Air conditioning air supply method, device, equipment and product for smart home
By connecting wall-mounted air conditioners to sensors, and using servers and sensors to acquire liveness characteristics, a smart air conditioning method is achieved. This solves the problem of the single function of traditional wall-mounted air conditioners, provides diversified air conditioning solutions, and enhances user experience and technological feel.
Patent Information
- Application Number
- CN202210699032.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-06-20
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2042-06-20
AI Technical Summary
Traditional wall-mounted air conditioners have limited functions and are unable to meet the needs of environmental air conditioning in complex scenarios with multiple people, and cannot provide a comfortable, smart and diversified home life experience.
By connecting wall-mounted air conditioners to sensors, and using servers and sensors to acquire human characteristics, an intelligent air conditioning method is implemented. The system dynamically adjusts the airflow based on human characteristics and temperature targets, including controlling the wind speed and time in cooling and heating modes, and performing regional air exchange to avoid direct airflow onto people.
It enables multi-zone air conditioning in smart home environments, enhancing user comfort and technological feel, meeting air quality needs in multi-person activity scenarios, and improving user satisfaction.
Smart Images

Figure CN115264809B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of smart home technology, and in particular to a method, device, equipment and product for air conditioning supply in a smart home. Background Art
[0002] With technological advancements, the quality of life has improved. Users are increasingly demanding a more comfortable home environment for activities like family gatherings, board games, home exercise, and playing with their babies. Traditional wall-mounted air conditioners account for a large proportion of existing home air conditioners. However, these traditional wall-mounted air conditioners have limited functionality and are unable to meet the needs of complex, multi-person environments, thus failing to provide users with a comfortable, intelligent, and diversified home living experience. Summary of the Invention
[0003] The present invention provides an air-conditioning air supply method for a smart home, so as to solve the above-mentioned defects in the prior art.
[0004] The present invention also provides an air-conditioning and air-supplying device for a smart home.
[0005] The present invention also provides an electronic device.
[0006] The present invention also provides a computer program product.
[0007] According to a first aspect of the present invention, a smart home air conditioning and air supply method is provided, which is applied to a server. The smart home includes: a wall-mounted air conditioner and a sensor, wherein the wall-mounted air conditioner and the sensor are respectively arranged in indoor areas, and the server is respectively connected to the wall-mounted air conditioners and the sensors in multiple indoor areas;
[0008] The method comprises:
[0009] In response to a start signal, extracting target temperature and living body characteristics;
[0010] Determining that the liveness feature satisfies a preset liveness threshold, obtaining a first indoor area corresponding to the liveness feature;
[0011] The wall-mounted air conditioner is controlled to adjust the temperature of the first indoor area corresponding to the living body feature until the temperature of the first indoor area meets the target temperature.
[0012] Optionally, the step of extracting the target temperature and living body characteristics in response to the start signal specifically includes:
[0013] In response to a start signal of a cooling mode, acquiring a cooling target temperature, a preset cooling temperature, and a living body characteristic;
[0014] Wherein, the preset refrigeration temperature is lower than the refrigeration target temperature.
[0015] Specifically, this embodiment provides an implementation method for extracting target temperature and living body characteristics. In response to the start signal of the cooling mode, the cooling target temperature, the preset cooling temperature and the living body characteristics are acquired. The acquisition of the cooling target temperature and the preset cooling temperature facilitates rapid cooling of the indoor area.
[0016] Optionally, the step of controlling the wall-mounted air conditioner to adjust the temperature of the first indoor area corresponding to the living feature until the temperature of the first indoor area meets the target temperature specifically includes:
[0017] Controlling the wall-mounted air conditioner to deliver cold air to the first area of the room at a first wind speed and continuously for a first preset cooling time;
[0018] After the first preset cooling time ends, obtaining the instantaneous ambient temperature of the first indoor area and making a judgment;
[0019] Determining that the instantaneous ambient temperature is less than or equal to the preset cooling temperature, the wall-mounted air conditioner delivers cold air to the first indoor area at a second wind speed, wherein the second wind speed is less than the first wind speed;
[0020] If it is determined that the instantaneous ambient temperature is greater than the preset cooling temperature, the wall-mounted air conditioner continues to deliver cold air to the first indoor area at the first wind speed.
[0021] Specifically, this embodiment provides an implementation method for controlling a wall-mounted air conditioner to adjust the temperature of a first indoor area corresponding to living body characteristics. By supplying air to the indoor area at a first wind speed and using a preset cooling target temperature as a comparison temperature, rapid cooling of the indoor area is achieved.
[0022] Optionally, the step of determining that the instantaneous ambient temperature is less than or equal to the preset cooling temperature, and then delivering cold air to the first indoor area at a second wind speed by the wall-mounted air conditioner, specifically includes:
[0023] Controlling the wall-mounted air conditioner to deliver cold air to the first indoor area at a second wind speed for a second preset cooling time;
[0024] After the second preset cooling time ends, obtaining the instantaneous ambient temperature of the first indoor area and making a judgment;
[0025] Determining that the instantaneous ambient temperature is greater than the cooling target temperature, delivering cold air to the first indoor area at the first wind speed;
[0026] If it is determined that the instantaneous ambient temperature is less than or equal to the cooling target temperature, cold air is continuously delivered to the first indoor area at the second wind speed.
[0027] Specifically, this embodiment provides an implementation method for a wall-mounted air conditioner to deliver cold air to a first indoor area at a second wind speed. After the temperature of the indoor area drops to a preset cooling temperature, cold air is delivered to the indoor area at the second wind speed, and the cooling target temperature is used as a comparison temperature, so as to improve the comfort of the indoor area. Even when the ambient temperature is too high, cold air is delivered to the indoor area at the first wind speed again, and the preset cooling temperature is used as a comparison temperature for judgment, thereby maintaining the ambient temperature comfort of the indoor area.
[0028] Optionally, the step of waiting until the temperature of the first indoor area meets the target temperature further includes:
[0029] Acquire a second indoor area, where the second indoor area is an adjacent area to the first indoor area;
[0030] Controlling the wall-mounted air conditioner in the second indoor area to deliver cold air to the second indoor area at the second wind speed for a second preset cooling time;
[0031] After the second preset cooling time ends, the wall-mounted air conditioner in the first indoor area switches to exhaust mode, and the wall-mounted air conditioner in the second indoor area switches to intake mode and runs for a third preset cooling time to complete one air replacement;
[0032] Repeat the above steps to complete the air replacement N times, where N is a positive integer greater than or equal to two.
[0033] Specifically, this embodiment provides an implementation method until the temperature of the first indoor area meets the target temperature. Since there are many indoor areas, activities are usually concentrated in one of the indoor areas, that is, the first indoor area, while the second indoor area adjacent to the first indoor area does not undergo corresponding air conditioning or the adjustment mode is not suitable for scenarios where multiple people are active.
[0034] Optionally, the step of extracting the target temperature and living body characteristics in response to the start signal specifically includes:
[0035] In response to a start signal of a heating mode, obtaining a heating target temperature, a preset heating temperature, and a living body characteristic;
[0036] Wherein, the preset heating temperature is higher than the heating target temperature.
[0037] Specifically, this embodiment provides another implementation method for extracting target temperature and living body characteristics. In response to the start signal of the heating mode, the heating target temperature, the preset heating temperature and the living body characteristics are acquired. The acquisition of the heating target temperature and the preset heating temperature facilitates the rapid heating of the indoor area.
[0038] Optionally, the step of controlling the wall-mounted air conditioner to adjust the temperature of the first indoor area corresponding to the living feature until the temperature of the first indoor area meets the target temperature specifically includes:
[0039] Controlling the wall-mounted air conditioner to deliver hot air to the first area of the room at a first wind speed and for a first preset heating time;
[0040] After the first preset heating time ends, obtaining the instantaneous ambient temperature of the first indoor area and making a judgment;
[0041] Determining that the instantaneous ambient temperature is less than or equal to the preset heating temperature, the wall-mounted air conditioner delivers hot air to the first indoor area at a second wind speed, wherein the second wind speed is less than the first wind speed;
[0042] If it is determined that the instantaneous ambient temperature is greater than the preset heating temperature, the wall-mounted air conditioner continues to deliver hot air to the first indoor area at the first wind speed.
[0043] Specifically, this embodiment provides an implementation method for controlling a wall-mounted air conditioner to adjust the temperature of a first indoor area corresponding to living body characteristics. By supplying air to the indoor area at a first wind speed and using a preset heating target temperature as a comparison temperature, rapid heating of the indoor area is achieved.
[0044] Optionally, the step of determining that the instantaneous ambient temperature is less than or equal to the preset heating temperature, and then delivering hot air to the first indoor area at a second wind speed by the wall-mounted air conditioner, specifically includes:
[0045] Controlling the wall-mounted air conditioner to deliver hot air to the first indoor area at a second wind speed and continuing the heating for a second preset duration;
[0046] After the second preset heating time ends, obtaining the instantaneous ambient temperature of the first indoor area and making a judgment;
[0047] Determining that the instantaneous ambient temperature is lower than the heating target temperature, delivering hot air to the first indoor area at the first wind speed;
[0048] If it is determined that the instantaneous ambient temperature is greater than or equal to the heating target temperature, hot air is continuously delivered to the first indoor area at the second wind speed.
[0049] Specifically, this embodiment provides an implementation method for a wall-mounted air conditioner to deliver hot air to a first indoor area at a second wind speed. After the temperature of the indoor area rises to a preset heating temperature, hot air is delivered to the indoor area at the second wind speed, and the heating target temperature is used as a comparison temperature, so as to improve the comfort of the indoor area. Even when the ambient temperature is too low, hot air is delivered to the indoor area at the first wind speed again, and the preset heating temperature is used as a comparison temperature for judgment, thereby maintaining the ambient temperature comfort of the indoor area.
[0050] Optionally, the step of waiting until the temperature of the first indoor area meets the target temperature further includes:
[0051] Acquire a second indoor area, where the second indoor area is an adjacent area to the first indoor area;
[0052] controlling the wall-mounted air conditioner in the second indoor area to deliver hot air to the second indoor area at the second wind speed for a second preset heating time;
[0053] After the second preset heating time ends, the wall-mounted air conditioner in the first indoor area switches to exhaust mode, and the wall-mounted air conditioner in the second indoor area continues to deliver hot air to the second indoor area for a third preset heating time;
[0054] After the third preset heating time ends, the wall-mounted air conditioner in the first indoor area continues to deliver hot air to the first indoor area, and the wall-mounted air conditioner in the second indoor area switches to the air supply mode and continues the second preset heating time to complete one air replacement;
[0055] Repeat the above steps to complete the air replacement N times, where N is a positive integer greater than or equal to two.
[0056] Specifically, this embodiment provides another implementation method until the temperature of the first indoor area meets the target temperature. Since there are many indoor areas, activities are usually concentrated in one of the indoor areas, that is, the first indoor area, while the second indoor area adjacent to the first indoor area does not undergo corresponding air conditioning or the adjustment mode is not suitable for scenarios where multiple people are active.
[0057] Optionally, the step of controlling the wall-mounted air conditioner to adjust the temperature of the first indoor area corresponding to the living feature until the temperature of the first indoor area meets the target temperature further includes:
[0058] Acquire a first liveness vector and a second liveness vector within a continuous acquisition time period, wherein the first liveness vector points to a position parameter of the liveness feature at the start time of the acquisition time period, and the second liveness vector points to a position parameter of the liveness feature at the end time of the acquisition time period;
[0059] generating an active area of the living body feature according to the first living body vector and the second living body vector;
[0060] A temperature adjustment area is determined according to the first indoor area and the activity area, and the wall-mounted air conditioner in the first indoor area delivers cold air or hot air toward the temperature adjustment area.
[0061] Specifically, this embodiment provides another implementation method for controlling a wall-mounted air conditioner to adjust the temperature of a first indoor area corresponding to a living body characteristic. By obtaining a first living body vector and a second living body vector, direct blowing of cold or hot air on the human body is avoided.
[0062] Optionally, if the living feature satisfies a preset living feature threshold, the step of obtaining the indoor area corresponding to the living feature specifically includes:
[0063] If the number of liveness features collected during the continuous collection time period is greater than or equal to the preset number of liveness features, it is determined that the liveness features meet the preset liveness threshold;
[0064] and / or, if the activity range of the liveness feature collected during the continuous collection time period is greater than or equal to a preset activity range, then it is determined that the liveness feature meets a preset liveness threshold;
[0065] And / or, if the collected action frequency of the living feature is greater than or equal to a preset action frequency within a continuous collection time period, it is determined that the living feature meets a preset living threshold.
[0066] Specifically, this embodiment provides an implementation method for obtaining the indoor area corresponding to the living body characteristics. By obtaining various forms of living body characteristics, it can more accurately judge whether there are multiple people conducting indoor activities in the indoor area, and then automatically adjust the corresponding air supply mode to achieve intelligent adjustment to meet user needs.
[0067] According to a second aspect of the present invention, an air conditioning and air supply device for a smart home is provided, comprising: a response module, an acquisition module, and a control module;
[0068] The response module is used to extract the target temperature and living body characteristics in response to the start signal;
[0069] The acquisition module is configured to determine that the liveness feature satisfies a preset liveness threshold, and then acquire a first indoor area corresponding to the liveness feature;
[0070] The control module is used to control the wall-mounted air conditioner to adjust the temperature of the first indoor area corresponding to the living body feature until the temperature of the first indoor area meets the target temperature.
[0071] According to a third aspect of the present invention, an electronic device is provided, comprising: a memory and a processor;
[0072] The memory and the processor communicate with each other via a bus;
[0073] The memory stores computer instructions that can be executed on the processor;
[0074] When the processor calls the computer instructions, it can execute the above-mentioned smart home air conditioning and air supply method.
[0075] According to a fourth aspect of the present invention, a computer program product is provided, which includes a non-transitory machine-readable medium storing a computer program, and when the computer program is executed by a processor, the steps of the above-mentioned smart home air conditioning supply method are implemented.
[0076] The above one or more technical solutions in the present invention have at least one of the following technical effects: the present invention provides a smart home air conditioning air supply method, device, equipment and product, which connects the traditional wall-mounted air conditioner with a sensor to form an intelligent home ecological environment, thereby realizing a more intelligent home ecological environment based on the selected mode and biological characteristics of the living body, providing a comfortable and diversified experience for the user's family life, improving user satisfaction, and at the same time enhancing the sense of technology of the traditional wall-mounted air conditioner. BRIEF DESCRIPTION OF THE DRAWINGS
[0077] In order to more clearly illustrate the technical solutions in the present invention or the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0078] Figure 1 This is one of the schematic diagrams of the arrangement relationship between the wall-mounted air conditioner, the sensor, the server, and the indoor area in the smart home air conditioning and air supply method provided by the present invention;
[0079] Figure 2 This is the second schematic diagram of the arrangement relationship between the wall-mounted air conditioner, sensors, servers, and indoor areas in the smart home air conditioning and air supply method provided by the present invention;
[0080] Figure 3This is a flow chart of the air conditioning air supply method for a smart home provided by the present invention;
[0081] Figure 4 This is a schematic structural diagram of the air conditioning and air supply device for a smart home provided by the present invention;
[0082] Figure 5 It is a structural schematic diagram of the electronic device provided by the present invention.
[0083] Reference numerals:
[0084] 10. Wall-mounted air conditioner; 20. Sensor; 30. Server; 40. Indoor area; 50. Response module; 60. Acquisition module; 70. Control module; 810. Processor; 820. Communication interface; 830. Memory; 840. Communication bus. DETAILED DESCRIPTION
[0085] To make the objectives, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts shall fall within the scope of protection of the present invention.
[0086] The present invention is described in detail below with reference to the accompanying drawings. The specific operating methods in the method embodiments can also be applied to device embodiments or system embodiments. In the description of the present invention, unless otherwise specified, "at least one" includes one or more. "Multiple" refers to two or more. For example, at least one of A, B, and C includes: A exists alone, B exists alone, A and B exist at the same time, A and C exist at the same time, B and C exist at the same time, and A, B, and C exist at the same time. In the present invention, " / " means or, for example, A / B can mean A or B; "and / or" in this article is only a description of the association relationship of associated objects, indicating that three relationships can exist. For example, A and / or B can mean: A exists alone, A and B exist at the same time, and B exists alone.
[0087] The present invention will be described in detail below with reference to specific embodiments.
[0088] In some specific embodiments of the present invention, Figures 1 to 3 As shown, this solution provides an air-conditioning air supply method for a smart home, which is applied to a server 30. The smart home includes: a wall-mounted air conditioner 10 and a sensor 20. The wall-mounted air conditioner 10 and the sensor 20 are respectively arranged in an indoor area 40. The server 30 is respectively connected to the wall-mounted air conditioners 10 and the sensors 20 in multiple indoor areas 40.
[0089] Methods include:
[0090] In response to a start signal, extracting target temperature and living body characteristics;
[0091] Determining that the liveness feature meets a preset liveness threshold, obtaining a first indoor area corresponding to the liveness feature;
[0092] The wall-mounted air conditioner 10 is controlled to adjust the temperature of the first indoor area corresponding to the living body characteristic until the temperature of the first indoor area meets the target temperature.
[0093] In detail, the present invention forms an intelligent home ecological environment by connecting a traditional wall-mounted air conditioner 10 with a sensor 20, thereby providing a more intelligent home ecological environment based on the selected mode and biological characteristics of the living body, providing a comfortable and diversified experience for the user's family life, improving user satisfaction, and at the same time enhancing the sense of technology of the traditional wall-mounted air conditioner 10.
[0094] It should be noted that the existing wall-mounted air conditioner 10 has a single working mode and a poor sense of technology, which cannot meet the needs of smart homes. In the process of improving and upgrading the wall-mounted air conditioner 10, there are problems of high cost and difficulty in construction. The wall-mounted air conditioner 10 usually only adjusts the air in a fixed space and cannot achieve multi-area linkage. The present invention connects the wall-mounted air conditioner 10 in the indoor area 40 to a network and provides a corresponding working mode, thereby achieving an improvement in the sense of technology of the wall-mounted air conditioner 10 and meeting the needs of multiple indoor areas 40 for coordinated adjustment of indoor air.
[0095] In a possible implementation, when multiple people or family activities are carried out in the indoor area 40, such as board games, playing cards, exercising, spending time with babies, etc., there is a problem of insufficient oxygen content in the air. Due to the large number of people or after exercise, the human body is more sensitive to changes in cold and hot environments. Therefore, it is necessary to provide an air conditioning supply mode that can meet the needs of such scenarios and can be applied to the wall-mounted air conditioner 10.
[0096] In some possible embodiments of the present invention, the step of extracting the target temperature and living body characteristics in response to the start signal specifically includes:
[0097] In response to a start signal of a cooling mode, acquiring a cooling target temperature, a preset cooling temperature, and a living body characteristic;
[0098] The preset cooling temperature is lower than the cooling target temperature.
[0099] Specifically, this embodiment provides an implementation method for extracting target temperature and living body characteristics. In response to the start signal of the cooling mode, the cooling target temperature, the preset cooling temperature and the living body characteristics are acquired. The acquisition of the cooling target temperature and the preset cooling temperature facilitates rapid cooling of the indoor area 40.
[0100] Furthermore, by acquiring the living body characteristics, the indoor area 40 corresponding to the living body characteristics can be determined, which facilitates the selection of the corresponding air-conditioning working mode.
[0101] In some possible embodiments of the present invention, the step of controlling the wall-mounted air conditioner 10 to adjust the temperature of the first indoor area corresponding to the living body characteristic until the temperature of the first indoor area meets the target temperature specifically includes:
[0102] Controlling the wall-mounted air conditioner 10 to deliver cold air to a first area of the room at a first wind speed and continuing the cooling time for a first preset time;
[0103] After the first preset cooling time ends, the instantaneous ambient temperature of the first area in the room is obtained and judged;
[0104] If it is determined that the current ambient temperature is less than or equal to the preset cooling temperature, the wall-mounted air conditioner 10 delivers cold air to the first area of the room at a second wind speed, wherein the second wind speed is less than the first wind speed;
[0105] If it is determined that the immediate ambient temperature is greater than the preset cooling temperature, the wall-mounted air conditioner 10 continues to deliver cold air to the first area of the room at the first wind speed.
[0106] Specifically, this embodiment provides an implementation method for controlling a wall-mounted air conditioner 10 to adjust the temperature of a first indoor area corresponding to living body characteristics. By supplying air to the indoor area 40 at a first wind speed and using a preset cooling target temperature as a comparison temperature, rapid cooling of the indoor area 40 is achieved.
[0107] In a possible implementation, a corresponding cooling target temperature is selected in the cooling mode, but because there are many people indoors or a lot of exercise, rapid cooling is performed according to the preset cooling temperature so that the environment of the indoor area 40 can reach a comfortable body temperature in a short time.
[0108] In a possible implementation, within a first preset cooling time, cold air is quickly delivered to the corresponding indoor area 40 at a first wind speed to achieve rapid cooling of the indoor area 40, and the working mode of the corresponding wall-mounted air conditioner 10 is switched based on a judgment between the instantaneous ambient temperature and the preset cooling temperature.
[0109] In some possible embodiments of the present invention, when it is determined that the current ambient temperature is less than or equal to the preset cooling temperature, the step of supplying cold air at the second wind speed to the first area of the room by the wall-mounted air conditioner 10 specifically includes:
[0110] Controlling the wall-mounted air conditioner 10 to deliver cold air to the first area of the room at a second wind speed and continuing the cooling time for a second preset time;
[0111] After the second preset cooling time ends, the instantaneous ambient temperature of the first area in the room is obtained and judged;
[0112] Determining that the immediate ambient temperature is greater than the cooling target temperature, delivering cold air to the first area of the room at a first wind speed;
[0113] If it is determined that the immediate ambient temperature is less than or equal to the cooling target temperature, cold air is continuously delivered to the first area of the room at the second wind speed.
[0114] Specifically, this embodiment provides an implementation method for a wall-mounted air conditioner 10 to deliver cold air to the first indoor area at a second wind speed. After the temperature of the indoor area 40 drops to a preset cooling temperature, cold air is delivered to the indoor area 40 at the second wind speed, and the cooling target temperature is used as the comparison temperature, so as to improve the comfort of the indoor area 40. Even when the ambient temperature is too high, cold air is delivered to the indoor area 40 at the first wind speed again, and the preset cooling temperature is used as the comparison temperature for judgment, thereby maintaining the ambient temperature comfort of the indoor area 40.
[0115] In a possible implementation, during the second preset cooling time, cold air is quickly delivered to the corresponding indoor area 40 at a second wind speed to maintain the temperature of the indoor area 40, and the corresponding wall-mounted air conditioner 10 operating mode is switched based on a judgment between the instantaneous ambient temperature and the preset cooling temperature.
[0116] In some possible embodiments of the present invention, the step of waiting until the temperature of the first indoor area meets the target temperature further includes:
[0117] Acquire a second indoor area, where the second indoor area is an adjacent area to the first indoor area;
[0118] Controlling the wall-mounted air conditioner 10 in the second area of the room to deliver cold air to the second area of the room at a second wind speed for a second preset cooling time;
[0119] After the second preset cooling time ends, the wall-mounted air conditioner 10 in the first indoor area switches to the exhaust mode, and the wall-mounted air conditioner 10 in the second indoor area switches to the intake mode and runs for the third preset cooling time to complete one air replacement;
[0120] Repeat the above steps to complete N air replacements, where N is a positive integer greater than or equal to two.
[0121] Specifically, this embodiment provides an implementation method until the temperature of the first indoor area meets the target temperature. Since there are many indoor areas 40, activities are usually concentrated in one of the indoor areas 40, that is, the first indoor area, while the second indoor area adjacent to the first indoor area does not undergo corresponding air conditioning or the adjustment mode is not suitable for scenarios where multiple people are active.
[0122] Furthermore, by setting a corresponding air conditioning strategy in the second indoor area and performing airflow conversion between the first indoor area and the second indoor area within the time lengths such as the second preset cooling time and the third preset cooling time, on the one hand, it ensures sufficient oxygen and fresh air in the first indoor area, and avoids the problem of decreased control quality due to a large number of people in the same area. On the other hand, the airflow conversion between the second indoor area and the first indoor area also avoids the problem of excessive environmental changes and decreased user experience when the user moves from the first indoor area to the second indoor area.
[0123] In some possible embodiments of the present invention, the step of extracting the target temperature and living body characteristics in response to the start signal specifically includes:
[0124] In response to a start signal of a heating mode, obtaining a heating target temperature, a preset heating temperature, and a living body characteristic;
[0125] The preset heating temperature is higher than the heating target temperature.
[0126] Specifically, this embodiment provides another implementation method for extracting target temperature and living body characteristics. In response to the start signal of the heating mode, the heating target temperature, the preset heating temperature and the living body characteristics are acquired. The acquisition of the heating target temperature and the preset heating temperature facilitates the rapid heating of the indoor area 40.
[0127] Furthermore, by acquiring the living body characteristics, the indoor area 40 corresponding to the living body characteristics can be determined, which facilitates the selection of the corresponding air-conditioning working mode.
[0128] In some possible embodiments of the present invention, the step of controlling the wall-mounted air conditioner 10 to adjust the temperature of the first indoor area corresponding to the living body characteristic until the temperature of the first indoor area meets the target temperature specifically includes:
[0129] Controlling the wall-mounted air conditioner 10 to deliver hot air to a first area of the room at a first wind speed and for a first preset heating time;
[0130] After the first preset heating time ends, the instantaneous ambient temperature of the first area in the room is obtained and judged;
[0131] If it is determined that the current ambient temperature is less than or equal to the preset heating temperature, the wall-mounted air conditioner 10 delivers hot air to the first area of the room at a second wind speed, wherein the second wind speed is less than the first wind speed;
[0132] If it is determined that the immediate ambient temperature is greater than the preset heating temperature, the wall-mounted air conditioner 10 continues to deliver hot air to the first area of the room at the first wind speed.
[0133] Specifically, this embodiment provides an implementation method for controlling a wall-mounted air conditioner 10 to adjust the temperature of a first indoor area corresponding to living body characteristics. By supplying air to the indoor area 40 at a first wind speed and using a preset heating target temperature as a comparison temperature, rapid heating of the indoor area 40 is achieved.
[0134] In a possible implementation, a corresponding heating target temperature is selected in the heating mode, but because there are many people indoors or a lot of exercise, and the temperature is low in winter, rapid heating is performed according to the preset heating temperature so that the environment of the indoor area 40 can reach a comfortable body temperature in a short time.
[0135] In a possible implementation, during a first preset heating time, hot air is rapidly delivered to the corresponding indoor area 40 at a first wind speed to achieve rapid heating of the indoor area 40, and the working mode of the corresponding wall-mounted air conditioner 10 is switched based on a judgment between the instantaneous ambient temperature and the preset heating temperature.
[0136] In some possible embodiments of the present invention, if it is determined that the current ambient temperature is less than or equal to the preset heating temperature, the step of delivering hot air to the first indoor area at the second wind speed by the wall-mounted air conditioner 10 specifically includes:
[0137] Controlling the wall-mounted air conditioner 10 to deliver hot air to the first area of the room at a second wind speed and continuing the heating for a second preset heating time;
[0138] After the second preset heating time ends, the instantaneous ambient temperature of the first area in the room is obtained and judged;
[0139] Determining that the current ambient temperature is lower than the heating target temperature, delivering hot air to the first area of the room at a first wind speed;
[0140] If it is determined that the immediate ambient temperature is greater than or equal to the heating target temperature, hot air is continuously delivered to the first area of the room at the second wind speed.
[0141] Specifically, this embodiment provides an implementation method for a wall-mounted air conditioner 10 to deliver hot air to a first indoor area at a second wind speed. After the temperature of the indoor area 40 rises to a preset heating temperature, hot air is delivered to the indoor area 40 at a second wind speed, and the heating target temperature is used as a comparison temperature, so as to improve the comfort of the indoor area 40. Even when the ambient temperature is too low, hot air is delivered to the indoor area 40 at the first wind speed again, and the preset heating temperature is used as a comparison temperature for judgment, thereby maintaining the ambient temperature comfort of the indoor area 40.
[0142] In a possible implementation, during the second preset heating time, hot air is quickly delivered to the corresponding indoor area 40 at a second wind speed to maintain the temperature of the indoor area 40, and the corresponding wall-mounted air conditioner 10 operating mode is switched based on a judgment between the instantaneous ambient temperature and the preset heating temperature.
[0143] In some possible embodiments of the present invention, the step of waiting until the temperature of the first indoor area meets the target temperature further includes:
[0144] Acquire a second indoor area, where the second indoor area is an adjacent area to the first indoor area;
[0145] Controlling the wall-mounted air conditioner 10 in the second area of the room to deliver hot air to the second area of the room at a second wind speed for a second preset heating time;
[0146] After the second preset heating time ends, the wall-mounted air conditioner 10 in the first indoor area switches to the exhaust mode, and the wall-mounted air conditioner 10 in the second indoor area continues to deliver hot air to the second indoor area for the third preset heating time.
[0147] After the third preset heating time ends, the wall-mounted air conditioner 10 in the first indoor area continues to deliver hot air to the first indoor area, and the wall-mounted air conditioner 10 in the second indoor area switches to the air supply mode and continues the second preset heating time to complete one air replacement;
[0148] Repeat the above steps to complete N air replacements, where N is a positive integer greater than or equal to two.
[0149] Specifically, this embodiment provides another implementation method until the temperature of the first indoor area meets the target temperature. Since there are many indoor areas 40, activities are usually concentrated in one of the indoor areas 40, that is, the first indoor area, while the second indoor area adjacent to the first indoor area does not undergo corresponding air conditioning or the conditioning mode is not suitable for scenarios where multiple people are active.
[0150] Furthermore, by setting a corresponding air conditioning strategy in the second indoor area, and performing alternating heating and fresh air replacement of the air in the first indoor area and the second indoor area within the second preset heating time and the third preset heating time, on the one hand, it ensures sufficient oxygen and fresh air in the first indoor area, and avoids the problem of decreased control quality due to a large number of people in the same area. On the other hand, the airflow conversion between the second indoor area and the first indoor area also avoids the problem of excessive environmental changes and decreased user experience when the user moves from the first indoor area to the second indoor area, and also avoids the problem of heat loss when fresh air is introduced into the first indoor area and the second indoor area.
[0151] In some possible embodiments of the present invention, the step of controlling the wall-mounted air conditioner 10 to adjust the temperature of the first indoor area corresponding to the living body characteristic until the temperature of the first indoor area meets the target temperature further includes:
[0152] Acquire a first liveness vector and a second liveness vector within a continuous acquisition time period, wherein the first liveness vector points to a position parameter of the liveness feature at the start of the acquisition time period, and the second liveness vector points to a position parameter of the liveness feature at the end of the acquisition time period;
[0153] generating an active area of a living body feature according to the first living body vector and the second living body vector;
[0154] The temperature adjustment area is determined according to the indoor first area and the activity area, and the wall-mounted air conditioner 10 in the indoor first area delivers cold air or hot air toward the temperature adjustment area.
[0155] Specifically, this embodiment provides another implementation method for controlling the wall-mounted air conditioner 10 to adjust the temperature of the first indoor area corresponding to the living body characteristics. By obtaining the first living body vector and the second living body vector, direct blowing of cold air or hot air on the human body is avoided.
[0156] In an application scenario, during cooling, the mode has two stages:
[0157] The first stage is to quickly lower the temperature in the room without blowing people. There are four air supply modes. The set target temperature is 24℃, the wind speed is automatic, wind direction 1 is that both horizontal blades blow to the left; wind direction 2 is that both horizontal blades blow to the right; wind direction 3 is that one horizontal blade blows to the left and the other horizontal blade blows to the right; wind direction is that one horizontal blade blows to the right and the other horizontal blade blows to the left.
[0158] Furthermore, the air guide plate is at the maximum blowing position; the blowing method is to first position the air out for 1 minute, and then sweep the air in the opposite direction from the positioned blowing position for 1 minute for circulation; after running for 4 minutes, check whether the indoor temperature is ≤27℃, if not, continue to operate in the first stage mode, if yes, enter the second stage.
[0159] The target temperature in the second stage is 26℃, and the wind speed is changed from the automatic wind in the first stage to low wind, and the wind direction is still the same as the first stage; after running for 30 minutes, check whether the indoor temperature is ≤27℃ and repeat the cycle.
[0160] In another application scenario, when heating, the mode has two stages:
[0161] The first stage is to quickly raise the temperature in the room without blowing people. There are four air supply modes. The target temperature is set to 27℃, the wind speed is strong + PTC is on, wind direction 1 is both swing blades blowing to the left; wind direction 2 is both swing blades blowing to the right; wind direction 3 is one swing blade blowing to the left, and the other swing blade blowing to the right; wind direction 4 is one swing blade blowing to the right, and the other swing blade blowing to the left; the air guide is blowing downward for heating.
[0162] Furthermore, the blowing method is to first position the air to blow for 1 minute, then sweep the air in the opposite direction from the positioned blowing position for 1 minute, and circulate; after running for 4 minutes, synchronously detect whether the indoor temperature is ≥20℃, if not, continue to operate in the first stage mode, if yes, enter the second stage.
[0163] The target temperature in the second stage is 24℃, and the wind speed is changed from strong wind + PTC on in the first stage to automatic wind, and the wind direction is still the same as in the first stage; after running for 30 minutes, check whether the indoor temperature is ≥20℃ and repeat the cycle.
[0164] In some possible embodiments of the present invention, if it is determined that the liveness feature satisfies a preset liveness threshold, the step of obtaining the indoor area 40 corresponding to the liveness feature specifically includes:
[0165] If the number of liveness features collected during the continuous collection time period is greater than or equal to the preset number of liveness features, it is determined that the liveness features meet the preset liveness threshold;
[0166] and / or, if the activity range of the liveness feature collected during the continuous collection time period is greater than or equal to a preset activity range, then it is determined that the liveness feature meets the preset liveness threshold;
[0167] And / or, if the collected liveness feature action frequency is greater than or equal to a preset action frequency during a continuous collection time period, it is determined that the liveness feature meets a preset liveness threshold.
[0168] Specifically, this embodiment provides an implementation method for obtaining the indoor area 40 corresponding to the living body characteristics. By obtaining various forms of living body characteristics, it can more accurately judge whether there are multiple people conducting indoor activities in the indoor area 40, and then automatically adjust the corresponding air supply mode to achieve intelligent adjustment to meet user needs.
[0169] In some specific embodiments of the present invention, Figure 4 As shown, this solution provides an air conditioning and air supply device for a smart home, including: a response module 50, an acquisition module 60 and a control module 70;
[0170] The response module 50 is used to extract the target temperature and living body characteristics in response to the start signal;
[0171] The acquisition module 60 is used to determine that the liveness feature meets a preset liveness threshold, and then acquire a first indoor area corresponding to the liveness feature;
[0172] The control module 70 is used to control the wall-mounted air conditioner 10 to adjust the temperature of the first indoor area corresponding to the living body characteristics until the temperature of the first indoor area meets the target temperature.
[0173] Optionally, in response to the start signal, the step of extracting the target temperature and the living body characteristics specifically includes:
[0174] In response to a start signal of a cooling mode, acquiring a cooling target temperature, a preset cooling temperature, and a living body characteristic;
[0175] The preset cooling temperature is lower than the cooling target temperature.
[0176] Specifically, this embodiment provides an implementation method for extracting target temperature and living body characteristics. In response to the start signal of the cooling mode, the cooling target temperature, the preset cooling temperature and the living body characteristics are acquired. The acquisition of the cooling target temperature and the preset cooling temperature facilitates rapid cooling of the indoor area 40.
[0177] Optionally, the step of controlling the wall-mounted air conditioner 10 to adjust the temperature of the first indoor area corresponding to the living body characteristic until the temperature of the first indoor area meets the target temperature specifically includes:
[0178] Controlling the wall-mounted air conditioner 10 to deliver cold air to a first area of the room at a first wind speed and continuing the cooling time for a first preset time;
[0179] After the first preset cooling time ends, the instantaneous ambient temperature of the first area in the room is obtained and judged;
[0180] If it is determined that the current ambient temperature is less than or equal to the preset cooling temperature, the wall-mounted air conditioner 10 delivers cold air to the first area of the room at a second wind speed, wherein the second wind speed is less than the first wind speed;
[0181] If it is determined that the immediate ambient temperature is greater than the preset cooling temperature, the wall-mounted air conditioner 10 continues to deliver cold air to the first area of the room at the first wind speed.
[0182] Specifically, this embodiment provides an implementation method for controlling a wall-mounted air conditioner 10 to adjust the temperature of a first indoor area corresponding to living body characteristics. By supplying air to the indoor area 40 at a first wind speed and using a preset cooling target temperature as a comparison temperature, rapid cooling of the indoor area 40 is achieved.
[0183] Optionally, if it is determined that the immediate ambient temperature is less than or equal to the preset cooling temperature, the step of supplying cold air to the first indoor area at the second wind speed by the wall-mounted air conditioner 10 specifically includes:
[0184] Controlling the wall-mounted air conditioner 10 to deliver cold air to the first area of the room at a second wind speed and continuing the cooling time for a second preset time;
[0185] After the second preset cooling time ends, the instantaneous ambient temperature of the first area in the room is obtained and judged;
[0186] Determining that the immediate ambient temperature is greater than the cooling target temperature, delivering cold air to the first area of the room at a first wind speed;
[0187] If it is determined that the immediate ambient temperature is less than or equal to the cooling target temperature, cold air is continuously delivered to the first area of the room at the second wind speed.
[0188] Specifically, this embodiment provides an implementation method for a wall-mounted air conditioner 10 to deliver cold air to the first indoor area at a second wind speed. After the temperature of the indoor area 40 drops to a preset cooling temperature, cold air is delivered to the indoor area 40 at the second wind speed, and the cooling target temperature is used as the comparison temperature, so as to improve the comfort of the indoor area 40. Even when the ambient temperature is too high, cold air is delivered to the indoor area 40 at the first wind speed again, and the preset cooling temperature is used as the comparison temperature for judgment, thereby maintaining the ambient temperature comfort of the indoor area 40.
[0189] Optionally, the step of heating the first indoor area to a target temperature further includes:
[0190] Acquire a second indoor area, where the second indoor area is an adjacent area to the first indoor area;
[0191] Controlling the wall-mounted air conditioner 10 in the second area of the room to deliver cold air to the second area of the room at a second wind speed for a second preset cooling time;
[0192] After the second preset cooling time ends, the wall-mounted air conditioner 10 in the first indoor area switches to the exhaust mode, and the wall-mounted air conditioner 10 in the second indoor area switches to the intake mode and runs for the third preset cooling time to complete one air replacement;
[0193] Repeat the above steps to complete N air replacements, where N is a positive integer greater than or equal to two.
[0194] Specifically, this embodiment provides an implementation method until the temperature of the first indoor area meets the target temperature. Since there are many indoor areas 40, activities are usually concentrated in one of the indoor areas 40, that is, the first indoor area, while the second indoor area adjacent to the first indoor area does not undergo corresponding air conditioning or the adjustment mode is not suitable for scenarios where multiple people are active.
[0195] Optionally, in response to the start signal, the step of extracting the target temperature and the living body characteristics specifically includes:
[0196] In response to a start signal of a heating mode, obtaining a heating target temperature, a preset heating temperature, and a living body characteristic;
[0197] The preset heating temperature is higher than the heating target temperature.
[0198] Specifically, this embodiment provides another implementation method for extracting target temperature and living body characteristics. In response to the start signal of the heating mode, the heating target temperature, the preset heating temperature and the living body characteristics are acquired. The acquisition of the heating target temperature and the preset heating temperature facilitates the rapid heating of the indoor area 40.
[0199] Optionally, the step of controlling the wall-mounted air conditioner 10 to adjust the temperature of the first indoor area corresponding to the living body characteristic until the temperature of the first indoor area meets the target temperature specifically includes:
[0200] Controlling the wall-mounted air conditioner 10 to deliver hot air to a first area of the room at a first wind speed and for a first preset heating time;
[0201] After the first preset heating time ends, the instantaneous ambient temperature of the first area in the room is obtained and judged;
[0202] If it is determined that the current ambient temperature is less than or equal to the preset heating temperature, the wall-mounted air conditioner 10 delivers hot air to the first area of the room at a second wind speed, wherein the second wind speed is less than the first wind speed;
[0203] If it is determined that the immediate ambient temperature is greater than the preset heating temperature, the wall-mounted air conditioner 10 continues to deliver hot air to the first area of the room at the first wind speed.
[0204] Specifically, this embodiment provides an implementation method for controlling a wall-mounted air conditioner 10 to adjust the temperature of a first indoor area corresponding to living body characteristics. By supplying air to the indoor area 40 at a first wind speed and using a preset heating target temperature as a comparison temperature, rapid heating of the indoor area 40 is achieved.
[0205] Optionally, if it is determined that the instantaneous ambient temperature is less than or equal to the preset heating temperature, the step of delivering hot air to the first indoor area at the second wind speed by the wall-mounted air conditioner 10 specifically includes:
[0206] Controlling the wall-mounted air conditioner 10 to deliver hot air to the first area of the room at a second wind speed and continuing the heating for a second preset heating time;
[0207] After the second preset heating time ends, the instantaneous ambient temperature of the first area in the room is obtained and judged;
[0208] Determining that the current ambient temperature is lower than the heating target temperature, delivering hot air to the first area of the room at a first wind speed;
[0209] If it is determined that the immediate ambient temperature is greater than or equal to the heating target temperature, hot air is continuously delivered to the first area of the room at the second wind speed.
[0210] Specifically, this embodiment provides an implementation method for a wall-mounted air conditioner 10 to deliver hot air to a first indoor area at a second wind speed. After the temperature of the indoor area 40 rises to a preset heating temperature, hot air is delivered to the indoor area 40 at a second wind speed, and the heating target temperature is used as a comparison temperature, so as to improve the comfort of the indoor area 40. Even when the ambient temperature is too low, hot air is delivered to the indoor area 40 at the first wind speed again, and the preset heating temperature is used as a comparison temperature for judgment, thereby maintaining the ambient temperature comfort of the indoor area 40.
[0211] Optionally, the step of heating the first indoor area to a target temperature further includes:
[0212] Acquire a second indoor area, where the second indoor area is an adjacent area to the first indoor area;
[0213] Controlling the wall-mounted air conditioner 10 in the second area of the room to deliver hot air to the second area of the room at a second wind speed for a second preset heating time;
[0214] After the second preset heating time ends, the wall-mounted air conditioner 10 in the first indoor area switches to the exhaust mode, and the wall-mounted air conditioner 10 in the second indoor area continues to deliver hot air to the second indoor area for the third preset heating time.
[0215] After the third preset heating time ends, the wall-mounted air conditioner 10 in the first indoor area continues to deliver hot air to the first indoor area, and the wall-mounted air conditioner 10 in the second indoor area switches to the air supply mode and continues the second preset heating time to complete one air replacement;
[0216] Repeat the above steps to complete N air replacements, where N is a positive integer greater than or equal to two.
[0217] Specifically, this embodiment provides another implementation method until the temperature of the first indoor area meets the target temperature. Since there are many indoor areas 40, activities are usually concentrated in one of the indoor areas 40, that is, the first indoor area, while the second indoor area adjacent to the first indoor area does not undergo corresponding air conditioning or the conditioning mode is not suitable for scenarios where multiple people are active.
[0218] Optionally, the step of controlling the wall-mounted air conditioner 10 to adjust the temperature of the first indoor area corresponding to the living body characteristic until the temperature of the first indoor area meets the target temperature further includes:
[0219] Acquire a first liveness vector and a second liveness vector within a continuous acquisition time period, wherein the first liveness vector points to a position parameter of the liveness feature at the start of the acquisition time period, and the second liveness vector points to a position parameter of the liveness feature at the end of the acquisition time period;
[0220] generating an active area of a living body feature according to the first living body vector and the second living body vector;
[0221] The temperature adjustment area is determined according to the indoor first area and the activity area, and the wall-mounted air conditioner 10 in the indoor first area delivers cold air or hot air toward the temperature adjustment area.
[0222] Specifically, this embodiment provides another implementation method for controlling the wall-mounted air conditioner 10 to adjust the temperature of the first indoor area corresponding to the living body characteristics. By obtaining the first living body vector and the second living body vector, direct blowing of cold air or hot air on the human body is avoided.
[0223] Optionally, if it is determined that the liveness feature satisfies a preset liveness threshold, the step of obtaining the indoor area 40 corresponding to the liveness feature specifically includes:
[0224] If the number of liveness features collected during the continuous collection time period is greater than or equal to the preset number of liveness features, it is determined that the liveness features meet the preset liveness threshold;
[0225] and / or, if the activity range of the liveness feature collected during the continuous collection time period is greater than or equal to a preset activity range, then it is determined that the liveness feature meets the preset liveness threshold;
[0226] And / or, if the collected liveness feature action frequency is greater than or equal to a preset action frequency during a continuous collection time period, it is determined that the liveness feature meets a preset liveness threshold.
[0227] Specifically, this embodiment provides an implementation method for obtaining the indoor area 40 corresponding to the living body characteristics. By obtaining various forms of living body characteristics, it can more accurately judge whether there are multiple people conducting indoor activities in the indoor area 40, and then automatically adjust the corresponding air supply mode to achieve intelligent adjustment to meet user needs.
[0228] Figure 5 An example of a physical structure diagram of an electronic device is shown below. Figure 5 As shown, the electronic device may include: a processor 810, a communication interface 820, a memory 830, and a communication bus 840, wherein the processor 810, the communication interface 820, and the memory 830 communicate with each other via the communication bus 840. The processor 810 may call the logic instructions in the memory 830 to execute the air conditioning air supply method of the smart home.
[0229] It should be noted that the electronic device in this embodiment can be a server, a PC, or other devices in specific implementation, as long as its structure includes the following: Figure 5 The processor 810, communication interface 820, memory 830, and communication bus 840 are shown, wherein the processor 810, communication interface 820, and memory 830 communicate with each other via the communication bus 840, and the processor 810 can call the logic instructions in the memory 830 to execute the above method. This embodiment does not limit the specific implementation form of the electronic device.
[0230] In which, the server can be a single server or a server group. The server group can be centralized or distributed (for example, the server can be a distributed system). In some embodiments, the server can be local or remote relative to the terminal. For example, the server can access information stored in a user terminal, a database, or any combination thereof via a network. As another example, the server can be directly connected to at least one of the user terminal and the database to access the information and / or data stored therein. In some embodiments, the server can be implemented on a cloud platform; as an example only, the cloud platform can include a private cloud, a public cloud, a hybrid cloud, a community cloud, a distributed cloud, an inter-cloud, a multi-cloud, etc., or any combination thereof. In some embodiments, the server and the user terminal can be implemented on an electronic device having one or more components in the embodiments of the present invention.
[0231] Furthermore, the network can be used to exchange information and / or data. In some embodiments, one or more components in an interactive scenario (e.g., a server, a user terminal, and a database) can send information and / or data to other components. In some embodiments, the network can be any type of wired or wireless network, or a combination thereof. By way of example only, the network can include a wired network, a wireless network, a fiber optic network, a telecommunications network, an intranet, the Internet, a local area network (LAN), a wide area network (WAN), a wireless local area network (WLAN), a metropolitan area network (MAN), a wide area network (WAN), a public switched telephone network (PSTN), a Bluetooth network, a ZigBee network, or a near field communication (NFC) network, or any combination thereof. In some embodiments, the network can include one or more network access points. For example, the network can include wired or wireless network access points, such as base stations and / or network switching nodes, through which one or more components in the interactive scenario can connect to the network to exchange data and / or information.
[0232] Furthermore, the logic instructions in the aforementioned memory 830 can be implemented as software functional units and, when sold or used as independent products, can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present invention, or the portion that contributes to the prior art, or a portion of the technical solution, can be embodied in the form of a software product. This computer software product, stored in a storage medium, includes instructions for enabling a computer device (which can be a personal computer, server, or network device, etc.) to perform all or part of the steps of the various embodiments of the present invention. The aforementioned storage medium includes various media capable of storing program code, such as a USB flash drive, a mobile hard drive, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk.
[0233] In a possible implementation, an embodiment of the present invention further provides a non-transitory computer-readable storage medium having a computer program stored thereon. When the computer program is executed by a processor, it is implemented to execute the air conditioning and air supply method for the smart home provided in the above embodiments.
[0234] In a possible implementation, an embodiment of the present invention further provides a computer program product, which includes a computer program stored on a non-transitory computer-readable storage medium. The computer program includes program instructions. When the program instructions are executed by a computer, the computer can perform the methods provided in the above-mentioned method embodiments, for example, including:
[0235] In response to a start signal, extracting target temperature and living body characteristics;
[0236] Determining that the liveness feature meets a preset liveness threshold, obtaining a first indoor area corresponding to the liveness feature;
[0237] The wall-mounted air conditioner 10 is controlled to adjust the temperature of the first indoor area corresponding to the living body characteristic until the temperature of the first indoor area meets the target temperature.
[0238] The device embodiments described above are merely illustrative. The units described as separate components may or may not be physically separate, and the components shown as units may or may not be physical units. That is, they may be located in one place or distributed across multiple network units. Some or all of the modules may be selected based on actual needs to achieve the objectives of the present embodiment. Persons of ordinary skill in the art will be able to understand and implement the present invention without inventive effort.
[0239] Through the above description of the embodiments, those skilled in the art will clearly understand that each embodiment can be implemented using software plus a necessary general-purpose hardware platform, or of course, hardware. Based on this understanding, the essence of the above technical solution, or the portion that contributes to the prior art, can be embodied in the form of a software product. This computer software product can be stored in a computer-readable storage medium, such as ROM / RAM, a magnetic disk, or an optical disk, and includes a number of instructions for causing a computer device (such as a personal computer, server, or network device) to execute the methods of each embodiment or certain portions of the embodiments.
[0240] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention.
Claims
1. A method for supplying air to an air conditioner in a smart home, characterized in that: Applied to a server (30), the smart home comprises: a wall-mounted air conditioner (10) and a sensor (20), the wall-mounted air conditioner (10) and the sensor (20) being respectively arranged in an indoor area (40), and the server (30) being respectively connected to the wall-mounted air conditioners (10) and the sensors (20) in a plurality of the indoor areas (40); The method comprises: In response to a start signal of a cooling mode, a cooling target temperature, a preset cooling temperature, and a living body characteristic are obtained; or, in response to a start signal of a heating mode, a heating target temperature, a preset heating temperature, and a living body characteristic are obtained; Determining that the liveness feature satisfies a preset liveness threshold, then obtaining a first indoor area corresponding to the liveness feature, specifically including: If the number of liveness features collected during the continuous collection time period is greater than or equal to the preset number of liveness features, it is determined that the liveness features meet the preset liveness threshold; and / or, if the activity range of the liveness feature collected during the continuous collection time period is greater than or equal to a preset activity range, then it is determined that the liveness feature meets a preset liveness threshold; and / or, if the collected action frequency of the living feature is greater than or equal to a preset action frequency during a continuous collection time period, it is determined that the living feature meets a preset living threshold; Controlling the wall-mounted air conditioner (10) to adjust the temperature of the first indoor area corresponding to the living body feature until the temperature of the first indoor area meets the target temperature, specifically comprising: Acquire a first liveness vector and a second liveness vector within a continuous acquisition time period, wherein the first liveness vector points to a position parameter of the liveness feature at a start time of the continuous acquisition time period, and the second liveness vector points to a position parameter of the liveness feature at an end time of the continuous acquisition time period; generating an active area of the living body feature according to the first living body vector and the second living body vector; Determining a temperature adjustment area according to the first indoor area and the activity area, wherein the wall-mounted air conditioner (10) in the first indoor area delivers cold air or hot air toward the temperature adjustment area; Controlling the wall-mounted air conditioner (10) to deliver cold air or hot air to the first area of the room at a first wind speed, and continuing for a first preset cooling time or a first preset heating time; After the first preset cooling time or the first preset heating time ends, obtaining the instantaneous ambient temperature of the first indoor area and making a judgment; Determining that the instantaneous ambient temperature is less than or equal to the preset cooling temperature or the preset heating temperature, the wall-mounted air conditioner (10) delivers cold air or hot air to the first indoor area at a second wind speed; wherein the second wind speed is less than the first wind speed; The step of waiting until the temperature of the first indoor area meets the target temperature further includes: Acquire a second indoor area, where the second indoor area is an adjacent area to the first indoor area; Controlling the wall-mounted air conditioner (10) in the second indoor area to deliver cold air or hot air to the second indoor area at the second wind speed and continuously for a second preset cooling time or a second preset heating time; After the second preset cooling time or the second preset heating time ends, the wall-mounted air conditioner (10) in the first indoor area switches to the exhaust mode, and the wall-mounted air conditioner (10) in the second indoor area switches to the intake mode, and runs the third preset cooling time or the third preset heating time to complete an air replacement; Repeat the above steps to complete the air replacement N times, where N is a positive integer greater than or equal to two.
2. The air conditioning and air supply method for smart home according to claim 1, characterized in that: In the step of acquiring the cooling target temperature, the preset cooling temperature and the living body characteristics in response to the start signal of the cooling mode, the preset cooling temperature is lower than the cooling target temperature.
3. The air-conditioning air supply method for smart home according to claim 2, characterized in that: The step of controlling the wall-mounted air conditioner (10) to adjust the temperature of the first indoor area corresponding to the living body feature until the temperature of the first indoor area meets the target temperature specifically includes: When it is determined that the instantaneous ambient temperature is greater than the preset cooling temperature, the wall-mounted air conditioner (10) continues to deliver cold air to the first area of the room at the first wind speed.
4. The air conditioning and air supply method for smart home according to claim 3, characterized in that: The step of determining that the instantaneous ambient temperature is less than or equal to the preset cooling temperature, and then the wall-mounted air conditioner (10) delivers cold air to the first indoor area at a second wind speed, specifically includes: Controlling the wall-mounted air conditioner (10) to deliver cold air to the first indoor area at a second wind speed and continuing the cooling time for a second preset period; After the second preset cooling time ends, obtaining the instantaneous ambient temperature of the first indoor area and making a judgment; Determining that the instantaneous ambient temperature is greater than the cooling target temperature, delivering cold air to the first indoor area at the first wind speed; If it is determined that the instantaneous ambient temperature is less than or equal to the cooling target temperature, cold air is continuously delivered to the first indoor area at the second wind speed.
5. The air conditioning and air supply method for smart home according to claim 1, characterized in that: In the step of acquiring a heating target temperature, a preset heating temperature, and living body characteristics in response to a start signal of a heating mode, the preset heating temperature is higher than the heating target temperature.
6. The air-conditioning air supply method for smart home according to claim 5, characterized in that: The step of controlling the wall-mounted air conditioner (10) to adjust the temperature of the first indoor area corresponding to the living body feature until the temperature of the first indoor area meets the target temperature specifically includes: When it is determined that the instantaneous ambient temperature is greater than the preset heating temperature, the wall-mounted air conditioner (10) continues to deliver hot air to the first indoor area at the first wind speed.
7. The air conditioning and air supply method for a smart home according to claim 6, characterized in that: The step of determining that the instantaneous ambient temperature is less than or equal to the preset heating temperature, and then the wall-mounted air conditioner (10) delivers hot air to the first indoor area at a second wind speed, specifically includes: Controlling the wall-mounted air conditioner (10) to deliver hot air to the first indoor area at a second wind speed and continuing the heating for a second preset heating time; After the second preset heating time ends, obtaining the instantaneous ambient temperature of the first indoor area and making a judgment; Determining that the instantaneous ambient temperature is lower than the heating target temperature, delivering hot air to the first indoor area at the first wind speed; If it is determined that the instantaneous ambient temperature is greater than or equal to the heating target temperature, hot air is continuously delivered to the first indoor area at the second wind speed.
8. An air-conditioning and air-supply device for a smart home, characterized in that: include: a response module (50), an acquisition module (60), and a control module (70); The response module (50) is used to obtain the cooling target temperature, the preset cooling temperature and the living body characteristics in response to the start signal of the cooling mode; or, to obtain the heating target temperature, the preset heating temperature and the living body characteristics in response to the start signal of the heating mode; The acquisition module (60) is used to determine that the living feature meets a preset living threshold, and then acquire a first indoor area corresponding to the living feature, specifically including: If the number of liveness features collected during the continuous collection time period is greater than or equal to the preset number of liveness features, it is determined that the liveness features meet the preset liveness threshold; and / or, if the activity range of the liveness feature collected during the continuous collection time period is greater than or equal to a preset activity range, then it is determined that the liveness feature meets a preset liveness threshold; and / or, if the collected action frequency of the living feature is greater than or equal to a preset action frequency during a continuous collection time period, it is determined that the living feature meets a preset living threshold; The control module (70) is used to control the wall-mounted air conditioner (10) to adjust the temperature of the first indoor area corresponding to the living body feature until the temperature of the first indoor area meets the target temperature, specifically including: Acquire a first liveness vector and a second liveness vector within a continuous acquisition time period, wherein the first liveness vector points to a position parameter of the liveness feature at a start time of the continuous acquisition time period, and the second liveness vector points to a position parameter of the liveness feature at an end time of the continuous acquisition time period; generating an active area of the living body feature according to the first living body vector and the second living body vector; A temperature adjustment area is determined according to the first indoor area and the activity area, and the wall-mounted air conditioner (10) in the first indoor area delivers cold air or hot air toward the temperature adjustment area; Controlling the wall-mounted air conditioner (10) to deliver cold air or hot air to the first area of the room at a first wind speed, and continuing for a first preset cooling time or a first preset heating time; After the first preset cooling time or the first preset heating time ends, obtaining the instantaneous ambient temperature of the first indoor area and making a judgment; Determining that the instantaneous ambient temperature is less than or equal to the preset cooling temperature or the preset heating temperature, the wall-mounted air conditioner (10) delivers cold air or hot air to the first indoor area at a second wind speed; wherein the second wind speed is less than the first wind speed; The step of waiting until the temperature of the first indoor area meets the target temperature further includes: Acquire a second indoor area, where the second indoor area is an adjacent area to the first indoor area; Controlling the wall-mounted air conditioner (10) in the second indoor area to deliver cold air or hot air to the second indoor area at the second wind speed and continuously for a second preset cooling time or a second preset heating time; After the second preset cooling time or the second preset heating time ends, the wall-mounted air conditioner (10) in the first indoor area switches to the exhaust mode, and the wall-mounted air conditioner (10) in the second indoor area switches to the intake mode and runs for the third preset cooling time or the third preset heating time to complete an air replacement; Repeat the above steps to complete the air replacement N times, where N is a positive integer greater than or equal to two.
9. An electronic device, characterized in that: include: Memory (830) and processor (810); The memory (830) and the processor (810) communicate with each other via a bus; The memory (830) stores computer instructions that can be executed on the processor (810); When the processor (810) calls the computer instruction, it is capable of executing the smart home air conditioning and air supply method described in any one of claims 1 to 7.
10. A computer program product comprising a non-transitory machine-readable medium storing a computer program, characterized in that: When the computer program is executed by the processor (810), the steps of the smart home air conditioning and air supply method described in any one of claims 1 to 7 are implemented.
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