Control method, device, system and computer readable storage medium of air conditioner
By acquiring data on users with abnormal body temperatures and their operating modes within the air-conditioned space, the air conditioner temperature is adjusted in real time, solving the problem that traditional air conditioners cannot meet the comfort needs of users with abnormal body temperatures, and achieving comfortable indoor environment regulation.
Patent Information
- Application Number
- CN202310662964.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-05
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2043-06-05
AI Technical Summary
Traditional air conditioners cannot provide comfortable indoor temperature regulation for users with abnormal body temperatures.
By acquiring the current body temperature data of users with abnormal body temperatures in the space where the air conditioner is located and the operating mode of the air conditioner, the temperature of the air conditioner is adjusted in real time to achieve the preset indoor ambient temperature and meet the comfort needs of users with abnormal body temperatures.
It enables the adjustment of indoor ambient temperature based on the actual body temperature data of users with abnormal body temperatures, providing a comfortable indoor environment and avoiding resource waste and unnecessary adjustment frequency.
Smart Images

Figure CN116558064B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of air conditioner control, in particular, to an air conditioner control method, an air conditioner control device, an air conditioner control system and a computer readable storage medium. BACKGROUND
[0002] With the rampant of infectious diseases such as COVID-19 and influenza, many family members have different degrees of fever symptoms. For these abnormal temperature users, the sensitivity to indoor air environment temperature is higher. The traditional indoor temperature adjustment mode of air conditioner is generally to directly adjust the indoor temperature according to the indoor environment temperature and the target temperature, which cannot provide a more comfortable indoor environment for such abnormal temperature users. SUMMARY
[0003] The main purpose of the present application is to provide an air conditioner control method, an air conditioner control device, an air conditioner control system and a computer readable storage medium, so as to at least solve the problem that the current air conditioner temperature adjustment mode is not suitable for abnormal temperature users.
[0004] In order to achieve the above purpose, according to one aspect of the present application, an air conditioner control method is provided, comprising: acquiring current temperature data of an abnormal temperature user in a preset space where an air conditioner is located, wherein the abnormal temperature user is a user whose current temperature is greater than a preset temperature data; acquiring a current operation mode of the air conditioner, the current operation mode being a cooling operation mode or a heating operation mode; adjusting the temperature of the air conditioner in real time according to the current temperature data of the abnormal temperature user and the current operation mode of the air conditioner, so that the indoor environment temperature reaches a preset indoor environment temperature, wherein the preset indoor environment temperature makes the body temperature of the abnormal temperature user after a preset time period within a preset body temperature interval.
[0005] Optionally, adjusting the temperature of the air conditioner in real time according to the current temperature data of the abnormal temperature user and the current operation mode of the air conditioner, so that the indoor environment temperature reaches a preset indoor environment temperature, comprises: determining the temperature interval where the current temperature data of the abnormal temperature user is located; adjusting the temperature of the air conditioner in real time at least according to the temperature interval where the current temperature data is located and the current operation mode of the air conditioner, so that the indoor environment temperature reaches the preset indoor environment temperature.
[0006] Optionally, the current operation mode of the air conditioner is obtained, the current operation mode being a cooling operation mode or a heating operation mode, comprising: obtaining a current indoor environment temperature and a current outdoor environment temperature; in a case where both the current indoor environment temperature and the current outdoor environment temperature are higher than a set temperature, determining that the current operation mode of the air conditioner is the cooling operation mode; in a case where at least one of the current indoor environment temperature and the current outdoor environment temperature is lower than the set temperature, determining that the current operation mode of the air conditioner is the heating operation mode.
[0007] Optionally, the temperature of the air conditioner is adjusted in real time according to at least the temperature interval in which the current body temperature data is located and the current operation mode of the air conditioner, so that the indoor environment temperature reaches the preset indoor environment temperature, comprising at least one of: in a case where the temperature interval in which the current body temperature data of the body temperature abnormal user is located is a first temperature interval and the current operation mode is the heating operation mode, at least increasing the compressor operation frequency and the indoor fan speed, so that the indoor environment temperature reaches a first preset heating indoor environment temperature; in a case where the temperature interval in which the current body temperature data of the body temperature abnormal user is located is a first temperature interval and the current operation mode is the cooling operation mode, at least reducing the compressor operation frequency and the indoor fan speed, so that the indoor environment temperature reaches a first preset cooling indoor environment temperature; in a case where the temperature interval in which the current body temperature data of the body temperature abnormal user is located is a second temperature interval and the current operation mode is the heating operation mode, reducing the compressor operation frequency and the indoor fan speed, so that the indoor environment temperature reaches a second preset heating indoor environment temperature; in a case where the temperature interval in which the current body temperature data of the body temperature abnormal user is located is a second temperature interval and the current operation mode is the cooling operation mode, increasing the compressor operation frequency and the indoor fan speed, so that the indoor environment temperature reaches a second preset cooling indoor environment temperature; in a case where the temperature interval in which the current body temperature data of the body temperature abnormal user is located is a third temperature interval and the current operation mode is the cooling operation mode or the heating operation mode, the air conditioner is controlled to issue an alarm information, the alarm information indicating that the body temperature of the body temperature abnormal user is higher than an upper limit value of body temperature, wherein a maximum value of the first temperature interval is less than a minimum value of the second temperature interval, and a maximum value of the second temperature interval is less than a minimum value of the third temperature interval.
[0008] Optionally, in the case that the temperature interval where the current body temperature data of the user with abnormal body temperature is located is a first temperature interval, and the current operation mode is the heating operation mode, at least increasing the compressor operation frequency and increasing the inner fan speed, comprising: in the case that the temperature interval where the current body temperature data of the user with abnormal body temperature is located is a first temperature interval, and the current operation mode is the heating operation mode, increasing the compressor operation frequency and increasing the inner fan speed and controlling the air deflector to directly face the user to sweep air; and / or, in the case that the temperature interval where the current body temperature data of the user with abnormal body temperature is located is a first temperature interval, and the current operation mode is the cooling operation mode, at least decreasing the compressor operation frequency and decreasing the inner fan speed, comprising: in the case that the temperature interval where the current body temperature data of the user with abnormal body temperature is located is a first temperature interval, and the current operation mode is the cooling operation mode, decreasing the compressor operation frequency and decreasing the inner fan speed and controlling the air deflector to not directly face the user to sweep air.
[0009] Optionally, the first temperature interval comprises a first temperature sub-interval, a second temperature sub-interval and a third temperature sub-interval, wherein the maximum value of the first temperature sub-interval is less than the minimum value of the second temperature sub-interval, the maximum value of the second temperature sub-interval is less than the minimum value of the third temperature sub-interval, and the method further comprises: setting a first temperature size relationship T1
[0010] Optionally, the second temperature interval includes a fourth temperature sub-interval, a fifth temperature sub-interval and a sixth temperature sub-interval, wherein a maximum value of the fourth temperature sub-interval is less than a minimum value of the fifth temperature sub-interval, a maximum value of the fifth temperature sub-interval is less than a minimum value of the sixth temperature sub-interval, and the method further includes: setting a third temperature size relationship T7>T8>T9 to be satisfied, wherein T7 represents the second preset heating indoor environment temperature corresponding to the fourth temperature sub-interval, T8 represents the second preset heating indoor environment temperature corresponding to the fifth temperature sub-interval, and T9 represents the second preset heating indoor environment temperature corresponding to the fifth temperature sub-interval; and setting a fourth temperature size relationship T10>T11>T12 to be satisfied, wherein T10 represents the second preset cooling indoor environment temperature corresponding to the fourth temperature sub-interval, T11 represents the second preset cooling indoor environment temperature corresponding to the fifth temperature sub-interval, and T12 represents the second preset cooling indoor environment temperature corresponding to the fifth temperature sub-interval.
[0011] Optionally, the adjusting the temperature of the air conditioner in real time according to at least the temperature interval in which the current body temperature data is located and the current operation mode of the air conditioner, so that the indoor environment temperature reaches the preset indoor environment temperature, includes: determining a constitution of the body temperature abnormal user, the constitution of the body temperature abnormal user including a cold constitution, a heat constitution and a normal constitution, and the normal constitution being a non-cold and non-heat constitution; adjusting the temperature of the air conditioner in real time according to at least the temperature interval in which the current body temperature data is located, the current operation mode of the air conditioner and the constitution of the body temperature abnormal user, so that the indoor environment temperature reaches the preset indoor environment temperature; and wherein, in the case that the temperature interval and the current operation mode of the air conditioner are the same, the preset indoor environment temperature satisfies a fifth temperature size relationship T13>T14>T15, T13 being the preset indoor environment temperature corresponding to the body temperature abnormal user with the cold constitution, T14 being the preset indoor environment temperature corresponding to the body temperature abnormal user with the normal constitution, and T15 being the preset indoor environment temperature corresponding to the body temperature abnormal user with the heat constitution.
[0012] Optionally, the temperature of the air conditioner is adjusted in real time according to at least the temperature interval in which the current temperature data is located, the current operation mode of the air conditioner, and the constitution of the body temperature abnormal user, so that the indoor environment temperature reaches the preset indoor environment temperature, to obtain the number of the body temperature abnormal users; the temperature of the air conditioner is adjusted in real time according to the temperature interval in which the current temperature data is located, the current operation mode of the air conditioner, the constitution of the body temperature abnormal user, and the number of the body temperature abnormal users, so that the indoor environment temperature reaches the preset indoor environment temperature, wherein, in the case that the temperature interval, the current operation mode of the air conditioner, and the constitution of the body temperature abnormal user are the same, the preset indoor environment temperature decreases with the increase of the number of the body temperature abnormal users.
[0013] Optionally, before obtaining the current temperature data of the body temperature abnormal user in the preset space where the air conditioner is located, the method further comprises: obtaining historical temperature data of a target user in a preset historical time period between the current time; in the case that the historical temperature data in the preset historical time period are all higher than the preset temperature data, determining that the target user is the body temperature abnormal user.
[0014] According to another aspect of the present application, a control device of an air conditioner is provided, comprising: a first obtaining unit configured to obtain current temperature data of a body temperature abnormal user in a preset space where an air conditioner is located, wherein the body temperature abnormal user is a user whose current temperature is greater than preset temperature data; a second obtaining unit configured to obtain a current operation mode of the air conditioner, the current operation mode being a cooling operation mode or a heating operation mode; and an adjusting unit configured to adjust the temperature of the air conditioner in real time according to the current temperature data of the body temperature abnormal user and the current operation mode of the air conditioner, so that the indoor environment temperature reaches a preset indoor environment temperature, wherein the preset indoor environment temperature makes the body sensation temperature of the body temperature abnormal user after a preset time period be within a preset body sensation temperature interval.
[0015] According to another aspect of the present application, an air conditioner system is provided, comprising: a control terminal configured to execute any one of the control methods of the air conditioner; and an air conditioner in communication with the control terminal.
[0016] According to another aspect of the present application, a computer readable storage medium is provided, comprising a stored program, wherein the device where the computer readable storage medium is located executes any one of the control methods of the air conditioner when the program runs.
[0017] According to the technical solution of the present application, the control method of the air conditioner first acquires current body temperature data of a body temperature abnormal user in a preset space where the air conditioner is located, wherein the body temperature abnormal user is a user whose current body temperature is greater than preset body temperature data; then acquires a current operation mode of the air conditioner, wherein the current operation mode is a cooling operation mode or a heating operation mode; and finally adjusts the temperature of the air conditioner in real time according to the current body temperature data of the body temperature abnormal user and the current operation mode of the air conditioner, so that the indoor environment temperature reaches a preset indoor environment temperature, wherein the preset indoor environment temperature makes the body temperature abnormal user feel a temperature within a preset temperature range after a preset time period. The method controls the air conditioner according to the actual body temperature data of the body temperature abnormal user to timely adjust the indoor environment temperature, and solves the problem that the current air conditioner temperature adjustment mode is not suitable for the body temperature abnormal user. BRIEF DESCRIPTION OF DRAWINGS
[0018] The accompanying drawings, which form a part of the specification, are included to provide a further understanding of the application and are incorporated herein in conjunction with the description of the application. The drawings are as follows:
[0019] Figure 1 A hardware structure block diagram of a mobile terminal for executing a control method of an air conditioner is shown according to an embodiment of the present application;
[0020] Figure 2 A flowchart of a control method of an air conditioner is shown according to an embodiment of the present application;
[0021] Figure 3 A structure block diagram of a control device of an air conditioner is shown according to an embodiment of the present application.
[0022] Among them, the above-mentioned drawings include the following reference signs:
[0023] 102, processor; 104, memory; 106, transmission device; 108, input and output device. DETAILED DESCRIPTION
[0024] It should be noted that the embodiments and features in the embodiments of the present application can be combined with each other without conflict. The present application will be described in detail below with reference to the accompanying drawings and in conjunction with the embodiments.
[0025] In the following, the technical solutions in the embodiments of the present application will be described clearly and completely in conjunction with the drawings in the embodiments of the present application, so that those skilled in the art can better understand the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work should be within the scope of protection of the present application.
[0026] It should be noted that the terms "first", "second", and the like in the specification and claims of the present application and the above-described drawings are used to distinguish similar objects, and do not necessarily indicate a specific order or a chronological sequence. It should be understood that the data thus used can be interchanged under appropriate circumstances, so that the embodiments of the present application described herein can be implemented. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion, for example, a process, method, system, product or device including a series of steps or units does not necessarily have to include only those steps or units clearly listed, but can include other steps or units not clearly listed or inherent to the process, method, product or device.
[0027] As introduced in the background, some patients with abnormal body temperature have different needs for indoor temperature in different fever states. When the user's fever body temperature rises, the user will have a cold symptom, and at this time the user needs a higher indoor temperature, for example: when the user's fever reaches 38.5℃, the user needs to dissipate heat, and at this time the user needs to reduce the indoor temperature to dissipate heat. However, the conventional indoor temperature regulation mode of the air conditioner is generally to regulate the indoor temperature directly according to the indoor environment temperature and the target temperature, which cannot provide a more comfortable indoor environment for such users with abnormal body temperature. To solve the problem that the current air conditioning temperature regulation mode is not suitable for users with abnormal body temperature, the embodiments of the present application provide an air conditioner control method, an air conditioner control device, an air conditioner control system and a computer readable storage medium.
[0028] In the following, the technical solutions in the embodiments of the present application will be described clearly and completely in conjunction with the drawings in the embodiments of the present application, so that those skilled in the art can better understand the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work should be within the scope of protection of the present application.
[0029] The method embodiments provided in the embodiments of the present application can be executed in a mobile terminal, a computer terminal or a similar computing device. Taking the case of running on a mobile terminal, Figure 1 is a hardware structure block diagram of a mobile terminal of an air conditioner control method of the embodiments of the present application. As shown in Figure 1 , the mobile terminal can include one or more Figure 1The mobile terminal can further include a transmission device 106 for communication function and an input / output device 108. Those skilled in the art can understand that, Figure 1 The structure shown is only schematic and does not limit the structure of the mobile terminal. For example, the mobile terminal can include more or less components than those shown, or have a different configuration of components. For example, Figure 1 The mobile terminal shown in the figure can include more or less components than those shown, or have a different configuration of components. Figure 1
[0030] The memory 104 can be used to store computer programs, such as software programs of application software and modules, such as the computer program corresponding to the control method of the air conditioner in the embodiments of the present application. The processor 102 can execute various functional applications and data processing by running the computer programs stored in the memory 104, i.e. implement the method described above. The memory 104 can include a high-speed random access memory, and can further include a non-volatile memory, such as one or more magnetic storage devices, flash memories, or other non-volatile solid-state memories. In some examples, the memory 104 can further include a memory remotely arranged with respect to the processor 102, which can be connected to the mobile terminal through a network. Examples of the network include, but are not limited to, the Internet, an intranet, a local area network, a mobile communication network, and a combination thereof. The transmission device 106 is used to receive or send data via a network. The specific examples of the network can include a wireless network provided by a communication provider of the mobile terminal. In one example, the transmission device 106 includes a network adapter (Network Interface Controller, NIC for short), which can be connected to other network devices through a base station so as to communicate with the Internet. In one example, the transmission device 106 can be a radio frequency (Radio Frequency, RF for short) module, which is used to communicate with the Internet in a wireless manner.
[0031] In the embodiments, a control method of an air conditioner running on a mobile terminal, a computer terminal or a similar computing device is provided. It should be noted that the steps shown in the flowchart of the accompanying drawings can be executed in a computer system such as a set of computer executable instructions, and although a logical order is shown in the flowchart, in some cases, the steps shown or described can be executed in an order different from that shown here.
[0032] Figure 2 is a flowchart of the control method of the air conditioner according to the embodiments of the present application. As Figure 2 shown, the method includes the following steps:
[0033] Step S201, obtaining current body temperature data of a body temperature abnormal user in a preset space where the air conditioner is located, wherein the body temperature abnormal user is a user whose current body temperature is greater than preset body temperature data;
[0034] Specifically, the body temperature abnormal user refers to a user showing fever symptoms, the user's body temperature data is detected by an infrared detection device arranged inside the air conditioner, and the current body temperature data represents the user's body surface temperature. The infrared detection device can be arranged in a room outside the air conditioner indoor unit or a user wearable device or a mobile device used for a long time. When the detected user body temperature reaches the temperature of the human body fever condition (i.e., the current body temperature of the user is greater than the preset body temperature data), the air conditioner sends user body abnormal information to the set user terminal or controls the air conditioner to output the user's body condition, and enters the intelligent temperature adjustment mode.
[0035] In order to exclude the interference of some abnormal factors and obtain more accurate body temperature data of the user, before performing the above step S201, the method further comprises: obtaining historical body temperature data of the target user in a preset historical time period between the current time; in the case that the historical body temperature data in the preset historical time period is all higher than the preset body temperature data, determining that the target user is the body temperature abnormal user.
[0036] Specifically, the preset historical time period can be set to 3 minutes, and the preset body temperature data can be set to 37℃.
[0037] Step S202, obtaining a current running mode of the air conditioner, wherein the current running mode is a cooling running mode or a heating running mode;
[0038] Specifically, since the running parameters of the air conditioner are different in different running modes, adjusting the temperature of the air conditioner according to different running modes of the air conditioner can realize more accurate control of the air conditioner and more quickly and accurately meet the comfort of the user, which means that the user does not feel too hot or too cold.
[0039] Specific implementation steps of the above step S202 are as follows:
[0040] Step S2021, obtaining a current indoor environment temperature and a current outdoor environment temperature;
[0041] Step S2022, in the case that the current indoor environment temperature and the current outdoor environment temperature are both higher than a set temperature, determining that the current running mode of the air conditioner is the cooling running mode;
[0042] Step S2023, in the case that at least one of the current indoor environment temperature and the current outdoor environment temperature is lower than the set temperature, determining that the current operation mode of the air conditioner is the heating operation mode.
[0043] Specifically, the operation mode of the air conditioner can be determined more accurately by the two influencing factors of the current indoor environment temperature and the current outdoor environment temperature, thereby laying a foundation for the accuracy of subsequent control logic.
[0044] The set temperature can be set to 28℃.
[0045] Step S203, adjusting the temperature of the air conditioner in real time according to the current temperature data of the body temperature abnormal user and the current operation mode of the air conditioner, so that the indoor environment temperature reaches a preset indoor environment temperature, wherein the preset indoor environment temperature makes the thermal sensation temperature of the body temperature abnormal user after a preset time period within a preset thermal sensation temperature interval.
[0046] Specifically, this can provide a more comfortable indoor environment for the body temperature abnormal user, meet the comfort requirement of the body temperature abnormal user, and the preset indoor environment temperature is set to different temperatures according to different requirements of different body temperature abnormal users, the preset time period can be set to 3 minutes, and the preset thermal sensation temperature interval can be 26℃-28℃.
[0047] For example, the current temperature data of the body temperature abnormal user is 37.8℃, the preset indoor environment temperature can be set to 26℃, the current temperature data of the body temperature abnormal user is 38℃, the preset indoor environment temperature can be set to 25℃, and the current temperature data of the body temperature abnormal user is 39℃, the preset indoor environment temperature can be set to 24℃.
[0048] The specific implementation steps of step S203 are as follows:
[0049] Step S2031, determining the temperature interval in which the current temperature data of the body temperature abnormal user is located;
[0050] Step S2032, adjusting the temperature of the air conditioner in real time according to at least the temperature interval in which the current temperature data is located and the current operation mode of the air conditioner, so that the indoor environment temperature reaches the preset indoor environment temperature.
[0051] Specifically, by setting the temperature interval, not only can a more comfortable indoor environment be provided for the body temperature abnormal user, meet the comfort requirement of the body temperature abnormal user, but also avoid the problem of too large adjustment frequency of the air conditioner, causing unnecessary resource waste, and ensure the stability of the air conditioner adjustment.
[0052] In the step S2032, at least one of the following is performed: when the temperature interval of the current temperature data of the user with abnormal body temperature is the first temperature interval and the current operation mode is the heating operation mode, at least one of the compressor operation frequency and the indoor fan speed is adjusted to make the indoor environment temperature reach a first preset heating indoor environment temperature; when the temperature interval of the current temperature data of the user with abnormal body temperature is the first temperature interval and the current operation mode is the cooling operation mode, at least one of the compressor operation frequency and the indoor fan speed is adjusted to make the indoor environment temperature reach a first preset cooling indoor environment temperature; when the temperature interval of the current temperature data of the user with abnormal body temperature is the second temperature interval and the current operation mode is the heating operation mode, at least one of the compressor operation frequency and the indoor fan speed is adjusted to make the indoor environment temperature reach a second preset heating indoor environment temperature; when the temperature interval of the current temperature data of the user with abnormal body temperature is the second temperature interval and the current operation mode is the cooling operation mode, at least one of the compressor operation frequency and the indoor fan speed is adjusted to make the indoor environment temperature reach a second preset cooling indoor environment temperature; and when the temperature interval of the current temperature data of the user with abnormal body temperature is the third temperature interval and the current operation mode is the cooling operation mode or the heating operation mode, the air conditioner is controlled to send an alarm information, and the alarm information indicates that the body temperature of the user with abnormal body temperature is higher than the upper limit of the body temperature.
[0053] Specifically, the first temperature interval can be set to be higher than 37°C and not higher than 38.5°C, the second temperature interval can be set to be higher than 38.5°C and lower than 40°C, and the third temperature interval can be set to be higher than 40°C.
[0054] In the case that the temperature interval where the current temperature data of the user with abnormal body temperature is in is the first temperature interval, and the current operation mode is the heating operation mode, at least increasing the compressor operation frequency and increasing the inner fan speed, including: in the case that the temperature interval where the current temperature data of the user with abnormal body temperature is in is the first temperature interval, and the current operation mode is the heating operation mode, increasing the compressor operation frequency and increasing the inner fan speed and controlling the air deflector to directly face the user to sweep air; and / or in the case that the temperature interval where the current temperature data of the user with abnormal body temperature is in is the first temperature interval, and the current operation mode is the cooling operation mode, at least decreasing the compressor operation frequency and decreasing the inner fan speed, including: in the case that the temperature interval where the current temperature data of the user with abnormal body temperature is in is the first temperature interval, and the current operation mode is the cooling operation mode, decreasing the compressor operation frequency and decreasing the inner fan speed and controlling the air deflector to not directly face the user to sweep air.
[0055] Specifically, the flexible adjustment of the air deflector can meet different needs of different users, and better meet the comfort needs of the user with abnormal body temperature.
[0056] In an alternative example, when the infrared detection device detects that the user's body temperature is higher than 37℃ and lower than 38.5℃, the actual human body will show symptoms of being cold, at which time the indoor temperature needs to be increased, for example, if the air conditioner is operating in heating mode, the preset temperature of the air conditioner is corrected to be higher than the original preset temperature, the compressor operating frequency is simultaneously increased (assuming that the frequency is increased by 1 Hz for every 1℃ increase in temperature), the indoor fan speed is increased (for example, if the indoor fan is in the low gear, it is adjusted to the high gear, and if the indoor fan is already in the highest gear, the gear remains unchanged), the heat exchange effect is enhanced, the indoor temperature is quickly brought to the set temperature, and the air deflector is controlled to be directed at the user to blow air, so that the user feels warm. If the air conditioner is operating in cooling mode, the preset temperature of the air conditioner is corrected to be higher than the original preset temperature, the compressor operating frequency is simultaneously decreased (assuming that the frequency is decreased by 1 Hz for every 1℃ decrease in temperature), the indoor fan speed is decreased (for example, if the indoor fan is in the medium gear, it is adjusted to the low gear, and if the indoor fan is already in the low gear, the gear remains unchanged), and the air deflector is controlled not to be directed at the user to prevent the user from feeling cold; when the user's body temperature is higher than 38.5℃ and lower than 40℃, the actual human body will feel hot, at which time the indoor temperature needs to be appropriately reduced for heat dissipation, for example, if the air conditioner is operating in heating mode, the preset temperature of the air conditioner is corrected to be lower than the original preset temperature, the compressor operating frequency is simultaneously decreased (assuming that the frequency is decreased by 1 Hz for every 1℃ decrease in temperature), the indoor fan speed is decreased (for example, if the indoor fan is in the medium gear, it is adjusted to the low gear, and if the indoor fan is already in the low gear, the gear remains unchanged), and the indoor temperature is reduced. If the air conditioner is operating in cooling mode, the preset temperature of the air conditioner is corrected to be lower than the original preset temperature, the compressor operating frequency is simultaneously increased (assuming that the frequency is increased by 1 Hz for every 1℃ increase in temperature), the indoor fan speed is increased (for example, if the indoor fan is in the low gear, it is adjusted to the high gear, and if the indoor fan is already in the highest gear, the gear remains unchanged), and the heat exchange effect is enhanced, so that the indoor temperature is quickly brought to the preset temperature. When the user's body temperature reaches 40℃ or above, the air conditioner is controlled to send a user body abnormality warning to the set user terminal or to output the user's body condition, reminding the user that the body temperature is too high.
[0057] The first temperature range includes a first temperature sub-range, a second temperature sub-range, and a third temperature sub-range, wherein the maximum value of the first temperature sub-range is less than the minimum value of the second temperature sub-range, the maximum value of the second temperature sub-range is less than the minimum value of the third temperature sub-range, and the method further includes the following steps:
[0058] Step S301, a first temperature size relationship T1
[0059] In step S302, a second temperature size relationship T4
[0060] Specifically, the first temperature sub-interval can be set as 37℃
[0061] In another embodiment, the second temperature interval includes a fourth temperature sub-interval, a fifth temperature sub-interval and a sixth temperature sub-interval, wherein the maximum value of the fourth temperature sub-interval is less than the minimum value of the fifth temperature sub-interval, the maximum value of the fifth temperature sub-interval is less than the minimum value of the sixth temperature sub-interval, and the method further includes the following steps:
[0062] In step S401, a third temperature size relationship T7>T8>T9 is set, wherein T7 represents the second preset heating indoor environment temperature corresponding to the fourth temperature sub-interval, T8 represents the second preset heating indoor environment temperature corresponding to the fifth temperature sub-interval, and T9 represents the second preset heating indoor environment temperature corresponding to the fifth temperature sub-interval.
[0063] In step S402, a fourth temperature size relationship T10>T11>T12 is set, wherein T10 represents the second preset cooling indoor environment temperature corresponding to the fourth temperature sub-interval, T11 represents the second preset cooling indoor environment temperature corresponding to the fifth temperature sub-interval, and T12 represents the second preset cooling indoor environment temperature corresponding to the fifth temperature sub-interval.
[0064] Specifically, the fourth temperature sub-interval can be set as 38.5℃
[0065] The control method of the air conditioner can be started manually or automatically. When the air conditioner is turned on, if the user only starts the cooling or heating mode according to the user's needs, and the infrared detection device detects that the user's body temperature is abnormal and meets the program setting value (the program setting is higher than 37℃, which is an abnormal body temperature), the intelligent temperature adjustment mode of the air conditioner is automatically controlled to be turned on (that is, the control method of the air conditioner is started). After the intelligent temperature adjustment mode is turned on, the user can also control the intelligent temperature adjustment mode to be turned off through the remote controller, mobile phone APP and voice, etc. if there is no use requirement.
[0066] According to historical data statistics, the human body feels the best when the heating mode is set to 22℃ and the cooling mode is set to 24℃, so the default initial temperature of the intelligent temperature adjustment mode is 22℃ in the heating mode and 24℃ in the cooling mode. When the user manually starts the intelligent temperature adjustment mode, the intelligent temperature adjustment mode is converted to the cooling or heating mode according to the indoor and outdoor temperature conditions, and runs according to the initial set temperature value. When the detection device detects that the user's body temperature is higher than 37℃ but not higher than 37.5℃, the control program corrects the preset temperature of the air conditioner to be 1℃ higher than the original preset temperature, that is, the preset temperature of the heating mode is adjusted to 23℃ and the preset temperature of the cooling mode is adjusted to 25℃.
[0067] In order to improve the comfort of the user, in one scheme, each temperature interval is further split, and different temperature intervals correspond to different preset indoor environment temperatures, as shown in Table 1. When the indoor temperature reaches the preset temperature of the air conditioner, the detection of abnormal body temperature does not change, and the set temperature remains unchanged for continuous operation.
[0068] Table 1: Air conditioner intelligent temperature adjustment mode setting temperature change
[0069]
[0070] When the user starts the air conditioner without setting the intelligent temperature adjustment mode, only according to the need to start the cooling / heating mode, when the user's body temperature is detected to be abnormal, the intelligent temperature adjustment mode is automatically started, and the indoor set temperature change process is shown in Table 2. When the air conditioner set temperature is higher than the initial temperature of the intelligent temperature adjustment mode within 2℃, when the user's body temperature is detected to be higher than 37℃ and not higher than 38℃, the original air conditioner set temperature is kept unchanged; when the user's body temperature is detected to be higher than 38℃, the temperature is adjusted according to the default control program of the intelligent temperature adjustment mode. When the air conditioner set temperature is higher than the initial temperature of the intelligent temperature adjustment mode by more than 2℃, when the user's body temperature is detected to be higher than 37℃ and not higher than 38.5℃, the original air conditioner set temperature is kept unchanged; when the user's body temperature is detected to be higher than 38.5℃, for every 0.5℃ increase in the user's body temperature, the intelligent adjustment air conditioner set temperature is lowered by 1℃ from the original preset temperature. When the air conditioner set temperature is lower than the initial temperature of the intelligent temperature adjustment mode by less than 2℃, when the user's body temperature is detected to be higher than 37℃ and not higher than 37.5℃, the intelligent adjustment air conditioner set temperature is increased by 1℃ from the original preset temperature; when the user's body temperature is detected to be between 37.5℃ and 38.5℃, the intelligent adjustment air conditioner set temperature is increased by 5℃ from the original preset temperature; when the user's body temperature is detected to be higher than 38.5℃, for every 0.5℃ increase in the user's body temperature, the intelligent adjustment air conditioner set temperature is reduced by 1℃ from the original preset temperature. When the air conditioner set temperature is higher than the initial temperature of the intelligent temperature adjustment mode by less than 2℃ and not higher than the initial temperature of the intelligent temperature adjustment mode, when the user's body temperature is detected to be higher than 37℃ and not higher than 37.5℃, the original air conditioner set temperature is kept unchanged, and when the user's body temperature is detected to be higher than 37.5℃, the temperature is adjusted according to the control program of the intelligent temperature adjustment mode, i.e. adjusted according to the intelligent temperature adjustment program in Table 2.
[0071] Table 2. Air conditioner artificial set temperature intelligent adjustment process
[0072]
[0073]
[0074]
[0075]
[0076] In addition, the above step S2032 further includes the following steps:
[0077] Step S501, determine the constitution of the above-mentioned user with abnormal body temperature, the constitution of the above-mentioned user with abnormal body temperature includes cold constitution, heat constitution and normal constitution, and the normal constitution is non-cold and non-heat constitution;
[0078] In step S502, the temperature of the air conditioner is adjusted in real time according to the temperature interval of the current body temperature data, the current operation mode of the air conditioner, and the constitution of the body temperature abnormal user, so that the indoor environment temperature reaches the preset indoor environment temperature; wherein, in the case that the temperature interval and the current operation mode of the air conditioner are the same, the preset indoor environment temperature satisfies the fifth temperature size relationship T13>T14>T15, T13 is the preset indoor environment temperature corresponding to the body temperature abnormal user with cold constitution, T14 is the preset indoor environment temperature corresponding to the body temperature abnormal user with normal constitution, and T15 is the preset indoor environment temperature corresponding to the body temperature abnormal user with heat constitution.
[0079] Specifically, the cold constitution refers to the population with low immunity, especially the old, women and other groups, the heat constitution refers to the teenagers and people sensitive to body temperature, and the normal constitution refers to healthy adults. The step S502 further includes the following steps.
[0080] In step S5021, the number of the body temperature abnormal users is obtained.
[0081] In step S5022, the temperature of the air conditioner is adjusted in real time according to the temperature interval of the current body temperature data, the current operation mode of the air conditioner, the constitution of the body temperature abnormal user, and the number of the body temperature abnormal users, so that the indoor environment temperature reaches the preset indoor environment temperature; wherein, in the case that the temperature interval, the current operation mode of the air conditioner, and the constitution of the body temperature abnormal user are the same, the preset indoor environment temperature decreases with the increase of the number of the body temperature abnormal users.
[0082] Specifically, the preset indoor environment temperature is calculated according to the formula T 环设 =T 智能初始 -T 补偿 (the preset indoor environment temperature in the intelligent temperature adjustment mode = the initial temperature in the intelligent temperature adjustment mode - temperature compensation value), and the temperature compensation value can be corrected, so as to effectively ensure the comfort of the user and improve the user experience in the process of adjusting the indoor temperature of the air conditioner, as shown in Table 3.
[0083] Table 3. Temperature compensation value setting
[0084]
[0085] The control method of the air conditioner provided in the present application first acquires the current body temperature data of the body temperature abnormal user in the preset space where the air conditioner is located, wherein the body temperature abnormal user is a user whose current body temperature is greater than the preset body temperature data; then acquires the current operation mode of the air conditioner, wherein the current operation mode is a cooling operation mode or a heating operation mode; and finally adjusts the temperature of the air conditioner in real time according to the current body temperature data of the body temperature abnormal user and the current operation mode of the air conditioner, so that the indoor environment temperature reaches the preset indoor environment temperature, wherein the preset indoor environment temperature makes the body sensation temperature of the body temperature abnormal user within the preset body sensation temperature interval after a preset time period. The method controls the air conditioner according to the actual body temperature data of the body temperature abnormal user to timely adjust the indoor environment temperature, and solves the problem that the current air conditioner temperature adjustment mode is not suitable for the body temperature abnormal user.
[0086] It should be noted that the steps shown in the flowchart of the accompanying drawings can be executed in a computer system such as a set of computer-executable instructions, and although a logical order is shown in the flowchart, in some cases, the steps shown or described can be executed in an order different from that here.
[0087] The embodiment of the present application also provides an air conditioner control device. It should be noted that the air conditioner control device of the embodiment of the present application can be used to execute the control method for the air conditioner provided by the embodiment of the present application. The device is used to realize the above-mentioned embodiments and preferred embodiments, and will not be described again. As used below, the term "module" can be a combination of software and / or hardware that realizes a predetermined function. Although the device described in the following embodiments is preferably realized in software, the realization of hardware, or a combination of software and hardware, is also possible and is conceived.
[0088] The air conditioner control device provided by the embodiment of the present application is described below.
[0089] Figure 3 is a schematic diagram of the air conditioner control device according to the embodiment of the present application. As Figure 3As shown, the device comprises a first acquisition unit 10, a second acquisition unit 20 and an adjustment unit 30, the first acquisition unit 10 is used for acquiring the current body temperature data of the body temperature abnormal user in the preset space where the air conditioner is located, wherein the body temperature abnormal user is the user whose current body temperature is greater than the preset body temperature data; the second acquisition unit 20 is used for acquiring the current running mode of the air conditioner, and the current running mode is the cooling running mode or the heating running mode; the adjustment unit 30 is used for adjusting the temperature of the air conditioner in real time according to the current body temperature data of the body temperature abnormal user and the current running mode of the air conditioner, so that the indoor environment temperature reaches the preset indoor environment temperature, wherein the preset indoor environment temperature makes the body temperature of the body temperature abnormal user in the preset time period after the preset indoor environment temperature interval.
[0090] The control device of the above-mentioned air conditioner of the present application comprises a first acquisition unit, a second acquisition unit and an adjustment unit, the first acquisition unit is used for acquiring the current body temperature data of the body temperature abnormal user in the preset space where the air conditioner is located, wherein the body temperature abnormal user is the user whose current body temperature is greater than the preset body temperature data; the second acquisition unit is used for acquiring the current running mode of the air conditioner, and the current running mode is the cooling running mode or the heating running mode; the adjustment unit is used for adjusting the temperature of the air conditioner in real time according to the current body temperature data of the body temperature abnormal user and the current running mode of the air conditioner, so that the indoor environment temperature reaches the preset indoor environment temperature, wherein the preset indoor environment temperature makes the body temperature of the body temperature abnormal user in the preset time period after the preset indoor environment temperature interval. The method controls the air conditioner according to the actual body temperature data of the body temperature abnormal user to adjust the indoor environment temperature in time, and solves the problem that the current air conditioner temperature adjustment mode is not suitable for the body temperature abnormal user.
[0091] In an optional scheme, the adjustment unit comprises a first determination module and a first adjustment module, the first determination module is used for determining the temperature interval where the current body temperature data of the body temperature abnormal user is located; the first adjustment module is used for adjusting the temperature of the air conditioner in real time according to at least the temperature interval where the current body temperature data is located and the current running mode of the air conditioner, so that the indoor environment temperature reaches the preset indoor environment temperature. Through the setting of the temperature interval, not only can the body temperature abnormal user be provided with a more comfortable indoor environment to meet the comfort requirement of the body temperature abnormal user, but also the problem of unnecessary resource waste caused by the excessive adjustment frequency of the air conditioner is avoided, and the stability of the air conditioner adjustment is ensured.
[0092] Exemplarily, the second obtaining unit comprises an obtaining subunit, a first determining subunit and a second determining subunit. The obtaining subunit is configured to obtain a current indoor environment temperature and a current outdoor environment temperature. The first determining subunit is configured to determine that the current operation mode of the air conditioner is the cooling operation mode when both the current indoor environment temperature and the current outdoor environment temperature are higher than a set temperature. The second determining subunit is configured to determine that the current operation mode of the air conditioner is the heating operation mode when at least one of the current indoor environment temperature and the current outdoor environment temperature is lower than the set temperature. The current operation mode of the air conditioner can be determined more accurately by using two influencing factors, i.e., the current indoor environment temperature and the current outdoor environment temperature, thereby laying a foundation for the accuracy of subsequent control logic.
[0093] As an optional solution, the adjusting module comprises a first processing module, a second processing module, a third processing module, a fourth processing module and a fifth processing module. The first processing module is configured to increase at least the compressor operating frequency and the indoor fan rotating speed when the temperature interval of the current temperature data of the user with abnormal body temperature is a first temperature interval and the current operation mode is the heating operation mode, so that the indoor environment temperature reaches a first preset heating indoor environment temperature. The second processing module is configured to decrease at least the compressor operating frequency and the indoor fan rotating speed when the temperature interval of the current temperature data of the user with abnormal body temperature is the first temperature interval and the current operation mode is the cooling operation mode, so that the indoor environment temperature reaches a first preset cooling indoor environment temperature. The third processing module is configured to decrease the compressor operating frequency and the indoor fan rotating speed when the temperature interval of the current temperature data of the user with abnormal body temperature is a second temperature interval and the current operation mode is the heating operation mode, so that the indoor environment temperature reaches a second preset heating indoor environment temperature. The fourth processing module is configured to increase the compressor operating frequency and the indoor fan rotating speed when the temperature interval of the current temperature data of the user with abnormal body temperature is the second temperature interval and the current operation mode is the cooling operation mode, so that the indoor environment temperature reaches a second preset cooling indoor environment temperature. The fifth processing module is configured to control the air conditioner to send an alarm information when the temperature interval of the current temperature data of the user with abnormal body temperature is a third temperature interval and the current operation mode is the cooling operation mode or the heating operation mode. The alarm information indicates that the body temperature of the user with abnormal body temperature is higher than an upper body temperature limit. The maximum value of the first temperature interval is less than the minimum value of the second temperature interval, and the maximum value of the second temperature interval is less than the minimum value of the third temperature interval. The user comfort can be improved.
[0094] Exemplarily, the first processing module comprises a first processing submodule, the first processing submodule is configured to, in a case where the temperature interval where the current body temperature data of the user with abnormal body temperature is located is the first temperature interval, and the current operation mode is the heating operation mode, increase the compressor operation frequency, increase the inner fan rotating speed, and control the air deflector to directly sweep air toward the user; and the second processing module comprises a second processing submodule, the second processing submodule is configured to, in a case where the temperature interval where the current body temperature data of the user with abnormal body temperature is located is the first temperature interval, and the current operation mode is the cooling operation mode, decrease the compressor operation frequency, decrease the inner fan rotating speed, and control the air deflector to sweep air away from the user. Flexible adjustment of the air deflector can meet different needs of different users, and better meet the comfort needs of the user with abnormal body temperature.
[0095] In an optional solution, the first temperature interval comprises a first temperature subinterval, a second temperature subinterval, and a third temperature subinterval, wherein a maximum value of the first temperature subinterval is less than a minimum value of the second temperature subinterval, a maximum value of the second temperature subinterval is less than a minimum value of the third temperature subinterval, and the device further comprises a first setting unit and a second setting unit, the first setting unit is configured to set a first temperature size relationship T1
[0096] As an optional solution, the second temperature range includes a fourth temperature sub-range, a fifth temperature sub-range and a sixth temperature sub-range, wherein a maximum value of the fourth temperature sub-range is less than a minimum value of the fifth temperature sub-range, a maximum value of the fifth temperature sub-range is less than a minimum value of the sixth temperature sub-range, and the device further includes a third setting unit and a fourth setting unit. The third setting unit is configured to set a third temperature size relationship T7>T8>T9, where T7 represents the second preset indoor environment temperature corresponding to the fourth temperature sub-range, T8 represents the second preset indoor environment temperature corresponding to the fifth temperature sub-range, and T9 represents the second preset indoor environment temperature corresponding to the fifth temperature sub-range. The fourth setting unit is configured to set a fourth temperature size relationship T10>T11>T12, where T10 represents the second preset indoor environment temperature corresponding to the fourth temperature sub-range, T11 represents the second preset indoor environment temperature corresponding to the fifth temperature sub-range, and T12 represents the second preset indoor environment temperature corresponding to the fifth temperature sub-range. The comfort requirements of the user with abnormal body temperature can be better met, and the air conditioner can be precisely controlled.
[0097] In an optional example, the adjustment module includes a second determination module and a second adjustment module. The second determination module is configured to determine the constitution of the user with abnormal body temperature. The constitution of the user with abnormal body temperature includes cold constitution, heat constitution and normal constitution. The normal constitution is non-cold and non-heat constitution. The second adjustment module is configured to adjust the temperature of the air conditioner in real time according to at least the temperature range in which the current body temperature data is located, the current operating mode of the air conditioner and the constitution of the user with abnormal body temperature, so that the indoor environment temperature reaches the preset indoor environment temperature. In the case where the temperature range and the current operating mode of the air conditioner are the same, the preset indoor environment temperature satisfies a fifth temperature size relationship T13>T14>T15. T13 is the preset indoor environment temperature corresponding to the user with abnormal body temperature with cold constitution. T14 is the preset indoor environment temperature corresponding to the user with abnormal body temperature with normal constitution. T15 is the preset indoor environment temperature corresponding to the user with abnormal body temperature with heat constitution. The air conditioner can be controlled according to different constitution groups, and the comfort requirements of the user with abnormal body temperature can be better met.
[0098] Exemplarily, the second adjusting module comprises an obtaining submodule and an adjusting submodule, the obtaining submodule is configured to obtain the number of the body temperature abnormal users, and the adjusting submodule is configured to adjust the temperature of the air conditioner in real time according to the temperature interval in which the current body temperature data is located, the current operation mode of the air conditioner, the constitution of the body temperature abnormal user and the number of the body temperature abnormal users, so that the indoor environment temperature reaches the preset indoor environment temperature, and the preset indoor environment temperature decreases with the increase of the number of the body temperature abnormal users in the case that the temperature interval, the current operation mode of the air conditioner and the constitution of the body temperature abnormal user are the same. The air conditioner can be controlled according to different constitution of the population and the number of the population, and the comfort requirement of the body temperature abnormal user can be better met.
[0099] In the present example, the device further comprises a third obtaining unit and a determining unit, the third obtaining unit is configured to obtain historical body temperature data of a target user in a preset historical time period between the current time before obtaining the current body temperature data of the body temperature abnormal user in the preset space where the air conditioner is located, and the determining unit is configured to determine that the target user is the body temperature abnormal user in the case that the historical body temperature data in the preset historical time period are all higher than the preset body temperature data. The interference of some abnormal factors can be excluded, and more accurate body temperature data of the user can be obtained.
[0100] The control device of the air conditioner comprises a processor and a memory, and the first obtaining unit and the like are all stored in the memory as program units, and the corresponding functions are realized by the processor executing the program units stored in the memory. The modules are all located in the same processor, or the modules are respectively located in different processors in any combination.
[0101] The processor comprises a core, and the core calls the corresponding program units from the memory. One or more than one core can be set, and the problem that the current air conditioner temperature adjusting mode is not suitable for the body temperature abnormal user can be solved by adjusting the core parameters.
[0102] The memory can comprise a non-permanent memory in a computer readable medium, a random access memory (RAM) and / or a non-volatile memory such as a read-only memory (ROM) or a flash memory (flash RAM), and the memory comprises at least one memory chip.
[0103] The embodiment of the present application provides a computer readable storage medium, and the computer readable storage medium comprises a stored program, wherein the program controls a device where the computer readable storage medium is located to execute the control method of the air conditioner when the program runs.
[0104] Specifically, the control method of the air conditioner comprises:
[0105] In step S201, current body temperature data of a body temperature abnormal user in a preset space where the air conditioner is located is acquired, wherein the body temperature abnormal user is a user whose current body temperature is greater than preset body temperature data.
[0106] Specifically, the body temperature data of the user is detected by an infrared detection device arranged inside the air conditioner, and the current body temperature data represents the body surface temperature of the user, wherein the infrared detection device can be arranged in a room outside the indoor unit of the air conditioner or a wearable device or a mobile device used for a long time. When the detected body temperature of the user reaches the temperature of a fever condition of a human body (i.e., the current body temperature of the user is greater than the preset body temperature data), the air conditioner is controlled to send user body abnormal information to a set user terminal or to output the body condition of the user, and enters an intelligent temperature adjustment mode.
[0107] In step S202, a current operation mode of the air conditioner is acquired, and the current operation mode is a cooling operation mode or a heating operation mode.
[0108] Specifically, since the operation parameters of the air conditioner are different in different operation modes, the temperature of the air conditioner is adjusted according to the different operation modes of the air conditioner, so that the air conditioner can be more accurately controlled, and the comfort of the user can be more quickly and accurately met.
[0109] In step S203, the temperature of the air conditioner is adjusted in real time according to the current body temperature data of the body temperature abnormal user and the current operation mode of the air conditioner, so that the indoor environment temperature reaches a preset indoor environment temperature, wherein the preset indoor environment temperature makes the body temperature of the body temperature abnormal user after a preset time period to be within a preset body temperature range.
[0110] Specifically, this can provide a more comfortable indoor environment for the body temperature abnormal user, and meet the comfort requirement of the body temperature abnormal user. The preset indoor environment temperature is set to different temperatures according to different requirements of different body temperature abnormal users, the preset time period can be set to 3 minutes, and the preset body temperature range can be 26-28℃.
[0111] The embodiment of the present application provides a processor, which is used for running a program, wherein the processor executes the control method of the air conditioner when the program is running.
[0112] The embodiment of the present application provides a device, which comprises a processor, a memory, and a program stored in the memory and capable of running on the processor, and the processor executes the steps of the control method of the air conditioner when the program is running.
[0113] The device herein can be a server, a PC, a PAD, a mobile phone, or the like.
[0114] The application also provides a computer program product adapted to execute, when executed on a data processing device, a program initializing the steps of the control method of the air conditioner.
[0115] It is apparent that those skilled in the art should understand that the modules or steps of the application described above can be realized by general computing devices, which can be centralized on a single computing device or distributed on a network composed of multiple computing devices, and can be realized by program codes executable by the computing devices, so that they can be stored in storage devices and executed by the computing devices, and in some cases, the steps shown or described can be executed in different orders, or they can be respectively manufactured into individual integrated circuit modules, or multiple modules or steps among them can be manufactured into a single integrated circuit module. Thus, the application is not limited to any specific combination of hardware and software.
[0116] Those skilled in the art should understand that the embodiments of the application can be provided as a method, a system, or a computer program product. Therefore, the application can take the form of an entirely hardware embodiment, an entirely software embodiment, or an embodiment combining software and hardware aspects. Moreover, the application can take the form of a computer program product implemented on one or more computer-usable storage media (including, but not limited to, disk storage, CD-ROMs, optical storage devices, etc.) containing computer-usable program code.
[0117] The application is described with reference to flowcharts and / or block diagrams of methods, apparatus (systems), and computer program products according to embodiments of the application. It should be understood that each flow and / or block in the flowcharts and / or block diagrams, as well as combinations of flows and / or blocks in the flowcharts and / or block diagrams, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing apparatus to produce a machine, so that the instructions executed by the processor of the computer or other programmable data processing apparatus produce the functions specified in the flowcharts and / or block diagrams. Figure 1 one or more flows and / or blocks Figure 1 an apparatus that performs the functions specified in the flowchart
[0118] These computer program instructions can also be stored in a computer-readable memory that can direct the computer or other programmable data processing apparatus to work in a specific manner, so that the instructions stored in the computer-readable memory produce a manufactured product including instruction apparatus, which realizes the functions specified in the flowcharts and / or block diagrams. Figure 1 one or more flows and / or blocks Figure 1 an apparatus that performs the functions specified in the flowchart
[0119] These computer program instructions can also be loaded into a computer or other programmable data processing apparatus to cause a series of operational steps to be performed on the computer or other programmable apparatus to produce a computer-implemented process such that the instructions which execute on the computer or other programmable apparatus provide steps for implementing the functions specified in the flowchart block or blocks. Figure 1 Figure 1
[0120] In one typical configuration, the computing device includes one or more processors (CPUs), input / output interfaces, network interfaces, and memory.
[0121] The memory can include non-persistent memory and / or volatile memory, such as random access memory (RAM) about which the processor can execute instructions. The memory can also include non-volatile memory, such as read only memory (ROM), electrically programmable read only memory (EPROM), electrically erasable programmable read only memory (EEPROM), programmable read only memory (PROM), or flash memory, for example. Memory is an example of computer readable media.
[0122] Computer readable media includes permanent and non-permanent, removable and non-removable media implemented in any method or technology for storage of information such as computer readable instructions, data structures, program modules or other data. Examples of computer storage media include, but are not limited to, phase change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read only memory (ROM), electrically programmable read only memory (EEPROM), flash memory or other memory technology, compact disc read only memory (CD-ROM), digital versatile disc (DVD), or other optical storage, magnetic cassettes, magnetic tapes, magnetic disk storage or other magnetic storage devices, or any other non-transmission medium that can be used to store information accessible to computing devices. According to the definition herein, computer readable media does not include transitory media, such as modulated data signals and carrier waves.
[0123] It should also be noted that the terms "comprising", "containing", or any other variant thereof are intended to encompass a non-exclusive inclusion, such that a process, method, article or apparatus that comprises a list of elements does not include only those elements recited, but can also include other elements not expressly listed or inherent to such process, method, article or apparatus. Without more limitations, an element defined by the statement "comprising a" does not exclude the existence of additional identical elements in the process, method, article or apparatus that includes the element.
[0124] From the above description, it can be seen that the above-mentioned embodiments of the present application achieve the following technical effects:
[0125] 1)、The control method of the air conditioner described above of the present application, first, the current body temperature data of the body temperature abnormal user in the preset space where the air conditioner is located is obtained, wherein the body temperature abnormal user is the user whose current body temperature is greater than the preset body temperature data; then the current running mode of the air conditioner is obtained, the current running mode is the cooling running mode or the heating running mode; finally, the temperature of the air conditioner is adjusted in real time according to the current body temperature data of the body temperature abnormal user and the current running mode of the air conditioner, so that the indoor environment temperature reaches the preset indoor environment temperature, wherein the preset indoor environment temperature makes the body temperature of the body temperature abnormal user after the preset time period in the preset body temperature interval. The method controls the air conditioner according to the actual body temperature data of the body temperature abnormal user to adjust the indoor environment temperature in time, and solves the problem that the current air conditioner temperature adjustment mode is not suitable for the body temperature abnormal user.
[0126] 2)、The control device of the air conditioner described above of the present application, comprising a first acquisition unit, a second acquisition unit and an adjustment unit, the first acquisition unit is used for obtaining the current body temperature data of the body temperature abnormal user in the preset space where the air conditioner is located, wherein the body temperature abnormal user is the user whose current body temperature is greater than the preset body temperature data; the second acquisition unit is used for obtaining the current running mode of the air conditioner, the current running mode is the cooling running mode or the heating running mode; the adjustment unit is used for adjusting the temperature of the air conditioner in real time according to the current body temperature data of the body temperature abnormal user and the current running mode of the air conditioner, so that the indoor environment temperature reaches the preset indoor environment temperature, wherein the preset indoor environment temperature makes the body temperature of the body temperature abnormal user after the preset time period in the preset body temperature interval. The method controls the air conditioner according to the actual body temperature data of the body temperature abnormal user to adjust the indoor environment temperature in time, and solves the problem that the current air conditioner temperature adjustment mode is not suitable for the body temperature abnormal user.
[0127] The above only describes the preferred embodiments of the present application and is not used to limit the present application. For those skilled in the art, the present application can have various changes and variations. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A control method of an air conditioner, characterized by, The method comprises the following steps: obtaining current body temperature data of a body temperature abnormal user in a preset space where an air conditioner is located, wherein the body temperature abnormal user is a user whose current body temperature is greater than preset body temperature data; obtaining a current operation mode of the air conditioner, wherein the current operation mode is a cooling operation mode or a heating operation mode; adjusting the temperature of the air conditioner in real time according to the current body temperature data of the body temperature abnormal user and the current operation mode of the air conditioner, so that the indoor environment temperature reaches a preset indoor environment temperature, wherein the preset indoor environment temperature makes the body sensation temperature of the body temperature abnormal user after a preset time period be within a preset body sensation temperature interval; adjusting the temperature of the air conditioner in real time according to the current body temperature data of the body temperature abnormal user and the current operation mode of the air conditioner, so that the indoor environment temperature reaches a preset indoor environment temperature, comprising: determining a temperature interval in which the current body temperature data of the body temperature abnormal user is located; and adjusting the temperature of the air conditioner in real time according to at least the temperature interval in which the current body temperature data is located and the current operation mode of the air conditioner, so that the indoor environment temperature reaches the preset indoor environment temperature; adjusting the temperature of the air conditioner in real time according to at least the temperature interval in which the current body temperature data is located and the current operation mode of the air conditioner, so that the indoor environment temperature reaches the preset indoor environment temperature, comprising at least one of the following: in a case where the temperature interval in which the current body temperature data of the body temperature abnormal user is located is a first temperature interval, and the current operation mode is the heating operation mode, at least increasing the compressor operation frequency and increasing the inner fan speed, so that the indoor environment temperature reaches a first preset heating indoor environment temperature; in a case where the temperature interval in which the current body temperature data of the body temperature abnormal user is located is a first temperature interval, and the current operation mode is the cooling operation mode, at least decreasing the compressor operation frequency and decreasing the inner fan speed, so that the indoor environment temperature reaches a first preset cooling indoor environment temperature; in a case where the temperature interval in which the current body temperature data of the body temperature abnormal user is located is a second temperature interval, and the current operation mode is the heating operation mode, decreasing the compressor operation frequency and decreasing the inner fan speed, so that the indoor environment temperature reaches a second preset heating indoor environment temperature; in a case where the temperature interval in which the current body temperature data of the body temperature abnormal user is located is a second temperature interval, and the current operation mode is the cooling operation mode, increasing the compressor operation frequency and increasing the inner fan speed, so that the indoor environment temperature reaches a second preset cooling indoor environment temperature; In a case where the temperature interval in which the current temperature data of the user with abnormal body temperature is located is a third temperature interval, and the current operation mode is the cooling operation mode or the heating operation mode, the air conditioner is controlled to issue an alarm information indicating that the body temperature of the user with abnormal body temperature is higher than an upper limit value of body temperature, wherein a maximum value of the first temperature interval is less than a minimum value of the second temperature interval, and a maximum value of the second temperature interval is less than a minimum value of the third temperature interval.
2. The method of claim 1, wherein, The current operation mode of the air conditioner is obtained, and the current operation mode is a cooling operation mode or a heating operation mode, including: The current indoor environment temperature and the current outdoor environment temperature are obtained; In a case where the current indoor environment temperature and the current outdoor environment temperature are both higher than a set temperature, it is determined that the current operation mode of the air conditioner is the cooling operation mode; In a case where at least one of the current indoor environment temperature and the current outdoor environment temperature is lower than the set temperature, it is determined that the current operation mode of the air conditioner is the heating operation mode.
3. The method of claim 1, wherein, In a case where the temperature interval in which the current temperature data of the user with abnormal body temperature is located is a first temperature interval, and the current operation mode is the heating operation mode, at least the compressor operation frequency and the indoor fan speed are increased, including: in a case where the temperature interval in which the current temperature data of the user with abnormal body temperature is located is a first temperature interval, and the current operation mode is the heating operation mode, the compressor operation frequency and the indoor fan speed are increased, and the air deflector is controlled to directly face the user and sweep air; and / or, In a case where the temperature interval in which the current temperature data of the user with abnormal body temperature is located is a first temperature interval, and the current operation mode is the cooling operation mode, at least the compressor operation frequency and the indoor fan speed are reduced, including: in a case where the temperature interval in which the current temperature data of the user with abnormal body temperature is located is a first temperature interval, and the current operation mode is the cooling operation mode, the compressor operation frequency and the indoor fan speed are reduced, and the air deflector is controlled to not directly face the user and sweep air.
4. The method of claim 1, wherein, The first temperature interval includes a first temperature sub-interval, a second temperature sub-interval, and a third temperature sub-interval, wherein a maximum value of the first temperature sub-interval is less than a minimum value of the second temperature sub-interval, and a maximum value of the second temperature sub-interval is less than a minimum value of the third temperature sub-interval, and the method further includes: A first temperature size relationship T1 The second temperature size relationship T4 < T5 < T6 is satisfied, where T4 represents the first preset indoor environment temperature corresponding to the first temperature subinterval, T5 represents the first preset indoor environment temperature corresponding to the second temperature subinterval, and T6 represents the first preset indoor environment temperature corresponding to the third temperature subinterval.
5. The method of claim 1, wherein, The second temperature interval includes a fourth temperature subinterval, a fifth temperature subinterval, and a sixth temperature subinterval, where the maximum value of the fourth temperature subinterval is less than the minimum value of the fifth temperature subinterval, the maximum value of the fifth temperature subinterval is less than the minimum value of the sixth temperature subinterval, and the method further includes: The third temperature size relationship T7 > T8 > T9 is satisfied, where T7 represents the second preset indoor environment temperature corresponding to the fourth temperature subinterval, T8 represents the second preset indoor environment temperature corresponding to the fifth temperature subinterval, and T9 represents the second preset indoor environment temperature corresponding to the fifth temperature subinterval. The fourth temperature size relationship T10 > T11 > T12 is satisfied, where T10 represents the second preset indoor environment temperature corresponding to the fourth temperature subinterval, T11 represents the second preset indoor environment temperature corresponding to the fifth temperature subinterval, and T12 represents the second preset indoor environment temperature corresponding to the fifth temperature subinterval.
6. The method of claim 1, wherein, The temperature of the air conditioner is adjusted in real time according to at least the temperature interval in which the current body temperature data is located and the current operating mode of the air conditioner, so that the indoor environment temperature reaches the preset indoor environment temperature, including: Determining the constitution of the body temperature abnormal user, including cold constitution, heat constitution, and normal constitution, and the normal constitution is non-cold and non-heat constitution; The temperature of the air conditioner is adjusted in real time according to at least the temperature interval in which the current body temperature data is located, the current operating mode of the air conditioner, and the constitution of the body temperature abnormal user, so that the indoor environment temperature reaches the preset indoor environment temperature. Wherein, in the case that the temperature interval and the current operating mode of the air conditioner are the same, the preset indoor environment temperature satisfies the fifth temperature size relationship T13 > T14 > T15, T13 is the preset indoor environment temperature corresponding to the body temperature abnormal user with cold constitution, T14 is the preset indoor environment temperature corresponding to the body temperature abnormal user with normal constitution, and T15 is the preset indoor environment temperature corresponding to the body temperature abnormal user with heat constitution.
7. The method of claim 6, wherein, The temperature of the air conditioner is adjusted in real time according to at least the temperature interval in which the current body temperature data is located, the current operating mode of the air conditioner, and the constitution of the body temperature abnormal user, so that the indoor environment temperature reaches the preset indoor environment temperature, including: Obtaining the number of body temperature abnormal users; Adjust the temperature of the air conditioner in real time according to the temperature interval of the current temperature data, the current operation mode of the air conditioner, the constitution of the body temperature abnormal user, and the number of the body temperature abnormal users, so that the indoor environment temperature reaches the preset indoor environment temperature, wherein, in the case that the temperature interval, the current operation mode of the air conditioner, and the constitution of the body temperature abnormal user are the same, the preset indoor environment temperature decreases with the increase of the number of the body temperature abnormal users.
8. The method according to any one of claims 1 to 7, characterized in that, Before obtaining the current temperature data of the body temperature abnormal user in the preset space where the air conditioner is located, the method further comprises: Obtaining the historical temperature data of the target user in a preset historical time period between the current time and the preset historical time period; In the case that the historical temperature data in the preset historical time period are all higher than the preset temperature data, determining that the target user is the body temperature abnormal user.
9. A control device for an air conditioner, characterized by comprising: Comprise: The first obtaining unit is configured to obtain current temperature data of a body temperature abnormal user in a preset space where an air conditioner is located, wherein the body temperature abnormal user is a user whose current temperature is greater than preset temperature data; The second obtaining unit is configured to obtain a current operation mode of the air conditioner, wherein the current operation mode is a cooling operation mode or a heating operation mode; The adjusting unit is configured to adjust the temperature of the air conditioner in real time according to the current temperature data of the body temperature abnormal user and the current operation mode of the air conditioner, so that the indoor environment temperature reaches a preset indoor environment temperature, wherein the preset indoor environment temperature makes the body temperature abnormal user's feeling temperature in a preset time period after the preset indoor environment temperature reaches a preset feeling temperature interval; The adjusting unit comprises a first determining module and a first adjusting module, the first determining module is configured to determine the temperature interval of the current temperature data of the body temperature abnormal user; and the first adjusting module is configured to adjust the temperature of the air conditioner in real time according to at least the temperature interval of the current temperature data and the current operation mode of the air conditioner, so that the indoor environment temperature reaches the preset indoor environment temperature; The first adjusting module comprises a first processing module, a second processing module, a third processing module, a fourth processing module, and a fifth processing module, the first processing module is configured to, in the case that the temperature interval of the current temperature data of the body temperature abnormal user is a first temperature interval, and the current operation mode is the heating operation mode, at least increase the compressor operation frequency and increase the inner fan speed, so that the indoor environment temperature reaches a first preset heating indoor environment temperature; The second processing module is configured to, in the case that the temperature interval of the current temperature data of the body temperature abnormal user is a first temperature interval, and the current operation mode is the cooling operation mode, at least reduce the compressor operation frequency and reduce the inner fan speed, so that the indoor environment temperature reaches a first preset cooling indoor environment temperature; The third processing module is configured to, in a case where the temperature interval in which the current body temperature data of the user with abnormal body temperature is located is a second temperature interval, and the current operation mode is the heating operation mode, reduce a compressor operation frequency and reduce an indoor fan rotating speed, so that the indoor environment temperature reaches a second preset heating indoor environment temperature. The fourth processing module is configured to, in a case where the temperature interval in which the current body temperature data of the user with abnormal body temperature is located is a second temperature interval, and the current operation mode is the cooling operation mode, increase a compressor operation frequency and increase an indoor fan rotating speed, so that the indoor environment temperature reaches a second preset cooling indoor environment temperature. The fifth processing module is configured to, in a case where the temperature interval in which the current body temperature data of the user with abnormal body temperature is located is a third temperature interval, and the current operation mode is the cooling operation mode or the heating operation mode, control the air conditioner to send an alarm information, the alarm information indicating that the body temperature of the user with abnormal body temperature is higher than an upper limit value of body temperature, wherein a maximum value of the first temperature interval is less than a minimum value of the second temperature interval, and a maximum value of the second temperature interval is less than a minimum value of the third temperature interval.
10. An air conditioner system characterized by, The control terminal is configured to execute the control method of the air conditioner according to any one of claims 1 to 8. The air conditioner is configured to communicate with the control terminal. The computer readable storage medium comprises a stored program, wherein the control terminal is configured to execute the control method of the air conditioner according to any one of claims 1 to 8 when the program is executed.
11. A computer readable storage medium, characterized in that, The computer readable storage medium comprises a stored program, wherein the control terminal is configured to execute the control method of the air conditioner according to any one of claims 1 to 8 when the program is executed.
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