Air conditioner sterilization rate estimation method, electronic device, and air conditioner
Patent Information
- Application Number
- CN202210742700.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-06-27
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2042-06-27
AI Technical Summary
The air conditioner cannot display the sterilization progress in real time, which makes it impossible for users to accurately judge the sterilization effect. This may cause waste of electricity resources or incomplete sterilization, affecting user health and usage experience.
通过在空调完成除菌预设时长后,再次进行除菌时,根据空调所在空间的温度和湿度预估除菌率的单位时间减小量,结合预设时长确定除菌率的减小总量,并显示实际除菌率。
准确掌握空调再次进行除菌时的实际除菌率,避免资源浪费,提高除菌效率,保证用户安全,提升使用体验。
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Figure CN115264834B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of air conditioners, and specifically provides an air conditioner sterilization rate estimation method, an electronic device and an air conditioner. BACKGROUND
[0002] As an essential household appliance for every household, an air conditioner has a sterilization module that is increasingly favored by users. However, the sterilization function can only show an on and off prompt, and cannot show the sterilization progress of the space where the air conditioner is located in real time, so that the user cannot accurately determine the sterilization rate of the space where the air conditioner is located, which may cause waste of electrical resources due to long-term sterilization, or may cause poor sterilization effect of the space where the air conditioner is located due to insufficient sterilization time, thereby affecting the health of the user, and further causing the sterilization function of the air conditioner to be unable to be maximally utilized, resulting in a poor user experience.
[0003] Correspondingly, there is a need in the art for a new air conditioner sterilization rate estimation scheme to solve the above problems. SUMMARY
[0004] In order to overcome the above-mentioned defects, the present application is proposed to provide an air conditioner sterilization rate estimation method, an electronic device and an air conditioner that solve or at least partially solve the technical problem that an air conditioner cannot display the sterilization progress.
[0005] In a first aspect, the present application provides an air conditioner sterilization rate estimation method, which comprises: when the air conditioner performs sterilization again after completing sterilization for a preset time length, estimating the unit time reduction amount of the sterilization rate of the space according to the temperature and humidity of the space where the air conditioner is located; determining the total reduction amount of the sterilization rate of the space within the preset time length according to the unit time reduction amount of the sterilization rate and the preset time length; and determining and displaying the actual sterilization rate of the space when the air conditioner performs sterilization again according to the total reduction amount of the sterilization rate.
[0006] In one technical solution of the above-mentioned air conditioner sterilization rate estimation method, the step of "estimating the unit time reduction amount of the sterilization rate of the space according to the temperature and humidity of the space where the air conditioner is located" specifically comprises: obtaining the sterilization rate R max of the space when the air conditioner completes sterilization; matching a corresponding invalid sterilization time T fail according to the temperature and humidity of the space; and taking the ratio of the sterilization rate R max to the invalid sterilization time T fail as the unit time reduction amount of the sterilization rate.
[0007] In one technical solution of the above-mentioned air conditioner sterilization rate estimation method, the step of "estimating the unit time reduction amount of the sterilization rate of the space according to the temperature and humidity of the space where the air conditioner is located" specifically comprises: obtaining the sterilization rate R failthe step of "if T < Tth1 and H < Hth1, the failure sterilization duration T fail is T fail _1, T represents the temperature of the space, H represents the humidity of the space, Tth1 represents a preset lower limit value of the temperature, and Hth1 represents a preset lower limit value of the humidity; if Tth1 ≤ T ≤ Tth2 and Hth1 ≤ H ≤ Hth2, the failure sterilization duration T fail is T fail _2, Tth2 represents a preset upper limit value of the temperature, and Hth2 represents a preset upper limit value of the humidity; if T > Tth2 and H > Hth2, the failure sterilization duration T fail is T fail _3; wherein T fail _1 > T fail _2 > T fail _3.
[0008] In one of the above technical solutions of the air conditioner sterilization rate estimation method, the Tth1 = 15℃, the Tth2 = 30℃, the Hth1 = 20%, the Hth2 = 50%, the T fail _1 = 12 hours, the T fail _2 = 8 hours, and the T fail _3 = 4 hours.
[0009] In one of the above technical solutions of the air conditioner sterilization rate estimation method, the actual sterilization rate of the space when the air conditioner performs sterilization again is determined according to the total reduction amount of the sterilization rate and through the following formula: R real = R max - ΔR × T stop ; wherein R real represents the actual sterilization rate, R max represents the sterilization rate of the space when the air conditioner completes sterilization, T stop represents the preset duration, ΔR represents the unit time reduction amount of the sterilization rate, and ΔR × T stop represents the total reduction amount of the sterilization rate; and / or, the method further comprises controlling the air conditioner to perform sterilization in the following manner: controlling the air conditioner to enter a first sterilization stage and a second sterilization stage in sequence to perform sterilization operation for a first sterilization duration and a second sterilization duration, respectively; and controlling the air conditioner to display a first stage sterilization rate corresponding to the first sterilization stage and a second stage sterilization rate corresponding to the second sterilization stage, respectively, when the air conditioner is in the first sterilization stage and the second sterilization stage.
[0010] In one of the above technical solutions of the air conditioner sterilization rate estimation method, the method further comprises matching the corresponding first sterilization duration and second sterilization duration according to the temperature and humidity of the space.
[0011] In one of the technical solutions of the air conditioner sterilization rate estimation method, the step of "matching the first sterilization time length and the second sterilization time length according to the temperature and humidity of the space" specifically comprises: if T < Tth1 and H < Hth1, the first sterilization time length and the second sterilization time length are both t1, T represents the temperature of the space, H represents the humidity of the space, Tth1 represents a preset lower limit value of the temperature, and Hth1 represents a preset lower limit value of the humidity; if Tth1 ≤ T ≤ Tth2 and Hth1 ≤ H ≤ Hth2, the first sterilization time length and the second sterilization time length are both t2, Tth2 represents a preset upper limit value of the temperature, and Hth2 represents a preset upper limit value of the humidity; if T > Tth2 and H > Hth2, the first sterilization time length and the second sterilization time length are both t3; and t1 < t2 < t3.
[0012] In one of the technical solutions of the air conditioner sterilization rate estimation method, the t1 = 30 minutes, the t2 = 1 hour, and the t3 = 2 hours.
[0013] In a second aspect, an electronic device is provided, which comprises a processor and a storage device, the storage device being adapted to store a plurality of program codes, the program codes being adapted to be loaded and run by the processor to execute the air conditioner sterilization rate estimation method in any of the technical solutions of the air conditioner sterilization rate estimation method.
[0014] In a third aspect, an air conditioner is provided, which comprises the electronic device in the technical solution of the electronic device.
[0015] The one or more technical solutions of the present application have at least one or more of the following beneficial effects:
[0016] In the implementation of the technical solutions of the present application, when the air conditioner performs sterilization again after completing the preset sterilization time length, the unit time reduction amount of the sterilization rate of the space is estimated according to the temperature and humidity of the space, the total reduction amount of the sterilization rate of the space within the preset time length is determined according to the unit time reduction amount of the sterilization rate and the preset time length, and then the actual sterilization rate of the space when the air conditioner performs sterilization again is determined according to the total reduction amount of the sterilization rate and is displayed, so that the actual sterilization rate of the space when the air conditioner performs sterilization again can be accurately grasped, the air conditioner can continue to perform sterilization on the basis of the actual sterilization rate, the waste of electric resources caused by starting sterilization from the beginning is avoided, resources are saved, the user can know the sterilization effect of the space where the air conditioner is located in real time, the sterilization efficiency of the air conditioner on the space is effectively improved, the use safety of the user is ensured, and the use experience of the user is further improved. BRIEF DESCRIPTION OF DRAWINGS
[0017] The disclosure of the present application will become more fully understood from the detailed description given herein below, and appended claims, accompanied by the accompanying drawings. It is to be understood that the drawings are only for the purpose of illustration:
[0018] Figure 1 is a main step flow diagram of an air conditioner sterilization rate estimation method according to an embodiment of the present application;
[0019] Figure 2 is a main step flow diagram of an air conditioner sterilization rate estimation method according to another embodiment of the present application. DETAILED DESCRIPTION
[0020] Some embodiments of the present application will be described below with reference to the accompanying drawings. It will be understood by those skilled in the art that these embodiments are only for the purpose of explaining the technical principles of the present application, and are not intended to limit the scope of protection of the present application.
[0021] In the description of the present application, "processor" can include hardware, software or a combination of both. The processor can be a central processor, microprocessor, digital signal processor or any other suitable processor. The processor has data and / or signal processing functions. The processor can be implemented in software, hardware or a combination of both. The non-transitory computer readable storage medium includes any suitable medium that can store program codes, such as magnetic disk, hard disk, optical disk, flash memory, read-only memory, random access memory, etc. The term "A and / or B" means all possible combinations of A and B, such as only A, only B or both A and B. The term "at least one of A or B" or "at least one of A and B" has a similar meaning as "A and / or B", which can include only A, only B or both A and B. The singular form of the term "one", "this" can also include plural forms.
[0022] Referring to the drawings, Figure 1 , Figure 1 is a main step flow diagram of an air conditioner sterilization rate estimation method according to an embodiment of the present application. As shown in Figure 1 , the air conditioner sterilization rate estimation method in the embodiment of the present application mainly includes the following steps S101-S103.
[0023] Step S101: When the air conditioner performs sterilization again after completing sterilization for a preset time period, the unit time reduction of the sterilization rate of the space is estimated according to the temperature and humidity of the space where the air conditioner is located.
[0024] In this embodiment, the preset time period refers to the time period from the completion of sterilization by the air conditioner to the time when the air conditioner performs sterilization again.
[0025] The unit time reduction refers to the reduction in a certain time. For example, the unit time can be one hour, one minute, one second, etc. Preferably, the unit time in the embodiments of the present application is one hour.
[0026] In one embodiment, when the air conditioner performs sterilization again after completing the preset sterilization time, the sterilization rate of the space of the air conditioner at the time of completing sterilization can be obtained, and the temperature and humidity of the space where the air conditioner is located can be obtained through the temperature sensor and the humidity sensor of the air conditioner, respectively. The failure sterilization time is determined according to the temperature and humidity, and finally the ratio of the sterilization rate of the space to the failure sterilization time is taken as the unit time reduction of the sterilization rate.
[0027] Further, the temperature and humidity can be respectively set with upper and lower limit values. When the temperature is less than the temperature lower limit value and the humidity is less than the humidity lower limit value, the corresponding failure sterilization time is the first failure sterilization time; when the temperature is between the temperature upper limit value and the temperature lower limit value, and the humidity is between the humidity upper limit value and the humidity lower limit value, the corresponding failure sterilization time is the second failure sterilization time; when the temperature is greater than the temperature upper limit value and the humidity is greater than the humidity upper limit value, the corresponding failure sterilization time is the third failure sterilization time.
[0028] It should be noted that the completion of sterilization by the air conditioner means that the air conditioner performs the sterilization operation and increases the sterilization rate of the space to a preset value. The higher the sterilization rate, the lower the microbial content in the space, and the better the air quality. The lower the sterilization rate, the higher the microbial content in the space, and the worse the air quality. The above-mentioned preset value can be any percentage greater than or equal to 99.9%, and in some preferred embodiments, the above-mentioned preset value is 99.9%.
[0029] Further, the first failure sterilization time is greater than the second failure sterilization time, and the second failure sterilization time is greater than the third failure sterilization time. Preferably, the first failure sterilization time of the embodiments of the present application is 12 hours, the second failure sterilization time is 8 hours, and the third failure sterilization time is 4 hours.
[0030] The upper and lower limit values of the temperature and the upper and lower limit values of the humidity are all preset values for determining the failure sterilization time. The upper and lower limit values of the temperature and the upper and lower limit values of the humidity can all be values obtained by the person skilled in the art based on experiments, or can all be values obtained by the person skilled in the art by adjusting the already set values according to actual needs, and the embodiments of the present application do not limit this.
[0031] In addition, the lower limit value of the temperature can be any temperature in the range of 0℃ to 15℃, and preferably, the lower limit value of the temperature in the embodiments of the present application is 15℃. The upper limit value of the temperature can be any temperature in the range of 16℃ to 30℃, and preferably, the upper limit value of the temperature in the embodiments of the present application is 30℃.
[0032] Further, the lower limit value of the humidity can be any humidity in the range of 0-20%, and preferably, the lower limit value of the humidity in the embodiment of the present application is 20%; the upper limit value of the humidity can be any humidity in the range of 21%-50%, and preferably, the upper limit value of the humidity in the embodiment of the present application is 50%.
[0033] For example, assuming that the lower limit value of the temperature of the preset air conditioner is 15℃, the upper limit value of the temperature is 30℃, the lower limit value of the humidity is 20%, and the upper limit value of the humidity is 50%; and the temperature of the space where the air conditioner is located is 18℃, and the humidity is 30%, it can be known that the temperature is between the lower limit value and the upper limit value of the temperature, and the humidity is between the lower limit value and the upper limit value of the humidity, and thus the failure degerming duration of the air conditioner is the second failure degerming duration, i.e. failure degerming duration = second failure degerming duration = 8 hours; and the degerming rate of the space when the air conditioner completes degerming is 99.9%, at this time, the unit time reduction amount of the degerming rate of the space is 99.9% ÷ 8 hours ≈ 12.49% / hour.
[0034] Step S102: determining the total reduction amount of the degerming rate of the space in the preset duration according to the unit time reduction amount of the degerming rate and the preset duration.
[0035] In one embodiment, the product of the unit time reduction amount of the degerming rate and the preset duration is taken as the total reduction amount of the degerming rate of the space in the preset duration.
[0036] Step S103: determining the actual degerming rate of the space when the air conditioner performs degerming again according to the total reduction amount of the degerming rate and displaying the actual degerming rate.
[0037] In one embodiment, the difference between the degerming rate of the space when the air conditioner completes degerming and the total reduction amount of the degerming rate can be taken as the actual degerming rate of the space when the air conditioner performs degerming again; and the actual degerming rate can be displayed on the display screen of the air conditioner, or the actual degerming rate can be displayed on the remote controller associated with the air conditioner, or the actual degerming rate can be displayed on the application interface of the related APP (Application) of the mobile device associated with the air conditioner, and the embodiment of the present application does not limit this.
[0038] Further, the user can also control the temperature and the degerming rate to be displayed alternately in real time through the remote controller or the related APP on the mobile device; or the air conditioner can automatically control the temperature and the degerming rate to be displayed alternately.
[0039] It should be noted that the alternating time is set to any time according to the actual needs of those skilled in the art, for example, the alternating time can be any time in the range of 30 seconds-10 minutes, and preferably, in the embodiment of the present application, the alternating time is one minute.
[0040] Based on the above steps S101 - S103, when performing disinfection again after the preset disinfection duration of the air conditioner, according to the temperature and humidity of the space where the air conditioner is located, estimate the reduction amount per unit time of the disinfection rate of the space, and based on the reduction amount per unit time of the disinfection rate and the preset duration, determine the total reduction amount of the disinfection rate of the space within the preset duration. Then, according to the total reduction amount of the disinfection rate, determine the actual disinfection rate of the space when the air conditioner performs disinfection again and display it, which can accurately grasp the actual disinfection rate of the space when the air conditioner performs disinfection again, and enable the user to understand the disinfection effect of the space where the air conditioner is located in real time, effectively improving the disinfection efficiency of the air conditioner for the space where it is located, ensuring the user's use safety, and thus improving the user's use experience.
[0041] See Appendix Figure 2 , Figure 2 is a schematic diagram of the main steps of an air conditioner disinfection rate estimation method according to another embodiment of the present invention. As Figure 2 shown, the air conditioner disinfection rate estimation method in the embodiment of the present invention mainly includes the following steps S201 - S207.
[0042] Step S201: When performing disinfection again after the preset disinfection duration of the air conditioner, obtain the disinfection rate of the space when the air conditioner completes disinfection.
[0043] In this embodiment, the disinfection rate of the space when the air conditioner completes disinfection is a preset upper limit value for determining the disinfection rate of the air conditioner. The disinfection rate of the space when the air conditioner completes disinfection is obtained by those skilled in the art based on experimental data, and the embodiment of the present invention does not limit this. In addition, the disinfection rate of the space when the air conditioner completes disinfection can be any percentage greater than 99.9%, preferably, the disinfection rate of the space when the air conditioner completes disinfection in the embodiment of the present invention is 99.9%.
[0044] Step S202: Match the corresponding ineffective disinfection duration according to the temperature and humidity of the space.
[0045] In this embodiment, the lower limit value Tth1 and upper limit value Tth2 of the temperature, and the lower limit value Hth1 and upper limit value Hth2 of the humidity can be preset in advance, and then the temperature T and humidity H of the space are respectively compared with the lower limit value, upper limit value of the temperature, and the lower limit value, upper limit value of the humidity. If T < Tth1 and H < Hth1, the ineffective disinfection duration T fail is T fail _1; if Tth1 ≤ T ≤ Tth2 and Hth1 ≤ H ≤ Hth2, the ineffective disinfection duration T fail is T fail _2; if T > Tth2 and H > Hth2, the ineffective disinfection duration T fail is T fail _3; where, T fail _1 > Tfail _2>T fail _3。
[0046] It should be noted that in the embodiments of the present application, Tth1=15℃, Tth2=30℃, Hth1=20%, Hth2=50%, T fail _1=12 hours, T fail _2=8 hours, T fail _3=4 hours.
[0047] Step S203: taking the ratio of the sterilization rate and the sterilization time to failure as the sterilization rate reduction per unit time.
[0048] Step S204: determining the total sterilization rate reduction of the space within the preset time period according to the sterilization rate reduction per unit time and the preset time period.
[0049] In the embodiments, the determination of the total sterilization rate reduction of the space within the preset time period according to the sterilization rate reduction per unit time and the preset time period is the same as the determination in step S102, which will not be repeated here.
[0050] Step S205: determining the actual sterilization rate of the space when the air conditioner performs sterilization again and displaying the actual sterilization rate according to the total sterilization rate reduction.
[0051] In the embodiments, the actual sterilization rate of the space when the air conditioner performs sterilization again is determined according to the total sterilization rate reduction by the following formula:
[0052] R real =R max -ΔR×T stop
[0053] wherein R real represents the actual sterilization rate, R max represents the sterilization rate of the space when the air conditioner completes sterilization, T stop represents the preset time period, ΔR represents the sterilization rate reduction per unit time, and ΔR×T stop represents the total sterilization rate reduction.
[0054] Step S206: controlling the air conditioner to enter the first sterilization stage and the second sterilization stage in sequence to perform sterilization operations for the first sterilization time and the second sterilization time, respectively.
[0055] In the embodiment, the first sterilization time and the second sterilization time can be matched according to the temperature and the humidity of the space where the air conditioner is located. In a specific embodiment, the lower limit value Tth1 and the upper limit value Tth2 of the temperature and the lower limit value Hth1 and the upper limit value Hth2 of the humidity can be set in advance, and then the temperature T and the humidity H of the space are compared with the lower limit value, the upper limit value of the temperature and the lower limit value, the upper limit value of the humidity, respectively. If T < Tth1 and H < Hth1, the first sterilization time and the second sterilization time are both t1; if Tth1 ≤ T ≤ Tth2 and Hth1 ≤ H ≤ Hth2, the first sterilization time and the second sterilization time are both t2; if T > Tth2 and H > Hth2, the first sterilization time and the second sterilization time are both t3; wherein t1 < t2 < t3.
[0056] It should be noted that the first sterilization time and the second sterilization time can be any time set by a person skilled in the art according to the temperature and the humidity, for example, the first sterilization time and the second sterilization time can be 30 minutes, 40 minutes, 50 minutes, 1 hour, 2 hours, 4 hours, 8 hours and 12 hours, etc. Preferably, in the embodiment of the application, t1 = 30 minutes, t2 = 1 hour, t3 = 2 hours.
[0057] Step S207: controlling the air conditioner to display the first-stage sterilization rate corresponding to the first sterilization stage and the second-stage sterilization rate corresponding to the second sterilization stage during the first sterilization stage and the second sterilization stage, respectively.
[0058] In one embodiment, the ratio of the preset first sterilization rate to the first sterilization time can be taken as the unit time increase amount of the first-stage sterilization rate of the first sterilization stage, and when the air conditioner performs the sterilization operation in the first sterilization stage, the product of the actual sterilization time of the current stage and the unit time increase amount is taken as the first actual increase total amount, and the sum of the actual sterilization rate determined in the above step S205 and the first actual increase total amount is taken as the first-stage sterilization rate, and the air conditioner is controlled to display. In addition, after the first-stage sterilization rate reaches the preset first sterilization rate, the first-stage sterilization rate displayed by the air conditioner continues to remain at the preset first sterilization rate, and the sterilization operation continues until the first actual sterilization time reaches the first sterilization time.
[0059] Further, when the first actual sterilization time length reaches the first sterilization time length, the air conditioner is controlled to enter the second sterilization stage. A difference between the preset second sterilization rate and the preset first sterilization rate (the preset second sterilization rate is greater than the preset first sterilization rate) can be obtained first, and then the ratio of the difference to the second sterilization time length is taken as the unit time increase amount of the second stage sterilization rate of the second sterilization stage. When the air conditioner performs the sterilization operation in the second sterilization stage, the product of the actual sterilization time length of the present stage and the unit time increase amount is taken as the second actual increase total amount, and the sum of the first stage sterilization rate and the second actual increase total amount is taken as the second stage sterilization rate. In addition, when the second stage sterilization rate reaches the preset second sterilization rate, the second stage sterilization rate displayed by the air conditioner continues to remain at the preset second sterilization rate, and the sterilization operation continues until the second actual sterilization time length reaches the second sterilization time length.
[0060] It should be noted that the preset first sterilization rate refers to the value of the sterilization rate of the space that the air conditioner can reach after completing the sterilization operation of the first sterilization stage; and the preset second sterilization rate refers to the value of the sterilization rate of the space that the air conditioner can reach after completing the sterilization operation of the second sterilization stage. Since the second sterilization stage is another sterilization stage that is continued after the completion of the first sterilization stage, the second sterilization rate of the space after the completion of the second sterilization stage is greater than the first sterilization rate of the space after the completion of the first sterilization stage.
[0061] The skilled person in the art can flexibly set the specific values of the preset first sterilization rate and the preset second sterilization rate according to actual needs. For example, in some preferred embodiments, the preset first sterilization rate is 70%, and the preset second sterilization rate is 99.9%.
[0062] The unit time increase amount refers to the increase amount in a certain time. For example, the unit time can be one hour, one minute, one second, etc. Preferably, in the embodiments of the present application, the unit time is one minute.
[0063] For example, assuming that the preset first sterilization rate is 70%, the actual sterilization rate when the air conditioner performs sterilization again after completing the preset sterilization duration is 40%, the first sterilization duration and the second sterilization duration are both 1 hour, the unit time increase amount of the first stage sterilization rate of the first sterilization stage is 70% ÷ (60) minutes ≈ 1.17% / minute, and the first stage sterilization rate of the air conditioner when performing sterilization for 20 minutes in the first stage is 40% + (1.17 × 20)% = 63.4%. Further, it can be known from the above embodiment that the sterilization rate of the space after the air conditioner completes sterilization in the first sterilization stage and the second sterilization stage is 99.9%, and the sterilization rate of the second sterilization stage is increased by 99.9% - 70% = 29.9% compared to the first sterilization stage. The unit time increase amount of the second stage sterilization rate is 29.9% ÷ (60) minutes ≈ 0.5% / minute, and the second stage sterilization rate of the air conditioner when performing sterilization for 10 minutes in the second stage is 70% + (0.5 × 10)% = 75%.
[0064] Based on the above steps S201-S207, by performing sterilization again after the air conditioner completes the preset sterilization duration, the sterilization rate of the space when the air conditioner completes sterilization is obtained, the corresponding invalid sterilization duration is matched according to the temperature and humidity of the space, the ratio of the sterilization rate and the invalid sterilization duration is taken as the unit time decrease amount of the sterilization rate, the total decrease amount of the sterilization rate within the preset duration is determined according to the unit time decrease amount of the sterilization rate and the preset duration, the actual sterilization rate of the space when the air conditioner performs sterilization again is determined and displayed according to the total decrease amount of the sterilization rate, the actual sterilization rate of the space when the air conditioner performs sterilization again can be accurately mastered, and the user can real-time know the sterilization effect of the space where the air conditioner is located, the sterilization efficiency of the air conditioner on the space is effectively improved, and the use safety of the user is ensured. By controlling the air conditioner to enter the first sterilization stage and the second sterilization stage in turn to perform sterilization for the first sterilization duration and the second sterilization duration, respectively, and controlling the air conditioner to display the first stage sterilization rate corresponding to the first sterilization stage and the second stage sterilization rate corresponding to the second sterilization stage in the first sterilization stage and the second sterilization stage, respectively, the user can clearly and clearly master the sterilization progress of the air conditioner, and the use experience of the user is improved.
[0065] It should be noted that although the above embodiments describe the steps in a specific order, those skilled in the art can understand that, in order to achieve the effect of the present application, the steps do not necessarily have to be executed in this order, they can be executed simultaneously (in parallel) or in other order, and these changes are within the protection scope of the present application.
[0066] Further, the present application also provides an electronic device. In an electronic device embodiment according to the present application, the electronic device comprises a processor and a storage device, the storage device can be configured to store a program of the air conditioner sterilization rate estimation method of the above-mentioned method embodiments, and the processor can be configured to execute the program in the storage device, which includes but is not limited to the program of the air conditioner sterilization rate estimation method of the above-mentioned method embodiments. For the convenience of illustration, only the parts related to the embodiments of the present application are shown, and the specific technical details not disclosed are referred to the method part of the embodiments of the present application.
[0067] Further, the present application also provides an air conditioner. In an air conditioner embodiment according to the present application, the air conditioner comprises the electronic device provided by the above-mentioned embodiments.
[0068] So far, the technical solutions of the present application have been described in combination with the preferred embodiments shown in the drawings, but it is easy for those skilled in the art to understand that the protection scope of the present application is obviously not limited to these specific embodiments. Those skilled in the art can make equivalent changes or replacements to the related technical features without departing from the principles of the present application, and the technical solutions after these changes or replacements will all fall within the protection scope of the present application.
Claims
1. A method for estimating the sterilization rate of an air conditioner, characterized in that: The method comprises: After the air conditioner completes the sterilization for a preset duration, the unit time reduction of the sterilization rate of the space is estimated according to the temperature and humidity of the space where the air conditioner is located; The total reduction of the sterilization rate of the space within the preset duration is determined according to the unit time reduction of the sterilization rate and the preset duration; The actual sterilization rate of the space when the air conditioner performs sterilization again is determined according to the total reduction of the sterilization rate and is displayed; The step of "estimating the unit time reduction of the sterilization rate of the space according to the temperature and humidity of the space where the air conditioner is located" specifically comprises: acquiring a sterilization rate R of the space when the air conditioner completes sterilization max ; According to the temperature and humidity of the space, a corresponding invalid sterilization duration T is matched fail ; The sterilization rate R max The ratio of the failure sterilization time T fail to the sterilization rate as the unit time reduction amount.
2. The air conditioner sterilization rate estimation method of claim 1, wherein "According to the temperature and humidity of the space, match the corresponding invalid sterilization duration T fail The step of "according to the temperature and humidity of the space, match the corresponding invalid sterilization duration T" specifically includes: If T < Tth1 and H < Hth1, the failure degerming duration T fail is T fail _1, T represents the temperature of the space, H represents the humidity of the space, Tth1 represents a preset lower limit value of the temperature, and Hth1 represents a preset lower limit value of the humidity. If Tth1≤T≤Tth2 and Hth1≤H≤Hth2, the failure sterilization duration T fail is T fail _2, Tth2 represents a preset upper limit value of temperature, and Hth2 represents a preset upper limit value of humidity. If T > Tth2 and H > Hth2, the failure degerming duration T fail is T fail _3; wherein T fail _1> T fail _2> T fail _3.
3. The air conditioner sterilization rate estimation method according to claim 2, characterized by, said Tthi = 15°C, said Tth2 = 30°C, said Hthi = 20%, said Hth2 = 50%, said T fail _1 = 12 hours, said T fail _2 = 8 hours, said T fail _3 = 4 hours.
4. The method of claim 1, wherein the method further comprises: The step of "determining the actual sterilization rate of the space when the air conditioner performs sterilization again according to the total reduction of the sterilization rate and displaying the actual sterilization rate" specifically comprises: The actual sterilization rate of the space when the air conditioner performs sterilization again is determined according to the total reduction of the sterilization rate and by the following formula: R real = R max - ΔR x T stop wherein R real represents the actual sterilization rate, R max represents the sterilization rate of the space when the air conditioner completes sterilization, T stop represents the preset time length, ΔR represents the sterilization rate reduction amount per unit time, ΔR×T stop represents the total sterilization rate reduction amount; And / or, The method further comprises controlling the air conditioner to perform sterilization by the following manner: The air conditioner is controlled to enter a first sterilization stage and a second sterilization stage in sequence to perform sterilization operations for a first sterilization duration and a second sterilization duration, respectively; The air conditioner is controlled to display a first stage sterilization rate corresponding to the first sterilization stage and a second stage sterilization rate corresponding to the second sterilization stage during the first sterilization stage and the second sterilization stage, respectively.
5. The method of claim 4, wherein the method further comprises: The method further comprises matching the corresponding first sterilization duration and second sterilization duration according to the temperature and humidity of the space.
6. The air conditioner sterilization rate estimation method according to claim 5, characterized by, The step of "matching the corresponding first sterilization duration and second sterilization duration according to the temperature and humidity of the space" specifically comprises: If T < Tth1 and H < Hth1, the first sterilization duration and the second sterilization duration are both t1, T represents the temperature of the space, H represents the humidity of the space, Tth1 represents a preset lower limit value of temperature, and Hth1 represents a preset lower limit value of humidity; If Tth1 ≤ T ≤ Tth2 and Hth1 ≤ H ≤ Hth2, the first sterilization duration and the second sterilization duration are both t2, Tth2 represents a preset upper limit value of temperature, and Hth2 represents a preset upper limit value of humidity; If T > Tth2 and H > Hth2, the first sterilization duration and the second sterilization duration are both t3; Wherein, t1 < t2 < t3.
7. The air conditioner sterilization rate estimation method according to claim 6, characterized by, The t1 = 30 minutes, the t2 = 1 hour, and the t3 = 2 hours.
8. An electronic device comprising a processor and a storage device, said storage device being adapted to store a plurality of program codes, characterized in that, The program code is adapted to be loaded and run by the processor to perform the air conditioner sterilization rate estimation method of any one of claims 1 to 7.
9. An air conditioner characterized by comprising: The air conditioner comprises the electronic device of claim 8.
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