Method and device for automatic adjustment of environmental parameters
By generating target control parameters, the system automatically adjusts parameters such as wind speed, wind direction, and wind temperature of the smart air conditioner, solving the problem of cumbersome smart air conditioner control and achieving precise control and improved user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-03-10
- Publication Date
- 2026-03-27
AI Technical Summary
Existing smart air conditioners have cumbersome control processes and cannot effectively regulate environmental parameters in the user's area, resulting in a poor user experience.
By determining the distance between the target user and the smart air conditioner, as well as the environmental parameters of the target area, target control parameters are generated, and matching control operations are performed on the smart air conditioner, including automatic adjustment of parameters such as wind speed, wind direction, and wind temperature.
It enables precise control of smart air conditioners, simplifies user operation processes, improves control efficiency, and enhances users' comfort and experience with smart air conditioners.
Smart Images

Figure CN116772376B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of intelligent devices, and in particular to an automatic adjustment method and device for environmental parameters. BACKGROUND
[0002] With the rapid development of science and technology, more and more intelligent devices (such as intelligent air conditioners) enter the life of users, so that users increasingly feel the convenience and comfort brought by intelligent devices, greatly improving the living environment of users and enhancing the use experience of users on intelligent devices.
[0003] At present, an intelligent air conditioner can regulate environmental parameters of a region where a user is located through a cooling or heating mode, thereby creating a warm winter and cool summer living environment, so as to bring physiological and psychological comfort to the user. Currently, when the user needs to regulate the mode of the intelligent air conditioner, the user generally starts from self-perception, repeatedly adjusts the temperature and / or the gear of the intelligent air conditioner through a user terminal or a device control terminal. However, this makes the control process of the user on the intelligent air conditioner too cumbersome, and cannot effectively regulate the environmental parameters of the region where the user is located. Therefore, it is particularly important to provide a quick and accurate control method for the intelligent air conditioner. SUMMARY
[0004] The technical problem to be solved by the present application is to provide an automatic adjustment method and device for environmental parameters, which can improve the control efficiency of the intelligent air conditioner and realize accurate control of the intelligent air conditioner, so that the user can quickly experience the comfort brought by the intelligent air conditioner.
[0005] To solve the above technical problem, the present application discloses an automatic adjustment method for environmental parameters in a first aspect, which comprises:
[0006] determining information corresponding to a target user; the information corresponding to the target user comprises a distance value between the target user and an intelligent air conditioner and a regional environmental parameter of a target region corresponding to the target user;
[0007] generating a target control parameter corresponding to the intelligent air conditioner according to the distance value between the target user and the intelligent air conditioner and the regional environmental parameter of the target region;
[0008] performing a matching control operation on the intelligent air conditioner according to the target control parameter.
[0009] As an optional implementation manner, in the first aspect of the present application, before the target control parameter corresponding to the intelligent air conditioner is generated according to the distance value between the target user and the intelligent air conditioner and the regional environmental parameter of the target region, the method further comprises:
[0010] determining a current activity state of the target user;
[0011] inputting the current activity state of the target user and information corresponding to the target user into a pre-determined environment comfort model for analysis, obtaining an analysis result of the environment comfort model, and determining the analysis result as a comfort perception parameter of the target user; the comfort perception parameter of the target user includes a comfort perception temperature of the target user;
[0012] querying a working parameter of the intelligent air conditioner, the working parameter of the intelligent air conditioner including at least one of an air outlet temperature, an air outlet speed, an air outlet direction, an air outlet volume, and an air outlet duration;
[0013] wherein, the target control parameter corresponding to the intelligent air conditioner is generated according to the distance value between the target user and the intelligent air conditioner and the regional environment parameter of the target region, including:
[0014] the target control parameter corresponding to the intelligent air conditioner is generated according to the distance value between the target user and the intelligent air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user, and the working parameter of the intelligent air conditioner.
[0015] As an optional implementation, in the first aspect of the present application, before the target control parameter corresponding to the intelligent air conditioner is generated according to the distance value between the target user and the intelligent air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user, and the working parameter of the intelligent air conditioner, the method further includes:
[0016] calculating a first parameter difference value between the regional environment parameter of the target region and the comfort perception parameter of the target user;
[0017] determining whether the first parameter difference value is less than a pre-set first parameter difference threshold value;
[0018] when it is determined that the first parameter difference value is less than the pre-set first parameter difference threshold value, obtaining a physiological parameter of the target user; the physiological parameter of the target user includes a current body temperature of the target user;
[0019] calculating a second parameter difference value between the current body temperature of the target user and the comfort perception temperature of the target user, and determining whether the second parameter difference value is greater than or equal to a pre-set second parameter difference threshold value;
[0020] When it is judged that the second parameter difference value is greater than or equal to the preset second parameter difference threshold value, the operation of generating the target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user and the working parameter of the smart air conditioner is performed.
[0021] As an optional implementation, in the first aspect of the present application, after it is judged that the second parameter difference value is greater than or equal to the preset second parameter difference threshold value, the method further comprises:
[0022] According to the physiological parameter of the target user, an influence factor matched with the current body temperature of the target user is determined; the influence factor is a factor influencing the size of the current body temperature of the target user;
[0023] It is judged whether the influence factor is a preset influence factor;
[0024] When it is judged that the influence factor is not the preset influence factor, the current health state of the target user is analyzed according to the physiological parameter of the target user;
[0025] According to the current health state of the target user, it is judged whether the device function of the smart air conditioner causes negative influence on the current health state of the target user; the device function of the smart air conditioner includes the refrigeration function and / or the heating function of the smart air conditioner;
[0026] When it is judged that the device function of the smart air conditioner does not cause negative influence on the current health state of the target user, the operation of generating the target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user and the working parameter of the smart air conditioner is performed.
[0027] As an optional implementation, in the first aspect of the present application, the method further comprises:
[0028] When it is judged that the device function of the smart air conditioner causes negative influence on the current health state of the target user, a negative influence degree corresponding to the negative influence is determined;
[0029] It is judged whether the absolute value of the negative influence degree is less than or equal to an influence degree threshold value;
[0030] when it is judged that the absolute value of the negative influence degree is less than or equal to the influence degree threshold value, performing the operation of generating the target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user, and the working parameter of the smart air conditioner;
[0031] when it is judged that the absolute value of the negative influence degree is greater than the influence degree threshold value, determining the sensitive body part of the target user to the device function of the smart air conditioner;
[0032] according to the sensitive body part, correcting the comfort perception parameter of the target user to obtain the corrected comfort perception parameter of the target user, and performing the operation of generating the target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user, and the working parameter of the smart air conditioner; the comfort perception parameter of the target user is the corrected comfort perception parameter of the target user.
[0033] As an optional implementation, in the first aspect of the present application, before the operation of performing the control operation on the smart air conditioner according to the target control parameter, the method further comprises:
[0034] obtaining the article parameter of the target article in the target region; the article parameter of the target article comprises at least one of the volume of the target article, the height of the target article, the type of the target article, and the placement of the target article;
[0035] judging whether the article parameter of the target article meets the first correction condition corresponding to the target control parameter;
[0036] when the judgment result is yes, performing the first correction operation on the target control parameter according to the article parameter of the target article to obtain the first target control parameter after the first correction operation, and performing the operation of performing the control operation on the smart air conditioner according to the target control parameter; the target control parameter is the first target control parameter.
[0037] As an optional implementation, in the first aspect of the present application, the target control parameter comprises one or more of the wind speed control parameter, the air outlet opening size control parameter, the air outlet opening direction control parameter, and the air outlet temperature control parameter;
[0038] wherein, the operation of performing the control operation on the smart air conditioner according to the target control parameter comprises:
[0039] According to the air speed control parameter and the air outlet temperature control parameter, the air inlet of the intelligent air conditioner is controlled to suck air from the outside, and according to the air outlet temperature control parameter, the heat exchanger of the intelligent air conditioner is controlled to convert the temperature of the air sucked by the air inlet of the intelligent air conditioner, to obtain the air after temperature conversion.
[0040] According to the air outlet opening size control parameter, the air outlet opening direction control parameter, and the air speed control parameter, the air outlet matched with the target user is controlled, and the first air duct system of the intelligent air conditioner is controlled to transport the air after temperature conversion from the air outlet matched with the target user to the air supply condition matched with the comfort perception parameter, the air supply condition including at least one of air supply temperature, air supply speed, air supply direction, and air supply time length.
[0041] When cooling is needed, the air outlet matched with the target user is the first air outlet of the intelligent air conditioner, and when heating is needed, the air outlet matched with the target user is the second air outlet of the intelligent air conditioner, and the first air outlet is located above the second air outlet.
[0042] The intelligent air conditioner further includes a third air outlet, a second air duct system, and a natural air outlet matrix module, wherein the third air outlet of the intelligent air conditioner is located between the first air outlet and the second air outlet, the natural air outlet matrix module is located between the second air duct system of the intelligent air conditioner and the third air outlet of the intelligent air conditioner, and the method further includes:
[0043] Determining whether the third air outlet of the intelligent air conditioner needs to be opened, when it is determined that the third air outlet needs to be opened, controlling the third air outlet of the intelligent air conditioner to be opened, and controlling the second air duct system of the intelligent air conditioner to transport the air after temperature conversion into the natural air outlet matrix module for adjustment, so that the air after adjustment is transported from the third air outlet of the intelligent air conditioner to the target area.
[0044] The second aspect of the application discloses an automatic adjustment device for environmental parameters, the device comprising:
[0045] A determination module is configured to determine information corresponding to a target user, wherein the information corresponding to the target user includes a distance value between the target user and an intelligent air conditioner and a regional environmental parameter of a target region corresponding to the target user.
[0046] A parameter generation module is configured to generate a target control parameter corresponding to the intelligent air conditioner based on the distance value between the target user and the intelligent air conditioner and the regional environmental parameter of the target region.
[0047] A control module is configured to perform a matching control operation on the intelligent air conditioner based on the target control parameter.
[0048] As an optional implementation, in the second aspect of the present application, the device comprises:
[0049] a determining module configured to determine information corresponding to a target user; the information corresponding to the target user comprises a distance value between the target user and the smart air conditioner and a regional environment parameter of a target region corresponding to the target user;
[0050] a parameter generating module configured to generate a target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner and the regional environment parameter of the target region;
[0051] a control module configured to perform a matching control operation on the smart air conditioner according to the target control parameter.
[0052] As an optional implementation, in the second aspect of the present application, the determining module is further configured to determine a current activity state of the target user before the parameter generating module generates the target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner and the regional environment parameter of the target region.
[0053] and the device further comprises:
[0054] an analyzing module configured to input the current activity state of the target user and the information corresponding to the target user into a pre-determined environment comfort model for analysis to obtain an analysis result of the environment comfort model;
[0055] the determining module is further configured to determine the analysis result as a comfort perception parameter of the target user; the comfort perception parameter of the target user comprises a comfort perception temperature of the target user;
[0056] a querying module configured to query a working parameter of the smart air conditioner; the working parameter of the smart air conditioner comprises at least one of an air outlet temperature, an air outlet speed, an air outlet direction, an air outlet volume and an air outlet time length;
[0057] wherein the parameter generating module generates the target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner and the regional environment parameter of the target region in the following manner:
[0058] generates the target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user and the working parameter of the smart air conditioner.
[0059] As an optional implementation, in the second aspect of the present application, the device further comprises:
[0060] a calculation module, configured to calculate a first parameter difference value between the regional environment parameter of the target area and the comfort perception parameter of the target user before the parameter generation module generates the target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner, the regional environment parameter of the target area, the comfort perception parameter of the target user and the working parameter of the smart air conditioner;
[0061] a judgment module, configured to judge whether the first parameter difference value is less than a preset first parameter difference threshold value;
[0062] a first acquisition module, configured to acquire the physiological parameter of the target user when the judgment module judges that the first parameter difference value is less than the preset first parameter difference threshold value; the physiological parameter of the target user includes the current body temperature of the target user;
[0063] the calculation module is further configured to calculate a second parameter difference value between the current body temperature of the target user and the comfort perception temperature of the target user;
[0064] the judgment module is further configured to judge whether the second parameter difference value is greater than or equal to a preset second parameter difference threshold value; when it is judged that the second parameter difference value is greater than or equal to the preset second parameter difference threshold value, the parameter generation module is triggered to perform the operation of generating the target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner, the regional environment parameter of the target area, the comfort perception parameter of the target user and the working parameter of the smart air conditioner.
[0065] As an optional implementation, in the second aspect of the present application, the determination module is further configured to determine an influence factor matched with the current body temperature of the target user according to the acquired physiological parameter of the target user after the judgment module judges that the second parameter difference value is greater than or equal to the preset second parameter difference threshold value; the influence factor is a factor influencing the size of the current body temperature of the target user;
[0066] the judgment module is further configured to judge whether the influence factor is a preset influence factor;
[0067] the analysis module is further configured to analyze the current health state of the target user according to the physiological parameter of the target user when the judgment module judges that the influence factor is not the preset influence factor;
[0068] The judgment module is further configured to judge whether the device function of the smart air conditioner causes negative influence on the current health state of the target user according to the current health state of the target user, the device function of the smart air conditioner including the refrigeration function and / or the heating function of the smart air conditioner; when it is judged that the device function of the smart air conditioner does not cause negative influence on the current health state of the target user, triggering the parameter generation module to perform the operation of generating the target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user and the working parameter of the smart air conditioner.
[0069] As an optional implementation form, in the second aspect, the determination module is further configured to determine the negative influence degree corresponding to the negative influence caused by the device function of the smart air conditioner on the current health state of the target user when the judgment module judges that the device function of the smart air conditioner causes negative influence on the current health state of the target user.
[0070] The judgment module is further configured to judge whether the absolute value of the negative influence degree is less than or equal to an influence degree threshold value; when it is judged that the absolute value of the negative influence degree is less than or equal to the influence degree threshold value, triggering the parameter generation module to perform the operation of generating the target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user and the working parameter of the smart air conditioner.
[0071] The determination module is further configured to determine the sensitive body part of the target user corresponding to the device function of the smart air conditioner when the judgment module judges that the absolute value of the negative influence degree is greater than the influence degree threshold value.
[0072] The device further comprises:
[0073] The parameter correction module is configured to correct the comfort perception parameter of the target user according to the sensitive body part, to obtain the corrected comfort perception parameter of the target user, and trigger the parameter generation module to perform the operation of generating the target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user and the working parameter of the smart air conditioner; the comfort perception parameter of the target user is the corrected comfort perception parameter of the target user.
[0074] As an optional implementation form, in the second aspect, the device further comprises:
[0075] The second obtaining module is configured to obtain an article parameter of the target article in the target area before the control module performs a matching control operation on the smart air conditioner according to the target control parameter; the article parameter of the target article comprises at least one of a volume of the target article, a height of the target article, a type of the target article, and a placement of the target article;
[0076] The judgment module is further configured to judge whether the article parameter of the target article satisfies a first correction condition corresponding to the target control parameter.
[0077] The parameter correction module is further configured to, when the judgment module judges that the article parameter of the target article satisfies the first correction condition, perform a first correction operation on the target control parameter according to the article parameter of the target article, obtain a first target control parameter after the first correction operation, and trigger the control module to perform the control operation on the smart air conditioner according to the target control parameter; the target control parameter is the first target control parameter.
[0078] As an optional implementation, in the second aspect of the present application, the target control parameter comprises one or more of a wind speed control parameter, a wind port opening size control parameter, a wind port opening direction control parameter, and a wind port outlet temperature control parameter.
[0079] The control module performs a matching control operation on the smart air conditioner according to the target control parameter in the following manner:
[0080] According to the wind speed control parameter and the wind port outlet temperature control parameter, the air inlet of the smart air conditioner is controlled to suck air from the outside, and according to the outlet temperature control parameter, the heat exchanger of the smart air conditioner is controlled to convert the temperature of the air sucked by the air inlet of the smart air conditioner, to obtain air after temperature conversion;
[0081] According to the wind port opening size control parameter, the wind port opening direction control parameter, and the wind speed control parameter, the air outlet matched with the target user is controlled, and the first air duct system of the smart air conditioner is controlled to deliver the air after temperature conversion from the air outlet matched with the target user to a supply air condition matched with the comfort perception parameter, the supply air condition comprising at least one of a supply air temperature, a supply air speed, a supply air direction, and a supply air time length.
[0082] When cooling is needed, the air outlet matched with the target user is the first air outlet of the smart air conditioner, and when heating is needed, the air outlet matched with the target user is the second air outlet of the smart air conditioner, the first air outlet being located above the second air outlet.
[0083] The intelligent air conditioner further comprises a third air outlet, a second air duct system and a natural wind air outlet matrix module, wherein the third air outlet of the intelligent air conditioner is located between the first air outlet and the second air outlet, the natural wind air outlet matrix module is located between the second air duct system of the intelligent air conditioner and the third air outlet of the intelligent air conditioner, and the judging module is further used for:
[0084] judging whether the third air outlet of the intelligent air conditioner needs to be opened;
[0085] The control module is further used for, when the judging module judges that the third air outlet needs to be opened, controlling the third air outlet of the intelligent air conditioner to be opened, and controlling the second air duct system of the intelligent air conditioner to deliver the air volume converted in temperature into the natural wind air outlet matrix module for distribution, so that the air volume distributed is delivered from the third air outlet of the intelligent air conditioner to the target area.
[0086] The third aspect of the present application discloses another automatic adjusting device of environmental parameters, which comprises:
[0087] a memory storing executable program codes;
[0088] a processor coupled with the memory;
[0089] The processor calls the executable program codes stored in the memory to execute the automatic adjusting method of environmental parameters disclosed in the first aspect of the present application.
[0090] The fourth aspect of the present application discloses a computer storage medium, which stores computer instructions, and the computer instructions are used to execute the automatic adjusting method of environmental parameters disclosed in the first aspect of the present application when called.
[0091] Compared with the prior art, the embodiment of the present application has the following beneficial effects:
[0092] In this embodiment of the invention, information corresponding to the target user is determined; based on the distance between the target user and the smart air conditioner and the regional environmental parameters of the target area, target control parameters corresponding to the smart air conditioner are generated; and based on the target control parameters, matching control operations are performed on the smart air conditioner. It is evident that implementing this invention enables automated control of the smart air conditioner by combining user-specific information, eliminating the need for users to repeatedly adjust the temperature and / or speed of the smart air conditioner through user terminals or device control terminals to achieve their desired comfort. This not only simplifies the control process of the smart air conditioner and improves its control efficiency, allowing users to quickly control the smart air conditioner, but also enriches the intelligent control methods of the smart air conditioner, achieving precise control and enabling users to experience the comfort brought by the smart air conditioner, thereby improving the user experience and user loyalty. Attached Figure Description
[0093] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0094] Figure 1 This is a schematic diagram of a scenario architecture disclosed in an embodiment of the present invention;
[0095] Figure 2 This is a flowchart illustrating an automatic adjustment method for environmental parameters disclosed in an embodiment of the present invention;
[0096] Figure 3 This is a flowchart illustrating another method for automatically adjusting environmental parameters disclosed in an embodiment of the present invention.
[0097] Figure 4 This is a schematic diagram of the structure of an automatic environmental parameter adjustment device disclosed in an embodiment of the present invention;
[0098] Figure 5 This is a schematic diagram of another automatic adjustment device for environmental parameters disclosed in an embodiment of the present invention;
[0099] Figure 6 This is a schematic diagram of the structure of another automatic environmental parameter adjustment device disclosed in an embodiment of the present invention. Detailed Implementation
[0100] In the following, the technical solutions in the embodiments of the present application will be described clearly and completely with reference to the drawings in the embodiments of the present application in combination. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the present application.
[0101] The terms "first", "second", and the like in the specification of the present application and the above-described drawings are used to distinguish different objects, rather than to describe a particular order. In addition, the terms "comprise" and "have" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, device, product, or end including a series of steps or units is not limited to the listed steps or units, but can optionally include steps or units not listed, or can optionally include other steps or units inherent to the process, method, product, or end.
[0102] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the present application. The appearance of this phrase in various places in the specification does not necessarily all refer to the same embodiment, nor is it necessarily mutually exclusive of other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0103] The present application discloses an automatic adjustment method and device of environmental parameters, which can improve the control efficiency of the intelligent air conditioner and realize the precise control of the intelligent air conditioner, so that the user can quickly experience the comfort brought by the intelligent air conditioner. The following will be described in detail.
[0104] In order to better understand the automatic adjustment method and device of environmental parameters described in the present application, first, the scene architecture applicable to the automatic adjustment method of environmental parameters is described, specifically, the scene architecture can be as follows Figure 1As shown in the figure, the automatic adjustment method of the environmental parameter can be applied in a home scene, an office scene, etc. corresponding to an automatic control device of a smart air conditioner, wherein the automatic control device of the smart air conditioner can be directly integrated in the smart air conditioner. Specifically, the smart air conditioner can have an infrared sensor to measure the distance of a target user and obtain a distance value of the target user; the smart air conditioner can also have a temperature sensor, a humidity sensor, etc. to obtain the environmental parameter of a target area. Further, according to the obtained distance value of the smart air conditioner and the target user and the current temperature of the target area, a target control parameter corresponding to the smart air conditioner is generated, so that the target user corresponding parameter and the environmental parameter of the target area can be combined to realize rapid and accurate control of the smart air conditioner. For example, as shown in the figure, the smart air conditioner monitors that there is a target user in the target area, and measures that the straight-line distance from the target user is 3 meters, and at the same time, the current temperature of the target area is obtained as 30℃. At this time, according to the obtained distance value of the smart air conditioner and the target user and the current temperature of the target area, the target control parameter can be generated as 26℃, the wind speed as medium wind speed and the wind direction as straight ahead, so as to achieve the effect of rapid cooling. Figure 1
[0105] It should be noted that, Figure 1 The scene diagram shown is only to represent the scene to which the automatic adjustment method of the environmental parameter is applied, and other articles involved are only illustrative, and the specific structure / size / shape / position / installed manner of the smart air conditioner can be adaptively adjusted according to the actual scene, Figure 1 The scene shown is not limited.
[0106] Embodiment one
[0107] Please refer to Figure 2 , Figure 2 is a flowchart of an automatic adjustment method of an environmental parameter disclosed by an embodiment of the present application. Among them, Figure 2 The automatic adjustment method of the environmental parameter described can be applied in any one of a home scene, a work scene, an entertainment scene, etc. corresponding to an automatic control device of a smart air conditioner, and the present embodiment does not limit. Optionally, the automatic control device of the smart air conditioner can include an air conditioner control system and / or a smart server, wherein the smart server includes a local server or a cloud server, etc. and the present embodiment does not limit. As shown in the figure, Figure 2 The automatic adjustment method of the environmental parameter can include the following operations:
[0108] 201, determine the information corresponding to the target user.
[0109] In the embodiment of the present application, optionally, the information corresponding to the target user includes a distance value between the target user and the smart air conditioner and a regional environment parameter of a target region corresponding to the target user, wherein the regional environment parameter of the target region can include at least one of a regional temperature of the target region, a regional humidity of the target region, an air quality index of the target region, and a weather condition corresponding to the target region. Further optionally, the distance value between the target user and the smart air conditioner can be obtained by a sensor on the smart air conditioner, or can be obtained by a sensor on other equipment similar to the position of the smart air conditioner, such as a camera device; the regional environment parameter of the target region can also be obtained by a sensor on the smart air conditioner (such as a temperature and humidity sensor of the air conditioner), or can be obtained by a sensor on other equipment in the target region (such as a dehumidifier in the target region), or can be obtained on a big data platform on the Internet (such as obtaining city weather forecast humidity data on the Internet). Further, the target region can be understood as a working region of the smart air conditioner, that is, a region corresponding to the size of the environmental parameter that can be affected by the smart air conditioner when it is in a working state. Specifically, the target region can be determined according to an article parameter of an article in the region, wherein the article parameter of the article includes at least one of an article type of the article, a placement of the article, and a volume of the article. For example, when a living room and a bedroom in a home scenario are connected, the target region corresponding to the smart air conditioner in the living room is the living room and the bedroom; when the door of the bedroom is closed, the target region corresponding to the smart air conditioner in the living room is the living room.
[0110] 202. Generate a target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner and the regional environment parameter of the target region.
[0111] In the embodiment of the present application, optionally, the distance value between the target user and the smart air conditioner can be 1 meter, 3 meters, or 10 meters; the regional environment parameter of the target region can be a living room regional temperature of 30°C and a relative humidity of 49.8% in a home scenario, or an office regional temperature of 28°C and an air quality index of 59 in an office scenario, which is not limited in the embodiment of the present application. Further optionally, the target control parameter can include at least one of a wind speed control parameter, a wind port opening size control parameter, a wind port opening direction control parameter, a wind port outlet temperature control parameter, and a wind port outlet time control parameter. For example, if the target user in the target region is located within 5m in front of the air conditioner and the regional temperature of the target region is 30°C, then the wind speed of the wind port of the smart air conditioner can be generated as medium, the size of the wind port can be generated as medium, the opening direction of the wind port can be generated as above the head of the target user, and the outlet temperature of the wind port can be generated as 26°C.
[0112] 203. According to the target control parameter, a matching control operation is performed on the intelligent air conditioner.
[0113] In the embodiment of the present application, specifically, according to the target control parameter, the air duct system, the air inlet, the air outlet, the heat exchanger, the air inlet partition, the natural wind outlet matrix module and the like of the intelligent air conditioner can be regulated and controlled to deliver the air supply condition matched with the target control parameter, wherein the air supply condition can include at least one of the air supply temperature, the air supply speed, the air supply direction and the air supply duration.
[0114] It can be seen that the embodiment of the present application can realize intelligent control of the intelligent air conditioner combined with the information corresponding to the target user without the user repeatedly controlling the intelligent air conditioner through manual temperature and profile adjustment, which is not only conducive to improving the control efficiency of the intelligent air conditioner, thereby rapidly heating or cooling the target area, so that the user can quickly experience the cooling and heating effect of the intelligent air conditioner, but also conducive to improving the precise regulation and control of the intelligent air conditioner to accurately achieve the comfort required by the user, thereby improving the user stickiness of the target user to the intelligent air conditioner.
[0115] In an optional embodiment, before determining the information corresponding to the target user in step 101, the method can further include:
[0116] obtaining the user location of the target user, and determining whether the target user is in the target area according to the user location of the target user;
[0117] when it is determined that the target user is in the target area, the operation of determining the information corresponding to the target user is performed;
[0118] when it is determined that the target user is not in the target area, the current activity state of the target user is obtained;
[0119] According to the current activity state of the target user, the activity track of the target user in the target time period is predicted;
[0120] According to the activity track, it is determined whether the target user is advancing towards the target area;
[0121] when it is determined that the target user is not advancing towards the target area, no control operation is performed on the intelligent air conditioner.
[0122] when it is determined that the target user is advancing towards the target area, according to the activity track and the current movement speed of the target user, the duration required for the target user to reach the target area is calculated;
[0123] determine whether the duration is less than or equal to a preset duration threshold;
[0124] when it is determined that the duration is less than or equal to the preset duration threshold, the operation of determining the information corresponding to the target user is performed;
[0125] When it is judged that the duration is greater than the preset duration threshold, the intelligent air conditioner is not controlled.
[0126] In this optional embodiment, optionally, the current activity state of the target user can be a working state, an entertainment state, a leisure state, a labor state, etc. of the target user, that is, it can be understood that the automatic control of the intelligent air conditioner is realized by using the user habit information of the target user. For example, when the target user is reading in the living room, it can be determined that the current activity state of the target user is a leisure state, and it is predicted that the target user will enter the bedroom within 1 hour; according to the activity track, when it is monitored that the target user sets off towards the bedroom and it is calculated that the target user will arrive at the bedroom after 30s (the preset duration threshold is 20s), the intelligent air conditioner in the bedroom is automatically controlled to perform the operation of determining the information corresponding to the target user. Further optionally, whether the current time meets the control time condition can be judged according to the control time condition preset by the target user; when the judgment result is yes, the operation of determining the information corresponding to the target user is performed. Specifically, the control time condition can be that the intelligent air conditioner is automatically controlled to start after 1 hour or when the intelligent air conditioner is in a working state, the wind temperature and wind speed of the intelligent air conditioner are automatically reduced at 18-19 o'clock, etc. This optional embodiment is not limited.
[0127] It can be seen that the optional embodiment can enrich the intelligent control mode of the intelligent air conditioner to realize the automatic control of the intelligent air conditioner, and at the same time, the accuracy of the time node of the step of determining the information corresponding to the target user can be improved to realize the rationalization and targeted control of the intelligent air conditioner, which is beneficial to meet the control demand of the user for the intelligent air conditioner and realize the intelligent regulation and control of the power consumption required by the intelligent air conditioner, so as to ensure that the power consumption required in the automatic control process of the intelligent air conditioner will not be too high.
[0128] Embodiment two
[0129] Please refer to Figure 3 , Figure 3 is a flowchart of an automatic adjustment method of an environmental parameter disclosed by an embodiment of the present application. Among them, Figure 3 The automatic adjustment method of the environmental parameter described can be applied to any one of the home scene, the working scene, the entertainment scene, etc. corresponding to the automatic control device of the intelligent air conditioner, and the embodiments of the present application are not limited. Optionally, the automatic control device of the intelligent air conditioner can include an air conditioner control system and / or a smart server, wherein the smart server includes a local server or a cloud server, etc. and the embodiments of the present application are not limited. As Figure 3 shown, the automatic adjustment method of the environmental parameter can include the following operations:
[0130] 301, determining information corresponding to a target user.
[0131] 302, determine the current activity state of the target user.
[0132] In the embodiments of the present application, optionally, the current activity state of the target user can be a working state, an entertainment state, a leisure state, a labor state, etc. of the target user. Specifically, the current activity state of the target user can be determined according to the user habit information of the target user, can also be determined according to the current body movement amplitude and / or the current physiological parameter (such as the body metabolism rate) of the target user, and can also be determined according to the user information received by the connected image device and / or voice device, such as that the voice device receives a high and heavy activity step frequency of the target user, and it can be determined that the current state of the target user is a movement state (running).
[0133] 303, input the current activity state of the target user and the information corresponding to the target user into the pre-determined environment comfort model for analysis, obtain the analysis result of the environment comfort model, and determine the analysis result as the comfort perception parameter of the target user.
[0134] In the embodiments of the present application, optionally, the comfort perception parameter of the target user includes the comfort perception temperature of the target user, and can also include the comfort perception humidity of the target user, the comfort perception air quality index of the target user (when the dust in the air is too much or the CO2 concentration is too high, the user can feel uncomfortable), etc. Specifically, inputting the current activity state of the target user and the information corresponding to the target user into the pre-determined environment comfort model for analysis can be understood as using the comfort model to simulate the user to judge the environmental comfort, so as to calculate the comfort perception parameter of the target user. Further optionally, the comfort perception parameter of the target user can also be determined according to the user information received by the voice.
[0135] 304, query the working parameter of the intelligent air conditioner.
[0136] In the embodiments of the present application, optionally, the working parameter of the intelligent air conditioner includes at least one of the outflow temperature, the outflow speed, the outflow direction, the outflow air volume and the outflow time length, and can also include the dehumidification mode, the cooling mode, the ventilation mode, the heating mode, the air supply mode, etc.
[0137] 305, generate the target control parameter corresponding to the intelligent air conditioner according to the distance value between the target user and the intelligent air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user and the working parameter of the intelligent air conditioner.
[0138] Optionally, the intelligent air conditioner can comprise a air supply system, a light system and / or a voice system. Further, the target control parameter corresponding to the intelligent air conditioner can be generated according to the distance value between the target user and the intelligent air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user and the working parameter of the intelligent air conditioner, which can comprise: generating the first sub-target parameter corresponding to the air supply system of the intelligent air conditioner and generating the second sub-target parameter corresponding to the light system of the intelligent air conditioner and / or the third sub-target parameter corresponding to the voice system of the intelligent air conditioner according to the distance value between the target user and the intelligent air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user and the working parameter of the intelligent air conditioner. For example, when the target user is 3m in front of the intelligent air conditioner, has a cooling demand and the working parameter of the intelligent air conditioner comprises a cooling mode, the first sub-target parameter corresponding to the air supply system of the intelligent air conditioner can be generated, such as high speed and 22℃, and the second sub-target parameter corresponding to the light system of the intelligent air conditioner can also be generated, such as the A light flickering frequency of 1 time per 3 seconds and the light color of blue to display that the working mode of the intelligent air conditioner is the cooling mode and the wind speed is high speed, and the light color of B light is red to display that the regional temperature of the target region is high; or the third sub-target parameter corresponding to the voice system of the intelligent air conditioner can be generated to inform the target user that the working mode of the intelligent air conditioner is the cooling mode, the wind speed is high speed and the current regional temperature of the target region is high.
[0139] 306. Perform the matched control operation on the intelligent air conditioner according to the target control parameter.
[0140] In the embodiment of the present application, other descriptions of steps 301 and 306 can refer to the detailed descriptions of steps 201 and 203 in embodiment one respectively, and the present embodiment will not be described again.
[0141] It can be seen that the embodiment of the present application can analyze the comfort perception parameter of the target user by combining the current activity state of the target user, the distance value between the target user and the intelligent air conditioner and the regional environment parameter, and can intelligently and accurately control the intelligent air conditioner by combining the comfort perception parameter of the target user and the information corresponding to the target user, so as to bring comfort to the user. On the other hand, the working state of the intelligent air conditioner and the regional parameter related to the user and the target region can be directly reminded to the user through the light system or the voice system of the intelligent air conditioner, so that the user can quickly obtain the required information, and the intelligent information transmission mode of the intelligent air conditioner is expanded.
[0142] In an optional embodiment, before the operation of generating the target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner, the region environment parameter of the target region, the comfort perception parameter of the target user, and the working parameter of the smart air conditioner in step 305, the method can further include:
[0143] calculating a first parameter difference value between the region environment parameter of the target region and the comfort perception parameter of the target user;
[0144] judging whether the first parameter difference value is less than a preset first parameter difference threshold value;
[0145] when it is judged that the first parameter difference value is less than the preset first parameter difference threshold value, obtaining the physiological parameter of the target user;
[0146] calculating a second parameter difference value between the current body temperature of the target user and the comfort perception temperature of the target user, and judging whether the second parameter difference value is greater than or equal to a preset second parameter difference threshold value;
[0147] when it is judged that the second parameter difference value is greater than or equal to the preset second parameter difference threshold value, performing the operation of generating the target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner, the region environment parameter of the target region, the comfort perception parameter of the target user, and the working parameter of the smart air conditioner.
[0148] In the optional embodiment, optionally, the physiological parameter of the target user includes the current body temperature of the target user, and can further include the current heartbeat, blood pressure, and respiratory rate of the target user. Further optionally, in the optional embodiment, the method can further include: when it is judged that the first parameter difference value is greater than or equal to the preset first parameter difference threshold value, directly performing the operation of generating the target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner, the region environment parameter of the target region, the comfort perception parameter of the target user, and the working parameter of the smart air conditioner.
[0149] Further, in the optional embodiment, the method can further include: when it is judged that the second parameter difference value is less than the preset second parameter difference threshold, the subsequent step can be executed without continuing to be executed, and the comfortable air supply control parameter can be generated, because the body surface temperature of the user is close to the comfortable temperature. For example, when the area temperature of the target area is too high (32 DEG C) and greater than or equal to the preset first parameter difference threshold (such as 1 DEG C), the target control parameter corresponding to the intelligent air conditioner can be generated directly according to the obtained parameter; when the area temperature of the target area is less than the preset first parameter difference threshold, whether the target control parameter corresponding to the intelligent air conditioner needs to be generated can be judged by the current body temperature of the target user, and when the current body temperature of the target user (such as 37.3 DEG C) is too high and greater than or equal to the preset second parameter difference threshold (such as 0.2 DEG C), it can be determined that the target control parameter corresponding to the intelligent air conditioner needs to be generated.
[0150] Further, in the optional embodiment, before the target control parameter corresponding to the intelligent air conditioner is generated according to the distance value between the target user and the intelligent air conditioner, the area environmental parameter of the target area, the comfort perception parameter of the target user and the working parameter of the intelligent air conditioner, the method can further include:
[0151] obtaining the current limb activity and / or current voice information of the target user, and judging whether the preset intelligent air conditioner control condition is met according to the current limb activity and / or current voice information of the target user;
[0152] When the judgment result is yes, the operation of generating the target control parameter corresponding to the intelligent air conditioner according to the distance value between the target user and the intelligent air conditioner, the area environmental parameter of the target area, the comfort perception parameter of the target user and the working parameter of the intelligent air conditioner is executed.
[0153] For example, when it is monitored that the target user uses his hand to fan himself to cool down or receives voice information indicating that the target user has cooling demand, it indicates that the target user has cooling demand, and at this time it can be determined that the target control parameter corresponding to the intelligent air conditioner needs to be generated.
[0154] It can be seen that the optional embodiment can comprehensively combine the parameters matched with the target user and the target area to more reasonably and targetedly judge whether the intelligent air conditioner needs to be controlled, and then more intelligently and accurately control the intelligent air conditioner, so as to improve the user experience of the intelligent air conditioner.
[0155] In another optional embodiment, after the second parameter difference value is judged to be greater than or equal to the preset second parameter difference threshold in the above-mentioned step, the method can further include:
[0156] determine an influence factor matching the current body temperature of the target user according to the acquired physiological parameter of the target user;
[0157] determine whether the influence factor is a preset influence factor;
[0158] analyze the current health state of the target user according to the physiological parameter of the target user when it is determined that the influence factor is not the preset influence factor;
[0159] determine whether the device function of the intelligent air conditioner causes negative influence on the current health state of the target user according to the current health state of the target user;
[0160] execute the operation of generating the target control parameter corresponding to the intelligent air conditioner according to the distance value between the target user and the intelligent air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user and the working parameter of the intelligent air conditioner when it is determined that the device function of the intelligent air conditioner does not cause negative influence on the current health state of the target user.
[0161] In the optional embodiment, the influence factor is a factor influencing the size of the current body temperature of the target user. Specifically, the preset influence factor can be understood as whether the current body temperature of the target user is high due to the historical activity state of the target user being too intense, or whether the current body temperature of the target user is high due to other smart devices (such as an electric hair dryer) or articles used by the target user. Meanwhile, when the health state of the target user is not healthy (such as the current body temperature of the target user being too high due to the target user having a fever), it can be determined that the influence factor is not the preset influence factor. Optionally, the device function of the intelligent air conditioner includes the cooling function and / or the heating function of the intelligent air conditioner. Further, in the optional embodiment, the method can further include: when it is determined that the device function of the intelligent air conditioner causes negative influence on the current health state of the target user, the subsequent steps can not be executed.
[0162] It can be seen that the optional embodiment combines the current health state of the target user to analyze whether the intelligent air conditioner needs to be controlled, which is conducive to realizing intelligent control of the intelligent air conditioner while reducing the probability of further causing negative influence on the health state of the target user, so as to more reasonably automatically control the intelligent air conditioner.
[0163] In yet another optional embodiment, the method can further include:
[0164] determine a negative influence degree corresponding to the negative influence when it is determined that the device function of the intelligent air conditioner causes negative influence on the current health state of the target user;
[0165] determine whether the absolute value of the negative influence degree is less than or equal to an influence degree threshold value;
[0166] When it is judged that the absolute value of the negative influence degree is less than or equal to the influence degree threshold value, an operation of generating the target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user, and the working parameter of the smart air conditioner is performed.
[0167] When it is judged that the absolute value of the negative influence degree is greater than the influence degree threshold value, the sensitive body part of the target user to the device function of the smart air conditioner is determined.
[0168] According to the sensitive body part, the comfort perception parameter of the target user is corrected to obtain the corrected comfort perception parameter of the target user, and an operation of generating the target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user, and the working parameter of the smart air conditioner is performed.
[0169] In the optional embodiment, the comfort perception parameter of the target user is the corrected comfort perception parameter of the target user. Specifically, the sensitive body part can be understood as a body part corresponding to the current health state of the target user which is negatively affected by the device function of the smart air conditioner. For example, when the target user has a fever, the head of the target user can be determined as the sensitive body part. At this time, the comfort perception parameter of the target user can be corrected according to the sensitive body part, so that the subsequent air outlet direction of the smart air conditioner will not be directly opposite to the head of the target user.
[0170] It can be seen that the optional embodiment not only meets the control demand of the user for the smart air conditioner when the current health state of the user is normal, but also guarantees that the current health state of the user will not be further negatively affected, which shows that the smart air conditioner is more accurately and reasonably controlled to create a more comfortable living environment for the user.
[0171] In still another optional embodiment, before the step of performing the matching control operation on the smart air conditioner according to the target control parameter in the above step 306, the method can further include:
[0172] Obtaining an article parameter of a target article in the target region;
[0173] Judging whether the article parameter of the target article meets a first correction condition corresponding to the target control parameter;
[0174] When the judgment result is yes, performing a first correction operation on the target control parameter according to the article parameter of the target article to obtain a first target control parameter after the first correction operation, and performing the step of performing the matching control operation on the smart air conditioner according to the target control parameter; the target control parameter is the first target control parameter.
[0175] In the optional embodiment, the article parameter of the target article includes at least one of a volume of the target article, a height of the target article, a type of the target article, and a placement of the target article. Specifically, determining whether the article parameter of the target article satisfies the first correction condition corresponding to the target control parameter can be understood as whether the target article will block the airflow generated by the smart air conditioner. For example, when a large wardrobe exists in the target area bedroom, it can be determined that the volume of the wardrobe satisfies the first correction condition corresponding to the target control parameter, so as to perform the first correction operation on the target control parameter according to the volume of the wardrobe, such as correcting the outlet angle parameter, the outlet size parameter, and the like. In this way, the smart air conditioner can be prevented from generating too much invalid airflow.
[0176] It can be seen that the optional embodiment can intelligently correct the target control parameter generated by the smart air conditioner according to the target article parameter of the target area, thereby improving the reliability and accuracy of the generated target control parameter, so as to realize precise control of the airflow generated by the smart air conditioner, thereby preventing the smart air conditioner from generating too much invalid airflow and consuming too much power.
[0177] In yet another optional embodiment, the step 306 of performing a matching control operation on the smart air conditioner according to the target control parameter can include:
[0178] controlling the air inlet of the smart air conditioner to suck air from the outside according to the wind speed control parameter and the outlet temperature control parameter, and controlling the heat exchanger of the smart air conditioner to convert the temperature of the air sucked by the air inlet of the smart air conditioner according to the outlet temperature control parameter, to obtain the temperature-converted air;
[0179] controlling the outlet matched with the target user according to the outlet opening size control parameter, the outlet opening direction control parameter, and the wind speed control parameter, and controlling the first air duct system of the smart air conditioner to deliver the temperature-converted air from the outlet matched with the target user to the air supply condition matched with the comfort perception parameter, the air supply condition including at least one of air supply temperature, air supply speed, air supply direction, and air supply time length.
[0180] In the optional embodiment, the target control parameter includes one or more of the wind speed control parameter, the outlet opening size control parameter, the outlet opening direction control parameter, and the outlet temperature control parameter. When cooling is needed, the outlet matched with the target user is the first outlet of the smart air conditioner, and when heating is needed, the outlet matched with the target user is the second outlet of the smart air conditioner, and the first outlet is located above the second outlet.
[0181] Optionally, in the optional embodiment, the air inlet can include an upper end air inlet and a lower end air inlet; and the control of the air inlet of the intelligent air conditioner to suck air from the outside according to the wind speed control parameter and the air outlet temperature control parameter can include: when cooling is needed, the lower end air inlet of the intelligent air conditioner is controlled to suck air from the outside according to the wind speed control parameter and the air outlet temperature control parameter; when heating is needed, the upper end air inlet of the intelligent air conditioner is controlled to suck air from the outside according to the wind speed control parameter and the air outlet temperature control parameter. In this way, by using the motion principle that cold air flows sink due to high air flow density and hot air flows rise due to low air flow density, when cooling is needed, a cold air flow circulation effect of "lower air inlet and upper air outlet" can be formed, and when heating is needed, a hot air flow circulation effect of "upper air inlet and lower air outlet" can be formed.
[0182] It can be seen that the optional embodiment can fully utilize the motion principle of air flow, form an air flow circulation effect when the intelligent air conditioner is controlled to cool or heat, quickly achieve the effect of cooling or heating, and can ensure that excessive power consumption is not caused during the control of the intelligent air conditioner, which is beneficial to environmental protection.
[0183] In yet another optional embodiment, the method can include:
[0184] determining whether the third air outlet of the intelligent air conditioner needs to be turned on, when it is determined that the third air outlet needs to be turned on, controlling the third air outlet of the intelligent air conditioner to be turned on, and controlling the second air duct system of the intelligent air conditioner to deliver the air volume after temperature conversion to the natural air outlet matrix module for distribution, so that the distributed air volume is delivered to the target area from the third air outlet of the intelligent air conditioner.
[0185] In the optional embodiment, the intelligent air conditioner further includes a third air outlet, a second air duct system, and a natural air outlet matrix module, wherein the third air outlet of the intelligent air conditioner is located between the first air outlet and the second air outlet, and the natural air outlet matrix module is located between the second air duct system of the intelligent air conditioner and the third air outlet of the intelligent air conditioner. Specifically, the cooling strength of the air delivered by the third air outlet of the intelligent air conditioner is lower than that of the air delivered by the first air outlet of the intelligent air conditioner, and the heating strength of the air delivered by the third air outlet of the intelligent air conditioner is lower than that of the air delivered by the second air outlet of the intelligent air conditioner.
[0186] Optionally, in the optional embodiment, determining whether the third air outlet of the intelligent air conditioner needs to be turned on can include:
[0187] monitoring real-time environmental parameters of the target area;
[0188] analyzing the change trend of the real-time environmental parameters of the target area, and determining whether the change trend is stable;
[0189] When it is judged that the change trend tends to be stable, it is judged whether a third parameter difference between the real-time environment parameter of the target area and the comfort perception parameter of the target user is less than a preset first parameter difference threshold value;
[0190] When it is judged that the third parameter difference is less than the preset first parameter difference threshold value, it is determined that the third air outlet of the intelligent air conditioner needs to be turned on.
[0191] For example, after rapid cooling by the air supply delivered by the first air outlet of the intelligent air conditioner, when the real-time environment parameter of the target area tends to be stable and the third parameter difference between the real-time environment parameter of the target area and the comfort perception parameter of the target user is less than the preset first parameter difference threshold value, the third air outlet of the intelligent air conditioner can be turned on, and the cooling intensity of the air supply delivered by the first air outlet of the intelligent air conditioner is reduced to reduce the power consumption required when the intelligent air conditioner works.
[0192] Further optionally, when the target user has a natural wind air supply demand, it can also be determined that the third air outlet of the intelligent air conditioner needs to be turned on.
[0193] It can be seen that the optional embodiment can intelligently control the intelligent air conditioner, enrich the working mode of the intelligent air conditioner, and create a comfortable environment for the user while reducing the power consumption required when the intelligent air conditioner is in a cooling or heating working state.
[0194] In yet another optional embodiment, the method can further include:
[0195] During the execution of the matching control operation on the intelligent air conditioner, the real-time information of the target user is monitored;
[0196] When the real-time information of the target user is monitored and the real-time information of the target user includes the user location of the target user, it is judged whether the target user is in the target area according to the user location of the target user;
[0197] When it is judged that the target user is not in the target area, the time length corresponding to the target user leaving the target area is calculated;
[0198] It is judged whether the time length is greater than or equal to a preset time length threshold value;
[0199] When it is judged that the time length is greater than or equal to the preset time length threshold value, a second correction operation is performed on the target control parameter to obtain a second target control parameter after the second correction operation, and the step of executing a matching control operation on the intelligent air conditioner according to the target control parameter is re-executed.
[0200] In the optional embodiment, optionally, the real-time information of the target user includes at least one of a real-time activity state of the target user, a real-time body temperature of the target user, and a user location of the target user. Specifically, the second correction operation on the target control parameter can be understood as adjusting the air supply of the first air outlet of the smart air conditioner or turning off the air conditioner during the refrigeration control operation on the smart air conditioner; or adjusting the air supply of the second air outlet of the smart air conditioner or turning off the air conditioner during the heating control operation on the smart air conditioner. For example, when the target user is not in the target area for a long time, it can be determined that the target user does not need to continue to control the smart air conditioner, at which time the air supply intensity can be reduced or the air conditioner can be turned off to reduce power consumption.
[0201] It can be seen that the optional embodiment can automatically adjust the air supply intensity of the smart air conditioner or turn off the smart air conditioner according to the length of time of leaving the target area, so as to reduce unnecessary power consumption of the smart air conditioner, thereby achieving an environmental protection effect.
[0202] In yet another optional embodiment, the method can further include:
[0203] monitoring the air flow condition corresponding to the target area during the matched control operation on the smart air conditioner;
[0204] when the air flow condition corresponding to the target area is a cold air flow condition, determining whether the cold air flow condition meets a third correction condition corresponding to the target control parameter;
[0205] when the determination result is yes, performing a third correction operation on the target control parameter according to the cold air flow condition, obtaining a third target control parameter after the third correction operation, and re-executing the step of performing a matched control operation on the smart air conditioner according to the target control parameter, so that the air inlet sucks the cold air volume matched with the third target control parameter and the first air outlet transports the air supply matched with the third target control parameter, the target control parameter being the third target control parameter;
[0206] when the air flow condition corresponding to the target area is a hot air flow condition, determining whether the hot air flow condition meets a fourth correction condition corresponding to the target control parameter;
[0207] when the determination result is yes, performing a fourth correction operation on the target control parameter according to the hot air flow condition, obtaining a fourth target control parameter after the fourth correction operation, and re-executing the step of performing a matched control operation on the smart air conditioner according to the target control parameter, so that the air inlet sucks the hot air volume matched with the fourth target control parameter and the second air outlet transports the air supply matched with the fourth target control parameter, the target control parameter being the fourth target control parameter.
[0208] In the optional embodiment, by monitoring the air flow condition, the generated cold / hot air flow is sucked by the air inlet and transported from the corresponding air outlet, so as to achieve the effect of air flow recycling. The air flow condition includes air flow accumulation volume and / or air flow accumulation density and / or air flow movement state.
[0209] It can be seen that the optional embodiment can suck and reuse the generated cold / hot air flow in combination with the monitored air flow condition, so as to shorten the time required for air flow heat exchange and reduce the power consumption required by the intelligent air conditioner when exchanging air flow, thereby expanding the intelligent air flow exchange and heat exchange mode of the intelligent air conditioner.
[0210] Embodiment three
[0211] Please refer to Figure 4 , Figure 4 is a structural schematic diagram of an automatic adjustment device for environmental parameters disclosed in an embodiment of the present application. As Figure 4 shown, the automatic adjustment device for environmental parameters can include:
[0212] A determination module 401 is configured to determine information corresponding to a target user.
[0213] A parameter generation module 402 is configured to generate a target control parameter corresponding to the intelligent air conditioner according to a distance value between the target user and the intelligent air conditioner and a regional environmental parameter of a target region.
[0214] A control module 403 is configured to perform a matching control operation on the intelligent air conditioner according to the target control parameter.
[0215] In the embodiment of the present application, the information corresponding to the target user includes the distance value between the target user and the intelligent air conditioner and the regional environmental parameter of the target region corresponding to the target user.
[0216] It can be seen that the automatic adjustment device for environmental parameters described in the embodiment Figure 4 can realize intelligent control of the intelligent air conditioner in combination with the information corresponding to the target user, without the need for the user to repeatedly control the intelligent air conditioner by manually adjusting the temperature and the mode. In this way, it is not only beneficial to improve the control efficiency of the intelligent air conditioner, thereby rapidly heating or cooling the target region, so that the user can quickly experience the cooling and heating effect of the intelligent air conditioner, but also beneficial to improve the precise regulation and control of the intelligent air conditioner, so as to accurately achieve the comfort required by the user, thereby improving the user stickiness of the target user to the intelligent air conditioner.
[0217] In an optional embodiment, the determination module 401 is further configured to determine a current activity state of the target user before the parameter generation module 402 generates the target control parameter corresponding to the intelligent air conditioner according to the distance value between the target user and the intelligent air conditioner and the regional environmental parameter of the target region.
[0218] And the device can further include:
[0219] The analysis module 404 is configured to input the current activity state of the target user and the information corresponding to the target user into the pre-determined environment comfort model for analysis to obtain an analysis result of the environment comfort model.
[0220] The determination module 401 is further configured to determine that the analysis result is the comfort perception parameter of the target user.
[0221] The query module 405 is configured to query the working parameter of the intelligent air conditioner.
[0222] The parameter generation module 402 generates the target control parameter corresponding to the intelligent air conditioner according to the distance value between the target user and the intelligent air conditioner and the regional environment parameter of the target region in the following manner:
[0223] The parameter generation module 402 generates the target control parameter corresponding to the intelligent air conditioner according to the distance value between the target user and the intelligent air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user, and the working parameter of the intelligent air conditioner.
[0224] In this optional embodiment, the comfort perception parameter of the target user includes the comfort perception temperature of the target user, and the working parameter of the intelligent air conditioner includes at least one of the air outlet temperature, the air outlet speed, the air outlet direction, the air outlet volume, and the air outlet duration.
[0225] It can be seen that the implementation Figure 5 The described automatic adjustment device of the environment parameter can on one hand analyze the comfort perception parameter of the target user in combination with the current activity state of the target user, the distance value between the target user and the intelligent air conditioner, and the regional environment parameter, and on the other hand intelligently and accurately control the intelligent air conditioner in combination with the comfort perception parameter of the target user and the information corresponding to the target user, so as to bring comfort to the user. The device can also directly remind the user of the working state of the intelligent air conditioner and the regional parameter related to the user and the target region through the light system or the voice system of the intelligent air conditioner, so that the user can quickly obtain the required information and expand the intelligent information transmission mode of the intelligent air conditioner.
[0226] In another optional embodiment, the device can further include:
[0227] The calculation module 406 is configured to calculate a first parameter difference value between the regional environment parameter of the target region and the comfort perception parameter of the target user before the parameter generation module 402 generates the target control parameter corresponding to the intelligent air conditioner according to the distance value between the target user and the intelligent air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user, and the working parameter of the intelligent air conditioner.
[0228] The judgment module 407 is used to determine whether the difference of the first parameter is less than a preset threshold value for the difference of the first parameter.
[0229] The first acquisition module 408 is used to acquire the physiological parameters of the target user when the judgment module 407 determines that the difference of the first parameter is less than the preset threshold of the difference of the first parameter.
[0230] The calculation module 406 is also used to calculate the difference of a second parameter between the target user's current body temperature and the target user's comfort-perceived temperature;
[0231] The judgment module 407 is also used to judge whether the difference of the second parameter is greater than or equal to the preset second parameter difference threshold; when it is judged that the difference of the second parameter is greater than or equal to the preset second parameter difference threshold, the parameter generation module 402 is triggered to perform the operation of generating target control parameters corresponding to the smart air conditioner based on the distance value between the target user and the smart air conditioner, the regional environmental parameters of the target area, the comfort perception parameters of the target user and the working parameters of the smart air conditioner.
[0232] In this optional embodiment, the target user's physiological parameters include the target user's current body temperature.
[0233] It is evident that implementation Figure 5 The described automatic adjustment device for environmental parameters can comprehensively combine parameters that match the target user and target area to more rationally and specifically determine whether the smart air conditioner needs to be controlled, thereby achieving more intelligent and precise control of the smart air conditioner and improving the user experience of the smart air conditioner.
[0234] In another optional embodiment, the determining module 401 is further configured to determine an influence factor that matches the current body temperature of the target user based on the obtained physiological parameters of the target user after the determining module 407 determines that the difference of the second parameter is greater than or equal to the preset second parameter difference threshold.
[0235] The judgment module 407 is also used to determine whether the impact factor is a preset impact factor;
[0236] The analysis module 404 is also used to analyze the current health status of the target user based on the target user's physiological parameters when the judgment module 407 determines that the influencing factor is not the preset influencing factor.
[0237] The determining module 407 is further configured to determine whether the device function of the smart air conditioner causes negative influence on the current health state of the target user according to the current health state of the target user, and trigger the parameter generation module 402 to generate the target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user, and the working parameter of the smart air conditioner when it is determined that the device function of the smart air conditioner does not cause negative influence on the current health state of the target user.
[0238] In the optional embodiment, the influence factor is a factor influencing the current body temperature of the target user, and the device function of the smart air conditioner includes the cooling function and / or the heating function of the smart air conditioner.
[0239] It can be seen that the implementation Figure 5 The automatic adjustment device of the described environment parameter combines the current health state of the target user to analyze whether the smart air conditioner needs to be controlled, which is conducive to realizing the intelligent control of the smart air conditioner while reducing the probability of further causing negative influence on the health state of the target user, so as to more reasonably and automatically control the smart air conditioner.
[0240] In yet another optional embodiment, the determining module 401 is further configured to determine a negative influence degree corresponding to the negative influence when the determining module 407 determines that the device function of the smart air conditioner causes negative influence on the current health state of the target user.
[0241] The determining module 407 is further configured to determine whether the absolute value of the negative influence degree is less than or equal to an influence degree threshold value, and trigger the parameter generation module 402 to generate the target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user, and the working parameter of the smart air conditioner when it is determined that the absolute value of the negative influence degree is less than or equal to the influence degree threshold value.
[0242] The determining module 401 is further configured to determine a sensitive body part of the target user corresponding to the device function of the smart air conditioner when the determining module 407 determines that the absolute value of the negative influence degree is greater than the influence degree threshold value.
[0243] The device can further include:
[0244] The parameter correction module 409 is configured to correct the comfort perception parameter of the target user according to the sensitive body part to obtain a corrected comfort perception parameter of the target user, and trigger the parameter generation module 402 to generate the target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user, and the working parameter of the smart air conditioner.
[0245] In the optional embodiment, the comfort perception parameter of the target user is a revised comfort perception parameter of the target user.
[0246] It can be seen that, by implementing the above method, the user's comfort perception parameter is adjusted according to the target control parameter, and the target control parameter is adjusted according to the target object parameter of the target region, so that the target control parameter is more accurate and reasonable, and the user's comfort perception is improved. Figure 5 The automatic adjustment device of the environmental parameter described not only meets the user's control demand for the smart air conditioner when the user's current health state is general, but also ensures that the user's current health state is not further negatively affected, which shows that the smart air conditioner is more accurately and reasonably controlled to create a more comfortable living environment for the user.
[0247] In yet another optional embodiment, the device can further include:
[0248] The second acquisition module 410 is configured to acquire an object parameter of a target object in the target region before the control module 403 performs a matching control operation on the smart air conditioner according to the target control parameter.
[0249] The judgment module 407 is further configured to judge whether the object parameter of the target object meets a first revision condition corresponding to the target control parameter.
[0250] The parameter revision module 409 is further configured to, when the judgment module 407 judges that the object parameter of the target object meets the first revision condition, perform a first revision operation on the target control parameter according to the object parameter of the target object to obtain a first target control parameter after the first revision operation, and trigger the control module 403 to perform a step of performing a matching control operation on the smart air conditioner according to the target control parameter.
[0251] In the optional embodiment, the object parameter of the target object includes at least one of a volume of the target object, a height of the target object, a type of the target object, and a placement of the target object; and the target control parameter is a first target control parameter.
[0252] It can be seen that, by implementing the above method, the user's comfort perception parameter is adjusted according to the target control parameter, and the target control parameter is adjusted according to the target object parameter of the target region, so that the target control parameter is more accurate and reasonable, and the user's comfort perception is improved. Figure 5 The automatic adjustment device of the environmental parameter described can intelligently revise the target control parameter generated by the smart air conditioner according to the target object parameter of the target region, thereby improving the reliability and accuracy of the generated target control parameter, and achieving accurate control of the air flow generated by the smart air conditioner to avoid the smart air conditioner from generating too much invalid air flow and consuming too much power.
[0253] In yet another optional embodiment, the control module 403 performs a matching control operation on the smart air conditioner according to the target control parameter in the following manner:
[0254] According to the wind speed control parameter and the air outlet temperature control parameter of the air outlet, the air inlet of the intelligent air conditioner is controlled to suck air from the outside, and according to the air outlet temperature control parameter, the heat exchanger of the intelligent air conditioner is controlled to convert the temperature of the air sucked by the air inlet of the intelligent air conditioner, to obtain air after temperature conversion.
[0255] According to the air outlet opening size control parameter, the air outlet opening direction control parameter, and the wind speed control parameter, the air outlet matched with the target user is controlled, and the first air duct system of the intelligent air conditioner is controlled to deliver the air after temperature conversion from the air outlet matched with the target user to the air supply condition matched with the comfort perception parameter.
[0256] In the optional embodiment, the target control parameter includes one or more of the wind speed control parameter, the air outlet opening size control parameter, the air outlet opening direction control parameter, and the air outlet temperature control parameter; the air supply condition includes at least one of air supply temperature, air supply wind speed, air supply direction, and air supply duration; and when cooling is needed, the air outlet matched with the target user is the first air outlet of the intelligent air conditioner, and when heating is needed, the air outlet matched with the target user is the second air outlet of the intelligent air conditioner, and the first air outlet is located above the second air outlet.
[0257] It can be seen that the implementation Figure 5 The automatic adjustment device of the described environmental parameter can fully utilize the principle of air flow movement, form an air flow circulation effect when the intelligent air conditioner is controlled to cool or heat, quickly achieve the cooling or heating effect, and can ensure that excessive power consumption is not caused during the control of the intelligent air conditioner, which is conducive to environmental protection.
[0258] In yet another optional embodiment, the judgment module 407 is further configured to:
[0259] Judge whether the third air outlet of the intelligent air conditioner needs to be turned on;
[0260] The control module 403 is further configured to, when the judgment module 407 judges that the third air outlet needs to be turned on, control the third air outlet of the intelligent air conditioner to be turned on, and control the second air duct system of the intelligent air conditioner to deliver the air after temperature conversion to the natural air outlet matrix module for distribution, so that the air after distribution is delivered to the target area from the third air outlet of the intelligent air conditioner.
[0261] In the optional embodiment, the intelligent air conditioner further includes a third air outlet, a second air duct system, and a natural air outlet matrix module, wherein the third air outlet of the intelligent air conditioner is located between the first air outlet and the second air outlet, and the natural air outlet matrix module is located between the second air duct system of the intelligent air conditioner and the third air outlet of the intelligent air conditioner.
[0262] It can be seen that the implementation Figure 5The automatic adjusting device of the described environment parameter can intelligently control the intelligent air conditioner, enrich the working mode of the intelligent air conditioner, and reduce the power consumption of the intelligent air conditioner in the cooling or heating working state while creating a comfortable environment for the user.
[0263] Embodiment four
[0264] Please refer to Figure 6 , Figure 6 is another structural schematic view of the automatic adjusting device of the environment parameter according to an embodiment of the present application. As shown in the figure, the automatic adjusting device of the environment parameter can include: Figure 6
[0265] a memory 501 storing executable program codes;
[0266] a processor 502 coupled with the memory 501;
[0267] The processor 502 invokes the executable program codes stored in the memory 501 to execute the steps in the automatic adjusting method of the environment parameter described in the embodiment one or the embodiment two of the present application.
[0268] Embodiment five
[0269] The embodiment of the present application discloses a computer storage medium, which stores computer instructions, and the computer instructions are used to execute the steps in the automatic adjusting method of the environment parameter described in the embodiment one or the embodiment two of the present application when being invoked.
[0270] Embodiment six
[0271] The embodiment of the present application discloses a computer program product, which includes a non-transitory computer readable storage medium storing a computer program, and the computer program is operable to make a computer execute the steps in the automatic adjusting method of the environment parameter described in the embodiment one or the embodiment two.
[0272] The above-described device embodiments are only schematic, wherein the modules described as separate components can or can not be physically separate, and the components displayed as modules can or can not be physical modules, i.e., can be located in one place, or can be distributed on multiple network modules. Some or all of the modules can be selected according to actual needs to achieve the purpose of the present embodiment scheme. Those skilled in the art can understand and implement without creative labor.
[0273] Those skilled in the art can clearly understand the implementation of the various embodiments by means of software and necessary general hardware platforms through the above specific description of the embodiments, and of course, the embodiments can also be implemented by hardware. Based on such understanding, the above technical solutions, essentially or in other words, the part of the prior art that makes a contribution, can be embodied in the form of a software product. The computer software product can be stored in a computer readable storage medium, and the storage medium includes a read-only memory (ROM), a random access memory (RAM), a programmable read-only memory (PROM), an erasable programmable read-only memory (EPROM), a one-time programmable read-only memory (OTPROM), an electrically erasable programmable read-only memory (EEPROM), a compact disc read-only memory (CD-ROM) or other optical disk storage, a magnetic disk storage, a magnetic tape storage, or any other computer readable medium that can be used to carry or store data.
[0274] Finally, it should be noted that: the automatic adjustment method and device for environmental parameters disclosed by the embodiments of the present application are only the preferred embodiments of the present application, and are used to illustrate the technical solutions of the present application, but not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that: the technical solutions recorded in the foregoing embodiments can still be modified, or some technical features can be replaced by equivalents; and these modifications or replacements do not make the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A method for automatic adjustment of an environmental parameter, characterized in that The method comprises: determining information corresponding to a target user; the information corresponding to the target user comprises a distance value between the target user and an intelligent air conditioner and a regional environment parameter of a target region corresponding to the target user; determining a comfort perception parameter of the target user and querying an operating parameter of the intelligent air conditioner, and calculating a first parameter difference value between the regional environment parameter of the target region and the comfort perception parameter of the target user; judging whether the first parameter difference value is less than a preset first parameter difference threshold value; when it is judged that the first parameter difference value is less than the preset first parameter difference threshold value, acquiring a physiological parameter of the target user; the physiological parameter of the target user comprises a current body temperature of the target user; calculating a second parameter difference value between the current body temperature of the target user and a comfort perception temperature of the target user, and judging whether the second parameter difference value is greater than or equal to a preset second parameter difference threshold value; when it is judged that the second parameter difference value is greater than or equal to the preset second parameter difference threshold value, determining an influence factor matched with the current body temperature of the target user according to the physiological parameter; the influence factor is a factor influencing the size of the current body temperature of the target user; judging whether the influence factor is a preset influence factor; when it is judged that the influence factor is not the preset influence factor, analyzing a current health status of the target user according to the physiological parameter of the target user; judging whether a device function of the intelligent air conditioner causes a negative influence on the current health status of the target user according to the current health status of the target user; the device function of the intelligent air conditioner comprises a refrigeration function and / or a heating function of the intelligent air conditioner; when it is judged that the device function of the intelligent air conditioner does not cause a negative influence on the current health status of the target user, generating a target control parameter corresponding to the intelligent air conditioner according to the distance value between the target user and the intelligent air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user and the operating parameter of the intelligent air conditioner; performing a matched control operation on the intelligent air conditioner according to the target control parameter.
2. The method of automatic adjustment of environmental parameters according to claim 1, characterized in that, The determination of the comfort perception parameter of the target user and the querying of the operating parameter of the intelligent air conditioner comprise: determining a current activity state of the target user; inputting the current activity state of the target user and the information corresponding to the target user into a pre-determined environmental comfort model for analysis to obtain an analysis result of the environmental comfort model, and determining the analysis result as the comfort perception parameter of the target user; the comfort perception parameter of the target user comprises a comfort perception temperature of the target user; querying the operating parameter of the intelligent air conditioner; the operating parameter of the intelligent air conditioner comprises at least one of an air outlet temperature, an air outlet speed, an air outlet direction, an air outlet volume and an air outlet time length.
3. Method for automatic adjustment of an environmental parameter according to claim 1 or 2, characterized in that, The method further comprises: when it is judged that the device function of the intelligent air conditioner causes a negative influence on the current health status of the target user, determining a negative influence degree corresponding to the negative influence. determining whether the absolute value of the negative influence degree is less than or equal to an influence degree threshold value; when it is determined that the absolute value of the negative influence degree is less than or equal to the influence degree threshold value, performing the operation of generating the target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user, and the working parameter of the smart air conditioner; when it is determined that the absolute value of the negative influence degree is greater than the influence degree threshold value, determining the sensitive body part of the target user corresponding to the device function of the smart air conditioner; according to the sensitive body part, correcting the comfort perception parameter of the target user to obtain the corrected comfort perception parameter of the target user, and performing the operation of generating the target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner, the regional environment parameter of the target region, the comfort perception parameter of the target user, and the working parameter of the smart air conditioner; the comfort perception parameter of the target user is the corrected comfort perception parameter of the target user.
4. Method for automatic adjustment of an environmental parameter according to claim 1 or 2, characterized in that, Before the operation of performing the matching control operation on the smart air conditioner according to the target control parameter, the method further comprises: obtaining the article parameter of the target article in the target region; the article parameter of the target article comprises at least one of the volume of the target article, the height of the target article, the type of the target article, and the placement of the target article; determining whether the article parameter of the target article satisfies a first correction condition corresponding to the target control parameter; when the determination result is yes, performing a first correction operation on the target control parameter according to the article parameter of the target article to obtain a first target control parameter after the first correction operation, and performing the operation of performing the matching control operation on the smart air conditioner according to the target control parameter; the target control parameter is the first target control parameter.
5. Method for automatic adjustment of environmental parameters according to claim 4, characterized in that, The target control parameter comprises one or more of a wind speed control parameter, a wind port opening size control parameter, a wind port opening direction control parameter, and a wind port outlet temperature control parameter; wherein, the operation of performing the matching control operation on the smart air conditioner according to the target control parameter comprises: controlling the air inlet of the smart air conditioner to suck air from the outside according to the wind speed control parameter and the wind port outlet temperature control parameter, and controlling the heat exchanger of the smart air conditioner to convert the temperature of the air sucked by the air inlet of the smart air conditioner according to the outlet temperature control parameter to obtain the air after temperature conversion; controlling the air outlet matched with the target user according to the wind port opening size control parameter, the wind port opening direction control parameter, and the wind speed control parameter, and controlling the first air duct system of the smart air conditioner to transport the air after temperature conversion from the air outlet matched with the target user to the air supply condition matched with the comfort perception parameter, the air supply condition comprising at least one of air supply temperature, air supply wind speed, air supply direction, and air supply time length. When cooling is needed, the air outlet matched with the target user is the first air outlet of the smart air conditioner, and when heating is needed, the air outlet matched with the target user is the second air outlet of the smart air conditioner, and the first air outlet is located above the second air outlet; The smart air conditioner further comprises a third air outlet, a second air duct system and a natural wind air outlet matrix module, wherein the third air outlet of the smart air conditioner is located between the first air outlet and the second air outlet, the natural wind air outlet matrix module is located between the second air duct system of the smart air conditioner and the third air outlet of the smart air conditioner, and the method further comprises: determining whether the third air outlet of the smart air conditioner needs to be opened, when it is determined that the third air outlet needs to be opened, controlling the third air outlet of the smart air conditioner to be opened, and controlling the second air duct system of the smart air conditioner to deliver the air volume converted in temperature into the natural wind air outlet matrix module for distribution, so that the air volume after distribution is delivered from the third air outlet of the smart air conditioner to the target area.
6. An automatic adjustment device for an environmental parameter, characterized in that The device is used to execute the automatic adjustment method of the environmental parameter according to any one of claims 1-5, and the device comprises: a determination module for determining information corresponding to a target user; the information corresponding to the target user comprises a distance value between the target user and the smart air conditioner and a regional environmental parameter of a target region corresponding to the target user; a parameter generation module for generating a target control parameter corresponding to the smart air conditioner according to the distance value between the target user and the smart air conditioner and the regional environmental parameter of the target region; a control module for performing a matched control operation on the smart air conditioner according to the target control parameter.
7. An automatic adjustment device for an environmental parameter, characterized in that The device comprises: a memory storing executable program codes; a processor coupled with the memory; the processor invokes the executable program codes stored in the memory to execute the automatic adjustment method of the environmental parameter according to any one of claims 1-5.
8. A computer storage medium, characterized in that The computer storage medium stores computer instructions, and the computer instructions are used to execute the automatic adjustment method of the environmental parameter according to any one of claims 1-5 when invoked. The computer storage medium stores computer instructions, and the computer instructions are used to execute the automatic adjustment method of the environmental parameter according to any one of claims 1-5 when invoked.
Citation Information
Patent Citations
Running control method and device, air-conditioner and computer readable storage medium
CN109945429A