Smart home control method and device, electronic equipment, medium and program product
By obtaining entry information through a smart door lock and confirming that the user is a child, the air outlet mode and power of the air conditioner can be controlled. This solves the problems of cumbersome operation of the air conditioner's windless mode and the inability to adjust the output power, thus simplifying operation and protecting children's health.
Patent Information
- Application Number
- CN202210668477.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-06-14
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2042-06-14
AI Technical Summary
The process of activating the air conditioner's windless mode is cumbersome, and the output power cannot be adjusted, affecting the user experience and children's health.
The smart door lock obtains entry information to determine if the user is a child, and sends control commands to the air conditioner to ensure normal airflow from the upper air outlet and no wind-feeling airflow from the lower air outlet, adjusting the air conditioner's output power according to the distance between the user and the air conditioner.
The process of activating the windless mode has been simplified, the connectivity with smart home devices has been improved, the user experience has been enhanced, and the output power has been adjusted according to the distance to protect children's health.
Smart Images

Figure CN115164381B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of household appliances, and particularly relates to a smart home control method and device, an electronic device, a medium and a program product. BACKGROUND
[0002] An air conditioner generally comprises an air conditioner outdoor unit and an air conditioner indoor unit. The air conditioner outdoor unit is provided with a compressor and a condenser. The compressor compresses gaseous refrigerant into high-temperature and high-pressure gaseous refrigerant. The gaseous refrigerant becomes liquid refrigerant at normal temperature and high pressure after heat dissipation in the condenser, and is finally delivered to the air conditioner indoor unit through a capillary tube. The air conditioner indoor unit is provided with an evaporator and a cross-flow fan. After the liquid refrigerant reaches the evaporator, the space suddenly increases, and vaporization occurs to become gaseous low-temperature refrigerant, so as to absorb a large amount of heat. The cross-flow fan guides indoor air to pass through the evaporator, and the air is blown out from the air conditioner indoor unit to the indoor environment after heat exchange in the evaporator, so as to reduce the temperature of the indoor environment.
[0003] In the related technical solution, in order to avoid the direct blowing of air outlet of the air conditioner to children, the air conditioner is provided with a windless mode. In the windless mode, the air outlet can be shielded by a vertical swing blade, so as to reduce the air volume of the air outlet, so that the user can feel coolness but not wind, and the probability of children getting a cold and other symptoms is reduced.
[0004] However, in the above-mentioned related technical solution, the air conditioner lacks linkage with other smart home devices. The user can only open the windless mode through the windless mode button on the air conditioner, and the opening process is relatively cumbersome, which affects the user experience. In addition, the output power of the air conditioner in the windless mode cannot be adjusted, and when the child is close to the air conditioner, there is still a risk of affecting the health of the child. SUMMARY
[0005] In order to solve the above-mentioned problems in the related art, that is, to solve the problem that the opening process of the windless mode of the air conditioner in the related art is relatively cumbersome and the output power in the windless mode cannot be adjusted, the present application provides a smart home control method, device, electronic device, medium and program product.
[0006] An embodiment of the present application provides a smart home control method, the smart home comprising a smart door lock and an air conditioner, the air conditioner comprising an upper air outlet and a lower air outlet arranged in a vertical direction, and the method comprising:
[0007] The smart door lock acquires entry information of a user;
[0008] Based on the entry information, it is determined whether the user is a child;
[0009] if the user is a child, sending a first control instruction to the air conditioner, the first control instruction being used to instruct the air conditioner to start and make the upper air outlet of the air conditioner normally blow air and the lower air outlet of the air conditioner blow air without wind feeling;
[0010] acquiring a distance between the user and the air conditioner;
[0011] determining an output power of the air conditioner based on the distance between the user and the air conditioner.
[0012] The method described above, optionally, the home information includes biological information of the user;
[0013] The determining whether the user is a child based on the home information includes:
[0014] comparing the biological information of the user with preset biological information;
[0015] determining whether the user is a child based on a comparison result of the biological information of the user and the preset biological information.
[0016] The method described above, optionally, the home information includes height of the user;
[0017] The determining whether the user is a child based on the home information includes:
[0018] comparing the height of the user with preset height;
[0019] determining whether the user is a child based on a comparison result of the height of the user and the preset height.
[0020] The method described above, optionally, the determining the output power of the air conditioner based on the distance between the user and the air conditioner includes:
[0021] comparing the distance between the user and the air conditioner with a preset distance;
[0022] if the distance between the user and the air conditioner is less than or equal to the preset distance, adjusting the cross-flow fan of the air conditioner to the lowest gear to run;
[0023] if the distance between the user and the air conditioner is greater than the preset distance, making the air conditioner run at the current gear.
[0024] The method described above, optionally, before the acquiring the distance between the user and the air conditioner after the sending the control instruction to the air conditioner if the user is a child, the method further includes:
[0025] sending a second control instruction to the air conditioner, the second control instruction being used to instruct the lower yawing blade of the air conditioner to rotate;
[0026] acquiring a real-time air outlet amount of a lower air outlet of the air conditioner when the lower swing blade rotates;
[0027] determining a maximum value of the real-time air outlet amount based on the real-time air outlet amount of the lower air outlet of the air conditioner;
[0028] determining a corresponding angle of the lower swing blade and fixing the lower swing blade of the air conditioner based on the maximum value of the real-time air outlet amount.
[0029] The method described above, optionally, the second control instruction is also used to instruct the lower swing blade to rotate for a preset time, and the lower swing blade passes through at least one rotation period within the preset time;
[0030] The rotation period is a time when the lower swing blade reaches the initial position for the second time after the lower swing blade swings from the initial position.
[0031] The method described above, optionally, the acquiring the real-time air outlet amount of the lower air outlet of the air conditioner when the lower swing blade rotates, comprises:
[0032] acquiring an output power of a driving motor connected to the lower swing blade;
[0033] determining the real-time air outlet amount of the lower air outlet of the air conditioner based on the output power of the driving motor.
[0034] The method described above, optionally, the determining the maximum value of the real-time air outlet amount based on the real-time air outlet amount of the lower air outlet of the air conditioner, comprises:
[0035] acquiring a minimum value of the output power of the driving motor, and the minimum value of the output power of the driving motor corresponds to the maximum value of the real-time air outlet amount.
[0036] The method described above, optionally, the first control instruction is also used to instruct a running mode of the air conditioner, and the running mode comprises a refrigeration mode or a heating mode.
[0037] Another embodiment of the present application further provides an intelligent home control device, the intelligent home comprising an intelligent door lock and an air conditioner, the air conditioner comprising an upper air outlet and a lower air outlet arranged along a vertical direction, and the device comprising:
[0038] a first acquisition module, the first acquisition module being arranged on the intelligent door lock, and the first acquisition module being used to acquire entry information of a user;
[0039] a first determination module, the first determination module being used to determine whether the user is a child based on the entry information;
[0040] The sending module is configured to send a first control instruction to the air conditioner if the user is a child, the first control instruction being used to instruct the upper air outlet of the air conditioner to normally blow air and the lower air outlet of the air conditioner to blow air without air feeling.
[0041] The second obtaining module is configured to obtain a distance between the user and the air conditioner.
[0042] The second determining module is configured to determine an output power of the air conditioner based on the distance between the user and the air conditioner.
[0043] A further embodiment of the present application further provides an electronic device, comprising at least one processor and a memory.
[0044] The memory stores computer-executable instructions.
[0045] The at least one processor executes the computer-executable instructions stored in the memory, so that the electronic device performs the method according to any one of the preceding embodiments.
[0046] A further embodiment of the present application further provides a computer-readable storage medium, which stores computer-executable instructions, and the computer-executable instructions are executed by a processor to implement the method according to any one of the preceding embodiments.
[0047] A further embodiment of the present application further provides a computer program product, which comprises a computer program, and the computer program is executed by a processor to implement the method according to any one of the preceding embodiments.
[0048] As can be understood by a person skilled in the art, the embodiments of the present application provide a smart home control method and device, an electronic device, a medium and a program product. The method comprises: obtaining, by a smart door lock, entry information of a user; determining, based on the entry information, whether the user is a child; if the user is a child, sending a first control instruction to an air conditioner, the first control instruction being used to instruct the air conditioner to start and make an upper air outlet of the air conditioner normally blow air and a lower air outlet of the air conditioner blow air without wind feeling; obtaining a distance between the user and the air conditioner; and determining, based on the distance between the user and the air conditioner, an output power of the air conditioner. Through the above setting, the present application can determine whether the user is a child according to the entry information obtained by the smart door lock, and make the upper air outlet of the air conditioner normally blow air and the lower air outlet of the air conditioner blow air without wind feeling when the user is a child, thereby improving the linkage between the smart door lock and the air conditioner, simplifying the opening process of the air blowing mode without wind feeling, and being beneficial to improving the use experience of the user. After the present application determines that the user is a child, the air blowing mode without wind feeling is only opened at the lower air outlet of the air conditioner, and the upper air outlet of the air conditioner still operates in the normal mode, thereby being beneficial to ensuring that the air conditioner has good heat exchange efficiency. In addition, the present application also adjusts the output power of the air conditioner according to the distance between the user and the air conditioner, controls the air volume of the air conditioner, and is thereby beneficial to further protecting the health of the child. BRIEF DESCRIPTION OF DRAWINGS
[0049] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced. Obviously, the drawings in the following description are some embodiments of the present application, and other drawings can be obtained by a person skilled in the art without creative labor.
[0050] Figure 1 is an application scenario diagram of a smart home control method provided by an embodiment of the present application;
[0051] Figure 2 is a flowchart of a smart home control method provided by an embodiment of the present application;
[0052] Figure 3 is a flowchart of a smart home control method provided by another embodiment of the present application;
[0053] Figure 4 is a flowchart of a smart home control method provided by still another embodiment of the present application;
[0054] Figure 5 is a flowchart of a smart home control method provided by yet another embodiment of the present application;
[0055] Figure 6 is a structural schematic diagram of a smart home control device provided by an embodiment of the present application;
[0056] Figure 7 is a structural schematic diagram of an electronic device provided by an embodiment of the present application.
[0057] Reference signs:
[0058] 100 - front door; 110 - intelligent door lock;
[0059] 200 - control device;
[0060] 300 - air conditioner; 310 - upper air outlet; 320 - lower air outlet; 330 - distance sensor;
[0061] 400 - child;
[0062] 501 - first acquisition module; 502 - first determination module; 503 - sending module; 504 - second acquisition module; 505 - second determination module;
[0063] 601 - memory; 602 - processor; 603 - input / output interface. DETAILED DESCRIPTION
[0064] To make the objectives, technical solutions and advantages of the embodiments of the present application clearer, 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 but not all of the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the protection scope of the present application.
[0065] In the scheme of the related art, in order to avoid the direct blowing of the air outlet of the air conditioner to the child, the air conditioner is built-in with a windless mode. The air conditioner can shield the air outlet by using the vertical swing blade in the windless mode, so as to reduce the air volume of the air outlet, so that the user can feel coolness but not wind, and the probability of the child having a cold and other symptoms is reduced.
[0066] However, the inventors of the present application find that the air conditioner in the related art lacks linkage with other smart home, affecting the user experience. For example, after the user goes home, the user needs to start the air conditioner first, and then can select the windless mode for operation; in this process, the user needs to walk from the entrance door to the air conditioner, and needs to perform at least two key pressing actions to start the windless mode, and the starting process is relatively cumbersome; if the user is a child, due to the height and ability of the child, the process will be more difficult, thereby the user experience is poor. In addition, in the related art, when the windless mode of the air conditioner is started, the heat exchange efficiency of the air conditioner is low, so that the indoor temperature changes slowly, and the user generally expects the indoor temperature to quickly enter the comfortable range after going home, and this contradiction between supply and demand will also reduce the user experience. Moreover, the output power of the air conditioner in the windless mode cannot be adjusted, and when the child is close to the air conditioner, there is still a risk of affecting the health of the child.
[0067] Therefore, the embodiments of the present application aim to provide a smart home control method and device, electronic equipment, medium and program product. According to the entry information obtained by the smart door lock, it is determined whether the user is a child, and when the user is a child, the upper air outlet of the air conditioner is normally air outlet and the lower air outlet of the air conditioner is windless air outlet, thereby improving the linkage between the smart door lock and the air conditioner, simplifying the starting process of the windless mode, and improving the user experience. After the embodiments of the present application determine that the user is a child, only the windless mode is started at the lower air outlet of the air conditioner, and the upper air outlet of the air conditioner still operates in the normal mode, thereby facilitating to ensure that the air conditioner has good heat exchange efficiency. The embodiments of the present application also determine the output power of the air conditioner based on the distance between the user and the air conditioner, and control the air outlet amount of the air conditioner, thereby facilitating to further protect the health of the child.
[0068] In order to facilitate the understanding of the present application, the application scenario of the smart home control method provided by the embodiments of the present application will be described first.
[0069] Figure 1 is the application scenario diagram of the smart home control method provided by an embodiment of the present application. Please refer to Figure 1 The application scenario of the smart home control method provided by the embodiments of the present application includes an entrance door 100, a control device 200, an air conditioner 300 and a user (the user in the figure is a child 400), wherein the entrance door 100 is provided with a smart door lock 110; the air conditioner 300 is provided with an upper air outlet 310 and a lower air outlet 320, and the upper air outlet 310 and the lower air outlet 320 can jointly air or individually air; the air conditioner 300 is also provided with a distance sensor 330 for obtaining the distance between the child 400 and the air conditioner. The smart door lock 110 and the air conditioner 300 are connected to the control device 200 in a wireless or wired manner.
[0070] The control device 200 can be a server in the cloud, a terminal device of the user, or a processor in one of the plurality of smart home devices (such as the smart door lock 110) of the user. Figure 1 FIG. 1 is a schematic diagram of the control device as a server.
[0071] In Figure 1 In the application scenario shown in FIG. 1, the control device 200 can interact with the smart door lock 110 and the air conditioner 300 to implement the smart home control method provided in this embodiment. Specifically, the following steps are performed.
[0072] Figure 2 FIG. 2 is a flowchart of the smart home control method provided in an embodiment of the present application. Please refer to Figure 2 The method includes the following steps.
[0073] In step S110, the smart door lock acquires the entry information of the user.
[0074] For example, the smart door lock can be provided with a corresponding acquisition module, such as a biometric identification module (including a fingerprint identification module, an iris identification module), a physical identification module (including a distance sensor, an angle sensor, an image sensor), etc. The smart door lock can acquire the entry information of the user through the acquisition module. Correspondingly, the entry information in this embodiment includes biometric information (fingerprint information, iris information, etc.) or physical information (height information, image information, etc.).
[0075] For example, when the smart door lock is provided with a fingerprint module, the unlocking mode of the smart door lock can be bound to the fingerprint information of the user. When the user needs to enter the house, the user needs to input the fingerprint through the fingerprint module, and the fingerprint module can acquire the fingerprint information of the user at this time.
[0076] For another example, when the smart door lock is provided with a face recognition module, the unlocking mode of the smart door lock can be bound to the iris information of the user. When the user needs to enter the house, the face recognition module can acquire the iris information of the user.
[0077] For example, the smart door lock is provided with a distance sensor and an angle sensor. When the user approaches the entry door, the distance sensor can acquire the distance information between the user and the entry door, and the angle sensor can acquire the angle information between the user and the distance sensor. The height of the user can be obtained by calculating based on the distance information and the angle information.
[0078] For another example, the smart door lock is provided with an image sensor. When the user approaches the entry door, the image sensor can acquire the image information of the user.
[0079] In step S120, it is determined whether the user is a child based on the entry information.
[0080] For example, the control device pre-stores standard entry information entered in advance, and the standard entry information is used to point to a child in the user's home. When the entry information is the same as the standard entry information, it is determined that the user is a child in the user's home; when the entry information is different from the standard entry information, it is determined that the user is not a child in the user's home.
[0081] Step S130: If the user is a child, a first control instruction is sent to the air conditioner, and the first control instruction is used to instruct the air conditioner to start and make the upper air outlet of the air conditioner normally blow air and the lower air outlet of the air conditioner blow air without wind feeling.
[0082] For example, after it is determined that the user is a child, the control device can send a first control instruction to the air conditioner to start the air conditioner and control the upper air outlet of the air conditioner to normally blow air and the lower air outlet of the air conditioner to blow air without wind feeling.
[0083] Specifically, the first control instruction can be sent by the smart door lock, and after the user successfully enters the house, the smart door lock synchronously sends the first control instruction to the air conditioner.
[0084] Alternatively, the first control instruction can be sent by the terminal device of the user, and after the user successfully enters the house, the terminal device of the user acquires the entry information of the user and sends the first control instruction to the air conditioner.
[0085] Optionally, the first control instruction is also used to instruct the operation mode of the air conditioner, and the operation mode includes a cooling mode or a heating mode, so as to instruct the air conditioner to operate in a suitable mode according to the season and the temperature difference between indoor and outdoor.
[0086] Step S140: The distance between the user and the air conditioner is acquired.
[0087] For example, the distance between the user and the air conditioner can be obtained by a distance sensor arranged on the air conditioner, and the distance sensor can transmit the acquired distance data to the control device.
[0088] Step S150: The output power of the air conditioner is determined based on the distance between the user and the air conditioner.
[0089] In one possible implementation, the method for determining the output power of the air conditioner is to compare the distance between the user and the air conditioner with a preset distance. Specifically, the control device pre-stores the preset distance, which can be a safety distance set in advance. After the distance between the user and the air conditioner is compared with the preset distance, the output power of the air conditioner can be adjusted according to the comparison result.
[0090] Optionally, if the distance between the user and the air conditioner is less than or equal to the preset distance, it is proved that the child is close to the air conditioner, and a large air volume of the air conditioner is easy to make the child feel uncomfortable, so the cross-flow fan of the air conditioner is adjusted to the lowest gear to run, so as to reduce the output power of the air conditioner.
[0091] If the distance between the user and the air conditioner is greater than the preset distance, it is proved that the child is far away from the air conditioner, and at this time the air conditioner can be allowed to run at the current gear, so as to maintain good heat exchange efficiency.
[0092] As can be seen from the above description, the embodiment can determine whether the user is a child according to the access information obtained by the intelligent door lock, and allow the upper air outlet of the air conditioner to normally blow air and the lower air outlet of the air conditioner to blow air without wind feeling when the user is a child, thereby improving the linkage between the intelligent door lock and the air conditioner, simplifying the opening process of the air feeling mode, and being conducive to improving the user's use experience. After the application determines that the user is a child, the air feeling mode is only opened at the lower air outlet of the air conditioner, and the upper air outlet of the air conditioner still operates in the normal mode, thereby being conducive to ensuring that the air conditioner has good heat exchange efficiency. In addition, the application also adjusts the output power of the air conditioner according to the distance between the user and the air conditioner, and controls the air volume of the air conditioner, thereby being conducive to further protecting the health of children.
[0093] Figure 3 is a flow chart of the smart home control method provided by another embodiment of the application. Please refer to Figure 3 Optionally, the access information of the embodiment includes biological information of the user, wherein the biological information includes fingerprint information and iris information.
[0094] Correspondingly, step S120: determining whether the user is a child based on the access information, includes:
[0095] Step S121: comparing the biological information of the user with preset biological information.
[0096] Step S122: determining whether the user is a child based on the comparison result of the biological information of the user and the preset biological information.
[0097] For example, when the access information is fingerprint information, the control device can prestore preset fingerprint information, and the preset fingerprint information is the fingerprint information of the children in the user's home. By comparing the similarity of the two, it can be determined whether the user is a child.
[0098] When the access information is iris information, the control device can prestore preset iris information, and the preset iris information is the iris information of the children in the user's home. By comparing the similarity of the two, it can be determined whether the user is a child.
[0099] Figure 4 is a flow chart of the smart home control method provided by another embodiment of the application. Please refer to Figure 4 Optionally, the access information of the embodiment includes the height of the user.
[0100] Correspondingly, step S120: determining whether the user is a child based on the access information, includes:
[0101] Step S123: comparing the height of the user with a preset height.
[0102] Step S124: determining whether the user is a child based on the comparison result of the height of the user and the preset height.
[0103] For example, when the entry information is height, the preset height can be pre-stored in the control device, and the preset height can be a range, for example, less than 150 cm can be set as the preset height. By comparing the height with the preset height, if the height falls within the preset height range, it can be determined that the user is a child.
[0104] Figure 5 is a flowchart of the smart home control method provided by another embodiment of the present application. Please refer to Figure 5 It can be understood that the lower air outlet of the air conditioner is not completely without air in the windless mode, and there is a gap between the lower vertical swing leaves in the lower air outlet or a hole structure is arranged on the lower vertical swing leaves, so that air can pass through the lower vertical swing leaves. In order to further improve the heat exchange efficiency of the lower air outlet of the air conditioner in the windless mode, in one possible implementation, after the control instruction is sent to the air conditioner in step S130: if the user is a child, before the distance between the user and the air conditioner is obtained in step S140, the method of the present application further includes:
[0105] Step S160: sending a second control instruction to the air conditioner, the second control instruction being used to instruct the lower horizontal swing leaves of the air conditioner to rotate.
[0106] For example, the second control instruction can be sent by the smart door lock to the processor of the air conditioner.
[0107] Alternatively, the second control instruction can be sent by the processor of the air conditioner after the first control instruction is received.
[0108] Alternatively, the second control instruction can be sent by the control device to the processor of the air conditioner.
[0109] Optionally, the second control instruction can instruct the driving motor connected with the lower horizontal swing leaves to work, so as to output corresponding power to drive the lower horizontal swing leaves to rotate.
[0110] Preferably, the second control instruction is also used to instruct the lower horizontal swing leaves to rotate for a preset time, and the lower horizontal swing leaves pass through at least one rotation period within the preset time; wherein the rotation period is the time from the initial position of the lower horizontal swing leaves to the second time of reaching the initial position after the initial position starts to swing. So as to ensure that the lower horizontal swing leaves can pass through any position in the swing range thereof.
[0111] Step S170: obtaining the real-time air volume of the lower air outlet of the air conditioner when the lower horizontal swing leaves rotate.
[0112] In an optional implementation, the real-time air outlet of the lower air outlet of the air conditioner is obtained when the lower swing blade rotates, comprising:
[0113] The output power of the driving motor connected to the lower swing blade is obtained.
[0114] Specifically, since the lower swing blade is always in a swing state, the air volume received by the lower swing blade is different at different swing angles, and the output power of the driving motor is different. Corresponding to the driving motor, the change of the output power can be obtained according to the change of the current.
[0115] Based on the output power of the driving motor, the real-time air outlet of the lower air outlet of the air conditioner is determined.
[0116] Specifically, since the output power of the driving motor is inversely proportional to the air volume received by the lower swing blade, the greater the output power of the driving motor, the smaller the real-time air outlet of the lower air outlet; the smaller the output power of the driving motor, the greater the real-time air outlet of the lower air outlet.
[0117] Step S180: Based on the real-time air outlet of the lower air outlet of the air conditioner, the maximum value of the real-time air outlet is determined.
[0118] Specifically, the method for determining the maximum value of the real-time air outlet is: obtaining the minimum value of the output power of the driving motor, and the maximum value of the real-time air outlet when the output power of the driving motor is at the minimum value. At this time, the air passage between the lower swing blade and the lower vertical swing blade of the air conditioner is best, and the air outlet of the lower air outlet of the air conditioner in the windless mode is maximum.
[0119] Step S190: Based on the maximum value of the real-time air outlet, the angle of the corresponding lower swing blade is determined and the lower swing blade of the air conditioner is fixed.
[0120] Specifically, when the maximum value of the real-time air outlet is determined, the swing angle of the corresponding lower swing blade is determined, and the lower swing blade is fixed at the angle, which can ensure that the real-time air outlet of the lower air outlet of the air conditioner is at the maximum value, thereby improving the heat exchange efficiency of the air conditioner.
[0121] Figure 6 It is a structural schematic diagram of the smart home control device provided by an embodiment of the present application. Please refer to Figure 6 The smart home control device of the present embodiment comprises:
[0122] The first acquisition module 501 is arranged on the smart door lock, and the acquisition module 401 is used to acquire the household information of the user.
[0123] The first determination module 502 is used to determine whether the user is a child based on the household information.
[0124] The sending module 503 is configured to send a first control instruction to the air conditioner if the user is a child, the first control instruction being used to instruct the upper air outlet of the air conditioner to normally blow air and the lower air outlet of the air conditioner to blow air without wind feeling.
[0125] The second obtaining module 504 is configured to obtain the distance between the user and the air conditioner.
[0126] The second determining module 505 is configured to determine the output power of the air conditioner based on the distance between the user and the air conditioner.
[0127] The smart home control device provided in this embodiment can perform the actions of the control device in the method embodiments, and has similar implementation principles and technical effects, which will not be described here again.
[0128] The smart home control device provided in this embodiment can determine whether the user is a child according to the access information obtained by the smart door lock, and make the upper air outlet of the air conditioner normally blow air and the lower air outlet of the air conditioner blow air without wind feeling when the user is a child, thereby improving the linkage between the smart door lock and the air conditioner, simplifying the opening process of the air feeling mode, and being beneficial to improving the user experience. After determining that the user is a child, the smart home control device provided in this embodiment only opens the air feeling mode at the lower air outlet of the air conditioner, and the upper air outlet of the air conditioner still operates in the normal mode, thereby being beneficial to ensuring that the air conditioner has good heat exchange efficiency. In addition, the smart home control device provided in this embodiment adjusts the output power of the air conditioner according to the distance between the user and the air conditioner, and controls the air volume of the air conditioner, thereby being beneficial to further protecting the health of children.
[0129] Figure 7 FIG. 1 is a structural schematic diagram of an electronic device provided in an embodiment of the present application. Please refer to Figure 7 The electronic device provided in this embodiment further includes at least one processor 602 and a memory 601.
[0130] The memory 601 stores computer execution instructions.
[0131] The at least one processor 602 is configured to implement the smart home control method in this embodiment when the program instructions are executed. The specific implementation principles can be referred to the above embodiments, which will not be described here again.
[0132] The electronic device can further include an input / output interface 603.
[0133] The input / output interface 603 can include a separate output interface and an input interface, or an integrated input and output integrated interface. The output interface is used to output data, and the input interface is used to obtain input data.
[0134] The embodiment also provides a computer readable storage medium, and the computer readable storage medium stores computer execution instructions. When the computer execution instructions are executed by at least one processor of an electronic device, the computer execution instructions are used to implement the smart home control method in the above embodiment.
[0135] The embodiment also provides a computer program product, and the program product includes execution instructions stored in a readable storage medium. At least one processor of an electronic device can read the execution instructions from the readable storage medium, and the at least one processor executes the execution instructions to enable the electronic device to implement the smart home control method provided in the various embodiments.
[0136] In the description of the embodiments of the present application, the terms "first", "second" are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first", "second" can explicitly or implicitly include at least one of the features. In the description of the present application, the meaning of "a plurality of" is at least two, for example, two, three, etc., unless otherwise explicitly specified and limited.
[0137] In the embodiments of the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connecting", "connecting", "fixing" and the like should be understood in a broad sense, for example, can be fixedly connected, or can be detachably connected, or can be integrated; can be directly connected, or can be indirectly connected through an intermediate medium; can be the internal communication of two elements or the interaction relationship between two elements, unless otherwise explicitly limited. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0138] In the description of the embodiments of the present application, it should be understood that the terms "inner", "outer", "upper", "bottom", "front", "rear" and the like indicate the orientation or positional relationship (if any) shown in the drawings, and are only used to facilitate the description of the present application and simplify the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0139] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, and not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present application.
Claims
1. A smart home control method, characterized by, The smart home includes a smart door lock and an air conditioner, the air conditioner includes an upper air outlet and a lower air outlet arranged in a vertical direction, and the method includes: The smart door lock acquires user access information; Based on the access information, it is determined whether the user is a child; If the user is a child, a first control instruction is sent to the air conditioner, the first control instruction being used to instruct the air conditioner to start and make the upper air outlet of the air conditioner normally blow air and the lower air outlet of the air conditioner blow air without wind feeling; The distance between the user and the air conditioner is acquired; Based on the distance between the user and the air conditioner, the output power of the air conditioner is determined; After the smart door lock sends the control instruction to the air conditioner if the user is a child, before the distance between the user and the air conditioner is acquired, the method further includes: A second control instruction is sent to the air conditioner, the second control instruction being used to instruct the lower horizontal swing blade of the air conditioner to rotate; The real-time air outlet amount of the lower air outlet of the air conditioner when the lower horizontal swing blade rotates is acquired; Based on the real-time air outlet amount of the lower air outlet of the air conditioner, the maximum value of the real-time air outlet amount is determined; Based on the maximum value of the real-time air outlet amount, the angle of the corresponding lower horizontal swing blade is determined and the lower horizontal swing blade of the air conditioner is fixed; The second control instruction is also used to instruct the lower horizontal swing blade to rotate for a preset time, and the lower horizontal swing blade passes through at least one rotation period within the preset time; The rotation period is the time from when the lower horizontal swing blade starts to swing from an initial position to when it reaches the initial position for the second time; The acquisition of the real-time air outlet amount of the lower air outlet of the air conditioner when the lower horizontal swing blade rotates includes: The output power of a driving motor connected to the lower horizontal swing blade is acquired; Based on the output power of the driving motor, the real-time air outlet amount of the lower air outlet of the air conditioner is determined; The determination of the maximum value of the real-time air outlet amount based on the real-time air outlet amount of the lower air outlet of the air conditioner includes: The minimum value of the output power of the driving motor is acquired, and the minimum value of the output power of the driving motor corresponds to the maximum value of the real-time air outlet amount.
2. The method of claim 1, wherein, The access information includes biological information of the user; The determination of whether the user is a child based on the access information includes: The biological information of the user is compared with preset biological information; Based on the comparison result of the biological information of the user and the preset biological information, it is determined whether the user is a child.
3. The method of claim 1, wherein, The access information includes the height of the user; The determination of whether the user is a child based on the access information includes: The height of the user is compared with a preset height; Based on the comparison result of the height of the user and the preset height, it is determined whether the user is a child.
4. The method of claim 1, wherein, The determination of the output power of the air conditioner based on the distance between the user and the air conditioner includes: The distance between the user and the air conditioner is compared with a preset distance; If the distance between the user and the air conditioner is less than or equal to the preset distance, the cross-flow fan of the air conditioner is adjusted to the lowest gear; If the distance between the user and the air conditioner is greater than the preset distance, the air conditioner is made to run at the current gear.
5. The method of claim 1, wherein, The first control instruction is also used to indicate an operation mode of the air conditioner, and the operation mode includes a cooling mode or a heating mode. 6.A smart home control apparatus using the smart home control method according to any one of claims 1 to 5, characterized by The smart home includes a smart door lock and an air conditioner, the air conditioner includes an upper air outlet and a lower air outlet arranged in a vertical direction, and the device includes: A first acquisition module is arranged on the smart door lock, and is used to acquire entry information of a user; A first determination module is used to determine whether the user is a child based on the entry information; A sending module is used to send a first control instruction to the air conditioner if the user is a child, and the first control instruction is used to instruct the air conditioner to normally output air from the upper air outlet and to output air without wind feeling from the lower air outlet of the air conditioner; A second acquisition module is used to acquire a distance between the user and the air conditioner; A second determination module is used to determine an output power of the air conditioner based on the distance between the user and the air conditioner.
7. An electronic device, comprising: The electronic device includes at least one processor and a memory; The memory stores computer execution instructions; The at least one processor executes the computer execution instructions stored in the memory, so that the electronic device executes the method in any one of claims 1-5.
8. A computer-readable storage medium, characterized in that, The computer readable storage medium stores computer execution instructions, and the computer execution instructions are executed by the processor to implement the method in any one of claims 1-5.
9. A computer program product, characterised in that, The computer program is executed by the processor to implement the method in any one of claims 1-5.
Citation Information
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