A control method and control device of an air conditioner, the air conditioner, and a storage medium

By acquiring the air conditioner's operating parameters and human body temperature, the system automatically adjusts the air conditioner's operating parameters and mode, solving the problem that air conditioners cannot adjust the indoor temperature according to changes in human body temperature, thus achieving automatic temperature regulation and improving user experience.

CN116839198BActive Publication Date: 2025-11-28NINGBO AUX ELECTRIC CO LTD +1
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Patent Information

Application Number
CN202310837795.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-10
Publication Date
2025-11-28
Estimated Expiration
2043-07-10

AI Technical Summary

Technical Problem

Existing air conditioners cannot automatically adjust the indoor temperature according to changes in human body temperature, forcing users to constantly adjust the temperature manually, resulting in a poor user experience.

Method used

By acquiring the air conditioner's operating parameters, human body temperature, and the rate of change of indoor ambient temperature, the air conditioner's operating parameters and modes are automatically adjusted to adapt to changes in human body temperature, thus achieving automatic temperature regulation.

Benefits of technology

This technology enables air conditioners to automatically adjust the indoor temperature based on changes in human body temperature during operation, reducing manual operation by users, improving user experience, and enhancing the accuracy and applicability of temperature regulation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a control method and device of an air conditioner, the air conditioner and a storage medium, and the control method comprises the following steps: after the air conditioner is operated, a first operation parameter value, a first human body temperature value and an inner ring temperature change rate within a first preset time length of the air conditioner are acquired; a second operation parameter value of the air conditioner is determined according to the first operation parameter value and the inner ring temperature change rate; a second human body temperature value is acquired; and a third operation parameter value and an operation mode of the air conditioner are adjusted according to the inner ring temperature change rate, the second operation parameter value, the first human body temperature value and the second human body temperature value. The application solves the technical problem that the indoor environment temperature cannot be automatically adjusted according to the change of the human body temperature in the use process of the air conditioner, the user needs to manually adjust the temperature of the air conditioner constantly, and the user experience is poor.
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Description

TECHNICAL FIELD

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

[0002] As an important electrical appliance for adjusting indoor temperature, air conditioners have been adopted by more and more families. After the air conditioner is started, the user only needs to touch the corresponding function keys on the remote controller, such as the start, stop, temperature up or temperature down function keys, and the air conditioner will execute the corresponding action according to the instructions sent by the remote controller, thereby meeting the user's temperature adjustment needs for the indoor environment to the greatest extent.

[0003] However, in actual use, there is a problem that the temperature of the air conditioner in the prior art is set by the user in advance. In the use process of the air conditioner, the human body's feeling of temperature changes with the user's activity state, and the air conditioner cannot automatically adjust the indoor environment temperature according to the change of the human body temperature. At this time, the user needs to manually adjust the temperature of the air conditioner constantly, which is very cumbersome and causes poor user experience. SUMMARY

[0004] The present application solves the technical problem that the air conditioner cannot automatically adjust the indoor environment temperature according to the change of the human body temperature in the use process of the air conditioner, and the user needs to manually adjust the temperature of the air conditioner constantly, causing poor user experience.

[0005] To solve the above problem, the present application provides an air conditioner control method, which comprises: after the air conditioner is started, obtaining a first running parameter value of the air conditioner, a first human body temperature value and an inner ring temperature change rate within a first preset time length; determining a second running parameter value of the air conditioner according to the first running parameter value and the inner ring temperature change rate; obtaining a second human body temperature value; adjusting a third running parameter value and a running mode of the air conditioner according to the inner ring temperature change rate, the second running parameter value, the first human body temperature value and the second human body temperature value; wherein the first running parameter value is the numerical value of the running parameter of the air conditioner at the first time, the second running parameter value is the numerical value of the running parameter of the air conditioner at the second time, and the third running parameter value is the numerical value of the running parameter of the air conditioner at the third time; the first human body temperature value is the numerical value of the human body temperature of the user at the first time, and the second human body temperature value is the numerical value of the human body temperature of the user at the second time; the running parameter includes the compressor frequency of the air conditioner and the outer fan rotating speed of the air conditioner.

[0006] Compared with the prior art, the technical effects achieved by adopting the technical scheme are as follows: by acquiring the inner ring temperature change rate within the first preset time length, the adjustment effect of the air conditioner on the indoor environment temperature can be accurately judged; by the size of the inner ring temperature change rate, the second operating parameter value of the air conditioner is adjusted according to the first operating parameter value, so as to adjust the adjustment effect of the air conditioner on the indoor environment temperature, and avoid the discomfort of the user caused by the too fast change of the indoor environment temperature; meanwhile, the second operating parameter value is taken as the basis for adjusting the third operating parameter value, so that the control is further accurate, and the applicability of different use scenarios is strong; the second human body temperature value after the first preset time length is acquired, the change of the human body temperature within the first preset time length is judged by comparing the second human body temperature value and the first human body temperature value; by the body temperature difference, the second human body temperature value, the inner ring temperature change rate, the inner ring temperature change rate threshold value and the second operating parameter value, the operating parameter value and the operating mode of the air conditioner at the third time are automatically adjusted, so as to adjust the indoor environment temperature and adjust or maintain the current comfort level; meanwhile, the whole control method is automatic control, after the air conditioner is operated, the user does not need to manually operate, the indoor environment temperature is automatically adjusted according to the human body temperature, the manual operation in the use process is saved, and the user experience is improved.

[0007] In an example of the present application, the second operating parameter value of the air conditioner is determined according to the first operating parameter value and the inner ring temperature change rate, comprising: the second operating parameter value is determined according to the first operating parameter value, the inner ring temperature change rate and the inner ring temperature change rate threshold value; when the inner ring temperature change rate is less than or equal to the inner ring temperature change rate threshold value, the second operating parameter value is equal to the first operating parameter value; and / or when the inner ring temperature change rate is greater than the inner ring temperature change rate threshold value, the second operating parameter value is determined according to the first operating parameter value.

[0008] Compared with the prior art, the technical effects achieved by adopting the technical scheme are as follows: the inner ring temperature change rate threshold value is set, the inner ring temperature change rate is compared with the inner ring temperature change rate threshold value, whether the inner ring temperature change rate is too large is judged, when the inner ring temperature change rate is too large, the adjustment effect of the air conditioner on the indoor environment temperature is good, the change of the indoor environment temperature is fast, and the discomfort of the user is easily caused, therefore, the second operating parameter value of the air conditioner needs to be adjusted according to the first operating parameter value, so as to adjust the adjustment effect of the air conditioner on the indoor environment temperature, and avoid the discomfort of the user caused by the too fast change of the indoor environment temperature; by comparing the inner ring temperature change rate with the inner ring temperature change rate threshold value, the too large inner ring temperature change rate is no longer a fuzzy judgment standard, and the judgment is more accurate and scientific.

[0009] In an example of the present application, the third operating parameter value and the operating mode of the air conditioner are adjusted according to the inner loop temperature change rate, the second operating parameter value, and the first human body temperature value and the second human body temperature value, including: obtaining a body temperature temperature difference according to the difference between the second human body temperature value and the first human body temperature value; and adjusting the third operating parameter value and the operating mode of the air conditioner according to the body temperature temperature difference and the second human body temperature value, based on the inner loop temperature change rate and the second operating parameter value.

[0010] Compared with the prior art, the technical effects achieved by adopting the technical solution are: the body temperature temperature difference is obtained according to the difference between the second human body temperature value and the first human body temperature value, the change of the human body temperature in the first preset time length is judged according to the body temperature temperature difference, and whether the user is uncomfortable under the inner loop temperature change rate can be judged at the same time; the operating parameter value and the operating mode of the air conditioner at the third time are automatically adjusted through the body temperature temperature difference, the second human body temperature value, the inner loop temperature change rate, the inner loop temperature change rate threshold value, and the second operating parameter value, so as to adjust the indoor environment temperature and adjust or maintain the current comfort level.

[0011] In an example of the present application, in the cooling mode, the third operating parameter value and the operating mode of the air conditioner are adjusted according to the inner loop temperature change rate, the second operating parameter value, and the first human body temperature value and the second human body temperature value, including: when the body temperature temperature difference is greater than or equal to the first temperature difference threshold value, the third operating parameter value is adjusted according to the second operating parameter value to reduce the indoor environment temperature; and / or when the body temperature temperature difference is less than the first temperature difference threshold value, the sizes of the second human body temperature value, the first body temperature threshold value, and the second body temperature threshold value are judged; the third operating parameter value is adjusted to adjust the indoor environment temperature according to the size relationship of the second human body temperature value, the first body temperature threshold value, and the second body temperature threshold value.

[0012] Compared with the prior art, the technical effects achieved by adopting the technical solution are: in the cooling mode, whether the size relationship of the second human body temperature value, the first body temperature threshold value, and the second body temperature threshold value needs to be compared is judged after it is judged whether the body temperature temperature difference is greater than or equal to the first temperature difference threshold value, and such design in the control method can save steps, reduce unnecessary judgment and detection steps, and make the control process more efficient.

[0013] In an example of the present application, when the body temperature difference is less than the first temperature difference threshold, the third operating parameter value is adjusted to adjust the indoor environment temperature according to the size relationship between the second human body temperature value, the first body temperature threshold and the second body temperature threshold, including: when the second human body temperature value is greater than the second body temperature threshold, the third operating parameter value is adjusted according to the second operating parameter value to reduce the indoor environment temperature; and / or when the second human body temperature value is greater than or equal to the first body temperature threshold and less than or equal to the second body temperature threshold, the third operating parameter value is adjusted according to the second operating parameter value to maintain the current indoor environment temperature; and / or when the second human body temperature value is less than the first body temperature threshold, the air conditioner switches to the heating mode to increase the indoor environment temperature, and after the second human body temperature value is adjusted to be greater than or equal to the first body temperature threshold and less than or equal to the second body temperature threshold, the air conditioner switches to the cooling mode.

[0014] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: in the cooling mode, whether to compare the size relationship between the second human body temperature value, the first body temperature threshold and the second body temperature threshold is further determined, which can save steps, reduce unnecessary determination and detection steps, and make the control process more efficient.

[0015] In an example of the present application, in the heating mode, the third operating parameter value and the operating mode of the air conditioner are adjusted according to the inner ring temperature change rate, the second operating parameter value and the first human body temperature value and the second human body temperature value, including: when the body temperature difference is less than or equal to the second temperature difference threshold, the third operating parameter value is adjusted according to the second operating parameter value to increase the indoor environment temperature; and / or when the body temperature difference is greater than the second temperature difference threshold, the size relationship between the second human body temperature value and the first body temperature threshold and the second body temperature threshold is determined; the third operating parameter value is adjusted to adjust the indoor environment temperature according to the size relationship between the second human body temperature value, the first body temperature threshold and the second body temperature threshold.

[0016] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: in the heating mode, whether to compare the size relationship between the second human body temperature value, the first body temperature threshold and the second body temperature threshold is further determined, which can save steps, reduce unnecessary determination and detection steps, and make the control process more efficient.

[0017] In an example of the present application, in the case that the body temperature difference is greater than the second temperature difference threshold, the third operating parameter value is adjusted to adjust the indoor environment temperature according to the size relationship among the second human body temperature value, the first body temperature threshold and the second body temperature threshold, including: when the second human body temperature value is less than the first body temperature threshold, the third operating parameter value is adjusted according to the second operating parameter value to increase the indoor environment temperature; and / or when the second human body temperature value is greater than or equal to the first body temperature threshold and less than or equal to the second body temperature threshold, the third operating parameter value is adjusted according to the second operating parameter value to maintain the current indoor environment temperature; and / or when the second human body temperature value is greater than the second body temperature threshold, the air conditioner is switched to the cooling mode to reduce the indoor environment temperature, and after the second human body temperature value is adjusted to be greater than or equal to the first body temperature threshold and less than or equal to the second body temperature threshold, the air conditioner is switched to the heating mode.

[0018] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: in the heating mode, whether the size relationship among the second human body temperature value, the first body temperature threshold and the second body temperature threshold is further determined, which can save steps, reduce unnecessary determination and detection steps, and make the control process more efficient.

[0019] In an example of the present application, after the air conditioner is operated, the first operating parameter value of the air conditioner, the first human body temperature value and the inner loop temperature change rate within the first preset time length are obtained, including: after the air conditioner is operated, the first indoor environment temperature is obtained; the first preset time length is obtained according to the time length required for changing the first indoor environment temperature by the first inner loop temperature difference set value; and the inner loop temperature change rate is calculated according to the first indoor environment temperature, the first inner loop temperature difference set value and the first preset time length.

[0020] Compared with the prior art, the technical effects achieved by adopting the technical scheme are: the first indoor environment temperature is obtained by the first obtaining module, the inner loop temperature change rate in this environment can be obtained by calculating the time length required for changing the first indoor environment temperature by the first inner loop temperature difference set value, the first preset time length is obtained by assigning the time length required for changing the first indoor environment temperature by the first inner loop temperature difference set value, and the first preset time length is calculated based on the first inner loop temperature difference set value, which can better monitor the indoor environment temperature and evaluate the inner loop temperature change rate through the monitoring of the indoor environment temperature.

[0021] In another aspect, the embodiment of the present application further provides a control device of an air conditioner, which comprises: a first acquisition module, configured to acquire a first operation parameter value of the air conditioner, a first human body temperature value and an inner loop temperature change rate within a first preset time period after the air conditioner is operated; an adjustment module, configured to determine a second operation parameter value of the air conditioner according to the first operation parameter value and the inner loop temperature change rate; a second acquisition module, configured to acquire a second human body temperature value; and a control module, configured to adjust a third operation parameter value and an operation mode of the air conditioner according to the inner loop temperature change rate, the second operation parameter value, the first human body temperature value and the second human body temperature value.

[0022] Compared with the prior art, the technical effects achieved by the technical scheme are as follows: the control device of the air conditioner in the embodiment is used to implement the control method of the air conditioner according to any embodiment of the present application, and thus has all the beneficial effects of the control method of the air conditioner according to any embodiment of the present application, which will not be repeated here.

[0023] In yet another aspect, the embodiment of the present application further provides an air conditioner, which comprises: a processor, a memory and a program or instructions stored in the memory and executable on the processor, and the program or instructions are used to implement the steps of the control method of the air conditioner according to any embodiment described above when executed by the processor.

[0024] Compared with the prior art, the technical effects achieved by the technical scheme are as follows: the air conditioner in the embodiment is operated according to the control method of the air conditioner according to any embodiment of the present application, and thus has all the beneficial effects of the control method of the air conditioner according to any embodiment of the present application, which will not be repeated here.

[0025] In yet another aspect, the embodiment of the present application further provides a readable storage medium, which stores a program or instructions, and the program or instructions are used to implement the steps of the control method of the air conditioner according to any embodiment described above when executed by a processor.

[0026] Compared with the prior art, the technical effects achieved by the technical scheme are as follows: the readable storage medium in the embodiment is used to store the control method of the air conditioner according to any embodiment of the present application, and thus has all the beneficial effects of the control method of the air conditioner according to any embodiment of the present application, which will not be repeated here.

[0027] After the technical scheme of the present application is adopted, the following technical effects can be achieved:

[0028] (1) Through the body temperature difference, the second human body temperature value, the inner ring temperature change rate, the inner ring temperature change rate threshold value and the second operating parameter value, the operating parameter value and the operating mode of the air conditioner at the third moment are automatically adjusted, so that the indoor environment temperature is adjusted, the current comfort degree is adjusted or maintained, and the whole control method is automatic control, so that the indoor environment temperature is automatically adjusted according to the human body temperature after the air conditioner is operated, manual operation in the use process is saved, and user experience is improved;

[0029] (2) The second operating parameter value of the air conditioner is adjusted according to the first operating parameter value, so that the adjustment effect of the air conditioner on the indoor environment temperature is adjusted, the discomfort of the user caused by the too fast change of the indoor environment temperature is avoided, the second operating parameter value is taken as the basis for subsequent adjustment of the third operating parameter value, and the control is further more accurate and applicable to different use scenarios;

[0030] (3) The first body temperature threshold value and the second body temperature threshold value can be factory set values of the air conditioner or can be determined according to user customization, so as to meet the needs of different users and have strong applicability;

[0031] (4) The first indoor environment temperature is obtained through the first acquisition module, the inner ring temperature change rate in this environment is obtained by calculating the time length required for the first indoor environment temperature to change the first inner ring temperature difference set value, the time length required for the first indoor environment temperature to change the first inner ring temperature difference set value is valued as the first preset time length, and the first preset time length is obtained. The first preset time length is calculated based on the first inner ring temperature difference set value, so that the indoor environment temperature can be better monitored, and the inner ring temperature change rate can be evaluated through monitoring of the indoor environment temperature. BRIEF DESCRIPTION OF DRAWINGS

[0032] Figure 1 A flow chart of a control method of an air conditioner provided by the first embodiment of the application.

[0033] Figure 2 A structural schematic block diagram of a control device of an air conditioner provided by the second embodiment of the application.

[0034] Figure 3 A composition block diagram of an air conditioner provided by the third embodiment of the application.

[0035] Figure 4 A structural schematic diagram of a readable storage medium provided by the fourth embodiment of the application.

[0036] MARK NUMBER EXPLANATION:

[0037] 100 - control device of air conditioner; 101 - first acquisition module; 102 - adjustment module; 103 - second acquisition module; 104 - control module; 200 - air conditioner; 210 - memory; 211 - computer program; 220 - processor; 300 - readable storage medium; 310 - computer executable instructions. DETAILED DESCRIPTION

[0038] In order to make the above objectives, features and advantages of the present application more apparent, clear and easy to understand, the technical solutions in the embodiments of the present application are described clearly and completely. Obviously, the described embodiments are only part of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0039] Embodiment one

[0040] Referring to Figure 1 which is a flowchart of a control method of an air conditioner provided by the first embodiment of the present application, the control method comprises:

[0041] S10: After the air conditioner is running, acquiring a first running parameter value of the air conditioner, a first human body temperature value and an inner ring temperature change rate within a first preset time length;

[0042] S11: After the air conditioner is running, acquiring a first indoor environment temperature;

[0043] S12: According to the time length required for changing the first indoor environment temperature by a first inner ring temperature difference set value, acquiring the first preset time length;

[0044] S13: According to the first indoor environment temperature, the first inner ring temperature difference set value and the first preset time length, calculating the inner ring temperature change rate.

[0045] In one specific embodiment, after the air conditioner is running, the air conditioner runs in the initial running state set by the user, and the initial time is set as the first time. At this time, the first running parameter value (i.e. f1 and n1) and the first human body temperature of the air conditioner running in the initial running state are acquired by the first acquisition module, and the inner ring temperature change rate within the first preset time length is acquired. By acquiring the inner ring temperature change rate within the first preset time length, the adjustment effect of the air conditioner on the indoor environment temperature can be accurately judged.

[0046] The specific process of obtaining the inner ring temperature change rate in the first preset time period is: obtaining the first indoor environment temperature (i.e. the indoor environment temperature at the first time) through the first obtaining module, and obtaining the inner ring temperature change rate in this environment by calculating the time period required for the first indoor environment temperature to change by the first inner ring temperature difference set value. The time period required for the first indoor environment temperature to change by the first inner ring temperature difference set value is assigned as the first preset time period, and the first preset time period is obtained. Calculating the first preset time period based on the first inner ring temperature difference set value can better monitor the indoor environment temperature, and the inner ring temperature change rate is evaluated through the monitoring of the indoor environment temperature. Wherein, f1 represents the compressor frequency value at the first time, and n1 represents the outdoor fan speed value at the first time.

[0047] V1 = ΔT 内 / Δt; Δt = t2-t1. Wherein, V1 represents the inner ring temperature change rate; ΔT 内 represents the first inner ring temperature difference set value; Δt represents the first preset time period; t2 represents the second time; and t1 represents the first time.

[0048] Preferably, the indoor environment temperature is collected in real time by an indoor temperature sensing bag, and the human body temperature is detected by an infrared temperature detection module.

[0049] Preferably, the preferred value of the first inner ring temperature difference set value is 1℃.

[0050] S20: determining the second running parameter value of the air conditioner according to the first running parameter value and the inner ring temperature change rate.

[0051] In one specific embodiment, the adjustment effect of the air conditioner on the indoor environment temperature can be judged by the inner ring temperature change rate. Therefore, when the inner ring temperature change rate is too large, the adjustment effect of the air conditioner on the indoor environment temperature is good, the indoor environment temperature changes rapidly, and it is easy to cause the discomfort of the user. Therefore, the second running parameter value of the air conditioner needs to be adjusted according to the first running parameter value, so as to adjust the adjustment effect of the air conditioner on the indoor environment temperature, and avoid the discomfort of the user caused by the rapid change of the indoor environment temperature. At the same time, the second running parameter value is used as the basis for adjusting the third running parameter value in the subsequent adjustment, so as to further make the control more accurate and have strong applicability in different use scenarios.

[0052] A threshold value of the inner ring temperature change rate is set, and whether the inner ring temperature change rate is too large is judged by comparing the inner ring temperature change rate with the threshold value of the inner ring temperature change rate. When V1 is greater than V lim , it is judged that V1 is too large, and the running parameter value is adjusted according to the proportional relationship between V1 and V lim . limthe second operating parameter (i.e., f2) is calculated according to the proportional relationship and the first operating parameter value (i.e., f1) to adjust the adjustment effect of the air conditioner on the indoor environment temperature; when the inner ring temperature change rate is less than or equal to the inner ring temperature change rate threshold, the second operating parameter value is equal to the first operating parameter value, i.e., f2=f1.

[0053] wherein f2 represents the compressor frequency value at the second moment; V lim represents the inner ring temperature change rate threshold, that is, the maximum inner ring temperature change rate, V lim The first operating parameter value can be a factory setting value of the air conditioner, or can be determined according to user customization to meet the needs of different users.

[0054] By comparing the inner ring temperature change rate with the set inner ring temperature change rate threshold, the excessively large inner ring temperature change rate is no longer a fuzzy judgment standard. By judging through the inner ring temperature change rate threshold, the judgment is more accurate and scientific.

[0055] Suppose f1=60HZ, n1=1250rpm, the air conditioner runs at f1 and n1 when starting, and the time required to change the indoor environment temperature by 1℃ can be calculated to obtain the inner ring temperature change rate V1 in this environment, when V1 is greater than V lim , the compressor frequency in the program is adjusted accordingly: wherein k2 is a proportional coefficient, a series of k2 values can be obtained through experimental tests during design and written into the program, and during actual operation, the ratio of V is obtained, and the corresponding k2 value in the program is selected, and then f2 can be obtained. When k2 is equal to 1, the inner ring temperature change rate threshold V lim in this space can be obtained. lim , and the compressor frequency must be less than or equal to f lim under automatic adjustment.

[0056] S30: Obtain a second human body temperature value.

[0057] In one specific embodiment, since the human body's perception of temperature also changes during the operation of the air conditioner, the change of the human body temperature is monitored in real time to better judge the change of the human body temperature, thereby serving as the basis for subsequent adjustment of the operating parameters of the air conditioner; the second human body temperature value after a first preset time length is obtained, and by comparing the second human body temperature value and the first human body temperature value, the change of the human body temperature within the first preset time length is judged.

[0058] S40: Adjust the third operating parameter value and the operating mode of the air conditioner according to the inner ring temperature change rate, the second operating parameter value, the first human body temperature value, and the second human body temperature value;

[0059] S41: obtaining a body temperature difference according to a difference between the second human body temperature value and the first human body temperature value;

[0060] S42: adjusting a third operating parameter value and an operating mode of the air conditioner based on the inner ring temperature change rate and the second operating parameter value according to the body temperature difference and the second human body temperature value.

[0061] In one specific embodiment, the body temperature difference is obtained according to a difference between the second human body temperature value and the first human body temperature value, the change of the human body temperature in the first preset time length is determined according to the body temperature difference, and whether the user is uncomfortable under the inner ring temperature change rate is determined. The operating parameter value and the operating mode of the air conditioner at the third time are automatically adjusted according to the body temperature difference, the second human body temperature value, the inner ring temperature change rate, the inner ring temperature change rate threshold value and the second operating parameter value, so as to adjust the indoor environment temperature and adjust or maintain the current comfort level. The whole control method is automatic control, and the user does not need to manually operate after the air conditioner is operated. The indoor environment temperature is automatically adjusted according to the human body temperature, the manual operation in the use process is saved, and the user experience is improved.

[0062] ΔT 体 = T 体2 - T 体1 ; wherein T 体2 represents the second human body temperature value, that is, the human body temperature value at the second time; T 体1 represents the first human body temperature value, that is, the human body temperature value at the first time; and ΔT 体 represents the body temperature difference in the first preset time length.

[0063] Further, in the cooling mode, the third operating parameter value and the operating mode of the air conditioner are adjusted according to the inner ring temperature change rate, the second operating parameter value, the first human body temperature value and the second human body temperature value, including:

[0064] When the body temperature difference is greater than or equal to the first temperature difference threshold value, the third operating parameter value is adjusted according to the second operating parameter value to reduce the indoor environment temperature; and / or

[0065] When the body temperature difference is less than the first temperature difference threshold value, the second human body temperature value is compared with the first body temperature threshold value and the second body temperature threshold value.

[0066] The third operating parameter value is adjusted to adjust the indoor environment temperature according to the size relationship between the second human body temperature value, the first body temperature threshold value and the second body temperature threshold value.

[0067] In one specific embodiment, the primary judgment condition of the air conditioner in the cooling mode is that the change of the human body temperature in the first preset time length is determined by the body temperature difference and the first temperature difference threshold value, and it is determined whether the indoor environment temperature needs to be adjusted by adjusting the third operating parameter value.

[0068] When the user remotely controls the air conditioner to the cooling mode, the user's body temperature is generally too high, and the body temperature needs to be cooled by the cooling effect of the air conditioner. When the body temperature difference is greater than or equal to the first temperature difference threshold, it is indicated that the cooling capacity of the air conditioner is low within the first preset time length, and the third operating parameter value needs to be appropriately increased according to the second operating parameter value to increase the cooling capacity of the air conditioner. At this time f3 = f2 x k3, the values of f3 and f lim are compared, if f3 < f lim , the third operating parameter value is adjusted to f3 to operate; if f3 > f lim , the third operating parameter value is adjusted to f lim to operate, so as to avoid that the new inner ring temperature change rate is too large to cause the indoor environment temperature to drop too fast, resulting in user discomfort; when the body temperature difference is less than the first temperature difference threshold, it is further needed to judge the sizes of the second body temperature value, the first temperature threshold and the second temperature threshold, and the third operating parameter value is adjusted according to the size relationship between the second body temperature value, the first temperature threshold and the second temperature threshold to adjust the indoor environment temperature. Wherein, c1 represents the first proportion coefficient, which is used to determine the third operating proportion coefficient, and is determined by experimental test, and c1 > 1; f3 represents the compressor frequency value at the third moment.

[0069] Further, by preferentially judging whether the body temperature difference is greater than or equal to the first temperature difference threshold and then judging whether the size relationship between the second body temperature value, the first temperature threshold and the second temperature threshold needs to be compared, the control method is designed in this way, which can save steps, reduce unnecessary judgment and detection steps, and make the control process more efficient.

[0070] Preferably, the preferred value of the first temperature difference threshold is 0℃.

[0071] Further, in the case that the body temperature difference is less than the first temperature difference threshold, the third operating parameter value is adjusted according to the size relationship between the second body temperature value, the first temperature threshold and the second temperature threshold to adjust the indoor environment temperature, including:

[0072] When the second body temperature value is greater than the second temperature threshold, the third operating parameter value is adjusted according to the second operating parameter value to reduce the indoor environment temperature; and / or

[0073] When the second body temperature value is greater than or equal to the first temperature threshold and less than or equal to the second temperature threshold, the third operating parameter value is adjusted according to the second operating parameter value to maintain the current indoor environment temperature; and / or

[0074] When the second body temperature value is less than the first temperature threshold, the air conditioner is switched to the heating mode to increase the indoor environment temperature, and after the second body temperature value is adjusted to be greater than or equal to the first temperature threshold and less than or equal to the second temperature threshold, the air conditioner is switched to the cooling mode.

[0075] In one specific embodiment, when the second human body temperature value is greater than the second body temperature threshold value, it indicates that the cooling capacity of the air conditioner is low in the first preset time length, and the third operating parameter value needs to be appropriately increased according to the second operating parameter value to increase the cooling capacity of the air conditioner and reduce the indoor environment temperature, in the case that the body temperature difference is less than the first temperature difference threshold value. f3 = f2 x k3, comparing the sizes of f3 and f lim , if f3 < f lim , the third operating parameter value is adjusted to f3 to run; if f3 > f lim , the third operating parameter value is adjusted to f lim to run, avoiding that the new inner loop temperature change rate is too large, and avoiding that the new inner loop temperature change rate is too large to cause the indoor environment temperature to drop too fast to cause user discomfort; when the second human body temperature value is greater than or equal to the first body temperature threshold value and less than or equal to the second body temperature threshold value, the air conditioner automatically adjusts the third operating parameter to maintain the indoor environment temperature at this time; when the second human body temperature value is less than the first body temperature threshold value, the air conditioner switches to the heating mode to increase the indoor environment temperature, and after the second human body temperature value is adjusted to be greater than or equal to the first body temperature threshold value and less than or equal to the second body temperature threshold value, the air conditioner switches to the cooling mode, and after switching to the cooling mode, the air conditioner automatically adjusts the third operating parameter to maintain the indoor environment temperature at this time. Wherein, T 适2 represents the second body temperature threshold value; c2 represents the second proportional coefficient, which is used to determine the third operating proportional coefficient, is determined by experimental test, and c2 > 1; when the detected human body temperature satisfies greater than or equal to the first body temperature threshold value and less than or equal to the second body temperature threshold value, the user is in the most suitable temperature.

[0076] The specific process of automatic adjustment is: at this time, the air conditioner is at the second time, the operating parameter of the air conditioner is f2, the indoor environment temperature is monitored, and if |T 室终 -T 室始 | ≥ ΔT 内 is monitored in the second preset time length, the air conditioner starts to adjust: k3 = ((T 室终 -T 室始 ) / T 室始 ) + 1, f3 = f2 x k3; if f3 > f lim , the third operating parameter value is adjusted to f lim to run, avoiding that the new inner loop temperature change rate is too large, and avoiding that the new inner loop temperature change rate is too large to cause the indoor environment temperature to drop too fast to cause user discomfort. Wherein, the preferred value of the second preset time length is 20 min; T 室始 represents the indoor environment temperature detected by the air conditioner after the second time; T 室终 represents the indoor environment temperature detected by the air conditioner after the second preset time length; ΔT 内represents a first inner loop temperature difference set value, and a preferred value of the first inner loop temperature difference set value is 1℃.

[0077] Preferably, a preferred value of the first body temperature threshold value is 35.5℃, and a preferred value of the second body temperature threshold value is 36.5℃, i.e., the most suitable temperature is 36±0.5℃; the first body temperature threshold value and the second body temperature threshold value can be factory set values of the air conditioner, or can be determined according to user self-definition to meet the needs of different users, and have strong applicability; when the user adjusts and sets the first body temperature threshold value and the second body temperature threshold value, the memory stores the first body temperature threshold value and the second body temperature threshold value set by the user until the user re-sets.

[0078] Similarly, in the heating mode, the third operating parameter value and the operating mode of the air conditioner are adjusted according to the inner loop temperature change rate, the second operating parameter value, the first human body temperature value and the second human body temperature value, including:

[0079] When the body temperature difference is less than or equal to the second temperature difference threshold value, the third operating parameter value is adjusted according to the second operating parameter value to increase the indoor environment temperature; and / or

[0080] When the body temperature difference is greater than the second temperature difference threshold value, the second human body temperature value is compared with the first body temperature threshold value and the second body temperature threshold value.

[0081] According to the size relationship of the second human body temperature value, the first body temperature threshold value and the second body temperature threshold value, the third operating parameter value is adjusted to adjust the indoor environment temperature.

[0082] In one specific embodiment, in the heating mode of the air conditioner, the primary judgment condition is to determine whether the indoor environment temperature needs to be adjusted by adjusting the third operating parameter value by judging the change of the human body temperature in the first preset time length through the body temperature difference and the second temperature difference threshold value.

[0083] When the user remotely controls the air conditioner to the heating mode, the user's body temperature is generally too low, and the body temperature needs to be raised by the heating action of the air conditioner. When the body temperature difference is less than or equal to the first temperature difference threshold value, it is indicated that the heating capacity of the air conditioner is low in the first preset time length, and the third operating parameter value needs to be appropriately increased according to the second operating parameter value to increase the heating capacity of the air conditioner. At this time f3=f2×k3, compare f3 and f lim , if f3<f lim , the third operating parameter value is adjusted to f3; if f3>f lim , the third operating parameter value is adjusted to f limWhen the body temperature difference is greater than the second temperature difference threshold, the size relationship between the second human body temperature value, the first body temperature threshold and the second body temperature threshold needs to be further judged, and the third operating parameter value is adjusted according to the size relationship between the second human body temperature value, the first body temperature threshold and the second body temperature threshold to adjust the indoor environment temperature. Wherein, c1 represents the first proportional coefficient, which is used to determine the third operating proportional coefficient, and is determined by experimental test, and c1>1; f3 represents the compressor frequency value at the third moment.

[0084] Further, by judging whether the body temperature difference is less than or equal to the second temperature difference threshold first and then judging whether the size relationship between the second human body temperature value, the first body temperature threshold and the second body temperature threshold needs to be compared, the control method is designed in this way, which can save steps, reduce unnecessary judgment and detection steps, and make the control process more efficient.

[0085] Preferably, the preferred value of the second temperature difference threshold is 0℃.

[0086] Similarly, in the case that the body temperature difference is greater than the second temperature difference threshold, the third operating parameter value is adjusted according to the size relationship between the second human body temperature value, the first body temperature threshold and the second body temperature threshold to adjust the indoor environment temperature, which includes:

[0087] When the second human body temperature value is less than the first body temperature threshold, the third operating parameter value is adjusted according to the second operating parameter value to increase the indoor environment temperature; and / or

[0088] When the second human body temperature value is greater than or equal to the first body temperature threshold and less than or equal to the second body temperature threshold, the third operating parameter value is adjusted according to the second operating parameter value to maintain the current indoor environment temperature; and / or

[0089] When the second human body temperature value is greater than the second body temperature threshold, the air conditioner switches to the cooling mode to reduce the indoor environment temperature, and after the second human body temperature value is adjusted to be greater than or equal to the first body temperature threshold and less than or equal to the second body temperature threshold, the air conditioner switches to the heating mode.

[0090] In a specific embodiment, in the case that the body temperature difference is greater than the second temperature difference threshold, when the second human body temperature value is less than the first body temperature threshold, it indicates that the heating capacity of the air conditioner is low in the first preset time length, and the third operating parameter value needs to be appropriately increased according to the second operating parameter value to increase the heating capacity of the air conditioner and increase the indoor environment temperature, at this time, f3=f2×k3, compare f3 and f lim , if f3<f lim , adjust the third operating parameter value to f3 operation; if f3>f lim , adjust the third operating parameter value to f limWhen the second human body temperature value is greater than the first body temperature threshold value and less than or equal to the second body temperature threshold value, the air conditioner automatically adjusts the third operating parameter to maintain the indoor environment temperature at this time. When the second human body temperature value is greater than the second body temperature threshold value, the air conditioner switches to the cooling mode to reduce the indoor environment temperature, and after the second human body temperature value is adjusted to be greater than or equal to the first body temperature threshold value and less than or equal to the second body temperature threshold value, the air conditioner switches to the heating mode. After switching to the heating mode, the air conditioner automatically adjusts the third operating parameter to maintain the indoor environment temperature at this time. Wherein, T 适1 represents the first body temperature threshold value; c2 represents the second proportional coefficient, which is used to determine the third operating proportional coefficient, is determined by experimental test, and c2>1; when the detected human body temperature satisfies greater than or equal to the first body temperature threshold value and less than or equal to the second body temperature threshold value, the user is in the most suitable temperature.

[0091] The specific process of automatic adjustment is: at this time, the air conditioner is at the second time, the operating parameter of the air conditioner is f2, the indoor environment temperature is monitored, and within the second preset time length, if |T 室终 -T 室始 |≥ΔT 内 , the air conditioner starts to adjust: k3=((T 室终 -T 室始 ) / T 室始 )+1, f3=f2×k3; if f3>f lim , the third operating parameter value is adjusted to f lim , and the air conditioner runs, avoiding that the new inner ring temperature change rate is too large, and avoiding that the new inner ring temperature change rate is too large to cause the indoor environment temperature to drop too fast, leading to user discomfort. Wherein, the preferred value of the second preset time length is 20 min; T 室始 represents the indoor environment temperature detected by the air conditioner after the second time; T 室终 represents the indoor environment temperature detected by the air conditioner after the second preset time length; ΔT 内 represents the first inner ring temperature difference set value, and the preferred value of the first inner ring temperature difference set value is 1℃.

[0092] Preferably, the preferred value of the first body temperature threshold value is 35.5℃, and the preferred value of the second body temperature threshold value is 36.5℃, that is, the most suitable temperature is 36±0.5℃; the first body temperature threshold value and the second body temperature threshold value can be the factory set values of the air conditioner, or can be determined according to user-defined to meet the needs of different users, and have strong applicability; when the user adjusts and sets the first body temperature threshold value and the second body temperature threshold value, the memory stores the first body temperature threshold value and the second body temperature threshold value set by the user until the user re-sets.

[0093]

Example Two

[0094] Referring to Figure 2 The embodiment also provides a control device 100 of an air conditioner, for example, comprising: a first acquisition module 101, configured to acquire a first running parameter value of the air conditioner, a first human body temperature value and an inner ring temperature change rate within a first preset time length after the air conditioner is running; an adjustment module 102, configured to determine a second running parameter value of the air conditioner according to the first running parameter value and the inner ring temperature change rate; a second acquisition module 103, configured to acquire a second human body temperature value; and a control module 104, configured to adjust a third running parameter value and a running mode of the air conditioner according to the inner ring temperature change rate, the second running parameter value, the first human body temperature value and the second human body temperature value.

[0095] In one specific embodiment, the first acquisition module 101, the adjustment module 102, the second acquisition module 103 and the control module 104 of the control device 100 of the air conditioner cooperate to implement the control method of the air conditioner in the first embodiment, which will not be described herein again.

[0096]

Embodiment Three

[0097] Referring to Figure 3 The embodiment provides a structural schematic diagram of an air conditioner 200, for example, comprising a processor 220 and a memory 210 electrically connected to the processor 220, and the memory 210 stores a computer program 211, and the processor 220 loads the computer program 211 to implement the control method of the air conditioner in the first embodiment.

[0098]

Embodiment Four

[0099] Referring to Figure 4 The embodiment also provides a readable storage medium 300, which stores computer executable instructions 310, and when the computer executable instructions 310 are read and run by a processor, the air conditioner where the readable storage medium 300 is located implements the control method of the air conditioner in the first embodiment.

[0100] In several embodiments provided in the present application, it should be understood that the disclosed apparatus and method can also be implemented by other manners. The apparatus embodiment described above is only schematic, for example, each functional module in each embodiment of the present application can be integrated together to form an independent part, or each module can exist independently, or two or more modules can be integrated to form an independent part.

[0101] If the functions are implemented in the form of software function modules and sold or used as independent products, they can be stored in a computer readable storage medium. Based on this understanding, the technical solutions of the present application or the parts of the present application that essentially contribute to the prior art or the parts of the technical solutions can be embodied in the form of a software product. The computer software product is stored in a storage medium and includes 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 embodiments of the present application. The aforementioned readable 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 media that can store program codes.

[0102] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, and not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that: it can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part of the technical features; 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 control method of an air conditioner, characterized by, The control method comprises: After the air conditioner is operated, a first operating parameter value of the air conditioner, a first human body temperature value and an inner ring temperature change rate within a first preset time length are obtained; According to the first operating parameter value and the inner ring temperature change rate, a second operating parameter value of the air conditioner is determined; A second human body temperature value is obtained; According to the inner ring temperature change rate, the second operating parameter value and the first human body temperature value and the second human body temperature value, a third operating parameter value and an operating mode of the air conditioner are adjusted; The first operating parameter value is a value of an operating parameter of the air conditioner at a first time, the second operating parameter value is a value of an operating parameter of the air conditioner at a second time, and the third operating parameter value is a value of an operating parameter of the air conditioner at a third time; the first human body temperature value is a value of a human body temperature of a user at a first time, and the second human body temperature value is a value of a human body temperature of the user at a second time; the operating parameter comprises a compressor frequency of the air conditioner and a speed of an external fan of the air conditioner; The second operating parameter value of the air conditioner is determined according to the first operating parameter value and the inner ring temperature change rate, comprising: According to the first operating parameter value, the inner ring temperature change rate and an inner ring temperature change rate threshold, the second operating parameter value is determined; When the inner ring temperature change rate is less than or equal to the inner ring temperature change rate threshold, the second operating parameter value is equal to the first operating parameter value; and / or When the inner ring temperature change rate is greater than the inner ring temperature change rate threshold, the second operating parameter value is determined according to the first operating parameter value; According to the inner ring temperature change rate, the second operating parameter value and the first human body temperature value and the second human body temperature value, the third operating parameter value and the operating mode of the air conditioner are adjusted, comprising: A body temperature difference is obtained according to a difference between the second human body temperature value and the first human body temperature value; According to the body temperature difference and the second human body temperature value, the third operating parameter value and the operating mode of the air conditioner are adjusted based on the inner ring temperature change rate and the second operating parameter value.

2. The control method according to claim 1, wherein In the cooling mode, according to the inner ring temperature change rate, the second operating parameter value and the first human body temperature value and the second human body temperature value, the third operating parameter value and the operating mode of the air conditioner are adjusted, comprising: When the body temperature difference is greater than or equal to a first temperature difference threshold, the third operating parameter value is adjusted according to the second operating parameter value to reduce the indoor environment temperature; and / or When the body temperature difference is less than the first temperature difference threshold, the second human body temperature value is compared with a first body temperature threshold and a second body temperature threshold; According to the size relationship of the second human body temperature value, the first body temperature threshold and the second body temperature threshold, the third operating parameter value is adjusted to adjust the indoor environment temperature.

3. The control method according to claim 2, wherein in the case that the body temperature difference is less than the first temperature difference threshold, adjusting the third operating parameter value to adjust the indoor environment temperature according to a size relationship among the second human body temperature value, the first temperature threshold and the second temperature threshold, comprising: when the second human body temperature value is greater than the second temperature threshold, adjusting the third operating parameter value according to the second operating parameter value to lower the indoor environment temperature; and / or when the second human body temperature value is greater than or equal to the first temperature threshold and less than or equal to the second temperature threshold, adjusting the third operating parameter value according to the second operating parameter value to maintain the current indoor environment temperature; and / or when the second human body temperature value is less than the first temperature threshold, switching the air conditioner to a heating mode to increase the indoor environment temperature, and after adjusting the second human body temperature value to be greater than or equal to the first temperature threshold and less than or equal to the second temperature threshold, switching the air conditioner to a cooling mode.

4. The control method according to claim 1, wherein in the heating mode, the adjusting the third operating parameter value and the operating mode of the air conditioner according to the inner loop temperature change rate, the second operating parameter value, the first human body temperature value and the second human body temperature value, comprises: when the body temperature difference is less than or equal to a second temperature difference threshold, adjusting the third operating parameter value according to the second operating parameter value to increase the indoor environment temperature; and / or when the body temperature difference is greater than the second temperature difference threshold, judging the second human body temperature value and the first temperature threshold and the second temperature threshold according to their size relationship; adjusting the third operating parameter value to adjust the indoor environment temperature according to the size relationship among the second human body temperature value, the first temperature threshold and the second temperature threshold.

5. The control method according to claim 4, wherein in the case that the body temperature difference is greater than the second temperature difference threshold, adjusting the third operating parameter value to adjust the indoor environment temperature according to a size relationship among the second human body temperature value, the first temperature threshold and the second temperature threshold, comprising: when the second human body temperature value is less than the first temperature threshold, adjusting the third operating parameter value according to the second operating parameter value to increase the indoor environment temperature; and / or when the second human body temperature value is greater than or equal to the first temperature threshold and less than or equal to the second temperature threshold, adjusting the third operating parameter value according to the second operating parameter value to maintain the current indoor environment temperature; and / or when the second human body temperature value is greater than the second temperature threshold, switching the air conditioner to a cooling mode to lower the indoor environment temperature, and after adjusting the second human body temperature value to be greater than or equal to the first temperature threshold and less than or equal to the second temperature threshold, switching the air conditioner to a heating mode.

6. The control method according to claim 1, wherein the obtaining, after the air conditioner is running, the first operating parameter value of the air conditioner, the first human body temperature value and the inner loop temperature change rate within a first preset time length, comprises: obtaining a first indoor environment temperature after the air conditioner is running; ​ ​ ​ According to a time length required for the indoor environment temperature of the first chamber to change a first inner ring temperature difference set value, the first preset time length is obtained; According to the first indoor environment temperature, the first inner ring temperature difference set value and the first preset time length, the inner ring temperature change rate is calculated.

7. A control device for an air conditioner, characterized by comprising: The control device comprises: A first obtaining module, configured to obtain a first running parameter value, a first human body temperature value and an inner ring temperature change rate within a first preset time length after the air conditioner is running; An adjusting module, configured to determine a second running parameter value of the air conditioner according to the first running parameter value and the inner ring temperature change rate; A second obtaining module, configured to obtain a second human body temperature value; A control module, configured to adjust a third running parameter value and a running mode of the air conditioner according to the inner ring temperature change rate, the second running parameter value, the first human body temperature value and the second human body temperature value.

8. An air conditioner characterized by comprising: The air conditioner comprises a processor, a memory and a program or instructions stored in the memory and executable on the processor, and the program or instructions are executed by the processor to implement the steps of the control method of the air conditioner according to any one of claims 1 to 6.

9. A readable storage medium, characterized by, The program or instructions are stored in the readable storage medium and are executed by the processor to implement the steps of the control method of the air conditioner according to any one of claims 1 to 6.

Citation Information

Patent Citations

  • Method and device for controlling air speed of air-conditioner and air-conditioner

    CN106949606A

  • Air conditioner control method, air conditioner and computer readable storage medium

    CN109163425A