the target humidity threshold according to a humidity adjustment gear and the first humidity data, wherein the humidity adjustment gear is included in the humidity adjustment instruction;

[0012] In the case that the humidity adjustment instruction is not received, the first humidity data is taken as the target humidity threshold.

[0013] Optionally, the determining of the target humidity threshold according to the obtained humidity operation instruction comprises:

[0014] In the case that the humidity adjustment instruction is received, the target humidity threshold is determined according to a humidity adjustment gear and second humidity data, wherein the second humidity data is preset humidity data satisfying user group comfort.

[0015] In the case that the humidity adjustment instruction is not received, the second humidity data is taken as the target humidity threshold.

[0016] Optionally, the generating of the first humidity data according to the humidity use frequency and the historical humidity data comprises:

[0017] The historical start-up frequency of the air conditioner and historical humidity data after each start-up are obtained;

[0018] The average humidity data of the plurality of historical humidity data is determined;

[0019] The first humidity data is generated according to the difference between the average humidity data and the historical humidity data and the historical start-up frequency.

[0020] Optionally, the obtaining of the historical humidity data after each start-up comprises:

[0021] The running duration after each start-up in history is determined;

[0022] In the case that the running duration is greater than a target preset duration, the humidity data at the end of the current running is taken as the historical humidity data.

[0023] Optionally, before the second humidity data is taken as the target humidity threshold, the method further comprises:

[0024] The pre-stored upper limit humidity data and lower limit humidity data satisfying user group comfort are obtained;

[0025] The average value of the upper limit humidity data and the lower limit humidity data is taken as the second humidity data.

[0026] Optionally, after the target humidity threshold is determined, the method further comprises:

[0027] In the case that the current humidity data is not less than the target humidity threshold, the humidifying operation is stopped.

[0028] In a second aspect, an air conditioner humidifying device is provided, and the device comprises:

[0029] determining module configured to acquire current humidity data and current temperature of a service area of an air conditioner, and determine a target humidity threshold according to an acquired humidity operation instruction;

[0030] a first humidifying module configured to, in a case where the current humidity data is less than the target humidity threshold and the current temperature satisfies a preset temperature condition, adopt a first humidifying mode to humidify;

[0031] a second humidifying module configured to, in a case where the current humidity data is less than the target humidity threshold and the current temperature does not satisfy the preset temperature condition, adopt a second humidifying mode to humidify, wherein a humidifying intensity of the first humidifying mode is greater than a humidifying intensity of the second humidifying mode.

[0032] In a third aspect, an electronic device is provided, and the electronic device comprises a processor, a communication interface, a memory and a communication bus, wherein the processor, the communication interface and the memory are in communication with each other through the communication bus.

[0033] The memory is configured to store a computer program.

[0034] The processor is configured to execute the program stored in the memory to implement the method steps.

[0035] In a fourth aspect, a computer readable storage medium is provided, and the computer readable storage medium stores a computer program, and the computer program is executed by a processor to implement the method steps.

[0036] The embodiments of the present application provide an air conditioner humidifying method, and the method comprises the following steps: an air conditioner controller acquires current humidity data and current temperature of a service area of an air conditioner, and according to an acquired humidity operation instruction, in a case where the current humidity data is less than a target humidity threshold and the current temperature satisfies a preset temperature condition, adopts a first humidifying mode to humidify; in a case where the current humidity data is less than the target humidity threshold and the current temperature does not satisfy the preset temperature condition, adopts a second humidifying mode to humidify, wherein a humidifying intensity of the first humidifying mode is greater than a humidifying intensity of the second humidifying mode. In the present application, because the temperature of the environment where the user is located is different, the humidifying mode corresponding to the temperature is adopted to humidify, the humidity body feeling of the user is improved, and the user experience is improved.

[0037] Of course, implementing any product or method of the present application does not necessarily need to achieve all the advantages above at the same time. BRIEF DESCRIPTION OF DRAWINGS

[0038] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or prior art description will be briefly introduced as follows. Obviously, those drawings can also help the ordinary skilled in the art to obtain other drawings without any creative effort.

[0039] Figure 1 A flow chart of a method for air conditioner humidification provided by the embodiments of the present application;

[0040] Figure 2 A schematic diagram of an air conditioner panel provided by the embodiments of the present application;

[0041] Figure 3 A flow chart of a method for determining a target humidity threshold provided by the embodiments of the present application;

[0042] Figure 4 Another flow chart of a method for determining a target humidity threshold provided by the embodiments of the present application;

[0043] Figure 5 A flow chart of a method for air conditioner humidification provided by the embodiments of the present application;

[0044] Figure 6 A structural schematic diagram of a device for air conditioner humidification provided by the embodiments of the present application;

[0045] Figure 7 A structural schematic diagram of an electronic device provided by the embodiments of the present application. DETAILED DESCRIPTION

[0046] The technical solutions in the embodiments of the present application will be described clearly and completely in the drawings of the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by the ordinary skilled in the art without any creative effort are within the protection scope of the present application.

[0047] The embodiments of the present application provide a method for air conditioner humidification, which can be applied to an air conditioner controller for controlling the humidification intensity of the air conditioner.

[0048] The method for air conditioner humidification provided by the embodiments of the present application will be described in detail in combination with the specific embodiments as follows. Figure 1 As shown in the method for air conditioner humidification provided by the embodiments of the present application, the specific steps are as follows.

[0049] Step 101: obtaining the current humidity data and the current temperature of the air conditioner service area, and determining a target humidity threshold according to the obtained humidity operation instruction.

[0050] In the embodiment of the present application, the air conditioner is provided with a temperature sensor and a humidity sensor, which are used to detect the air temperature and air humidity in the air conditioner service area, respectively, as shown in Figure 2 Figure 2 The temperature sensor 3 and the humidity sensor 4 are located at the lower left of the air conditioner panel, the rear of the air conditioner panel is provided with a humidification module 2 for spraying moisture through a mist outlet 1, and the right side of the air conditioner panel is provided with a display device 5 for displaying the current time, target humidity threshold and current humidity data. The user can adjust the target humidity threshold according to the current humidity data and body feeling. The display device is a display screen, which can obtain the current time through the wifi module and display it. The target user can also set the temperature sensor and the humidity sensor separately, and transmit the temperature data and humidity data to the air conditioner controller through the wifi module.

[0051] After the air conditioner is turned on, it is first connected with the wifi module, and then the network IP is obtained through the wifi module to determine the current location, current time, current weather, current temperature and current humidity, and the above information is fed back to the air conditioner controller.

[0052] The air conditioner is provided with a humidity adjusting button for controlling the humidity concentration in the air, and a humidity memory button for determining the first humidity data according to the historical humidity data, wherein the first humidity data is the humidity data that meets the habit of the target user.

[0053] Step 102: in the case that the current humidity data is less than the target humidity threshold and the current temperature meets the preset temperature condition, the first humidification mode is adopted for humidification.

[0054] In the embodiment of the present application, after the air conditioner controller obtains the current humidity data, if it is determined that the current humidity data is not less than the target humidity threshold, it means that the air conditioner humidity in the air conditioner service area is high enough, and the humidification module of the air conditioner is closed. If the air conditioner controller determines that the current humidity data is less than the target humidity threshold and the current temperature meets the preset temperature condition, it means that the current temperature is about to reach the preset temperature threshold, but the humidity has not reached the target humidity threshold, so the humidity in the air needs to be improved as soon as possible, and the air conditioner controller adopts the first humidification mode for humidification. The preset temperature condition is that the difference between the current temperature and the temperature threshold is less than the target temperature value.

[0055] Step 103: in the case that the current humidity data is less than the target humidity threshold and the current temperature does not meet the preset temperature condition, the second humidification mode is adopted for humidification.

[0056] The humidification intensity of the first humidification mode is greater than that of the second humidification mode.

[0057] ​In the embodiment of the present application, if the air conditioner controller determines that the current humidity data is less than the target humidity threshold and the current temperature does not satisfy the preset temperature condition, it indicates that the current temperature is still far from the preset temperature threshold, and the humidity also does not reach the target humidity threshold, so the air humidity can be slowly increased, and the air conditioner controller adopts the second humidification mode for humidification. Exemplarily, the first humidification mode is to adopt the enhanced mode for humidification, and the second humidification mode is to adopt the basic mode for humidification. The humidification concentration of the enhanced mode is greater than that of the basic mode.

[0058] In the present application, different humidification modes are adopted for humidification, and the temperature of the environment in which the user is located is comprehensively considered. Since the humidity in the air is different at different temperatures, the corresponding humidity can be matched according to the temperature, so as to improve the humidity comfort of the user.

[0059] As an optional implementation, in the refrigeration mode, if the current temperature is greater than the refrigeration temperature threshold, the basic humidification mode is adopted for humidification; and if the current temperature is not greater than the refrigeration temperature threshold, the enhanced humidification mode is adopted for humidification.

[0060] In the present application, in the refrigeration mode, the environmental temperature gradually decreases, the environmental relative humidity gradually increases, and the heat exchange efficiency gradually decreases. If the current temperature is greater than the refrigeration temperature threshold, it indicates that the current temperature has not reached the refrigeration temperature threshold, and the heat exchange efficiency needs to be enhanced to reduce the current temperature, so the basic humidification mode is adopted to improve the heat exchange efficiency. If the current temperature is not greater than the refrigeration temperature threshold, it indicates that the current temperature has reached the refrigeration temperature threshold, and a high heat exchange efficiency is no longer needed, so the enhanced humidification mode can be adopted to improve the environmental humidity to reduce the heat exchange efficiency and reduce the energy consumption.

[0061] As an optional implementation, in the heating mode, if the current temperature satisfies the heating temperature condition, the enhanced humidification mode is adopted for humidification; and if the current temperature does not satisfy the heating temperature condition, the basic humidification mode is adopted for humidification. The heating temperature condition is that the difference between the current temperature and the heating temperature threshold is less than a preset temperature value.

[0062] In the present application, in the heating mode, the environmental temperature gradually increases, the environmental relative humidity gradually decreases, and the heat exchange efficiency gradually increases. If the difference between the current temperature and the heating temperature threshold is less than the preset temperature value, it indicates that the current temperature is relatively high, and a high heat exchange efficiency is not needed, so the enhanced humidification mode is adopted to improve the environmental humidity and reduce the heat exchange efficiency. If the difference between the current temperature and the heating temperature threshold is not less than the preset temperature value, it indicates that the current temperature is relatively low, and the heat exchange efficiency needs to be improved to quickly increase the temperature, so the basic humidification mode is adopted to ensure that the humidity is slowly increased and the heat exchange efficiency is improved.

[0063] As an optional implementation, as shown inFigure 3 As shown, determining the target humidity threshold according to the obtained humidity operation instruction comprises:

[0064] Step 301: In response to the humidity query instruction, query the historical humidity data of the air conditioner.

[0065] In the embodiment of the present application, the air conditioner is provided with a humidity memory key, and the air conditioner can record the humidity data at the end of each air conditioner operation. If the user presses the humidity memory key, the air conditioner can query the historical humidity data of the air conditioner in response to the humidity query instruction, and the historical humidity data reflects the air humidity data meeting the target user habit.

[0066] As an optional implementation, obtaining the historical humidity data after each start-up comprises: determining the running time length after each start-up in history; in the case that the running time length is greater than the target preset time length, taking the humidity data at the end of the current operation as the historical humidity data.

[0067] The air conditioner needs a certain running time length for refrigeration or heating. Only when the running time length is greater than the target preset time length, the humidity data at the end of the operation will be stable. Therefore, the air conditioner controller obtains the running time length of each start-up in history of the air conditioner. Only when the running time length is greater than the target preset time length, the humidity data at the end of the current operation of the air conditioner is taken as the historical humidity data.

[0068] Exemplarily, under extreme conditions, a temperature difference of 10 degrees of 35 refrigeration requires about 1 hour, and the target preset time length is set to 1.5 hours.

[0069] Step 302: Generate first humidity data according to the humidity usage frequency and the historical humidity data.

[0070] The first humidity data is humidity data meeting the target user habit, and the humidity usage frequency corresponds to the historical start-up frequency of the air conditioner.

[0071] In the embodiment of the present application, the air conditioner adjusts the air humidity in the service area every time it starts up. Therefore, the historical start-up frequency of the air conditioner corresponds to the humidity usage frequency. The air conditioner controller generates the first humidity data according to the humidity usage frequency and the historical humidity data.

[0072] As an optional implementation, generating the first humidity data according to the humidity usage frequency and the historical humidity data comprises: obtaining the historical start-up frequency of the air conditioner and the historical humidity data after each start-up; determining the average humidity data of the plurality of historical humidity data; and generating the first humidity data according to the difference between the average humidity data and the historical humidity data and the historical start-up frequency.

[0073] In the embodiment of the present application, the air conditioner controller acquires the historical start-up times of the air conditioner and historical humidity data after each start-up, then determines average humidity data according to the average of the plurality of historical humidity data, and finally generates first humidity data according to the difference between the average humidity data and the historical humidity data and the historical start-up times. Wherein, the more times the user starts up the air conditioner, the more the first humidity data calculated can reflect the habit humidity of the target user, and the self-learning adaptation effect can be achieved.

[0074] The calculation formula of the first humidity data is:

[0075] Wherein,

[0076] P g is the first humidity data, RH j is the historical humidity data, is the average humidity data, and j is the historical start-up times.

[0077] Step 303: In the case that the humidity adjustment instruction has been received, generating a target humidity threshold according to the humidity adjustment gear and the first humidity data.

[0078] Wherein, the humidity adjustment instruction contains the humidity adjustment gear.

[0079] In the embodiment of the present application, if the air conditioner controller has received the humidity adjustment instruction, it indicates that the target user still needs to continue to adjust the air humidity on the basis of the first humidity data to make the humidity more meet the user's requirements. The humidity adjustment button includes + key and - key, and the target user can use the humidity + key and - key to adjust the target humidity threshold.

[0080] The air conditioner can set a plurality of humidity intervals between the humidity upper limit data and the humidity lower limit data, and each humidity interval has the same humidity data. Wherein, the target user presses the + key once to increase the interval humidity data, and presses the - key once to decrease the interval humidity data. Wherein, the humidity upper limit data is the upper limit value of the humidity that the user group feels comfortable, and the humidity lower limit data is the lower limit value of the humidity that the user group feels comfortable.

[0081] Exemplarily, the humidity upper limit data is 60%, the humidity lower limit data is 44%, the humidity interval is 16, including 8 humidity increasing intervals and 8 humidity decreasing intervals, and each humidity interval represents 1% humidity data.

[0082] The calculation formula of the target humidity threshold is:

[0083] P=Pg+(M-N)*Pn, wherein, P is the target humidity threshold, M is the number of times the user presses the + key, N is the number of times the user presses the - key, and Pn is the humidity value of each interval.

[0084] Pn=(RH1-RH2) / 16, wherein RH1 is the upper limit humidity data, RH2 is the lower limit humidity data, and there are 16 intervals between RH1 and RH2.

[0085] Step 304: If the humidity adjustment instruction is not received, the first humidity data is taken as the target humidity threshold.

[0086] In the embodiment of the present application, if the air conditioner controller does not receive the humidity adjustment instruction, it indicates that the target user considers the historical humidity data to be comfortable data for the body feeling, and the air conditioner controller takes the first humidity data as the target humidity threshold, that is, the air conditioner controller takes the humidity data habituated by the target user as the target humidity threshold, so that the target humidity threshold also conforms to the user's habit of feeling humidity.

[0087] The calculation formula of the target humidity threshold is P=Pg.

[0088] In the present application, the air conditioner controller can determine the first humidity data according to the user's habit of feeling humidity, and can further adjust the humidity on the basis of the first humidity data according to the user's demand for humidity, so that the humidity fully meets the demand of the target user and improves the user experience.

[0089] As an optional implementation, as shown in Figure 4 According to the obtained humidity operation instruction, the target humidity threshold is determined, which includes:

[0090] Step 401: If the humidity adjustment instruction is received, the target humidity threshold is determined according to the humidity adjustment gear and the second humidity data.

[0091] The second humidity data is preset humidity data that meets the comfort of the user group.

[0092] In the embodiment of the present application, if the target user does not press the humidity memory key, but directly presses the humidity adjustment key, the air conditioner controller determines the target humidity threshold on the basis of the second humidity data. The target controller obtains the pre-stored upper limit humidity data and lower limit humidity data that meet the comfort of the user group, and takes the average of the upper limit humidity data and the lower limit humidity data as the second humidity data, so that the second humidity data basically meets the user group and also meets the target user. The target user determines the target humidity threshold on the basis of the second humidity data, which can quickly reach the target humidity threshold that meets the user's feeling.

[0093] The calculation formula of the target humidity threshold is:

[0094] P=Pr+(M-N)*Pn, wherein Pr is the second humidity data.

[0095] Step 402: In the case that the humidity adjustment instruction is not received, the second humidity data is taken as the target humidity threshold.

[0096] In the embodiment of the present application, if the target user does not press the humidity memory key and does not press the humidity adjustment key, the second humidity data meeting the humidity comfort of the user group is taken as the target humidity threshold.

[0097] The calculation formula of the target humidity threshold is:

[0098] P = Pr = (RH1 + RH2) / 2, wherein RH1 is the upper limit of humidity data, and RH1 is the lower limit of humidity data.

[0099] The same technical concept will be combined below, and a flow chart of the air conditioning humidification method provided by the embodiment of the present application is described as shown in Figure 5

[0100] In the embodiment of the present application, after the user turns on the air conditioner and the wifi module, the current time (24-hour system), the target humidity threshold P, the current humidity data, and the second humidity data Pr are displayed on the display panel of the air conditioner. The humidity sensor can obtain the current humidity data every set time length, and the set time length is exemplarily 30 seconds.

[0101] If the user presses the humidity memory key, the air conditioner controller responds to the humidity query instruction, determines the first humidity data through the formula P = Pg, and if the user continues to press the humidity adjustment key, the air conditioner controller responds to the humidity adjustment instruction, determines the target humidity threshold through the formula P = Pg + (M - N) * Pn, and if the user does not press the humidity adjustment key, the air conditioner controller takes the first humidity data as the target humidity data, that is, P = Pg.

[0102] If the user does not press the humidity memory key, but directly presses the humidity adjustment key, the air conditioner controller responds to the humidity adjustment instruction, determines the target humidity threshold through the formula P = Pr + (M - N) * Pn, and if the user does not press the humidity memory key and does not press the humidity adjustment key, the air conditioner controller takes the second humidity data as the target humidity data, that is, P = Pr = (RH1 + RH2) / 2.

[0103] If the user does not press the humidity memory key, but directly presses the humidity adjustment key, the air conditioner controller responds to the humidity adjustment instruction, determines the target humidity threshold through the formula P = Pr + (M - N) * Pn, and if the user does not press the humidity memory key and does not press the humidity adjustment key, the air conditioner controller takes the second humidity data as the target humidity data, that is, P = Pr = (RH1 + RH2) / 2.

[0104] After the air conditioner controller determines the target humidity data, if it is determined that the current humidity data RH is not less than the target humidity data P, that is, RH ≥ P, the humidification function is turned off, and if it is determined that RH < P, it is determined whether the current mode is cooling or heating.

[0105] ​If the air conditioner controller determines that the current is cooling mode, the air conditioner controller determines whether the current temperature T is greater than the cooling temperature threshold T0, if T > T0, the basic humidification mode is adopted, if T ≤ T0, the enhanced humidification mode is adopted, when RH ≥ P is detected, the humidification function is closed.

[0106] If the air conditioner controller determines that the current is heating mode, the air conditioner controller determines whether the difference between the current temperature T and the cooling temperature threshold T1 is greater than 4, if T-T1>4, the basic humidification mode is adopted, if T-T1≤4, the enhanced humidification mode is adopted, when RH ≥ P is detected, the humidification function is closed.

[0107] The same technical concept will be combined below, as Figure 6 An air conditioner humidifying device provided by the embodiment of the application is described.

[0108] The determination module 601 is configured to acquire current humidity data and current temperature of a service area of an air conditioner, and determine a target humidity threshold according to acquired humidity operation instructions;

[0109] The first humidification module 602 is configured to adopt a first humidification mode for humidification in a case where the current humidity data is less than the target humidity threshold and the current temperature meets preset temperature conditions.

[0110] The second humidification module 603 is configured to adopt a second humidification mode for humidification in a case where the current humidity data is less than the target humidity threshold and the current temperature does not meet the preset temperature conditions, wherein the humidification intensity of the first humidification mode is greater than that of the second humidification mode.

[0111] Optionally, the determination module 601 comprises:

[0112] The query unit is configured to query historical humidity data of the air conditioner in response to a humidity query instruction.

[0113] The first generation unit is configured to generate first humidity data according to a humidity adoption number and the historical humidity data, wherein the first humidity data is humidity data meeting a target user habit, and the humidity adoption number corresponds to a historical start-up number of the air conditioner.

[0114] The second generation unit is configured to generate the target humidity threshold according to a humidity adjustment gear and the first humidity data in a case where a humidity adjustment instruction has been received, wherein the humidity adjustment gear is contained in the humidity adjustment instruction.

[0115] The first serving unit is configured to serve the first humidity data as the target humidity threshold in a case where the humidity adjustment instruction has not been received.

[0116] Optionally, the determination module 601 comprises:

[0117] The determining unit is used to determine the target humidity threshold based on the humidity adjustment level and the second humidity data when a humidity adjustment command has been received, wherein the second humidity data is a preset humidity data that meets the comfort level of the user group;

[0118] The second unit is used to use the second humidity data as the target humidity threshold when no humidity adjustment command is received.

[0119] Optionally, the first generating unit includes:

[0120] The acquisition sub-unit is used to acquire the historical number of times the air conditioner has been turned on and the historical humidity data after each turn-on.

[0121] Determine the sub-unit, which is used to determine the average humidity data of multiple historical humidity data;

[0122] The generation sub-unit is used to generate the first humidity data based on the difference between the average humidity data and the historical humidity data and the historical number of power-on times.

[0123] Optionally, obtaining the sub-unit includes:

[0124] The determination submodule is used to determine the runtime of the program after each historical boot.

[0125] As a submodule, it is used to use the humidity data at the end of the current run as historical humidity data when the runtime exceeds the target preset duration.

[0126] Optionally, the device further includes:

[0127] The acquisition module is used to acquire pre-stored upper and lower humidity limits that meet the comfort requirements of the user group.

[0128] As a module, it is used to take the average of the upper and lower humidity limits as the second humidity data.

[0129] Optionally, the device further includes:

[0130] The stop module is used to stop the humidification operation if the current humidity data is not lower than the target humidity threshold.

[0131] Based on the same technical concept, embodiments of the present invention also provide an electronic device, such as... Figure 7 As shown, it includes a processor 701, a communication interface 702, a memory 703, and a communication bus 704, wherein the processor 701, the communication interface 702, and the memory 703 communicate with each other through the communication bus 704.

[0132] Memory 703 is used to store computer programs;

[0133] The processor 701 is configured to implement the steps of the above method when executing the program stored in the memory 703.

[0134] The communication bus mentioned in the above electronic device can be a Peripheral Component Interconnect (PCI) bus or an Extended Industry Standard Architecture (EISA) bus, etc. The communication bus can be divided into an address bus, a data bus, a control bus, etc. For the convenience of representation, only one thick line is used in the figure, but it does not mean that there is only one bus or only one type of bus.

[0135] The communication interface is configured to communicate between the above electronic device and other devices.

[0136] The memory can include a Random Access Memory (RAM) and can also include a Non-Volatile Memory (NVM), such as at least one disk memory. Optionally, the memory can also be at least one storage device located away from the above processor.

[0137] The above processor can be a general-purpose processor, including a Central Processing Unit (CPU), a Network Processor (NP), etc.; can also be a Digital Signal Processing (DSP), an Application Specific Integrated Circuit (ASIC), a Field-Programmable Gate Array (FPGA) or other programmable logic device, a discrete gate or transistor logic device, a discrete hardware component.

[0138] In another embodiment provided by the present application, a computer readable storage medium is also provided, and the computer readable storage medium stores a computer program. The computer program is executed by a processor to implement the steps of any of the above methods.

[0139] In another embodiment provided by the present application, a computer program product containing instructions is also provided, and when the computer program product is run on a computer, the computer is caused to execute any of the above methods.

[0140] In the embodiments described above, all or some of the steps can be implemented by software, hardware or firmware, or any combination thereof. When implemented in software, one or more computer programs can be used to perform the steps. The computer programs can be stored in one or more computer-readable storage media, which can be any available media that can be read by a computer. The computer-readable storage media can be a computer program product. By way of example, the computer-readable storage media can include a RAM, a ROM, an EEPROM, a CD-ROM, a floppy disk, a DVD, a Blu-ray disk, a magnetic tape, an optical data storage device, or the like, or any suitable combination thereof. The computer programs can be loaded into a computer, which can be a general-purpose computer, a special-purpose computer, a computer network, or other programmable apparatus, to cause the computer to perform the steps.

[0141] It should be noted that, in the present document, the terms such as "first" and "second" are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply there is any such actual relationship or order between these entities or operations. Also, the terms "include", "contain" or any other variants thereof are intended to cover a non-exclusive inclusion, so that a process, method, article or apparatus including a list of elements does not only include those elements, but also includes other elements not explicitly listed, or further includes elements inherent in such a process, method, article or apparatus. Without more limitations, an element defined by the phrase "including a" does not exclude the presence of additional identical elements in the process, method, article or apparatus including the element.

[0142] The above description is merely one specific implementation of the application. Many modifications and variations of the described embodiments can be made to the above specific implementation, all of which fall within the spirit and scope of the present application. Thus, it is intended that the present application cover modifications and variations of this implementation provided they come within the scope of the appended claims and their equivalents.

Claims

1. An air conditioning humidification method, characterized in that, The method includes: Obtain the current humidity and temperature of the air-conditioned service area, and determine the target humidity threshold based on the obtained humidity operation instructions; If the current humidity data is less than the target humidity threshold and the current temperature meets the preset temperature conditions, then the first humidification mode is used for humidification. When the current humidity data is less than the target humidity threshold and the current temperature does not meet the preset temperature condition, a second humidification mode is used for humidification, wherein the humidification intensity of the first humidification mode is greater than the humidification intensity of the second humidification mode. The step of determining the target humidity threshold based on the acquired humidity operation command includes: In response to a humidity query command, retrieve the historical humidity data of the air conditioner; First humidity data is generated based on the number of times humidity is used and the historical humidity data, wherein the first humidity data is humidity data that meets the habits of the target user, and the number of times humidity is used corresponds to the historical number of times the air conditioner is turned on; Upon receiving a humidity adjustment command, the target humidity threshold is generated based on the humidity adjustment level and the first humidity data, wherein the humidity adjustment command includes the humidity adjustment level; If no humidity adjustment command is received, the first humidity data is used as the target humidity threshold.

2. The method according to claim 1, characterized in that, The step of determining the target humidity threshold based on the acquired humidity operation command includes: Upon receiving the humidity adjustment command, the target humidity threshold is determined based on the humidity adjustment level and the second humidity data, wherein the second humidity data is a preset humidity data that meets the comfort level of the user group. If the humidity adjustment command is not received, the second humidity data will be used as the target humidity threshold.

3. The method according to claim 1, characterized in that, The step of generating the first humidity data based on the number of times humidity was used and the historical humidity data includes: Obtain the historical number of times the air conditioner has been turned on and the historical humidity data after each turn-on; Determine the average humidity data from multiple historical humidity data sets; The first humidity data is generated based on the difference between the average humidity data and the historical humidity data, and the historical number of power-on times.

4. The method according to claim 3, characterized in that, Historical humidity data obtained after each power-on includes: Determine the runtime of the system after each historical power-on; If the runtime exceeds the target preset duration, the humidity data at the end of this run will be used as the historical humidity data.

5. The method according to claim 2, characterized in that, Before using the second humidity data as the target humidity threshold, the method further includes: Retrieve pre-stored upper and lower humidity limits that meet the comfort requirements of the user group; The average of the upper humidity limit data and the lower humidity limit data is used as the second humidity data.

6. The method according to claim 1, characterized in that, After determining the target humidity threshold, the method further includes: If the current humidity data is not less than the target humidity threshold, the humidification operation shall be stopped.

7. An air conditioning humidification device for implementing the air conditioning humidification method as described in any one of claims 1 to 6, characterized in that, The device includes: The determination module is used to obtain the current humidity data and current temperature of the air-conditioned service area, and determine the target humidity threshold according to the obtained humidity operation instructions; The first humidification module is used to humidify by adopting a first humidification mode when the current humidity data is less than the target humidity threshold and the current temperature meets the preset temperature conditions. The second humidification module is used to humidify the air using a second humidification mode when the current humidity data is less than the target humidity threshold and the current temperature does not meet the preset temperature condition, wherein the humidification intensity of the first humidification mode is greater than the humidification intensity of the second humidification mode.

8. An electronic device, characterized in that, It includes a processor, a communication interface, a memory, and a communication bus, wherein the processor, the communication interface, and the memory communicate with each other through the communication bus; Memory, used to store computer programs; A processor, when executing a program stored in memory, implements the steps of the method described in any one of claims 1-6.

9. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores a computer program that, when executed by a processor, implements the steps of the method described in any one of claims 1-6.

Citation Information

Patent Citations

  • Humidity detection method and device, humidification control method and device and air conditioning system

    CN111854121A