Method and device for controlling air conditioner in combination with associated device

By combining the control of air conditioners with the linkage of related devices, the control parameters of the smart air conditioner are generated using the regional information collected by the related devices. This solves the problem of low control accuracy of smart air conditioners, achieves higher control accuracy and convenience, and improves the user experience and the intelligent functions of smart air conditioners.

CN116772371BActive Publication Date: 2026-03-27GUANGZHOU LINKAGE ALL THINGS TECH CO LTD
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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

Technical Problem

Existing smart air conditioner control methods rely on remote controls, resulting in low control accuracy.

Method used

By combining the method of controlling the air conditioner with the linkage of related devices, the system obtains regional information collected by related devices in the current scene, analyzes user information and environmental information, and generates control parameters for the smart air conditioner to achieve precise control.

Benefits of technology

It improves the control accuracy and convenience of smart air conditioners, enables real-time and targeted operation, creates a comfortable living and working environment, expands the intelligent functions of smart air conditioners, and enhances user experience and stickiness.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a method and device for controlling an air conditioner in combination with associated devices, and the method comprises the following steps: acquiring area information collected by associated devices in a current scene; analyzing the area information to obtain information of a user in a current area; determining target environmental parameters according to state information and environmental information included in the area information; and generating control parameters of an intelligent air conditioner according to the target environmental parameters and position information, so as to control the intelligent air conditioner to perform an operation. It can be seen that the application can improve the generation accuracy and reliability of the control parameters of the intelligent air conditioner, thereby improving the control accuracy and control convenience of the intelligent air conditioner, and further facilitating the real-time control and purposeful operation of the intelligent air conditioner, so as to create a comfortable living and working environment for users. In addition, when the steps described in the embodiments of the application are executed by the intelligent air conditioner, the application can also expand the intelligent function of the intelligent air conditioner, not only can improve the user experience, but also can improve the user stickiness of using the intelligent air conditioner.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of intelligent devices, and in particular to a method and device for controlling an air conditioner in combination with associated devices. BACKGROUND

[0002] With the development of artificial intelligence technology and the improvement of people's living standards, the use of traditional air conditioners has become very common, and the functions of air conditioners are becoming more and more intelligent and humanized. However, in actual application, the existing intelligent air conditioner control mode is still mostly realized through a remote controller, such as adjusting the operation mode of the air conditioner through the remote controller, selecting the control function of the air conditioner through the remote controller, and the existing intelligent air conditioner control mode can cause the problem of low control accuracy. Therefore, it is particularly important to provide an intelligent air conditioner control mode that improves control accuracy. SUMMARY

[0003] The technical problem to be solved by the present application is to provide a method and device for controlling an air conditioner in combination with associated devices, which can improve the control accuracy of an intelligent air conditioner.

[0004] To solve the above technical problem, the present application discloses a method for controlling an air conditioner in combination with associated devices, which comprises:

[0005] obtaining region information of a current region collected by associated devices in a current scene;

[0006] analyzing the region information of the current region to obtain information of a user in the current region; the information of the user at least includes position information of a position where the user is located in the current region and state information of the user in the current region;

[0007] determining a target environmental parameter required by the user in the current region according to the state information of the user in the current region and environmental information included in the determined region information;

[0008] generating a control parameter of an intelligent air conditioner corresponding to the current region according to the target environmental parameter and the position information of the position where the user is located in the current region, the control parameter of the intelligent air conditioner being used to control the intelligent air conditioner to perform a matching operation.

[0009] As an optional implementation, in the first aspect of the present application, the region information of the current region at least includes user sensing information of a user in the current region and device information of a target device in the current region, and the target device is a device being used by the user in the current region;

[0010] and the analyzing the region information of the current region to obtain the information of the user in the current region comprises:

[0011] based on the unit map corresponding to the current region, the user sensor information included in the region information is analyzed to obtain the position information of the position where the user is located in the current region;

[0012] According to the device information of the target device in the current region, the state information of the user in the current region is determined;

[0013] And the method further comprises:

[0014] According to the user sensor information included in the region information, it is judged whether the user in the current region is in a non-stationary state in the corresponding region of the position where the user is located;

[0015] When it is judged that the user in the current region is in a non-stationary state in the corresponding region of the position where the user is located, the motion information of the user in the current region is determined according to the user sensor information included in the region information and the device running information of the target device, and the motion information of the user in the current region includes at least one of the motion amplitude of the user in the current region, the motion frequency of the user in the current region, the motion trajectory of the user in the current region and the motion speed of the user in the current region;

[0016] According to the motion information of the user in the current region, the behavior type of the user in the current region is determined, and the activity state of the user in the current region is determined, and the state information of the user in the current region is determined;

[0017] When it is judged that the user in the current region is not in a non-stationary state in the corresponding region of the position where the user is located, the operation of determining the state information of the user in the current region according to the device information of the target device in the current region is executed;

[0018] Among them, according to the device information of the target device in the current region, the state information of the user in the current region is determined, including:

[0019] According to the image information included in the user sensor information, the behavior posture condition of the user in the current region in the position where the user is located is determined, and based on the unit map corresponding to the current region constructed in advance, the duration of the user in the current region staying in the corresponding region of the position where the user is located is monitored;

[0020] According to the function information of the corresponding region of the position where the user is located in the current region, the behavior posture condition of the user in the current region in the position where the user is located and the duration, the state information of the user in the current region in the corresponding region of the position where the user is located is determined; The state information includes at least one of state type, state activity intensity and behavior type.

[0021] As an optional implementation, in the first aspect of the present application, the analysis of the user sensing information included in the region information based on the unit map corresponding to the current region constructed in advance comprises:

[0022] According to the user sensing information included in the region information, the predicted position of the user in the current region is determined based on the unit map corresponding to the current region constructed in advance.

[0023] When the number of the determined predicted positions is equal to 1, the predicted position is determined as the position of the user in the current region, and the position information of the position of the user in the current region is determined.

[0024] When the number of the determined predicted positions is greater than 1, the position information corresponding to each of the predicted positions is obtained, and the position information of the position of the user in the current region is determined based on the position information corresponding to all the predicted positions.

[0025] When the number of the determined predicted positions is greater than 1, the position information of the position of the user in the current region is determined based on the position information corresponding to all the predicted positions.

[0026] According to the position information corresponding to all the predicted positions, the position points of each of the predicted positions in the unit map corresponding to the current region constructed in advance are determined, and the number of the position points corresponding to all the position points is determined.

[0027] When the number of the position points is 2, a straight line path corresponding to all the position points is determined, and when the path distance corresponding to the straight line path satisfies the pre-set path distance condition, the position information corresponding to the straight line path is determined as the position information of the position of the user in the current region.

[0028] When the number of the position points is greater than 2, a target region corresponding to all the position points is determined, and when the area of the target region satisfies the pre-set position area condition, the position information corresponding to the target region is determined as the position information of the position of the user in the current region.

[0029] As an optional implementation, in the first aspect of the present application, the generation of the control parameter of the intelligent air conditioner corresponding to the current region according to the target environment parameter and the position information of the position of the user in the current region comprises:

[0030] According to the position information of the user in the current region and the pre-determined position of the intelligent air conditioner, the distance value between the position of the user in the current region and the position of the intelligent air conditioner is determined.

[0031] determine an air-out mode of the intelligent air conditioner according to the distance value and the target environment parameter; the target environment parameter comprises an environment temperature parameter and / or an environment humidity parameter; the air-out mode of the intelligent air conditioner comprises one or more of a temperature air-out mode, an air volume air-out mode, an air direction air-out mode and an air speed air-out mode;

[0032] generate a control parameter of the intelligent air conditioner corresponding to the current area according to the air-out mode of the intelligent air conditioner;

[0033] wherein the determining the air-out mode of the intelligent air conditioner according to the distance value and the target environment parameter comprises:

[0034] determine a user quantity of users in the current area according to the area information of the current area collected;

[0035] determine the air-out mode of the intelligent air conditioner according to the user quantity of users in the current area, the distance value and the target environment parameter.

[0036] As an optional implementation, in the first aspect of the present application, the determining the air-out mode of the intelligent air conditioner according to the user quantity of users in the current area, the distance value and the target environment parameter comprises:

[0037] when the user quantity of users in the current area is greater than a pre-set user quantity threshold, analyze a user distribution density of the current area according to the position information of each of the users in the current area, and determine whether the user distribution density is greater than or equal to a pre-set user distribution density threshold; the user quantity threshold is greater than or equal to 1;

[0038] when it is determined that the user distribution density is greater than or equal to the user distribution density threshold, determine the air-out mode of the intelligent air conditioner according to the distance value and the target environment parameter; wherein when the user state of the users in the current area is used to indicate that the users in the current area are in an active state, the air-out mode of the intelligent air conditioner is a first air-out mode, and when the user state of the users in the current area is used to indicate that the users in the current area are in a fixed state, the air-out mode of the intelligent air conditioner is a second air-out mode, and the air-out frequency and air-out air volume corresponding to the first air-out mode are higher than the air-out frequency and air-out air volume corresponding to the second air-out mode;

[0039] when it is determined that the user distribution density is less than the user distribution density threshold, determine the user state of the users in the current area according to the position information of each of the users in the current area;

[0040] Based on the user status of users in the current area, the location of users in the current area is determined; wherein, when the user status of users in the current area indicates that users in the current area are in an active state, the location of users in the current area includes the location of the user farthest from the location of the smart air conditioner and the location of the user closest to the location of the smart air conditioner; when the user status of users in the current area indicates that users in the current area are in a fixed state, the location of users in the current area includes the location of the user farthest from the location of the smart air conditioner.

[0041] The air outlet mode of the smart air conditioner is determined based on the distance value corresponding to the user's location in the current area.

[0042] As an optional implementation, in the first aspect of the present invention, the method further includes:

[0043] Based on the regional information of the current region, including the ambient temperature information of the current region, determine the temperature change of the current region;

[0044] When the temperature change of the current area is used to indicate that the ambient temperature of the current area increases by a first preset temperature value, the temperature of the current area after the temperature increase is determined according to the temperature change of the current area, and the air outlet mode of the smart air conditioner is adjusted according to the temperature of the current area after the temperature increase.

[0045] Based on the adjusted air outlet mode of the smart air conditioner, the air outlet mode of the smart device is updated, and based on the updated air outlet mode of the smart device, the control parameters of the smart air conditioner are updated.

[0046] As an optional implementation, in the first aspect of the present invention, the method further includes:

[0047] Based on the ambient temperature information of the current area, including the area information of the current area, it is detected whether the current temperature of the current area has risen to a second preset temperature value. When the detection result is yes, the operation of determining the air outlet mode of the smart air conditioner based on the number of users in the current area, the distance value, and the target environmental parameters is executed; and / or,

[0048] The system monitors the continuous operating time of the smart air conditioner. When the continuous operating time reaches the preset operating time of the smart air conditioner, it performs the operation of determining the air outlet mode of the smart air conditioner based on the number of users in the current area, the distance value, and the target environmental parameters.

[0049] As an optional implementation, in the first aspect of the present application, the method further comprises:

[0050] According to the control parameters of the intelligent air conditioner, the intelligent air conditioner is controlled to perform a matching operation, wherein the control parameters of the intelligent air conditioner include one or more of the air volume control parameter of the intelligent air conditioner, the temperature control parameter of the intelligent air conditioner, the wind direction control parameter of the intelligent air conditioner, and the wind speed control parameter of the intelligent air conditioner;

[0051] According to the control parameters of the intelligent air conditioner, the intelligent air conditioner is controlled to perform a matching operation, wherein the control parameters of the intelligent air conditioner include one or more of the air volume control parameter of the intelligent air conditioner, the temperature control parameter of the intelligent air conditioner, the wind direction control parameter of the intelligent air conditioner, and the wind speed control parameter of the intelligent air conditioner;

[0052] According to the air volume control parameter of the intelligent air conditioner and the temperature control parameter of the intelligent air conditioner, the air inlet of the intelligent air conditioner is controlled to suck air from the outside, pass through the heat exchanger of the intelligent air conditioner to obtain heat-exchanged air, the first air flow controller of the intelligent air conditioner is controlled to suck the heat-exchanged air to flow through the first air duct, the auxiliary heating module of the intelligent air conditioner is controlled to suck the air flowing through the first air duct to obtain temperature-converted air, the second air flow controller of the intelligent air conditioner is controlled to suck the temperature-converted air into the air inlet cavity of the second air flow controller, and the temperature-converted air is controlled to pass through the second air flow controller and blow out from the first air outlet matched with the user of the current area;

[0053] According to the air volume control parameter of the intelligent air conditioner and the temperature control parameter of the intelligent air conditioner, the first air inlet of the intelligent air conditioner is controlled to suck air from the outside, pass through the heat exchanger of the intelligent air conditioner to obtain heat-exchanged air, the first air flow controller of the intelligent air conditioner and the second air flow controller of the intelligent air conditioner are controlled to suck the heat-exchanged air, and the air in the first air flow controller of the intelligent air conditioner is controlled to flow through the first air duct, the air inlet cavity of the second air flow controller of the intelligent air conditioner sucks part of the air in the first air flow controller of the intelligent air conditioner passing through the auxiliary heating device, and the other part of the air in the first air flow controller of the intelligent air conditioner is controlled to be combined with the air of the second air flow controller of the intelligent air conditioner, and the combined air blows out from the first air outlet;

[0054] According to the air volume control parameter of the intelligent air conditioner and the temperature control parameter of the intelligent air conditioner, the first air inlet of the intelligent air conditioner is controlled to suck air from the outside, pass through the heat exchanger of the intelligent air conditioner to obtain heat-exchanged air, the first air flow controller of the intelligent air conditioner and the second air flow controller of the intelligent air conditioner are controlled to suck the heat-exchanged air, and the air in the first air flow controller of the intelligent air conditioner is controlled to flow through the first air duct, the air inlet cavity of the second air flow controller of the intelligent air conditioner sucks part of the air in the first air flow controller of the intelligent air conditioner passing through the auxiliary heating device, and the other part of the air in the first air flow controller of the intelligent air conditioner is controlled to be combined with the air of the second air flow controller of the intelligent air conditioner, and the combined air blows out from the first air outlet;

[0055] determining whether to adjust the lifting height of the lifting plate of the intelligent air conditioner, when it is determined to start, controlling the lifting plate of the intelligent air conditioner to lift upwards, so that the second air duct of the intelligent air conditioner sucks the airflow flowing from the air inlet of the intelligent air conditioner, and controlling the natural wind function module of the intelligent air conditioner to suck the airflow and perform configuration operation to obtain the configured airflow, and controlling the natural wind function module to blow out the configured airflow from the second air outlet of the intelligent air conditioner between the second airflow controller of the intelligent air conditioner and the natural wind function module of the intelligent air conditioner.

[0056] The second aspect of the present application discloses a device for controlling an air conditioner in combination with an associated device, comprising:

[0057] An acquisition module is configured to acquire region information of a current region collected by an associated device in a current scene.

[0058] An analysis module is configured to analyze the region information of the current region to obtain information of a user in the current region, wherein the information of the user at least includes position information of a position where the user is located in the current region and state information of the user in the current region.

[0059] A determination module is configured to determine a target environmental parameter required by the user in the current region according to the state information of the user in the current region and environmental information included in the region information.

[0060] A parameter generation module is configured to generate a control parameter of an intelligent air conditioner corresponding to the current region according to the target environmental parameter and the position information of the position where the user is located in the current region, wherein the control parameter of the intelligent air conditioner is used to control the intelligent air conditioner to perform a matching operation.

[0061] As an optional implementation, in the second aspect of the present application, the region information of the current region at least includes user sensing information of a user in the current region and device information of a target device in the current region, and the target device is a device being used by the user in the current region.

[0062] In addition, the analysis module analyzes the region information of the current region to obtain the information of the user in the current region in the following manner:

[0063] Based on a unit map corresponding to the current region constructed in advance, the user sensing information included in the region information is analyzed to obtain the position information of the position where the user is located in the current region.

[0064] According to the device information of the target device in the current region, the state information of the user in the current region is determined.

[0065] And the device further comprises:

[0066] A judging module, configured to judge whether the user in the current region is in a non-stationary state in the region corresponding to the location of the user according to the user sensing information included in the region information; and trigger the analysis module to perform the operation of determining the state information of the user in the current region according to the device information of the target device in the current region when it is judged that the user in the current region is not in a non-stationary state in the region corresponding to the location of the user.

[0067] The determining module is further configured to determine the motion information of the user in the current region according to the user sensing information included in the region information and the device running information of the target device when the judging module judges that the user in the current region is in a non-stationary state in the region corresponding to the location of the user, wherein the motion information of the user in the current region includes at least one of the motion amplitude of the user in the current region, the motion frequency of the user in the current region, the motion trajectory of the user in the current region and the motion speed of the user in the current region.

[0068] The determining module is further configured to determine the behavior type of the user in the current region according to the motion information of the user in the current region, and determine the activity state of the user in the current region as the state information of the user in the current region.

[0069] The analysis module determines the state information of the user in the current region according to the device information of the target device in the current region in the following manner:

[0070] determine the behavior posture condition of the user in the current region in the location according to the image information included in the user sensing information, and monitor the duration of the user in the current region staying in the region corresponding to the location based on the unit map corresponding to the current region constructed in advance.

[0071] determine the state information of the user in the current region in the region corresponding to the location according to the function information of the region corresponding to the location of the user in the current region, the behavior posture condition of the user in the current region in the location and the duration, wherein the state information includes at least one of the state type, the state activity intensity and the behavior type.

[0072] As an optional implementation, in the second aspect of the present application, the analysis module analyzes the user sensing information included in the region information based on the unit map corresponding to the current region constructed in advance in the following manner:

[0073] determining, according to user sensing information included in the region information, a predicted position of the user in the current region in the current region based on a unit map corresponding to the current region constructed in advance;

[0074] when the number of the predicted positions determined is equal to 1, determining the predicted position as the position of the user in the current region, and determining position information of the position of the user in the current region;

[0075] when the number of the predicted positions determined is greater than 1, obtaining position information corresponding to each of the predicted positions, and determining position information of the position of the user in the current region based on the position information corresponding to all the predicted positions;

[0076] when the number of the predicted positions determined is greater than 1, the analysis module determines the position information of the position of the user in the current region based on the position information corresponding to all the predicted positions in the following manner:

[0077] determining, according to the position information corresponding to all the predicted positions, a position point of each of the predicted positions in the unit map corresponding to the current region constructed in advance, and determining a number of position points corresponding to all the position points;

[0078] when the number of the position points is 2, determining a straight line path corresponding to all the position points, and when a path distance corresponding to the straight line path satisfies a pre-set path distance condition, determining position information corresponding to the straight line path as the position information of the position of the user in the current region;

[0079] when the number of the position points is greater than 2, determining a target region corresponding to all the position points, and when a region area of the target region satisfies a pre-set position region area condition, determining position information corresponding to the target region as the position information of the position of the user in the current region.

[0080] As an optional implementation, in the second aspect of the present application, the parameter generation module generates the control parameter of the intelligent air conditioner corresponding to the current region in the following manner according to the target environment parameter and the position information of the position of the user in the current region:

[0081] determining a distance value between the position of the user in the current region and a position of the intelligent air conditioner according to the position information of the user in the current region and the pre-determined position of the intelligent air conditioner;

[0082] determine an air-out mode of the intelligent air conditioner according to the distance value and the target environment parameter; the target environment parameter comprises an environment temperature parameter and / or an environment humidity parameter; the air-out mode of the intelligent air conditioner comprises one or more of a temperature air-out mode, an air volume air-out mode, an air direction air-out mode and an air speed air-out mode;

[0083] generate a control parameter of the intelligent air conditioner corresponding to the current area according to the air-out mode of the intelligent air conditioner;

[0084] The parameter generation module determines the air-out mode of the intelligent air conditioner according to the distance value and the target environment parameter.

[0085] determine a user quantity of users in the current area according to the area information of the current area collected;

[0086] determine the air-out mode of the intelligent air conditioner according to the user quantity of users in the current area, the distance value and the target environment parameter.

[0087] As an optional implementation, in the second aspect of the application, the parameter generation module determines the air-out mode of the intelligent air conditioner according to the user quantity of users in the current area, the distance value and the target environment parameter.

[0088] when the user quantity of users in the current area is greater than a pre-set user quantity threshold, analyze a user distribution density of the current area according to the position information of each of the users in the current area, and determine whether the user distribution density is greater than or equal to a pre-set user distribution density threshold; the user quantity threshold is greater than or equal to 1;

[0089] when it is determined that the user distribution density is greater than or equal to the user distribution density threshold, determine the air-out mode of the intelligent air conditioner according to the distance value and the target environment parameter; when the user state of the users in the current area is used to indicate that the users in the current area are in an active state, the air-out mode of the intelligent air conditioner is a first air-out mode, and when the user state of the users in the current area is used to indicate that the users in the current area are in a fixed state, the air-out mode of the intelligent air conditioner is a second air-out mode, and the air-out frequency and air-out air volume corresponding to the first air-out mode are higher than the air-out frequency and air-out air volume corresponding to the second air-out mode;

[0090] when it is determined that the user distribution density is less than the user distribution density threshold, determine the user state of the users in the current area according to the position information of each of the users in the current area.

[0091] determine a position of the user in the current area according to the user state of the user in the current area; wherein when the user state of the user in the current area indicates that the user in the current area is in an active state, the position of the user in the current area comprises a position corresponding to the user farthest from the position of the smart air conditioner and a position corresponding to the user closest to the position of the smart air conditioner, and when the user state of the user in the current area indicates that the user in the current area is in a fixed state, the position of the user in the current area comprises a position corresponding to the user farthest from the position of the smart air conditioner;

[0092] determine the air outlet mode of the smart air conditioner according to the distance value corresponding to the position of the user in the current area.

[0093] As an optional implementation, in the second aspect of the present application, the determining module is further configured to determine a temperature change of the current area according to the environmental temperature information of the current area included in the area information of the current area.

[0094] The determining module is further configured to determine a temperature after temperature rise of the current area according to the temperature change of the current area when the temperature change of the current area indicates that the environmental temperature of the current area rises by a first preset temperature value.

[0095] The device further comprises:

[0096] an adjusting module configured to adjust the air outlet mode of the smart air conditioner according to the temperature after temperature rise of the current area.

[0097] an updating module configured to update the air outlet mode of the smart device based on the adjusted air outlet mode of the smart air conditioner, and update the control parameter of the smart air conditioner based on the updated air outlet mode of the smart device.

[0098] As an optional implementation, in the second aspect of the present application, the device further comprises:

[0099] a detecting module configured to detect whether the current temperature of the current area rises to a second preset temperature value according to the environmental temperature information of the current area included in the area information of the current area, and trigger the parameter generating module to perform the operation of determining the air outlet mode of the smart air conditioner according to the user quantity of the user in the current area, the distance value and the target environmental parameter when the detection result is yes; and / or,

[0100] The detection module is configured to monitor a continuous working time length of the intelligent air conditioner, and trigger the parameter generation module to perform the operation of determining the air outlet mode of the intelligent air conditioner according to the user quantity of the user in the current region, the distance value and the target environment parameter when the continuous working time length reaches a preset working preset time length of the intelligent air conditioner.

[0101] As an optional implementation, in the second aspect of the present application, the device can further include:

[0102] The control module is configured to control the intelligent air conditioner to perform a matched operation according to a control parameter of the intelligent air conditioner, wherein the control parameter of the intelligent air conditioner includes one or more of a wind volume control parameter of the intelligent air conditioner, a temperature control parameter of the intelligent air conditioner, a wind direction control parameter of the intelligent air conditioner and a wind speed control parameter of the intelligent air conditioner.

[0103] The control module controls the intelligent air conditioner to perform a matched operation according to the control parameter of the intelligent air conditioner in a manner including:

[0104] According to the wind volume control parameter of the intelligent air conditioner and the temperature control parameter of the intelligent air conditioner, the control module controls the air inlet of the intelligent air conditioner to suck air from the outside, pass the air through the heat exchanger of the intelligent air conditioner to obtain heat-exchanged air, controls the first air flow controller of the intelligent air conditioner to suck the heat-exchanged air to flow through the first air duct, controls the auxiliary heating module of the intelligent air conditioner to suck the air flowing through the first air duct to obtain temperature-converted air, controls the second air flow controller of the intelligent air conditioner to suck the temperature-converted air into the air inlet cavity of the second air flow controller, controls the temperature-converted air to pass through the second air flow controller and blow out from the first air outlet matched with the user in the current region.

[0105] According to the wind volume control parameter of the intelligent air conditioner and the temperature control parameter of the intelligent air conditioner, the control module controls the first air inlet of the intelligent air conditioner to suck air from the outside, pass the air through the heat exchanger of the intelligent air conditioner to obtain heat-exchanged air, controls the first air flow controller and the second air flow controller of the intelligent air conditioner to suck the heat-exchanged air, controls the air in the first air flow controller of the intelligent air conditioner to flow through the first air duct, the air inlet cavity of the second air flow controller of the intelligent air conditioner sucks part of the air in the first air flow controller of the intelligent air conditioner passing through the auxiliary heating device, controls another part of the air in the first air flow controller of the intelligent air conditioner to combine with the air of the second air flow controller of the intelligent air conditioner, and the combined air blows out from the first air outlet.

[0106] The size of the air flow into the second air flow controller of the intelligent air conditioner is determined according to the lifting height of the lifting plate of the intelligent air conditioner, and the method further comprises:

[0107] It is judged whether the lifting height of the lifting plate of the intelligent air conditioner needs to be adjusted, when it is judged that the lifting plate needs to be opened, the lifting plate of the intelligent air conditioner is controlled to be lifted upward, so that the second air duct of the intelligent air conditioner sucks the air flow flowing from the air inlet of the intelligent air conditioner, and the natural wind function module of the intelligent air conditioner sucks the air flow and performs configuration operation to obtain the configured air flow, the natural wind function module is controlled to blow out the configured air flow from the second air outlet of the intelligent air conditioner, and the second air outlet of the intelligent air conditioner is located between the second air flow controller of the intelligent air conditioner and the natural wind function module of the intelligent air conditioner.

[0108] The third aspect of the present application discloses another device for controlling an air conditioner in combination with an associated device, the device comprising:

[0109] A memory storing executable program codes;

[0110] A processor coupled with the memory;

[0111] The processor calls the executable program codes stored in the memory to execute the method for controlling an air conditioner in combination with an associated device disclosed in the first aspect of the present application.

[0112] The fourth aspect of the present application discloses a computer storage medium, the computer storage medium stores computer instructions, when the computer instructions are called, the computer instructions are used to execute the method for controlling an air conditioner in combination with an associated device disclosed in the first aspect of the present application.

[0113] Compared with the prior art, the embodiments of the present application have the following beneficial effects:

[0114] In the embodiment of the present application, the region information of the current region collected by the associated device in the current scene is acquired; the region information of the current region is analyzed to obtain the information of the user in the current region; the information of the user at least includes the position information of the position where the user is located in the current region and the state information of the user in the current region; the target environment parameter required by the user in the current region is determined according to the state information of the user in the current region and the environmental information included in the determined region information; and the control parameter of the intelligent air conditioner corresponding to the current region is generated according to the target environment parameter and the position information of the position where the user is located in the current region, and the control parameter of the intelligent air conditioner is used to control the intelligent air conditioner to perform the matched operation. It can be seen that, by implementing the present application, the target environment parameter required by the user in the current region can be intelligently determined according to the region information collected by the associated device, and then the control parameter of the intelligent air conditioner is generated according to the target environment parameter, which can improve the generation accuracy and reliability of the control parameter of the intelligent air conditioner, thereby being beneficial to improving the control accuracy and control convenience of the intelligent air conditioner, and further being beneficial to realizing the real-time control and purposeful operation of the intelligent air conditioner, and creating a comfortable living and working environment for the user. In addition, when the steps described in the embodiment of the present application are executed by the intelligent air conditioner, the intelligent function of the intelligent air conditioner can be expanded, which not only can improve the user experience, but also can improve the user stickiness of using the intelligent air conditioner. BRIEF DESCRIPTION OF DRAWINGS

[0115] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creating labor.

[0116] Figure 1 is a scene schematic diagram of a scene to which a method of controlling an air conditioner in combination with an associated device disclosed by an embodiment of the present application is applied;

[0117] Figure 2 is a flowchart of a method of controlling an air conditioner in combination with an associated device disclosed by an embodiment of the present application;

[0118] Figure 3 is a flowchart of another method of controlling an air conditioner in combination with an associated device disclosed by an embodiment of the present application;

[0119] Figure 4 is a structural schematic diagram of a device of controlling an air conditioner in combination with an associated device disclosed by an embodiment of the present application;

[0120] Figure 5 is a structural schematic diagram of another device of controlling an air conditioner in combination with an associated device disclosed by an embodiment of the present application;

[0121] Figure 6 is another structure diagram of the device for controlling the air conditioner in linkage with the associated device according to an embodiment of the present application. DETAILED DESCRIPTION

[0122] In order to enable persons skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by persons skilled in the art without creative work fall within the scope of protection of the present application.

[0123] The terms "first", "second", and the like in the specification and claims of the present application and the above-described drawings are used to distinguish different objects, rather than to describe a particular order. In addition, the terms "include" 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.

[0124] 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.

[0125] The present application discloses a method and device for controlling an air conditioner in linkage with an associated device, which can intelligently determine the target environment parameters required by users in the current area according to the area information collected by the associated device, and then generate control parameters for the intelligent air conditioner according to the target environment parameters, thereby improving the generation accuracy and reliability of the control parameters of the intelligent air conditioner, and thus being conducive to improving the control accuracy and control convenience of the intelligent air conditioner, and further being conducive to realizing real-time control and purposeful operation of the intelligent air conditioner, and creating a comfortable living and working environment for users. In addition, when the steps described in the embodiments of the present application are executed by the intelligent air conditioner, the present application can also expand the intelligent function of the intelligent air conditioner, not only improving the user experience, but also improving the user stickiness of using the intelligent air conditioner. The following will be described in detail.

[0126] In order to better understand the method and device for controlling an air conditioner in combination with associated devices described in the present application, first, the scene architecture applicable to the method for controlling an air conditioner in combination with associated devices is described. Specifically, the scene architecture can be as shown in Figure 1 The scene applicable to the method for controlling an air conditioner in combination with associated devices can include multiple smart devices, such as a smart air conditioner, smart slippers, a smart sweeper, a smart television, and a smart temperature instrument. According to the area information collected by the multiple smart devices, the target environment parameters required by a user in the current area are determined, and the control parameters of the smart air conditioner are generated to control the smart air conditioner to perform a matching operation. For example, when the smart television is playing a fitness program, the smart sweeper captures that the user is in an active state, the smart temperature instrument displays that the temperature in the current area is rising, and the smart slippers detect that the user's own body data shows that the user is in an active state, it can be inferred that the user in the current area is in a motion state. Therefore, the control parameters for controlling the smart air conditioner to lower the temperature and increase the wind speed are generated according to the situation that the user is in a motion state, so as to control the smart air conditioner to adjust the air outlet mode. For another example, when the smart television is not playing, the smart slippers are not worn, and the smart sweeper captures that the user is lying on the sofa in a sleeping posture, it can be inferred that the user in the current area is in a sleep state. The corresponding control parameters are generated to control the smart air conditioner to adaptively increase the temperature and direct the air away from the user.

[0127] It should be noted that Figure 1 The scene diagram shown is only to represent the scene applicable to the method for controlling an air conditioner in combination with associated devices. The various smart devices involved are only illustrative. The specific structure / size / shape / position / installed manner, and the communication manner between the various smart devices can be adaptively adjusted according to the actual scene. Figure 1 The scene shown is not limited in this regard.

[0128] Embodiment One

[0129] Please refer to Figure 2 , Figure 2 is a flowchart of the method for controlling an air conditioner in combination with associated devices disclosed in an embodiment of the present application. Wherein Figure 2 The method for controlling an air conditioner in combination with associated devices described can be applied to a device for controlling an air conditioner in combination with associated devices. The present embodiment is not limited. As shown in Figure 2 The method for controlling an air conditioner in combination with associated devices includes the following operations:

[0130] 101. Obtain the area information of the current area collected by the associated devices in the current scene.

[0131] Optionally, in the embodiment of the present application, the associated device can be an associated sensor or an associated device provided with a sensor, and the embodiment of the present application is not limited.

[0132] Optionally, in the embodiment of the present application, the region information can include, but is not limited to, one or more of information related to a user in the current region, information related to a device in the current region, and information related to an environment of the current region, and the embodiment of the present application is not limited.

[0133] 102, analyze the region information of the current region to obtain information of the user in the current region; the information of the user at least includes position information of a position where the user is located in the current region and state information of the user in the current region.

[0134] 103, determine a target environment parameter required by the user in the current region according to the state information of the user in the current region and the environment information included in the determined region information.

[0135] Optionally, in the embodiment of the present application, the environment information included in the region information can include, but is not limited to, one or more of environment temperature information, environment dryness information, environment humidity information, environment air density information, environment air quality information, environment ultraviolet index information, environment apparent temperature information, and environment wind direction and wind force information, and the embodiment of the present application is not limited.

[0136] Optionally, in the embodiment of the present application, the specific environment information corresponding to the target environment parameter can refer to, but is not limited to, the specific information content corresponding to the environment information included in the above-mentioned region information, and the embodiment of the present application is not limited.

[0137] 104, generate a control parameter of an intelligent air conditioner corresponding to the current region according to the target environment parameter and the position information of the position where the user is located in the current region, and the control parameter of the intelligent air conditioner is used to control the intelligent air conditioner to perform a matched operation.

[0138] Optionally, in the embodiment of the present application, the position information of the position where the user is located in the current region can include, but is not limited to, one or more of a specific position of the user in the current region, information of a region corresponding to the position where the user is located, position information of other users in the region corresponding to the position where the user is located, position information of devices in the region corresponding to the position where the user is located, position change information of the user in the region corresponding to the position where the user is located, and position change information of other users in the region corresponding to the position where the user is located, and the embodiment of the present application is not limited.

[0139] Optionally, the specific environment control content corresponding to the control parameter of the intelligent air conditioner can include, but is not limited to, one or more of the following: controlling the environment temperature, controlling the environment dryness, controlling the environment humidity, controlling the environment air density, controlling the environment air quality, controlling the environment apparent temperature, and controlling the environment wind direction and wind power.

[0140] It can be seen that the method for controlling the air conditioner in combination with the associated equipment described in the embodiments of the present application can intelligently determine the target environment parameter required by the user in the current region according to the region information collected by the associated equipment, and then generate the control parameter of the intelligent air conditioner according to the target environment parameter, thereby improving the generation accuracy and reliability of the control parameter of the intelligent air conditioner, and thus being beneficial to improving the control accuracy and control convenience of the intelligent air conditioner, and further being beneficial to realizing the real-time control and purposeful operation of the intelligent air conditioner, and creating a comfortable living and working environment for the user. In addition, when the steps described in the embodiments of the present application are executed by the intelligent air conditioner, the present application can also expand the intelligent function of the intelligent air conditioner, not only improving the user experience, but also improving the user stickiness of using the intelligent air conditioner.

[0141] In an optional embodiment, the generation of the control parameter of the intelligent air conditioner corresponding to the current region according to the target environment parameter and the position information of the user's position in the current region can include:

[0142] determining a distance value between the user's position in the current region and the position of the intelligent air conditioner according to the position information of the user in the current region and the pre-determined position of the intelligent air conditioner;

[0143] determining the air outlet mode of the intelligent air conditioner according to the distance value and the target environment parameter; the target environment parameter includes an environment temperature parameter and / or an environment humidity parameter; the air outlet mode of the intelligent air conditioner includes one or more of the following: a temperature air outlet mode, a wind volume air outlet mode, a wind direction air outlet mode, and a wind speed air outlet mode;

[0144] generating the control parameter of the intelligent air conditioner corresponding to the current region according to the air outlet mode of the intelligent air conditioner.

[0145] Optionally, in the optional embodiment, the position of the intelligent air conditioner can include, but is not limited to, one or more of the following: the installation position of the intelligent air conditioner, the position of the intelligent air conditioner body relative to the horizontal ground, any position point of the intelligent air conditioner body, and the position of the intelligent air conditioner body relative to the vertical wall, etc., and the embodiments of the present application are not limited thereto.

[0146] In the above optional embodiment, further optionally, the determination of the air outlet mode of the intelligent air conditioner according to the distance value and the target environment parameter can include:

[0147] According to the collected regional information of the current region, the number of users in the current region is determined;

[0148] According to the number of users in the current region, the distance value and the target environment parameter, the air outlet mode of the intelligent air conditioner is determined.

[0149] In the optional embodiment, for determining the air outlet mode of the intelligent air conditioner according to the number of users in the current region, the distance value and the target environment parameter, for example, under the condition of the same distance value, when the number of users indicates that there are many people in the current region, the air outlet volume and the air outlet frequency corresponding to the air outlet mode of the intelligent air conditioner are higher than those when the number of users indicates that there are few people in the current region, and for another example, when the room temperature of the current region is higher than 15 degrees Celsius, the air outlet direction corresponding to the air outlet mode of the intelligent air conditioner should avoid the users in the current region, when the room temperature of the current region is lower than 15 degrees Celsius, and when the distance value is lower than 1 m, the air outlet direction and the air outlet volume corresponding to the air outlet mode of the intelligent air conditioner should be hot air direct blowing, and when the distance value is higher than 1 m, the air outlet direction and the air outlet volume corresponding to the air outlet mode of the intelligent air conditioner should be hot air and the air outlet direction should avoid the users in the current region. The configuration relationship of the number of users, the distance value, the target environment parameter and the air outlet mode can also have other functional settings, which are not limited by the embodiments of the present application.

[0150] It can be seen that the optional embodiment can determine the matching air outlet mode of the intelligent air conditioner according to the distance value of the user and the intelligent air conditioner and the target environment parameter of the current region, which is beneficial to improve the rationality and accuracy of the determined air outlet mode, and is beneficial to improve the control flexibility and operation effectiveness of the intelligent air conditioner, and the air outlet mode changes with the distance value in combination with the target environment parameter, which can improve the comfort of the users in the region where the intelligent air conditioner is located, thereby not only improving the use experience of the users using the intelligent air conditioner, but also improving the user stickiness of the intelligent air conditioner; and the air outlet mode of the intelligent air conditioner can be determined according to the number of users, the distance value and the target environment parameter, which is determined and adjusted in combination with more aspects of intelligentization, increases the consideration factors of determining the air outlet mode, is beneficial to improve the rationality and accuracy of the determined air outlet mode, and is further beneficial to make the determined air outlet mode meet the comfort requirements of the users, so as to improve the use experience of the users using the intelligent air conditioner.

[0151] In another optional embodiment, the above determining the air outlet mode of the intelligent air conditioner according to the number of users in the current region, the distance value and the target environment parameter can include:

[0152] When the number of users in the current region is greater than a preset user number threshold, the user distribution density of the current region is analyzed according to the position information of each user in the current region, and it is determined whether the user distribution density is greater than or equal to a preset user distribution density threshold; the user number threshold is greater than or equal to 1;

[0153] When it is determined that the user distribution density is greater than or equal to the user distribution density threshold, the air outlet mode of the intelligent air conditioner is determined according to the distance value and the target environment parameter; when the user state of the user in the current region is used to indicate that the user in the current region is in an active state, the air outlet mode of the intelligent air conditioner is a first air outlet mode, and when the user state of the user in the current region is used to indicate that the user in the current region is in a fixed state, the air outlet mode of the intelligent air conditioner is a second air outlet mode, and the air outlet frequency and the air outlet volume corresponding to the first air outlet mode are higher than the air outlet frequency and the air outlet volume corresponding to the second air outlet mode;

[0154] When it is determined that the user distribution density is less than the user distribution density threshold, the user state of the user in the current region is determined according to the position information of each user in the current region;

[0155] The position of the user in the current region is determined according to the user state of the user in the current region; when the user state of the user in the current region is used to indicate that the user in the current region is in an active state, the position of the user in the current region includes the position corresponding to the user farthest from the position of the intelligent air conditioner and the position corresponding to the user closest to the position of the intelligent air conditioner, and when the user state of the user in the current region is used to indicate that the user in the current region is in a fixed state, the position of the user in the current region includes the position corresponding to the user farthest from the position of the intelligent air conditioner;

[0156] The air outlet mode of the intelligent air conditioner is determined according to the distance value corresponding to the position of the user in the current region.

[0157] In the optional embodiment, optionally, the fixed state can be understood as no position change, for example, sitting on a sofa, lying on a bed, standing in place, etc. can be understood as being in a fixed state. It should be noted that the fixed state can also include other behavior states, and the embodiments of the present application are not limited.

[0158] In the optional embodiment, for determining the air-out mode according to the user distribution density, the user state and the distance value, for example, when the user distribution density in the current area is less than the user distribution density threshold value, if the user state of the user in the current area is used to indicate that the user in the current area is in the active state, the air-out mode of the intelligent air conditioner is to perform high-frequency high-air-volume air-out on the user in the current area including the user farthest from the location of the intelligent air conditioner, and to perform low-frequency low-air-volume air-out on the user in the current area including the user closest to the location of the intelligent air conditioner. If the user state of the user in the current area is used to indicate that the user in the current area is in the fixed state, the air-out mode of the intelligent air conditioner is to perform high-frequency high-air-volume air-out on the user in the current area including the user farthest from the location of the intelligent air conditioner. It should be noted that, for determining the air-out mode according to the user distribution density, the user state and the distance value, there can be other configurations, and the embodiments of the present application are not limited.

[0159] In the optional embodiment, further optionally, the method can further include the following operations:

[0160] When the user state of the user in the current area is used to indicate that the user in the current area is in the active state, the distance determination duration is monitored to determine whether the distance determination duration is greater than or equal to a pre-set distance determination duration threshold value; the distance determination duration is the duration from the time point of determining the position information of the user in the current area last time to the current time point;

[0161] When it is determined that the distance determination duration is greater than or equal to the distance determination duration threshold value, the operation of determining the position information of the user in the current area is performed, and based on the latest determined position information of the user in the current area, the operation of determining the air-out mode of the intelligent air conditioner according to the distance value and the target environment parameter is performed;

[0162] When it is determined that the distance determination duration is less than the distance determination duration threshold value, the operation of monitoring the distance determination duration is performed.

[0163] It can be seen that the optional embodiment can provide different air outlet mode determination manners according to the size comparison relationship between the number of users and the user number threshold and the size comparison relationship between the user distribution density and the user distribution density threshold, to determine a matched air outlet mode, enrich the diversity of the air outlet mode determination manner, and improve the flexibility of the air outlet mode determination manner, thereby improving the rationality and effectiveness of the determined air outlet mode, thereby improving the accuracy of the determined air outlet mode, and facilitating the expansion of the intelligent function of the intelligent air conditioner to improve the control rationality and operation effectiveness of the intelligent air conditioner; and when the user state indicates that the user is in an active state, the position information of the user in the current area is detected and determined again every preset time period, which is beneficial to improve the real-time and accuracy of the determined position information of the user, thereby facilitating the improvement of the accuracy and effectiveness of the determined distance value, thereby improving the effectiveness and accuracy of the determined air outlet mode.

[0164] In yet another optional embodiment, the method can further include the following operations:

[0165] According to the ambient temperature information of the current area included in the area information of the current area, determine the temperature change of the current area;

[0166] When the temperature change of the current area indicates that the ambient temperature of the current area increases by a first preset temperature value, according to the temperature change of the current area, determine the temperature of the current area after the temperature is increased, and according to the temperature of the current area after the temperature is increased, adjust the air outlet mode of the intelligent air conditioner;

[0167] Based on the adjusted air outlet mode of the intelligent air conditioner, update the air outlet mode of the smart device, and based on the updated air outlet mode of the smart device, update the control parameters of the intelligent air conditioner.

[0168] In the optional embodiment, optionally, for adjusting the air outlet mode when the ambient temperature of the current area increases by a first preset temperature value, it can be that the air outlet mode is adjusted as long as the ambient temperature of the current area increases by a first preset temperature value is detected, or the air outlet mode is adjusted when the ambient temperature of the current area increases by a first preset temperature value is detected within a set time range, and the embodiments of the application are not limited.

[0169] It can be seen that the optional embodiment can adjust the air outlet mode of the intelligent air conditioner in real time according to the temperature change of the current area, and then update and adjust the control parameters of the intelligent air conditioner in real time, which is beneficial to improve the adjustment efficiency of the air outlet mode and the control real-time, thereby facilitating the improvement of the accuracy and effectiveness of the determined air outlet mode, thereby improving the control real-time and control rationality of the intelligent air conditioner, and also expanding the intelligent function of the intelligent air conditioner to improve the user experience.

[0170] In yet another optional embodiment, the method can further include the following operations:

[0171] The area information of the current area includes the ambient temperature information of the current area, the current temperature of the current area is detected whether to rise to a second preset temperature value, when the detection result is yes, the operation of determining the air outlet mode of the smart air conditioner according to the user quantity, the distance value and the target environment parameter of the user in the current area is executed; and / or,

[0172] The continuous working duration of the smart air conditioner is monitored, and when the continuous working duration reaches a preset working preset duration of the smart air conditioner, the operation of determining the air outlet mode of the smart air conditioner according to the user quantity, the distance value and the target environment parameter of the user in the current area is executed.

[0173] In the optional embodiment, optionally, the current temperature of the current area is specifically the current temperature of the nearby area of the user in the current area. Optionally, the second preset temperature value can be set to any value according to the actual environment, such as setting the second preset temperature value to 37 degrees Celsius, and the embodiment of the application is not limited. Optionally, the continuous working duration can be set to any value according to the actual environment and the air conditioner, and the number of the application is not limited.

[0174] It can be seen that the optional embodiment can determine whether the air outlet mode of the smart air conditioner needs to be adjusted according to the current temperature or the continuous working duration of the smart air conditioner, which enriches the diversity of the operation mode of triggering the adjustment and determination of the air outlet mode, improves the flexibility and execution rationality of the operation of adjusting and determining the air outlet mode, and further helps to improve the timeliness of the adjustment of the air outlet mode, thereby improving the control timeliness and operation effectiveness of the smart air conditioner.

[0175] In yet another optional embodiment, the method can further include the following operations:

[0176] According to the control parameter of the smart air conditioner, the smart air conditioner is controlled to execute a matched operation, wherein the control parameter of the smart air conditioner includes one or more of the air volume control parameter of the smart air conditioner, the temperature control parameter of the smart air conditioner, the wind direction control parameter of the smart air conditioner and the wind speed control parameter of the smart air conditioner.

[0177] In the above optional embodiment, further optionally, the above operation of controlling the smart air conditioner to execute a matched operation according to the control parameter of the smart air conditioner can include:

[0178] According to the air volume control parameter of the intelligent air conditioner and the temperature control parameter of the intelligent air conditioner, the air inlet of the intelligent air conditioner is controlled to suck air from the outside, the air passes through the heat exchanger of the intelligent air conditioner to obtain heat-exchanged air, the first air flow controller of the intelligent air conditioner is controlled to suck the heat-exchanged air, the air in the first air flow controller of the intelligent air conditioner flows through the first air duct, the air inlet cavity of the second air flow controller of the intelligent air conditioner sucks part of the air in the first air flow controller of the intelligent air conditioner that passes through the auxiliary heating device, another part of the air in the first air flow controller of the intelligent air conditioner is combined with the air of the second air flow controller of the intelligent air conditioner, and the combined air is blown out from the first air outlet.

[0179] According to the air volume control parameter of the intelligent air conditioner and the temperature control parameter of the intelligent air conditioner, the first air inlet of the intelligent air conditioner is controlled to suck air from the outside, the air passes through the heat exchanger of the intelligent air conditioner to obtain heat-exchanged air, the first air flow controller of the intelligent air conditioner and the second air flow controller of the intelligent air conditioner are controlled to suck the heat-exchanged air, the air in the first air flow controller of the intelligent air conditioner flows through the first air duct, the air inlet cavity of the second air flow controller of the intelligent air conditioner sucks part of the air in the first air flow controller of the intelligent air conditioner that passes through the auxiliary heating device, another part of the air in the first air flow controller of the intelligent air conditioner is combined with the air of the second air flow controller of the intelligent air conditioner, and the combined air is blown out from the first air outlet.

[0180] The size of the air entering the second air flow controller of the intelligent air conditioner is determined according to the lifting height of the lifting plate of the intelligent air conditioner, and the method further comprises:

[0181] It is judged whether the lifting height of the lifting plate of the intelligent air conditioner needs to be adjusted, when it is judged that the lifting plate needs to be opened, the lifting plate of the intelligent air conditioner is controlled to be lifted upwards, so that the second air duct of the intelligent air conditioner sucks the air flowing from the air inlet of the intelligent air conditioner, the natural wind function module of the intelligent air conditioner sucks the air and performs configuration operation to obtain configured air, and the natural wind function module blows the configured air from the second air outlet of the intelligent air conditioner, which is located between the second air flow controller of the intelligent air conditioner and the natural wind function module of the intelligent air conditioner.

[0182] It can be seen that the optional embodiment can realize switching adjustment of the heating air duct of the intelligent air conditioner, accelerate temperature rise and fall, meet the demand of the user for direct blowing of hot air, reduce the waiting time of the user, and improve the use experience of the user.

[0183] Embodiment two

[0184] Please refer to Figure 3 , Figure 3 is another flowchart of the method for controlling the air conditioner in combination with the associated equipment disclosed in the embodiment of the application. Wherein, Figure 3The method for controlling the air conditioner in linkage with the associated device can be applied to the device for controlling the air conditioner in linkage with the associated device, and embodiments of the present application are not limited. As shown in Figure 3 The method for controlling the air conditioner in linkage with the associated device includes the following operations:

[0185] 201, acquiring the region information of the current region collected by the associated device in the current scene.

[0186] 202, based on the unit map corresponding to the current region constructed in advance, analyzing the user sensing information included in the region information to obtain the position information of the position of the user in the current region; and determining the state information of the user in the current region according to the device information of the target device in the current region.

[0187] In the embodiments of the present application, optionally, the region information of the current region at least includes the user sensing information of the user in the current region and the device information of the target device in the current region, and the target device is the device being used by the user in the current region.

[0188] In the embodiments of the present application, optionally, the user sensing information of the user in the current region can include but is not limited to one or more of user image information, user WIFI signal information, ray signal information and 3D structured light signal sensor, and embodiments of the present application are not limited.

[0189] 203, determining the target environment parameter required by the user in the current region according to the state information of the user in the current region and the environmental information included in the determined region information;

[0190] 204, generating the control parameter of the intelligent air conditioner corresponding to the current region according to the target environment parameter and the position information of the position of the user in the current region, and the control parameter of the intelligent air conditioner is used to control the intelligent air conditioner to perform the matched operation.

[0191] In the embodiments of the present application, for other descriptions of steps 201-204, please refer to the detailed description of steps 101-104 in embodiment one, and the embodiments of the present application will not be repeated.

[0192] It can be seen that the embodiment of the present application can intelligently determine the target environment parameter required by the user in the current region according to the regional information collected by the associated device, and then generate the control parameter for the intelligent air conditioner according to the target environment parameter, which can improve the generation accuracy and reliability of the control parameter of the intelligent air conditioner, thereby improving the control accuracy and control convenience of the intelligent air conditioner, and further facilitating the real-time control and purposeful operation of the intelligent air conditioner, creating a comfortable living and working environment for the user. In addition, when the steps described in the embodiment of the present application are executed by the intelligent air conditioner, the present application can also expand the intelligent function of the intelligent air conditioner, which can not only improve the user experience, but also improve the user stickiness of using the intelligent air conditioner. In addition, the position information of the user can be determined according to the user sensing information, and the state information of the user can be determined according to the device information, which is beneficial to improve the rationality and accuracy of the determined user position information and user state information, and further improve the accuracy and effectiveness of the determined target environment parameter and the determined control parameter of the intelligent air conditioner, thereby improving the control accuracy and control rationality of the intelligent air conditioner.

[0193] In an optional embodiment, the method can further include the following operations:

[0194] According to the user sensing information included in the regional information, it is judged whether the user in the current region is in a non-stationary state in the region corresponding to the position.

[0195] When it is judged that the user in the current region is in a non-stationary state in the region corresponding to the position, the motion information of the user in the current region is determined according to the user sensing information included in the regional information and the device running information of the target device, and the motion information of the user in the current region includes at least one of the motion amplitude of the user in the current region, the motion frequency of the user in the current region, the motion trajectory of the user in the current region and the motion speed of the user in the current region.

[0196] According to the motion information of the user in the current region, the behavior type of the user in the current region is determined, and the activity state of the user in the current region is determined as the state information of the user in the current region.

[0197] When it is judged that the user in the current region is not in a non-stationary state in the region corresponding to the position, the operation of determining the state information of the user in the current region according to the device information of the target device in the current region is executed.

[0198] In the optional embodiment, the device running information of the target device can include, but is not limited to, one or more of a device running mode, display content in a device running process, a device running state, a device running corresponding function, and a running correlation degree between multiple running devices, and the present embodiment is not limited thereto. For example, when the running mode of the smart treadmill is in the fast running mode, the smart television is playing a fitness program, and the running correlation between the smart treadmill and the smart television is high, it can be determined that the smart treadmill and the smart television simultaneously reflect that the user is likely to be in a fitness exercise state, and the motion information of the user is determined based on the information of all devices that are in a running state. It should be noted that, for determining the motion information of the user based on the device running information, other specific scenarios can also be included, and the present embodiment is not limited thereto.

[0199] It can be seen that the optional embodiment can provide a matching way of determining the state information of the user in the current region for the two cases that the user in the current region is in a non-stationary state at the region corresponding to the location and the user in the current region is not in a non-stationary state at the region corresponding to the location, enrich the diversity of the user state information determination method, improve the flexibility of the user state information determination method, and further improve the determination efficiency of the user state information and improve the accuracy and rationality of the determined user state information, which is beneficial to the accuracy and effectiveness of the subsequently determined target environment parameters, and further improves the control accuracy of the smart air conditioner.

[0200] In another optional embodiment, the above determining the state information of the user in the current region according to the device information of the target device in the current region can include:

[0201] determining the behavior posture of the user in the current region at the location according to the image information included in the user sensing information, and monitoring the duration of the user staying in the region corresponding to the location in the current region based on the unit map corresponding to the current region constructed in advance;

[0202] determining the state information of the user in the current region at the region corresponding to the location based on the function information of the region corresponding to the location of the user in the current region, the behavior posture of the user in the current region at the location, and the duration, wherein the state information includes at least one of a state type, a state activity intensity, and a behavior type.

[0203] In the optional embodiment, optionally, the state type can include a dynamic type or a static type, and the embodiments of the present application are not limited thereto. Optionally, the behavior type can include, but is not limited to, an eating and drinking behavior type, a sleeping behavior type, a television watching behavior type, a running behavior type, a book reading behavior type, an electronic product using behavior type, a skipping rope behavior type, a yoga behavior type, a ball playing behavior type, a ball kicking behavior type, other exercise behavior types, and a homework writing behavior type, and the embodiments of the present application are not limited thereto.

[0204] In the optional embodiment, for example, when it is monitored that the user stays in the dining room area for a long time, and the behavior posture condition of the user indicates that the user is sitting at the dining table, and it is detected that the dining table is placed with tableware, it can be determined that the state information of the user is in a static type, in an eating and drinking behavior type, and a state activity intensity is low. It should be noted that, for determining the state information of the user in the region corresponding to the position of the user in the current region according to the function information of the region corresponding to the position of the user in the current region, the behavior posture condition and the duration of the user in the position in the current region, other scenarios can also be embodied, and the embodiments of the present application are not limited thereto.

[0205] It can be seen that, in the optional embodiment, the state information of the user can be determined according to the function information of the region where the user is located, the behavior posture condition and the duration of the user, which enriches the consideration factors for determining the state information of the user, is beneficial to improving the accuracy and rationality of the determined state information of the user, and improving the determination efficiency of the state information of the user, thereby being beneficial to the accuracy and effectiveness of the subsequently determined target environment parameters and the determined control parameters of the intelligent air conditioner.

[0206] In still another optional embodiment, the above-mentioned obtaining the position information of the position of the user in the current region based on the user sensing information included in the region information and the unit map corresponding to the current region constructed in advance can include:

[0207] determining a predicted position of the user in the current region based on the user sensing information included in the region information and the unit map corresponding to the current region constructed in advance;

[0208] when the number of the determined predicted positions is equal to 1, determining that the predicted position is the position of the user in the current region, and determining the position information of the position of the user in the current region;

[0209] when the number of the determined predicted positions is greater than 1, obtaining the position information corresponding to each predicted position, and determining the position information of the position of the user in the current region based on the position information corresponding to all the predicted positions.

[0210] It can be seen that the optional embodiment provides a matching way of determining the location of the user in the case of predicting multiple locations for the same user, enriches the diversity of the way of determining the location of the user, improves the flexibility of the way of determining the location of the user, and is beneficial to improving the determination efficiency of the location of the user and improving the accuracy and rationality of the determined location of the user, thereby improving the control accuracy and control efficiency of the intelligent air conditioner.

[0211] In yet another optional embodiment, when the number of predicted locations is greater than 1, the above-mentioned determining the location information of the location of the user in the current area based on the location information corresponding to all predicted locations can include:

[0212] According to the location information corresponding to all predicted locations, the location point of each predicted location in the unit map corresponding to the current area is determined, and the number of location points corresponding to all location points is determined.

[0213] When the number of location points is 2, a straight line path corresponding to all location points is determined, and when the path distance corresponding to the straight line path satisfies the pre-set path distance condition, the location information corresponding to the straight line path is determined as the location information of the location of the user in the current area.

[0214] When the number of location points is greater than 2, a target area corresponding to all location points is determined, and when the area of the target area satisfies the pre-set location area area condition, the location information corresponding to the target area is determined as the location information of the location of the user in the current area.

[0215] In the optional embodiment, optionally, the specific content corresponding to the path distance condition and the specific content corresponding to the location area area condition can be determined according to the air outlet involved area range of the intelligent air conditioner and / or the pre-set user location rational condition, and the embodiments of the present application are not limited. Further optionally, the air outlet involved area range of the intelligent air conditioner can be the area range that the intelligent air conditioner can directly blow, or the area range that the intelligent air conditioner can affect the environmental parameters after blowing, and the embodiments of the present application are not limited.

[0216] In the optional embodiment, further optionally, when the path distance corresponding to the straight line path does not satisfy the pre-set path distance condition or when the area of the target area does not satisfy the pre-set location area area condition, the operation of acquiring the area information of the current area collected by the associated device in the current scene is triggered.

[0217] It can be seen that the optional embodiment provides a matching way to determine the location of the user for the case that the number of predicted positions of the user is equal to 2 and greater than 2, improves the rationality and determination efficiency of the determined location of the user, and further improves the accuracy of the determined location of the user, further improves the determination efficiency and determination accuracy of the control parameters of the intelligent air conditioner according to the location information, and is beneficial to improve the control efficiency and control accuracy of the intelligent air conditioner.

[0218] In yet another optional embodiment, the associated devices in the current scene include a first associated device and a second associated device; and the method can further include the following operations:

[0219] According to the user information corresponding to the user collected by the first associated device, the body state data of the user is determined, and according to the environmental information of the region corresponding to the location of the user collected by the second associated device, the environmental condition coefficient of the region corresponding to the location of the user is determined.

[0220] The body state data and the environmental condition coefficient are analyzed to obtain the perceived comfort degree of the user in the region corresponding to the location, and it is judged whether the perceived comfort degree is in the pre-set perceived comfort degree range.

[0221] When it is judged that the perceived comfort degree is not in the perceived comfort degree range, the operation of determining the target environmental parameter required by the target user according to the state information of the target user and the determined environmental information of the region is performed.

[0222] In the optional embodiment, optionally, the first associated device can include but is not limited to smart slippers, smart bracelets, smart glasses, smart clothing and other smart wearable devices that can be used to measure human health data, and the embodiments of the present application are not limited.

[0223] In the optional embodiment, optionally, the environmental condition coefficient can include but is not limited to one or more of an environmental temperature coefficient, an environmental dryness coefficient, an environmental humidity coefficient, an environmental air density coefficient, an environmental air quality coefficient, an environmental apparent temperature coefficient and an environmental wind direction and wind force coefficient, and the embodiments of the present application are not limited. Optionally, the body state data can include but is not limited to one or more of blood oxygen state data, heart rate state data, blood flow velocity state data, blood lipid state data, blood pressure state data and blood vessel state data, blood oxygen saturation state data, body temperature state data, and the embodiments of the present application are not limited.

[0224] In the optional embodiment, further optionally, when it is judged that the perceived comfort degree is in the pre-set perceived comfort degree range, the operation of obtaining the region information of the current region collected by the associated devices in the current scene is performed.

[0225] It can be seen that the optional embodiment can determine the perceived comfort of the user according to the body state data and the environmental condition coefficient, and when the perceived comfort is not in the perceived comfort range, the subsequent operation of determining the target environmental parameter is performed, which is beneficial to expand the intelligent function of the intelligent air conditioner, can reduce unnecessary resource waste to a certain extent, and is beneficial to improve the control accuracy of the intelligent air conditioner, thereby improving the control rationality and operation effectiveness of the intelligent air conditioner.

[0226] In yet another optional embodiment, after obtaining the region information of the current region collected by the associated device in the current scene, the method can further include the following operations:

[0227] When the collected region information includes voice information of the user in the current region, the voice information is analyzed to obtain semantic content corresponding to the voice information;

[0228] It is judged whether the semantic content meets a pre-set control parameter generation condition of the intelligent air conditioner;

[0229] When it is judged that the semantic content meets the control parameter generation condition, the control parameter of the intelligent air conditioner corresponding to the current region is generated according to the semantic content;

[0230] When it is judged that the semantic content does not meet the control parameter generation condition, the operation of analyzing the region information of the current region to obtain information of the user in the current region is performed based on the semantic content.

[0231] In the above optional embodiment, further optionally, the above judging whether the semantic content meets the pre-set control parameter generation condition of the intelligent air conditioner can include:

[0232] It is judged whether the semantic content includes an air conditioner control keyword corresponding to an air conditioner control keyword type; the air conditioner control keyword type includes an air conditioner mode adjustment keyword type and a user position keyword type; the air conditioner mode adjustment keyword type includes an environmental condition keyword type and / or a user state keyword type;

[0233] When it is judged that the semantic content includes the air conditioner control keyword, it is determined that the semantic content meets the pre-set control parameter generation condition of the intelligent air conditioner;

[0234] When it is judged that the semantic content does not include the air conditioner control keyword, it is determined that the semantic content does not meet the control parameter generation condition of the intelligent air conditioner.

[0235] In the optional embodiment, for example, the specific embodiment content corresponding to the environment condition keyword type can be "the room is too stuffy", "the room is too humid", "the room is too dry", etc. The specific embodiment content corresponding to the environment condition keyword type can also include other sentences that can reflect the environment condition, and the embodiments of the present application are not limited thereto. For example, the specific embodiment content corresponding to the user state keyword type can be "good night, go to sleep", "come and eat", "go for a run together", etc. The specific embodiment content corresponding to the user state keyword type can also include other sentences that can reflect the user state, and the embodiments of the present application are not limited thereto.

[0236] It can be seen that the optional embodiment can determine whether the control parameter of the intelligent air conditioner needs to be generated according to the voice information of the user. When it is determined that the control parameter of the intelligent air conditioner needs to be generated, the subsequent operation of generating the control parameter of the intelligent air conditioner is performed, thereby providing another way of triggering the operation of generating the control parameter of the intelligent air conditioner, which is beneficial to improving the rationality and diversity of the way of triggering the operation of generating the control parameter, and is beneficial to expanding the intelligent function of the intelligent air conditioner, thereby improving the control accuracy and control efficiency of the intelligent air conditioner, thereby improving the user stickiness of the intelligent air conditioner; and the embodiment can also determine whether the semantic content meets the control parameter generation condition by judging whether the semantic content includes the air conditioner control keyword. When it is determined that the semantic content includes the air conditioner control keyword, it is determined that the semantic content meets the control parameter generation condition, which is beneficial to improving the rationality and accuracy of the result of determining that the control parameter generation condition is met, thereby improving the effectiveness of the result of determining that the control parameter generation condition is met, and to a certain extent, improving the control efficiency and control accuracy of the intelligent air conditioner.

[0237] In yet another optional embodiment, the above-mentioned generating the control parameter of the intelligent air conditioner corresponding to the current region according to the semantic content can include:

[0238] determining at least one air conditioner control keyword included in the semantic content, and analyzing all air conditioner control keywords to obtain a control word meaning of each air conditioner control keyword for the control operation of the intelligent air conditioner;

[0239] classifying all air conditioner control keywords according to different air conditioner control modes according to all control word meanings and comparison priority keywords included in the semantic content, to obtain an air conditioner control mode classification result;

[0240] performing weight calculation of the air conditioner control mode according to the air conditioner control mode classification result, to obtain a weight proportion result;

[0241] determining a target air conditioner control mode with the largest weight proportion according to the weight proportion result, and determining a corresponding target control parameter according to the target air conditioner control mode as the control parameter of the intelligent air conditioner corresponding to the current region.

[0242] It can be seen that the optional embodiment can combine the air conditioner control keywords and the comparison priority keywords to perform weight calculation of the air conditioner control mode, and then determine the target air conditioner control mode of the intelligent air conditioner and the target control parameter corresponding to the target air conditioner control mode, which is beneficial to improve the rationality of the determined target air conditioner control mode of the intelligent air conditioner, and then improve the effectiveness and accuracy of the determined target control parameter of the intelligent air conditioner, thereby improving the control accuracy of the intelligent air conditioner.

[0243] Embodiment three

[0244] Please refer to Figure 4 , Figure 4 is a structural schematic diagram of a device for controlling an air conditioner in combination with associated equipment according to an embodiment of the present application. Wherein, Figure 4 The device described can exist independently of the intelligent air conditioner, or can be integrated in the intelligent air conditioner, and the present application embodiment is not limited. As Figure 4 shown, the device for controlling an air conditioner in combination with associated equipment can include:

[0245] The acquisition module 301 is configured to acquire the region information of the current region collected by the associated equipment in the current scene.

[0246] The analysis module 302 is configured to analyze the region information of the current region to obtain the information of the user in the current region, wherein the information of the user at least includes the position information of the position where the user is located in the current region and the state information of the user in the current region.

[0247] The determination module 303 is configured to determine the target environmental parameter required by the user in the current region according to the state information of the user in the current region and the environmental information included in the determined region information.

[0248] The parameter generation module 304 is configured to generate the control parameter of the intelligent air conditioner corresponding to the current region according to the target environmental parameter and the position information of the position where the user is located in the current region, and the control parameter of the intelligent air conditioner is used to control the intelligent air conditioner to perform a matched operation.

[0249] It can be seen that the implementation Figure 4The device described in the application can intelligently determine the target environment parameter required by the user in the current region according to the region information collected by the associated device, and then generate the control parameter for the intelligent air conditioner according to the target environment parameter, which can improve the generation accuracy and reliability of the control parameter of the intelligent air conditioner, thereby improving the control accuracy and control convenience of the intelligent air conditioner, and further realizing real-time control and purposeful operation of the intelligent air conditioner, and creating a comfortable living and working environment for the user. In addition, when the steps described in the embodiment of the application are executed by the intelligent air conditioner, the application can also expand the intelligent function of the intelligent air conditioner, which can not only improve the user experience, but also improve the user stickiness of the intelligent air conditioner.

[0250] In this optional embodiment, as an optional implementation, the region information of the current region at least includes user sensing information of the user in the current region and device information of the target device in the current region, and the target device is a device being used by the user in the current region;

[0251] In addition, the manner in which the analysis module 302 analyzes the region information of the current region to obtain the information of the user in the current region specifically includes:

[0252] Based on the unit map corresponding to the current region constructed in advance, the user sensing information included in the region information is analyzed to obtain the position information of the position where the user in the current region is located;

[0253] According to the device information of the target device in the current region, the state information of the user in the current region is determined.

[0254] It can be seen that the implementation Figure 5 The device described in the application can determine the position information of the user according to the user sensing information and determine the state information of the user according to the device information, which is beneficial to improve the rationality and accuracy of the determined user position information and user state information, and further improve the accuracy and effectiveness of the determined target environment parameter and the determined control parameter of the intelligent air conditioner, thereby improving the control accuracy and control rationality of the intelligent air conditioner.

[0255] In another optional embodiment, as Figure 5 The device can further include:

[0256] The judgment module 305 is configured to determine, according to the user sensing information included in the region information, whether the user in the current region is in a non-stationary state in the region corresponding to the position; and when it is determined that the user in the current region is not in a non-stationary state in the region corresponding to the position, trigger the analysis module 302 to perform the operation of determining the state information of the user in the current region according to the device information of the target device in the current region.

[0257] The determining module 303 is further configured to, when the judging module 305 judges that the user in the current region is in a non-stationary state at the region corresponding to the location of the user, determine motion information of the user in the current region according to the user sensing information included in the region information and the device running information of the target device, the motion information of the user in the current region including at least one of a motion amplitude of the user in the current region, a motion frequency of the user in the current region, a motion trajectory of the user in the current region, and a motion speed of the user in the current region.

[0258] The determining module 303 is further configured to determine a behavior type of the user in the current region and determine an activity state of the user in the current region according to the motion information of the user in the current region, and determine the state information of the user in the current region.

[0259] It can be seen that, in the embodiments of the present application, Figure 5 The described apparatus can also provide a matching way of determining the state information of the user in the current region for both cases that the user in the current region is in a non-stationary state at the region corresponding to the location of the user and that the user in the current region is not in a non-stationary state at the region corresponding to the location of the user, enrich the diversity of the way of determining the state information of the user, improve the flexibility of the way of determining the state information of the user, and thus improve the determination efficiency of the state information of the user and improve the accuracy and reasonableness of the determined state information of the user, which is conducive to the accuracy and effectiveness of the subsequently determined target environment parameters, and thus is conducive to improving the control accuracy of the intelligent air conditioner.

[0260] In yet another optional embodiment, the way in which the above-mentioned analyzing module 302 determines the state information of the user in the current region according to the device information of the target device in the current region specifically includes:

[0261] determining a behavior posture condition of the user in the current region at the location of the user according to the image information included in the user sensing information, and monitoring a duration for which the user in the current region stays at the region corresponding to the location of the user based on a unit map corresponding to the current region constructed in advance;

[0262] determining state information of the user in the current region at the region corresponding to the location of the user according to the function information of the region corresponding to the location of the user in the current region, the behavior posture condition of the user in the current region at the location of the user, and the duration, the state information including at least one of a state type, a state activity intensity, and a behavior type.

[0263] It can be seen that, in the embodiments of the present application, Figure 5The described apparatus can also determine the state information of the user according to the function information of the area where the user is located, the behavior posture condition and the duration of the user, enrich the consideration factors for determining the state information of the user, improve the accuracy and rationality of the determined state information of the user, and improve the determination efficiency of the state information of the user, thereby improving the accuracy and effectiveness of the subsequently determined target environment parameters and the determined control parameters of the intelligent air conditioner.

[0264] In yet another optional embodiment, the manner in which the analysis module 302 described above analyzes the user sensing information included in the area information to obtain the position information of the position where the user is located in the current area based on the unit map corresponding to the current area constructed in advance specifically includes:

[0265] According to the user sensing information included in the area information, the predicted position of the user in the current area is determined based on the unit map corresponding to the current area constructed in advance.

[0266] When the number of the determined predicted positions is equal to 1, the predicted position is determined as the position where the user is located in the current area, and the position information of the position where the user is located in the current area is determined.

[0267] When the number of the determined predicted positions is greater than 1, the position information corresponding to each predicted position is obtained, and the position information of the position where the user is located in the current area is determined based on the position information corresponding to all the predicted positions.

[0268] It can be seen that the implementation Figure 5 The described apparatus can also perform the matching operation of determining the position where the user is located in the case of predicting multiple positions for the same user, thereby enriching the diversity of the manner of determining the position where the user is located, improving the flexibility of the manner of determining the position where the user is located, improving the determination efficiency of the position where the user is located, and improving the accuracy and rationality of the determined position where the user is located, thereby improving the control accuracy and control efficiency of the intelligent air conditioner.

[0269] In yet another optional embodiment, the manner in which the analysis module 302 described above analyzes the user sensing information included in the area information to obtain the position information of the position where the user is located in the current area based on the unit map corresponding to the current area constructed in advance specifically includes:

[0270] According to the position information corresponding to all the predicted positions, the position point of each predicted position in the unit map corresponding to the current area constructed in advance is determined, and the number of position points corresponding to all the position points is determined.

[0271] When the number of position points is 2, a corresponding straight line path is determined according to all the position points, and when a path distance corresponding to the straight line path satisfies a pre-set path distance condition, position information corresponding to the straight line path is determined as the position information of the position where the user is located in the current region.

[0272] When the number of position points is greater than 2, a corresponding target region is determined according to all the position points, and when a region area of the target region satisfies a pre-set position region area condition, position information corresponding to the target region is determined as the position information of the position where the user is located in the current region.

[0273] It can be seen that the implementation Figure 5 The described device can also perform matching operations for determining the position where the user is located for the case where the number of predicted positions of the user is equal to 2 and greater than 2, thereby improving the rationality of the determined position where the user is located and the determination efficiency of the position where the user is located, and further improving the accuracy of the determined position where the user is located, and further improving the determination efficiency and determination accuracy of the control parameters of the intelligent air conditioner determined according to the position information, which is conducive to improving the control efficiency and control accuracy of the intelligent air conditioner.

[0274] In yet another optional embodiment, the parameter generation module 304 generates the control parameters of the intelligent air conditioner corresponding to the current region according to the target environment parameters and the position information of the position where the user is located in the current region in the following manner:

[0275] According to the position information of the user in the current region and the pre-determined position of the intelligent air conditioner, a distance value between the position where the user is located in the current region and the position of the intelligent air conditioner is determined.

[0276] According to the distance value and the target environment parameters, the outflow mode of the intelligent air conditioner is determined; the target environment parameters include the environmental temperature parameters and / or the environmental humidity parameters; the outflow mode of the intelligent air conditioner includes one or more of the temperature outflow mode, the air volume outflow mode, the air direction outflow mode, and the air speed outflow mode.

[0277] According to the outflow mode of the intelligent air conditioner, the control parameters of the intelligent air conditioner corresponding to the current region are generated.

[0278] It can be seen that the implementation Figure 5 The described device can also determine the matching outflow mode of the intelligent air conditioner according to the distance value between different users and the intelligent air conditioner and the target environment parameters of the current region, which is conducive to improving the rationality and accuracy of the determined outflow mode, and is conducive to improving the control flexibility and operation effectiveness of the intelligent air conditioner, and the outflow mode changes with the distance value in combination with the target environment parameters, which can improve the comfort of the user in the region where the intelligent air conditioner is located, and further improve the user experience of using the intelligent air conditioner and the user stickiness of the intelligent air conditioner.

[0279] In yet another optional embodiment, the parameter generation module 304 determines the air outlet mode of the smart air conditioner according to the distance value and the target environment parameter, and the determination manner specifically includes:

[0280] According to the collected regional information of the current region, the number of users in the current region is determined;

[0281] According to the number of users in the current region, the distance value and the target environment parameter, the air outlet mode of the smart air conditioner is determined.

[0282] It can be seen that the implementation Figure 5 The described device can also determine the matching air outlet mode of the smart air conditioner according to the number of users, the distance value and the target environment parameter, and determine and adjust the air outlet mode of the smart air conditioner in combination with more intelligent aspects, thereby increasing the consideration factors for determining the air outlet mode, and being beneficial to improve the rationality and accuracy of the determined air outlet mode, and further being beneficial to make the determined air outlet mode more meet the comfort requirements of users, so as to improve the use experience of users using the smart air conditioner.

[0283] In yet another optional embodiment, the parameter generation module 304 determines the air outlet mode of the smart air conditioner according to the number of users in the current region, the distance value and the target environment parameter, and the determination manner specifically includes:

[0284] When the number of users in the current region is greater than a pre-set user number threshold, the user distribution density of the current region is analyzed according to the position information of each user in the current region, and it is judged whether the user distribution density is greater than or equal to a pre-set user distribution density threshold; the user number threshold is greater than or equal to 1;

[0285] When it is judged that the user distribution density is greater than or equal to the user distribution density threshold, the air outlet mode of the smart air conditioner is determined according to the distance value and the target environment parameter; wherein when the user state of the user in the current region is used to indicate that the user in the current region is in an active state, the air outlet mode of the smart air conditioner is a first air outlet mode, and when the user state of the user in the current region is used to indicate that the user in the current region is in a fixed state, the air outlet mode of the smart air conditioner is a second air outlet mode, and the air outlet frequency and the air outlet volume corresponding to the first air outlet mode are higher than the air outlet frequency and the air outlet volume corresponding to the second air outlet mode;

[0286] When it is judged that the user distribution density is less than the user distribution density threshold, the user state of the user in the current region is determined according to the position information of each user in the current region;

[0287] According to the user state of the user in the current area, a position of the user in the current area is determined; wherein, when the user state of the user in the current area is used to indicate that the user in the current area is in an active state, the position of the user in the current area includes a position corresponding to the user farthest from the position of the smart air conditioner and a position corresponding to the user closest to the position of the smart air conditioner, and when the user state of the user in the current area is used to indicate that the user in the current area is in a fixed state, the position of the user in the current area includes a position corresponding to the user farthest from the position of the smart air conditioner;

[0288] According to a distance value corresponding to the position of the user in the current area, an air outlet mode of the smart air conditioner is determined.

[0289] It can be seen that, in the embodiments of the present application, Figure 5 The described device can also provide different air outlet mode determination methods according to the size comparison relationship between the number of users and the user number threshold value and the size comparison relationship between the user distribution density and the user distribution density threshold value, to determine a matching air outlet mode, thereby enriching the diversity of the air outlet mode determination method, improving the flexibility of the air outlet mode determination method, and further improving the rationality and effectiveness of the determined air outlet mode, thereby improving the accuracy of the determined air outlet mode, and facilitating the expansion of the intelligent function of the smart air conditioner to improve the control rationality and operation effectiveness of the smart air conditioner.

[0290] In yet another optional embodiment, the determination module 303 is further configured to determine a temperature change of the current area according to the ambient temperature information of the current area included in the area information of the current area.

[0291] The determination module 303 is further configured to determine a temperature after the temperature change of the current area according to the temperature change of the current area when the temperature change of the current area indicates that the ambient temperature of the current area increases by a first preset temperature value.

[0292] As Figure 5 shown, the device can further include:

[0293] The adjustment module 306 is configured to adjust the air outlet mode of the smart air conditioner according to the temperature after the temperature change of the current area.

[0294] The update module 307 is configured to update the air outlet mode of the smart device based on the adjusted air outlet mode of the smart air conditioner, and update the control parameter of the smart air conditioner based on the updated air outlet mode of the smart device.

[0295] It can be seen that, in the embodiments of the present application, Figure 5The described device can also adjust the air outlet mode of the smart air conditioner in real time according to the temperature change of the current area, and then update and adjust the control parameters of the smart air conditioner in real time, which is beneficial to improve the adjustment efficiency of the air outlet mode and the control real-time performance, and then improve the accuracy and effectiveness of the determined air outlet mode, thereby improving the control real-time performance and control rationality of the smart air conditioner, and also expanding the intelligent function of the smart air conditioner and improving the user experience.

[0296] In yet another optional embodiment, as shown in Figure 5 The device can also include:

[0297] The detection module 308 is configured to detect whether the current temperature of the current area is raised to a second preset temperature value according to the environmental temperature information of the current area included in the area information of the current area, and trigger the operation of determining the air outlet mode of the smart air conditioner according to the user quantity, the distance value and the target environmental parameter of the user in the current area performed by the parameter generation module 304 when the detection result is yes. And / or,

[0298] The detection module 308 is configured to monitor the continuous working time length of the smart air conditioner, and trigger the operation of determining the air outlet mode of the smart air conditioner according to the user quantity, the distance value and the target environmental parameter of the user in the current area performed by the parameter generation module 304 when the continuous working time length reaches the working preset time length of the smart air conditioner.

[0299] It can be seen that the implementation Figure 5 The described device can also determine whether the air outlet mode of the smart air conditioner needs to be adjusted according to the current temperature or the continuous working time length of the smart air conditioner, which enriches the diversity of the operation mode of triggering the execution of the adjustment and determination of the air outlet mode, improves the flexibility and execution rationality of the operation of adjusting and determining the air outlet mode, and then is beneficial to improve the timeliness of the adjustment of the air outlet mode, thereby improving the control timeliness and operation effectiveness of the smart air conditioner.

[0300] In yet another optional embodiment, as shown in Figure 5 The device can also include:

[0301] The control module 309 is configured to control the smart air conditioner to perform a matching operation according to the control parameters of the smart air conditioner, wherein the control parameters of the smart air conditioner include one or more of the air volume control parameter, the temperature control parameter, the wind direction control parameter and the wind speed control parameter of the smart air conditioner.

[0302] In the above optional embodiment, further optionally, the manner in which the control module 309 controls the smart air conditioner to perform a matching operation according to the control parameters of the smart air conditioner specifically includes:

[0303] According to the air volume control parameter of the intelligent air conditioner and the temperature control parameter of the intelligent air conditioner, the first air inlet of the intelligent air conditioner is controlled to suck air from the outside to pass through the heat exchanger of the intelligent air conditioner to obtain heat-exchanged air, the first air flow controller and the second air flow controller of the intelligent air conditioner are controlled to suck the heat-exchanged air, and the air flow in the first air flow controller of the intelligent air conditioner is controlled to flow through the first air duct, the air inlet cavity of the second air flow controller of the intelligent air conditioner is controlled to suck part of the air flow in the first air flow controller of the intelligent air conditioner passing through the auxiliary heating device, and the other part of the air flow in the first air flow controller of the intelligent air conditioner is controlled to be combined with the air flow of the second air flow controller of the intelligent air conditioner, and the combined air flow is blown out from the first air outlet.

[0304] According to the air volume control parameter of the intelligent air conditioner and the temperature control parameter of the intelligent air conditioner, the first air inlet of the intelligent air conditioner is controlled to suck air from the outside to pass through the heat exchanger of the intelligent air conditioner to obtain heat-exchanged air, the first air flow controller and the second air flow controller of the intelligent air conditioner are controlled to suck the heat-exchanged air, and the air flow in the first air flow controller of the intelligent air conditioner is controlled to flow through the first air duct, the air inlet cavity of the second air flow controller of the intelligent air conditioner is controlled to suck part of the air flow in the first air flow controller of the intelligent air conditioner passing through the auxiliary heating device, and the other part of the air flow in the first air flow controller of the intelligent air conditioner is controlled to be combined with the air flow of the second air flow controller of the intelligent air conditioner, and the combined air flow is blown out from the first air outlet.

[0305] Wherein, the size of the air flow into the second air flow controller of the intelligent air conditioner is determined according to the lifting height of the lifting plate of the intelligent air conditioner, and the method further comprises:

[0306] Determine whether the lifting height of the lifting plate of the intelligent air conditioner needs to be adjusted, when it is determined that the lifting plate needs to be opened, control the lifting plate of the intelligent air conditioner to lift upwards, so that the second air duct of the intelligent air conditioner sucks the air flow flowing from the air inlet of the intelligent air conditioner, and the natural wind function module of the intelligent air conditioner sucks the air flow and performs configuration operation to obtain configured air flow, and the natural wind function module blows out the configured air flow from the second air outlet of the intelligent air conditioner, which is located between the second air flow controller of the intelligent air conditioner and the natural wind function module of the intelligent air conditioner.

[0307] It can be seen that the embodiment Figure 6 The described device can also realize switching adjustment of the heating air duct of the intelligent air conditioner according to the control parameter of the intelligent air conditioner, accelerate temperature rise and fall, and meet the demand of the user for direct blowing of hot air, reduce the waiting time of the user, and improve the use experience of the user.

[0308] Embodiment four

[0309] Please refer to Figure 6 , Figure 6 is another structure diagram of the device for controlling the air conditioner in combination with the associated equipment according to the embodiment of the present application. As shown in​ The device for controlling the air conditioner in linkage with the associated device can include:

[0310] The memory 401 stores executable program codes.

[0311] The processor 402 is coupled to the memory 401.

[0312] Further, the device can further include an input interface 403 and an output interface 404 coupled to the processor 402.

[0313] The processor 402 invokes the executable program codes stored in the memory 401 to execute the steps of the method for controlling the air conditioner in linkage with the associated device according to the first or second embodiment.

[0314] Embodiment five

[0315] The computer readable storage medium stores a computer program for electronic data exchange, and the computer program causes a computer to execute the steps of the method for controlling the air conditioner in linkage with the associated device according to the first or second embodiment.

[0316] Embodiment six

[0317] The computer program product includes a non-transitory computer readable storage medium storing a computer program, and the computer program is operable to cause a computer to execute the steps of the method for controlling the air conditioner in linkage with the associated device according to the first or second embodiment.

[0318] Embodiment seven

[0319] The smart air conditioner is used to execute the steps of the method for controlling the air conditioner in linkage with the associated device according to the first or second embodiment, or the smart air conditioner includes the device for controlling the air conditioner in linkage with the associated device according to the third or fourth embodiment.

[0320] The device embodiments described above are only schematic, and the modules described as separate components can or can not be physically separated, and the components shown as modules can or can not be physical modules, i.e., they can be located in one place or distributed on multiple network modules. Some or all of the modules can be selected according to actual needs to achieve the purpose of the embodiment. Those skilled in the art can understand and implement without creative labor.

[0321] 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 contributes to the present application can be embodied in the form of a software product. The computer software product can be stored in a computer readable storage medium, including 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 medium that can be used to carry or store data in a computer readable manner.

[0322] Finally, it should be noted that: the method and device for controlling air conditioner in combination with associated equipment 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 the present application; 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 controlling an air conditioner in conjunction with related devices, characterized in that, The method includes: Obtain the area information of the current area collected by the associated devices in the current scene; the area information of the current area includes at least the user sensor information of the user in the current area and the device information of the target device in the current area, wherein the target device is the device that the user is using in the current area; Based on the pre-constructed cell map corresponding to the current area, the user sensor information included in the area information is analyzed to obtain the location information of the user in the current area; based on the device information of the target device in the current area, the status information of the user in the current area is determined; the user information includes at least the location information of the user in the current area and the status information of the user in the current area. Based on the user's status information in the current area and the environmental information included in the determined area information, the target environmental parameters required by the user in the current area are determined; Based on the target environmental parameters and the location information of the user's location in the current area, control parameters for the smart air conditioner corresponding to the current area are generated. The control parameters for the smart air conditioner are used to control the smart air conditioner to perform matching operations. Furthermore, the method further includes: Based on the user sensor information included in the area information, determine whether the user in the current area is in a non-stationary state in the area corresponding to their location. When it is determined that a user in the current area is not stationary in the area corresponding to their location, the motion information of the user in the current area is determined based on the user sensor information and the device operation information of the target device included in the area information. The motion information of the user in the current area includes at least one of the following: the user's motion amplitude, the user's motion frequency, the user's motion trajectory, and the user's motion speed. Based on the motion information of the user in the current area, the behavior type of the user in the current area is determined, and the activity state of the user in the current area is determined, which is the user's state information in the current area. When it is determined that the user in the current area is not in a non-stationary state in the area corresponding to their location, the operation of determining the user's state information in the current area based on the device information of the target device in the current area is executed; And, determining the user's status information in the current region based on the device information of the target device in the current region includes: Based on the image information included in the user sensing information, determine the user's behavioral posture at the current location in the current area, and monitor the duration of the user's stay in the area corresponding to the current location based on the pre-constructed cell map corresponding to the current area. Based on the pre-set functional information of the area corresponding to the user's location in the current area, the user's behavior and posture in the current area, and the duration, the status information of the user in the area corresponding to their location in the current area is determined; the status information includes at least one of status type, status activity intensity, and behavior type.

2. The method for controlling an air conditioner in conjunction with related equipment according to claim 1, characterized in that, The method involves analyzing the user sensor information included in the pre-constructed cell map corresponding to the current area to obtain the location information of the user in the current area, including: Based on the user sensor information included in the area information, and based on the pre-constructed cell map corresponding to the current area, the predicted location of the user in the current area is determined. When the number of predicted locations is equal to 1, the predicted location is determined to be the location of the user in the current area, and the location information of the user in the current area is determined. When the number of predicted locations is greater than 1, obtain the location information corresponding to each predicted location, and determine the location information of the user in the current area based on the location information corresponding to all predicted locations. Wherein, when the number of determined predicted locations is greater than 1, the step of determining the location information of the user's current location in the current area based on the location information corresponding to all the predicted locations includes: Based on the location information corresponding to all the predicted locations, determine the location point of each predicted location in the pre-constructed cell map corresponding to the current area, and determine the number of location points corresponding to all the location points. When the number of location points is 2, a corresponding straight path is determined based on all the location points. When the path distance corresponding to the straight path meets the preset path distance condition, the location information corresponding to the straight path is determined as the location information of the user in the current area. When the number of location points is greater than 2, a corresponding target area is determined based on all the location points. When the area of ​​the target area meets the pre-set location area condition, the location information corresponding to the target area is determined as the location information of the user's location in the current area.

3. The method for controlling an air conditioner in conjunction with related equipment according to claim 1 or 2, characterized in that, The step of generating control parameters for the smart air conditioner corresponding to the current area based on the target environmental parameters and the location information of the user's location in the current area includes: Based on the user's location information in the current area and the pre-determined location of the smart air conditioner, determine the distance between the user's location and the location of the smart air conditioner in the current area; The air outlet mode of the smart air conditioner is determined based on the distance value and the target environmental parameters; the target environmental parameters include environmental temperature parameters and / or environmental humidity parameters; the air outlet mode of the smart air conditioner includes one or more of the following: temperature air outlet mode, air volume air outlet mode, air direction air outlet mode, and air speed air outlet mode. Based on the air outlet mode of the smart air conditioner, control parameters for the smart air conditioner corresponding to the current area are generated; The step of determining the air outlet mode of the smart air conditioner based on the distance value and the target environmental parameters includes: Based on the collected regional information of the current region, determine the number of users in the current region; The air outlet mode of the smart air conditioner is determined based on the number of users in the current area, the distance value, and the target environmental parameters.

4. The method for controlling an air conditioner in conjunction with related equipment according to claim 3, characterized in that, The step of determining the air outlet mode of the smart air conditioner based on the number of users in the current area, the distance value, and the target environmental parameters includes: When the number of users in the current region exceeds a preset user number threshold, the user distribution density in the current region is analyzed based on the location information of each user in the current region, and it is determined whether the user distribution density is greater than or equal to a preset user distribution density threshold; the user number threshold is greater than or equal to 1. When it is determined that the user distribution density is greater than or equal to the user distribution density threshold, the air outlet mode of the smart air conditioner is determined based on the distance value and the target environmental parameters; wherein, when the user status of the user in the current area is used to indicate that the user in the current area is in an active state, the air outlet mode of the smart air conditioner is a first air outlet mode, and when the user status of the user in the current area is used to indicate that the user in the current area is in a fixed state, the air outlet mode of the smart air conditioner is a second air outlet mode, and the air outlet frequency and air outlet volume corresponding to the first air outlet mode are higher than the air outlet frequency and air outlet volume corresponding to the second air outlet mode; When it is determined that the user distribution density is less than the user distribution density threshold, the user status of the user in the current area is determined based on the location information of each user in the current area. Based on the user status of users in the current area, the location of users in the current area is determined; wherein, when the user status of users in the current area indicates that users in the current area are in an active state, the location of users in the current area includes the location of the user farthest from the location of the smart air conditioner and the location of the user closest to the location of the smart air conditioner; when the user status of users in the current area indicates that users in the current area are in a fixed state, the location of users in the current area includes the location of the user farthest from the location of the smart air conditioner. The air outlet mode of the smart air conditioner is determined based on the distance value corresponding to the user's location in the current area.

5. The method for controlling an air conditioner in conjunction with related equipment according to claim 4, characterized in that, The method further includes: Based on the regional information of the current region, including the ambient temperature information of the current region, determine the temperature change of the current region; When the temperature change of the current area is used to indicate that the ambient temperature of the current area increases by a first preset temperature value, the temperature of the current area after the temperature increase is determined according to the temperature change of the current area, and the air outlet mode of the smart air conditioner is adjusted according to the temperature of the current area after the temperature increase. Based on the adjusted air outlet mode of the smart air conditioner, update the air outlet mode of the smart air conditioner, and based on the updated air outlet mode of the smart air conditioner, update the control parameters of the smart air conditioner.

6. The method for controlling an air conditioner in conjunction with related equipment according to claim 5, characterized in that, The method further includes: Based on the ambient temperature information of the current area, including the area information of the current area, it is detected whether the current temperature of the current area has risen to a second preset temperature value. When the detection result is yes, the operation of determining the air outlet mode of the smart air conditioner based on the number of users in the current area, the distance value, and the target environmental parameters is executed; and / or, The system monitors the continuous operating time of the smart air conditioner. When the continuous operating time reaches the preset operating time of the smart air conditioner, it performs the operation of determining the air outlet mode of the smart air conditioner based on the number of users in the current area, the distance value, and the target environmental parameters.

7. The method for controlling an air conditioner in conjunction with related equipment according to any one of claims 1-2 and 4-6, characterized in that, The method further includes: According to the control parameters of the smart air conditioner, the smart air conditioner is controlled to perform matching operations, wherein the control parameters of the smart air conditioner include one or more of the following: air volume control parameters, temperature control parameters, air direction control parameters, and wind speed control parameters. The step of controlling the smart air conditioner to perform matching operations based on the control parameters of the smart air conditioner includes: Based on the airflow control parameters and temperature control parameters of the smart air conditioner, the air inlet of the smart air conditioner is controlled to draw airflow from the outside, which passes through the heat exchanger of the smart air conditioner to obtain heat-exchanged airflow. The first airflow controller of the smart air conditioner is controlled to draw the heat-exchanged airflow through the first air duct. The auxiliary heating module of the smart air conditioner is controlled to draw the airflow flowing through the first air duct to obtain temperature-converted airflow. The second airflow controller of the smart air conditioner is controlled to draw in the temperature-converted airflow into the air inlet cavity of the second airflow controller. The temperature-converted airflow is controlled to pass through the second airflow controller and blow out from the first air outlet matched with the user in the current area. Based on the airflow control parameters and temperature control parameters of the smart air conditioner, the first air inlet of the smart air conditioner is controlled to draw airflow from the outside and pass through the heat exchanger of the smart air conditioner to obtain heat-exchanged airflow. The first airflow controller and the second airflow controller of the smart air conditioner are controlled to draw in the heat-exchanged airflow, and the airflow in the first airflow controller of the smart air conditioner is controlled to flow through the first air duct. The air inlet cavity of the second airflow controller of the smart air conditioner draws in a portion of the airflow in the first airflow controller of the smart air conditioner that has passed through the auxiliary heating device. The other portion of the airflow in the first airflow controller of the smart air conditioner is controlled to merge with the airflow in the second airflow controller of the smart air conditioner, and the merged airflow is blown out from the first air outlet. The airflow magnitude entering the second airflow controller of the smart air conditioner is determined based on the lifting height of the smart air conditioner's lifting plate, and the method further includes: Determine whether the height of the upgrade plate of the smart air conditioner needs to be adjusted. When it is determined that it needs to be turned on, control the upgrade plate of the smart air conditioner to lift it up so that the second air duct of the smart air conditioner can draw in the airflow from the air inlet of the smart air conditioner. Control the natural wind function module of the smart air conditioner to draw in the airflow and perform a configuration operation to obtain the configured airflow. Control the natural wind function module to blow the configured airflow out from the second air outlet of the smart air conditioner. The second air outlet of the smart air conditioner is located between the second airflow controller of the smart air conditioner and the natural wind function module of the smart air conditioner.

8. A device for controlling an air conditioner in conjunction with related equipment, characterized in that, The device includes: The acquisition module is used to acquire the area information of the current area collected by the associated devices in the current scene; the area information of the current area includes at least the user sensor information of the user in the current area and the device information of the target device in the current area, wherein the target device is the device that the user is using in the current area; The analysis module is used to analyze the user sensor information included in the area information based on the pre-constructed cell map corresponding to the current area to obtain the location information of the user in the current area; and to determine the status information of the user in the current area based on the device information of the target device in the current area; the user information includes at least the location information of the user in the current area and the status information of the user in the current area. The determination module is used to determine the target environmental parameters required by the user in the current area based on the user's status information in the current area and the environmental information included in the determined area information; The parameter generation module is used to generate control parameters for the smart air conditioner corresponding to the current area based on the target environmental parameters and the location information of the user's location in the current area. The control parameters of the smart air conditioner are used to control the smart air conditioner to perform matching operations. The device also includes: The judgment module is used to determine whether the user in the current area is in a non-stationary state based on the user sensing information included in the area information; when it is determined that the user in the current area is not in a non-stationary state, the analysis module is triggered to perform the operation of determining the user's status information in the current area based on the device information of the target device in the current area. The determining module is further configured to, when the judging module determines that the user in the current area is in a non-stationary state in the area corresponding to the location, determine the motion information of the user in the current area based on the user sensing information included in the area information and the device operation information of the target device. The motion information of the user in the current area includes at least one of the following: the motion amplitude of the user in the current area, the motion frequency of the user in the current area, the motion trajectory of the user in the current area, and the motion speed of the user in the current area. The determining module is further configured to determine the behavior type of the user in the current area based on the user's motion information in the current area, and to determine the activity status of the user in the current area, which is the status information of the user in the current area; Specifically, the method by which the analysis module determines the user's status information in the current region based on the device information of the target device in the current region includes: Based on the image information included in the user sensing information, determine the user's behavioral posture at the current location in the current area, and monitor the duration of the user's stay in the area corresponding to the current location based on the pre-constructed cell map corresponding to the current area. Based on the pre-set functional information of the area corresponding to the user's location in the current area, the user's behavior and posture in the current area, and the duration, the status information of the user in the area corresponding to their location in the current area is determined; the status information includes at least one of status type, status activity intensity, and behavior type.

9. A device for controlling an air conditioner in conjunction with related equipment, characterized in that, The device includes: Memory containing executable program code; A processor coupled to the memory; The processor calls the executable program code stored in the memory to execute the method for controlling the air conditioner in conjunction with associated devices as described in any one of claims 1-7.

Citation Information

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