Air conditioner control method, device, apparatus, and storage medium
By obtaining the operating time and indoor temperature from the air conditioner and adjusting the indoor temperature using the fresh air module, the problem of excessively low indoor temperature in sleep mode of the air conditioner is solved, improving the user's comfort when waking up and sleep quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-07-28
- Publication Date
- 2026-03-17
AI Technical Summary
When an air conditioner is running in sleep mode, the indoor temperature may be lower than the preset temperature, causing the user to feel unwell when they wake up and affecting comfort.
By obtaining the operating time of the air conditioner in sleep mode, the user's sleep stage is determined, and the indoor temperature is obtained during the waiting-to-wake-up stage. The indoor temperature is adjusted using the fresh air module, and fresh outdoor air is introduced to improve the indoor temperature and oxygen content.
Without affecting users' sleep, the fresh air module adjusts the indoor temperature, improving users' comfort when they wake up and their sleep quality.
Smart Images

Figure CN115289631B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of air conditioning control technology, specifically to an air conditioning control method, device, equipment, and storage medium. Background Technology
[0002] Currently, with the rapid development and widespread use of air conditioners, users rely on them to cool and adjust indoor temperatures in hot or cold weather. Many users also turn on the air conditioner for cooling or heating while sleeping. However, during operation, the indoor temperature may be lower than the preset temperature, resulting in a lower indoor temperature when users are waiting to get up, which can make them feel unwell and affect their comfort upon waking. Summary of the Invention
[0003] This application provides an air conditioning control method, apparatus, device, and storage medium, aiming to solve the technical problem in the prior art where the indoor temperature of the air conditioner is low when the target user is waiting to get up, affecting the user's state of getting up.
[0004] On one hand, embodiments of this application provide an air conditioning control method, which includes the following steps:
[0005] Obtain the duration of the sleep mode and determine the sleep stage of the target user based on the duration of the sleep mode;
[0006] If the sleep stage is the waiting-to-wake stage, then obtain the indoor temperature;
[0007] Based on the temperature deviation between the indoor temperature and the preset temperature of the sleep stage, the fresh air module is activated to adjust the indoor temperature.
[0008] In one possible implementation of this application, before obtaining the runtime of the sleep mode and determining the sleep stage of the target user based on the runtime, the method further includes:
[0009] Obtain sleep monitoring information and indoor lighting data from the target user;
[0010] The sleep state of the target user is assessed based on the sleep detection information and the indoor lighting data.
[0011] If the sleep state is a state of falling asleep, then the air conditioner's operating mode is switched to sleep mode and the duration of the sleep mode is recorded.
[0012] In one possible implementation of this application, the step of activating the fresh air module to adjust the indoor temperature based on the indoor temperature and the preset temperature of the sleep stage includes:
[0013] If the indoor temperature is lower than the preset temperature corresponding to the waiting-to-get-up stage, then obtain the outdoor temperature;
[0014] Obtain the sleep detection information of the target user, and determine the sleep quality assessment data of the target user based on the sleep detection information;
[0015] The fresh air module is activated based on the outdoor temperature and the sleep quality assessment data to adjust the indoor temperature.
[0016] In one possible implementation of this application, the step of activating the fresh air module to adjust the indoor temperature based on the outdoor temperature and the sleep quality assessment data includes:
[0017] Query the preset sleep noise mapping table to obtain the noise threshold corresponding to the sleep quality assessment data of the target user;
[0018] Query the preset fresh air noise mapping table, and determine the target fresh air level in the fresh air noise mapping table according to the noise threshold;
[0019] The fresh air module is activated based on the outdoor temperature and the target fresh air setting to adjust the indoor temperature.
[0020] In one possible implementation of this application, the step of activating the fresh air module to adjust the indoor temperature based on the outdoor temperature and the sleep quality assessment data includes:
[0021] Obtain the target fresh air setting corresponding to the sleep quality assessment data;
[0022] Calculate the fresh air activation time for the target fresh air level based on the outdoor temperature and the indoor temperature;
[0023] The fresh air module is activated to adjust the indoor temperature according to the target fresh air setting and the fresh air activation time.
[0024] In one possible implementation of this application, the step of assessing the sleep state of the target user based on the sleep detection information and the indoor light change value includes:
[0025] Obtain body movement data from the sleep detection information, perform sleep analysis on the body movement data, and obtain a first sleep analysis result;
[0026] The indoor light data is compared with a preset sleep light threshold to obtain a second sleep analysis result;
[0027] If the first sleep analysis result is sleep movement data, and the second analysis result is indoor light data that is less than or equal to the preset sleep light threshold, then the sleep state of the target user is assessed as a state of falling asleep.
[0028] In one possible implementation of this application, the step of obtaining the runtime of the sleep mode and determining the sleep stage of the target user based on the runtime includes:
[0029] Obtain the runtime of the sleep mode;
[0030] Query the preset sleep stage table to obtain the preset sleep stage that matches the runtime in the sleep stage table, wherein the preset sleep stage includes the sleep onset stage, the deep sleep stage, and the wake-up stage;
[0031] Set the preset sleep stage to the sleep stage of the target user.
[0032] On the other hand, this application provides an air conditioning control device, the air conditioning control device comprising:
[0033] The sleep detection module is configured to acquire the duration of the sleep mode and determine the sleep stage of the target user based on the duration of the sleep mode.
[0034] The room temperature acquisition module is configured to acquire the room temperature if the sleep stage is the waiting-to-wake stage;
[0035] The fresh air control module is configured to adjust the indoor temperature based on the temperature deviation between the indoor temperature and the preset temperature of the sleep stage.
[0036] On the other hand, this application also provides an air conditioning control device, the air conditioning control device comprising:
[0037] One or more processors;
[0038] Memory; and
[0039] One or more applications, wherein the one or more applications are stored in the memory and configured to be executed by the processor to implement the air conditioning control method.
[0040] On the other hand, this application also provides a computer-readable storage medium having a computer program stored thereon, the computer program being loaded by a processor to execute the steps in the air conditioning control method.
[0041] This application obtains the operating time of the air conditioner in sleep mode, determines the sleep stage of the target user based on the operating time of the sleep mode, and when the target user's sleep stage is determined to be the waking-up stage, obtains the indoor temperature of the target working area of the air conditioner; after obtaining the indoor temperature, based on the temperature deviation between the indoor temperature and the preset temperature of the sleep stage, adaptively activates the fresh air module, and adjusts the indoor temperature through the fresh air module. This achieves the goal of activating the fresh air module by determining the user's sleep stage and the indoor temperature, thereby introducing outdoor fresh air through the fresh air module to increase the indoor temperature of the target user in the waking-up stage, increase the indoor oxygen content, and thus improve the user's waking-up state. Attached Figure Description
[0042] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0043] Figure 1 This is a schematic diagram of a scenario for the air conditioning control method according to an embodiment of this application;
[0044] Figure 2 This is a flowchart illustrating one embodiment of the air conditioning control method in this application.
[0045] Figure 3 A flowchart illustrating an embodiment of the air conditioning control method provided in this application for assessing the sleep state of a target user based on sleep detection information and indoor light change values;
[0046] Figure 4 This is a flowchart illustrating one embodiment of the air conditioning control method provided in this application, which involves activating a fresh air module to adjust the indoor temperature.
[0047] Figure 5 This is a schematic diagram of an embodiment of the air conditioning control device provided in this application.
[0048] Figure 6 This is a schematic diagram of one embodiment of the air conditioning control device provided in this application. Detailed Implementation
[0049] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0050] In the description of this invention, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating orientation or positional relationships based on the orientation or positional relationships shown in the accompanying drawings, are only for the convenience of describing the invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more of the stated features. In the description of this invention, "a plurality of" means two or more, unless otherwise explicitly specified.
[0051] In this application, the term "exemplary" is used to mean "serving as an example, illustration, or description." Any embodiment described as "exemplary" in this application is not necessarily to be construed as being more preferred or advantageous than other embodiments. The following description is provided to enable any person skilled in the art to make and use the invention. Details are set forth in the following description for purposes of explanation. It should be understood that those skilled in the art will recognize that the invention can be made without using these specific details. In other instances, well-known structures and processes will not be described in detail to avoid obscuring the description of the invention with unnecessary detail. Therefore, the invention is not intended to be limited to the embodiments shown, but is consistent with the broadest scope of the principles and features disclosed in this application.
[0052] Currently, with the rapid development and widespread use of air conditioners, users rely on them to cool and adjust indoor temperatures in hot or cold weather. Many users also turn on the air conditioner for cooling or heating while sleeping. However, during operation, the indoor temperature may be lower than the preset temperature, resulting in a lower indoor temperature when users are waiting to get up, which can make them feel unwell and affect their comfort upon waking.
[0053] Based on this, this application proposes an air conditioning control method, apparatus, device, and computer-readable storage medium to solve the technical problem that the indoor temperature is low during the operation of the air conditioner in sleep mode, which affects the user's waking state.
[0054] The air conditioning control method in this embodiment of the invention is applied to an air conditioning control device, which is installed in an air conditioning control equipment. The air conditioning control equipment includes one or more processors, a memory, and one or more application programs. The one or more application programs are stored in the memory and configured to be executed by the processor to implement the air conditioning control method. The air conditioning control equipment can be a smart terminal, such as a mobile phone, tablet computer, smart TV, network device, smart computer, and central air conditioning. Optionally, the air conditioning control equipment can also be an air conditioning master controller installed inside the air conditioner.
[0055] like Figure 1 As shown, Figure 1 This is a schematic diagram of a scenario for an air conditioning control method according to an embodiment of the present application. In this embodiment of the present invention, the air conditioning control scenario includes one or more air conditioning control devices 100 (the air conditioning control device 100 integrates an air conditioning control unit), and the air conditioning control device 100 is equipped with a computer-readable storage medium corresponding to the air conditioning control method to execute the steps of the air conditioning control method.
[0056] Understandable Figure 1 The air conditioning control device in the air conditioning control method scenario shown, or the device included in the air conditioning control device, does not constitute a limitation on the embodiments of the present invention. That is, the number or type of air conditioning control device included in the air conditioning control method scenario, or the number or type of device included in each device, does not affect the overall implementation of the technical solution in the embodiments of the present invention, and can all be considered as equivalent substitutions or derivatives of the technical solutions claimed in the embodiments of the present invention.
[0057] In this embodiment of the invention, the air conditioning control device 100 is mainly used for: obtaining the duration of sleep mode operation, and determining the sleep stage of the target user based on the duration of sleep mode operation;
[0058] If the sleep stage is the waiting-to-wake stage, then obtain the indoor temperature;
[0059] Based on the temperature deviation between the indoor temperature and the preset temperature of the sleep stage, the fresh air module is activated to adjust the indoor temperature.
[0060] The air conditioning control device 100 in this embodiment of the invention can be multiple independent air conditioning control devices, such as mobile phones, tablets, smart TVs, network devices, servers and smart computers, or an air conditioning control network or air conditioning control cluster composed of multiple air conditioning control devices.
[0061] This application provides an air conditioning control method, apparatus, device, and computer-readable storage medium, which will be described in detail below.
[0062] It will be understood by those skilled in the art that Figure 1The application environment shown is only one application scenario related to the solution of this application and does not constitute a limitation on the application scenario of this application. Other application environments may include more than one application scenario. Figure 1 The number of more or fewer air conditioning control devices shown, or the air conditioning control network connections, for example Figure 1 Only one air conditioning control device is shown in the figure. It is understood that the scenario of the air conditioning control method may also include one or more air conditioning control devices, which are not limited here. The air conditioning control device 100 may also include a memory for storing sleep information and other data.
[0063] It should be noted that, Figure 1 The schematic diagram of the air conditioning control method shown is merely an example. The scenarios of the air conditioning control method described in the embodiments of the present invention are intended to more clearly illustrate the technical solutions of the embodiments of the present invention and do not constitute a limitation on the technical solutions provided in the embodiments of the present invention.
[0064] Based on the scenarios described above for air conditioning control methods, various embodiments of the air conditioning control method disclosed in this invention are proposed.
[0065] like Figure 2 As shown, Figure 2 This is a flowchart illustrating one embodiment of the air conditioning control method in this application. The air conditioning control method includes the following steps 201-203:
[0066] 201. Obtain the runtime of the sleep mode, and determine the sleep stage of the target user based on the runtime;
[0067] The air conditioning control method in this embodiment is applied to an air conditioning control device. The type and number of air conditioning control devices are not specifically limited. That is, the air conditioning control device can be one or more smart terminals for controlling the air conditioner, or the main control device or smart remote control device in the air conditioner. In a specific embodiment, the air conditioning control device is a smartphone.
[0068] Specifically, the air conditioning control equipment is configured to detect the target user's sleep stage and indoor temperature when the target user is sleeping, and when there is a temperature deviation between the indoor temperature and the preset temperature of the sleep stage, it adaptively activates the fresh air module to introduce outdoor fresh air to adjust the indoor temperature, thereby reducing the indoor temperature deviation and introducing outdoor fresh air to improve the user's sleep quality without affecting the user's sleep.
[0069] Specifically, during operation, the air conditioning control device receives a sleep mode request and adjusts the air conditioner's operating mode to sleep mode. Optionally, the triggering method for this sleep mode request is not specifically limited here; that is, the sleep mode request can be actively triggered by the user, for example, by clicking the sleep mode button on the air conditioner remote control before going to sleep. Alternatively, the sleep mode request can be automatically triggered by the air conditioning control device; for example, the air conditioning control device may have a sleep detection process set up to determine whether the target user is asleep by detecting their sleep information, thereby actively triggering the sleep mode request. In this context, the sleep mode request is an air conditioning operation command that drives the air conditioner into sleep mode and adaptively activates the fresh air module to assist the user in sleeping.
[0070] Optionally, in one embodiment, during operation, the air conditioning control device acquires sleep detection information of the target user and indoor light data in the target working area of the air conditioner corresponding to the air conditioner controller. Optionally, the sleep detection information can be sleep parameters detected by an infrared detection module and a motion-sensing radar module mounted on the air conditioner. Alternatively, the sleep detection information can also be sleep parameters transmitted by a sleep detection device such as a smart bracelet or smartwatch worn by the user to determine whether the user has entered a sleep state. The air conditioning control device can determine the sleep state of the target user by receiving this sleep detection information.
[0071] Specifically, if the air conditioning control device determines that the sleep detection information indicates the target user has fallen asleep or is in a lying position, it further acquires indoor light data in the target working area of the air conditioner. This indoor light data includes indoor light intensity values. The sleep state of the target user is then assessed based on the sleep detection information and the indoor light data.
[0072] Optionally, if the air conditioning control device determines that the target user's sleep state is the sleep stage based on sleep detection information and indoor light data, it switches the air conditioner's operating mode to sleep mode and records the duration of the sleep mode.
[0073] After entering sleep mode, the air conditioning control device also monitors the duration of this sleep mode in real time. This duration is used to determine the target user's sleep stage, which includes the sleep onset stage, deep sleep stage, and wake-up stage, representing different sleep durations. Different sleep stages can correspond to different sleep duration ranges. Each sleep stage can be customized by the user or air conditioning designer according to specific needs.
[0074] 202. If the sleep stage is the waiting-to-wake stage, then obtain the indoor temperature;
[0075] After obtaining the runtime of the sleep mode corresponding to the target user, the air conditioning control device compares the runtime with the preset sleep duration corresponding to each sleep stage to determine the sleep stage of the target user.
[0076] Specifically, after the air conditioning control device is powered on, it presets the sleep duration for each sleep stage. Different sleep stages correspond to different preset sleep durations. Optionally, in one specific embodiment, the preset sleep duration for the falling asleep stage is 0.2 hours; the preset sleep duration for the deep sleep stage is 2.7 hours; and the preset sleep duration for the waking-up stage is 7.8 hours. Optionally, the preset sleep duration for each sleep stage can also be customized according to actual scenario requirements.
[0077] After obtaining the duration of the sleep mode corresponding to the target user, the air conditioning control device determines the sleep stage corresponding to that duration. If the duration of the sleep mode is between 0 and 2 hours, the target user's sleep stage is determined to be the sleep onset stage; if the duration of the sleep mode is between 2 and 7 hours, the target user's sleep stage is determined to be the deep sleep stage; if the duration of the sleep mode is between 7 and 8 hours, the target user's sleep stage is determined to be the wake-up stage.
[0078] Specifically, after determining that the target user's sleep stage is the "waiting to wake up" stage based on the running time of the air conditioner's sleep mode, the air conditioning control equipment obtains the indoor temperature of the target working area of the air conditioner.
[0079] Specifically, when setting the sleep stage, the air conditioning control device also presets a pre-set temperature corresponding to each sleep stage, wherein the preset temperature is a suitable indoor temperature representing the sleep of the target user in that sleep stage. Optionally, in one embodiment, the air conditioning control device sets the preset temperature by acquiring the deep body temperature of the target user at different sleep stages and the suitable indoor temperature corresponding to that deep body temperature.
[0080] 203. Based on the indoor temperature and the preset temperature of the sleep stage, activate the fresh air module to adjust the indoor temperature.
[0081] After acquiring the indoor temperature during the wake-up phase, the air conditioning control device compares the indoor temperature with a preset temperature to obtain the temperature deviation between the two temperatures. Based on this temperature deviation, it determines whether the indoor temperature is too low. This temperature deviation is a temperature value that characterizes the deviation between the indoor temperature and the preset temperature corresponding to the sleep phase.
[0082] Specifically, the air conditioning control equipment calculates the temperature difference between the indoor temperature and the preset temperature by subtracting the indoor temperature from the preset temperature. Optionally, if the temperature difference is positive, it indicates that the preset temperature is higher than the indoor temperature, meaning the indoor temperature is too low, and the fresh air module needs to be activated to raise the indoor temperature. Optionally, if the temperature difference is negative, it indicates that the preset temperature is lower than the indoor temperature, and the fresh air module does not need to be activated.
[0083] Optionally, if the temperature deviation is positive, the air conditioning control device further compares the temperature deviation with a preset temperature deviation threshold to determine the opening level of the fresh air module.
[0084] Optionally, if the temperature deviation is less than the temperature deviation threshold, it is determined that the temperature deviation between the indoor temperature and the preset temperature is small. The air conditioning control device sends a low-speed start command to the fresh air module of the air conditioner, driving the fresh air module to start at the preset low speed and run for a preset time.
[0085] Optionally, if the temperature deviation is greater than the preset temperature deviation threshold, it is determined that the temperature deviation between the indoor temperature and the preset temperature is large. The air conditioning control device sends a high-level start command to the fresh air module of the air conditioner, driving the fresh air module to start at the preset high level and run for a preset time.
[0086] Optionally, in another embodiment, if the indoor temperature is lower than the preset temperature corresponding to the waiting-to-wake stage, i.e. the temperature deviation is positive, the air conditioning control device further obtains the outdoor temperature of the target working area of the air conditioner.
[0087] Specifically, after acquiring the outdoor temperature, the air conditioning control device also acquires the sleep detection information of the target user. This sleep detection information can be sleep parameters detected by the infrared detection module and motion radar module integrated into the air conditioner, or sleep parameters transmitted by the target user from a sleep detection device such as a smart bracelet or smartwatch. After acquiring the sleep detection information, the air conditioning control device evaluates the target user's sleep quality assessment data based on this information. This sleep quality assessment data determines the target user's sleep quality status and includes light sleep assessment data and deep sleep assessment data.
[0088] After acquiring outdoor temperature and sleep quality assessment data for the target work area, the air conditioning control equipment adaptively determines the target start-up strategy for the fresh air module based on the outdoor temperature and sleep quality assessment data, and starts the fresh air module according to the target start-up strategy to increase indoor temperature and indoor oxygen content, thereby helping users get up smoothly and improving the target user's wake-up state.
[0089] In this embodiment, the air conditioning control device obtains the running time of the air conditioner in sleep mode, determines the sleep stage of the target user based on the running time of the sleep mode, and when it is determined that the target user's sleep stage is the waiting-to-wake stage, obtains the indoor temperature of the target working area of the air conditioner; after obtaining the indoor temperature, according to the temperature deviation between the indoor temperature and the preset temperature of the sleep stage, the fresh air module is adaptively activated, and the indoor temperature is adjusted through the fresh air module to introduce outdoor fresh air to increase the indoor temperature of the target user in the waiting-to-wake stage, increase the indoor oxygen content, and thus improve the user's wake-up state.
[0090] like Figure 3 As shown, Figure 3 This is a flowchart illustrating an embodiment of the air conditioning control method provided in this application, which assesses the sleep state of a target user based on sleep detection information and changes in indoor light.
[0091] Based on the above embodiments, this embodiment evaluates the sleep state of the target user from multiple dimensions by acquiring the target user's sleep detection information and indoor light data, specifically including steps 301-303:
[0092] 301. Obtain body movement data from the sleep detection information, perform sleep analysis on the body movement data, and obtain a first sleep analysis result;
[0093] 302. Compare the indoor light data with the preset sleep light threshold to obtain the second sleep analysis result;
[0094] 303. If the first sleep analysis result is sleep movement data and the second analysis result is indoor light data that is less than or equal to the preset sleep light threshold, then the sleep state of the target user is assessed as a sleep state.
[0095] In this embodiment, during operation, when the air conditioning control device does not receive a sleep mode control command from the target user, it automatically acquires the target user's sleep detection information through a preset infrared detection module and / or motion sensing radar module. Optionally, the air conditioning control device can also communicate with a smart bracelet or smartwatch worn by the target user that has sleep detection function, and acquire the target user's sleep detection information detected by the smart bracelet or smartwatch in real time. Optionally, the sleep detection information includes at least the target user's body movement data. After receiving the target user's body movement data, the air conditioning control device performs sleep analysis on the body movement data to obtain the target user's first sleep analysis result. Optionally, to save computing resources and device power, the air conditioning control device is preset to perform sleep analysis on the target user only when it detects that the target user is in a lying position.
[0096] Specifically, the air conditioning control equipment is pre-set with a sleep analysis model, which is trained using body movement training data from different groups of people. The acquired body movement data is then input into the trained sleep analysis model, which performs sleep analysis on the body movement data of the target user to obtain a first sleep analysis result. This first sleep analysis result can either determine that the body movement data is sleep body movement data, i.e., the target user's sleep state is "sleep" or it can determine that the body movement data is non-sleep body movement data, i.e., the target user's sleep state is "not asleep".
[0097] Specifically, to avoid misjudgment due to a single judgment dimension, the air conditioning control device also obtains the target working area of the air conditioner and the indoor light data of the target working area, and compares the indoor light data with the preset sleep light threshold to obtain a second sleep analysis result, which includes the user's sleep result and the user's non-sleep result.
[0098] Optionally, if the indoor light data is greater than the preset sleep light threshold, the indoor light data in the target work area is determined to be non-sleep light data, and a second sleep analysis result is generated for the user who has not fallen asleep.
[0099] Optionally, if the indoor light data is less than the preset sleep light threshold, the indoor light data in the target work area is determined as the sleep light data, and a second sleep analysis result for the user to fall asleep is generated.
[0100] Specifically, if the air conditioning control device determines that the first sleep analysis result of the target user is sleep movement data, and the second sleep analysis result is the analysis result of the user falling asleep, then the air conditioning control device assesses the sleep state of the target user as the state of falling asleep.
[0101] After determining that the target user is asleep, the air conditioning control device automatically triggers a sleep mode control command, switching the air conditioner's operating mode to sleep mode and recording the duration of this sleep mode session. This duration is used to determine the target user's sleep stage, and the fresh air module is activated to adjust the indoor temperature based on the indoor temperature and sleep stage.
[0102] In this embodiment, the air conditioning control device acquires body movement data from the sleep detection information, performs sleep analysis on the body movement data to obtain a first sleep analysis result; compares the indoor light data with a preset sleep light threshold to obtain a second sleep analysis result; if the first sleep analysis result is sleep body movement data and the second sleep analysis result is indoor light data less than or equal to the preset sleep light threshold, then the sleep state of the target user is assessed as a sleep state. This enables the air conditioning control device to automatically detect the sleep state of the target user and automatically activate the air conditioner's sleep mode based on that sleep state.
[0103] like Figure 4 As shown, Figure 4 This is a flowchart illustrating one embodiment of the air conditioning control method provided in this application, which involves activating the fresh air module to adjust the indoor temperature.
[0104] Based on the above embodiments, this application embodiment controls the start-up state of the fresh air module by acquiring outdoor temperature and sleep command evaluation data of the target user, specifically including steps 401-403:
[0105] 401. Query the sleep noise mapping table to obtain the noise threshold corresponding to the sleep quality assessment data of the target user;
[0106] 402. Query the fresh air noise mapping table and determine the target fresh air level in the fresh air noise mapping table based on the noise threshold;
[0107] 403. Activate the fresh air module to adjust the indoor temperature based on the outdoor temperature and the target fresh air setting.
[0108] In this embodiment, the air conditioning control device acquires the temperature deviation between the indoor temperature and the preset temperature corresponding to the waiting-to-wake stage, and determines that the indoor temperature is lower than the preset temperature corresponding to the waiting-to-wake stage based on the temperature deviation. The air conditioning control device then acquires the outdoor temperature of the target working area corresponding to the air conditioner and the sleep detection information of the target user, determines the start-up strategy of the fresh air module based on the sleep detection information and the outdoor temperature, and controls the fresh air module to start and run according to the start-up strategy to increase the indoor temperature.
[0109] Specifically, after acquiring the sleep detection information, the air conditioning control device determines the sleep quality assessment data of the target user based on the sleep detection information, and queries a preset sleep noise mapping table to obtain the noise threshold corresponding to the sleep quality assessment data of the target user. The noise threshold is the maximum tolerable noise decibel value corresponding to the sleep quality assessment data of the target user.
[0110] After obtaining the noise threshold, the air conditioning control equipment further queries the preset fresh air noise mapping table to obtain the operating noise corresponding to each level of the fresh air module of the air conditioner, and compares each operating noise with the noise threshold to determine the target fresh air level corresponding to the fresh air module.
[0111] Optionally, if the operating noise exceeds the noise threshold, the air conditioning control device assesses that operating at the fresh air setting corresponding to the operating noise would affect the sleep quality of the target user, and determines that the fresh air setting corresponding to the operating noise is a non-target fresh air setting.
[0112] Optionally, if the operating noise is less than the noise threshold, the air conditioning control device determines that operating at the fresh air setting corresponding to the operating noise will not affect the sleep quality of the target user, and sets the fresh air setting to the target fresh air setting corresponding to the sleep quality assessment data.
[0113] Specifically, after obtaining the target fresh air setting corresponding to the fresh air module, the air conditioning control equipment also calculates the fresh air activation time for that target fresh air setting using the obtained outdoor temperature and the temperature deviation. The air conditioning control equipment calculates the time required to eliminate the temperature deviation at the target fresh air setting using the outdoor temperature and the temperature deviation, and sets this time as the fresh air activation time.
[0114] After obtaining the target fresh air level and fresh air activation time of the fresh air module through sleep quality assessment data and outdoor temperature, the air conditioning control equipment sets the target fresh air level and fresh air activation time as the fresh air activation strategy of the fresh air module, drives the fresh air module to start with the fresh air activation strategy, runs the fresh air activation time, and then shuts down the fresh air module.
[0115] Optionally, the air conditioning control device may also compare the fresh air start time with the remaining sleep time of the target user. If the fresh air start time is longer than the remaining sleep time, then the remaining sleep time shall be set as the fresh air start time.
[0116] In this embodiment, the air conditioning control device determines that the indoor temperature is lower than the preset temperature corresponding to the waiting-to-wake stage based on the temperature deviation, and then obtains the outdoor temperature; it obtains the sleep detection information of the target user, and determines the sleep quality assessment data of the target user based on the sleep detection information; and it activates the fresh air module to adjust the indoor temperature based on the outdoor temperature and the sleep quality assessment data. This achieves the adjustment of indoor temperature by controlling the fresh air module of the air conditioner without affecting the user's sleep.
[0117] To better implement the air conditioning control method in the embodiments of this application, an air conditioning control device is also provided in the embodiments of this application, such as... Figure 5 As shown, Figure 5 This is a schematic diagram of an embodiment of the air conditioning control device 500 in this application. The air conditioning control device 500 includes:
[0118] The sleep detection module 501 is configured to acquire the duration of a sleep mode and determine the sleep stage of the target user based on the duration of the sleep mode.
[0119] The room temperature acquisition module 502 is configured to acquire the room temperature if the sleep stage is the waiting-to-wake stage;
[0120] The fresh air control module 503 is configured to activate the fresh air module to adjust the indoor temperature based on the temperature deviation between the indoor temperature and the preset temperature of the sleep stage.
[0121] In some embodiments of this application, the air conditioning control device 500 adjusts the indoor temperature by activating the fresh air module based on the indoor temperature and the preset temperature of the sleep stage, including:
[0122] If the indoor temperature is determined to be lower than the preset temperature corresponding to the waiting-to-get-up stage based on the temperature deviation, then the outdoor temperature is obtained.
[0123] Obtain the sleep detection information of the target user, and determine the sleep quality assessment data of the target user based on the sleep detection information;
[0124] The fresh air module is activated based on the outdoor temperature and the sleep quality assessment data to adjust the indoor temperature.
[0125] In some embodiments of this application, the air conditioning control device 500 activates the fresh air module to adjust the indoor temperature based on the outdoor temperature and the sleep quality assessment data, including:
[0126] Query the sleep noise mapping table to obtain the noise threshold corresponding to the sleep quality assessment data of the target user;
[0127] Query the fresh air noise mapping table and determine the target fresh air level in the table based on the noise threshold.
[0128] The fresh air module is activated based on the outdoor temperature and the target fresh air setting to adjust the indoor temperature.
[0129] In some embodiments of this application, the air conditioning control device 500 activates the fresh air module to adjust the indoor temperature based on the outdoor temperature and the sleep quality assessment data, and determines the fresh air activation strategy of the fresh air module based on the current outdoor temperature and the current sleep state, including:
[0130] Obtain the target fresh air level corresponding to the sleep quality assessment data of the current sleep state;
[0131] The fresh air activation time for the target fresh air level is calculated based on the outdoor temperature and the temperature deviation.
[0132] Based on the outdoor temperature and the target fresh air setting, a fresh air activation strategy is generated for the fresh air module to start and adjust the indoor temperature.
[0133] In some embodiments of this application, before the air conditioning control device 500 acquires the duration of the sleep mode and determines the sleep stage of the target user based on the duration, it further includes:
[0134] Obtain sleep monitoring information and indoor lighting data from the target user;
[0135] The sleep state of the target user is assessed based on the sleep detection information and the indoor lighting data.
[0136] If the sleep state is a state of falling asleep, then the air conditioner's operating mode is switched to sleep mode and the duration of the sleep mode is recorded.
[0137] In some embodiments of this application, the air conditioning control device 500 assesses the sleep state of the target user based on the sleep detection information and the indoor light change value, including:
[0138] Obtain body movement data from the sleep detection information, perform sleep analysis on the body movement data, and obtain a first sleep analysis result;
[0139] The indoor light data is compared with a preset sleep light threshold to obtain a second sleep analysis result;
[0140] If the first sleep analysis result is sleep movement data, and the second analysis result is indoor light data that is less than or equal to the preset sleep light threshold, then the sleep state of the target user is assessed as a state of falling asleep.
[0141] In some embodiments of this application, the air conditioning control device 500 acquires the duration of the sleep mode and determines the sleep stage of the target user based on the duration, including:
[0142] Obtain the runtime of the sleep mode;
[0143] Query the preset sleep stage table to obtain the preset sleep stage that matches the runtime in the sleep stage table, wherein the preset sleep stage includes the sleep onset stage, the deep sleep stage, and the wake-up stage;
[0144] Set the preset sleep stage to the sleep stage of the target user.
[0145] In this embodiment, the air conditioning control device obtains the operating time of the air conditioner in sleep mode, determines the sleep stage of the target user based on the operating time of the sleep mode, and when it is determined that the target user's sleep stage is the waiting-to-wake stage, obtains the indoor temperature of the target working area of the air conditioner; after obtaining the indoor temperature, according to the temperature deviation between the indoor temperature and the preset temperature of the sleep stage, the fresh air module is adaptively activated, and the indoor temperature is adjusted through the fresh air module. This achieves the goal of reducing the temperature deviation of the indoor temperature and increasing the indoor oxygen content by determining the user's sleep stage and the temperature deviation of the indoor temperature.
[0146] This invention also provides an air conditioning control device, such as... Figure 6 As shown, Figure 6 This is a schematic diagram of one embodiment of the air conditioning control device provided in this application.
[0147] The air conditioning control device integrates any one of the air conditioning control devices provided in the embodiments of the present invention, and the air conditioning control device includes:
[0148] One or more processors;
[0149] Memory; and
[0150] One or more applications, wherein the one or more applications are stored in the memory and configured to be executed by the processor in the steps of the air conditioning control method described in any of the embodiments of the above-described air conditioning control method.
[0151] Specifically, the air conditioning control device may include components such as a processor 601 with one or more processing cores, a memory 602 with one or more computer-readable storage media, a power supply 603, and an input unit 604. Those skilled in the art will understand that... Figure 6 The air conditioning control device structure shown does not constitute a limitation on the air conditioning control device. It may include more or fewer components than shown, or combine certain components, or have different component arrangements. Wherein:
[0152] The processor 601 is the control center of the air conditioning control device. It connects various parts of the air conditioning control device via various interfaces and lines. By running or executing software programs and / or modules stored in the memory 602, and by calling data stored in the memory 602, it performs various functions and processes data of the air conditioning control device, thereby providing overall monitoring of the air conditioning control device. Optionally, the processor 601 may include one or more processing cores; preferably, the processor 601 may integrate an application processor and a modem processor, wherein the application processor mainly handles the operating system, user interface, and applications, and the modem processor mainly handles wireless communication. It is understood that the modem processor may not be integrated into the processor 601.
[0153] The memory 602 can be used to store software programs and modules. The processor 601 executes various functional applications and data processing by running the software programs and modules stored in the memory 602. The memory 602 may mainly include a program storage area and a data storage area. The program storage area may store the operating system, application programs required for at least one function (such as sound playback function, image playback function, etc.), etc.; the data storage area may store data created based on the use of the air conditioning control device, etc. In addition, the memory 602 may include high-speed random access memory, and may also include non-volatile memory, such as at least one disk storage device, flash memory device, or other volatile solid-state storage device. Accordingly, the memory 602 may also include a memory controller to provide the processor 601 with access to the memory 602.
[0154] The air conditioning control equipment also includes a power supply 603 that supplies power to various components. Preferably, the power supply 603 can be logically connected to the processor 601 through a power management system, thereby enabling functions such as charging, discharging, and power consumption management through the power management system. The power supply 603 may also include one or more DC or AC power supplies, recharging systems, power fault detection circuits, power converters or inverters, power status indicators, and other arbitrary components.
[0155] The air conditioning control device may also include an input unit 604, which can be used to receive input digital or character information, and generate keyboard, mouse, joystick, optical or trackball signal inputs related to user settings and function control.
[0156] Although not shown, the air conditioning control device may also include a display unit, etc., which will not be described in detail here. Specifically, in this embodiment, the processor 601 in the air conditioning control device loads the executable files corresponding to the processes of one or more application programs into the memory 602 according to the following instructions, and the processor 601 runs the application programs stored in the memory 602 to realize various functions, as follows:
[0157] Obtain the duration of the sleep mode and determine the sleep stage of the target user based on the duration of the sleep mode;
[0158] If the sleep stage is the waiting-to-wake stage, then obtain the indoor temperature;
[0159] Based on the temperature deviation between the indoor temperature and the preset temperature of the sleep stage, the fresh air module is activated to adjust the indoor temperature.
[0160] Therefore, embodiments of the present invention provide a computer-readable storage medium, which may include: read-only memory (ROM), random access memory (RAM), a magnetic disk, or an optical disk, etc. A computer program is stored thereon, which is loaded by a processor to execute the steps in any of the air conditioning control methods provided in the embodiments of the present invention. For example, the computer program loaded by the processor can execute the following steps:
[0161] Obtain the duration of the sleep mode and determine the sleep stage of the target user based on the duration of the sleep mode;
[0162] If the sleep stage is the waiting-to-wake stage, then obtain the indoor temperature;
[0163] Based on the temperature deviation between the indoor temperature and the preset temperature of the sleep stage, the fresh air module is activated to adjust the indoor temperature.
[0164] In the above embodiments, the descriptions of each embodiment have different focuses. For parts not described in detail in a certain embodiment, please refer to the detailed descriptions of other embodiments above, which will not be repeated here.
[0165] In practice, each of the above units or structures can be implemented as an independent entity or can be arbitrarily combined to be implemented as the same or several entities. For the specific implementation of each of the above units or structures, please refer to the previous method embodiments, which will not be repeated here.
[0166] For details on the implementation of each of the above operations, please refer to the previous examples, which will not be repeated here.
[0167] The above provides a detailed description of an air conditioning control method provided by the embodiments of this application. Specific embodiments have been used to illustrate the principles and implementation methods of the present invention. The description of the above embodiments is only for the purpose of helping to understand the method and core ideas of the present invention. At the same time, for those skilled in the art, there will be changes in the specific implementation methods and application scope based on the ideas of the present invention. Therefore, the content of this specification should not be construed as a limitation of the present invention.
Claims
1. An air conditioner control method characterized by comprising: The air conditioner control method comprises: obtaining the running duration of the sleep mode, and determining the sleep stage of the target user according to the running duration; if the sleep stage is the stage of getting up, obtaining the indoor temperature; subtracting the indoor temperature from the preset temperature of the sleep stage to obtain the temperature deviation representing the temperature deviation state between the indoor temperature and the preset temperature of the sleep stage; if the temperature deviation is a negative value, it is determined that the preset temperature is less than the indoor temperature, and the fresh air module does not need to be started; if the temperature deviation is a positive value, it is determined that the preset temperature is greater than the indoor temperature, and if the temperature deviation is less than a temperature deviation threshold, the fresh air module is driven to start at a low gear to increase the indoor temperature; if the temperature deviation is a positive value and the temperature deviation is greater than the temperature deviation threshold, the fresh air module is driven to start at a high gear to increase the indoor temperature.
2. The air conditioner control method of claim 1, wherein, After obtaining the indoor temperature, the method further comprises: if the indoor temperature is less than the preset temperature corresponding to the stage of getting up, obtaining the outdoor temperature; obtaining sleep detection information of the target user, and determining sleep quality evaluation data of the target user according to the sleep detection information; starting the fresh air module to adjust the indoor temperature according to the outdoor temperature and the sleep quality evaluation data.
3. The air conditioner control method according to claim 2, wherein The starting of the fresh air module to adjust the indoor temperature according to the outdoor temperature and the sleep quality evaluation data comprises: querying a preset sleep noise mapping table to obtain a noise threshold corresponding to the sleep quality evaluation data of the target user; querying a preset fresh air noise mapping table to determine a target fresh air gear in the fresh air noise mapping table according to the noise threshold; starting the fresh air module to adjust the indoor temperature according to the outdoor temperature and the target fresh air gear.
4. The air conditioner control method according to claim 3, wherein The starting of the fresh air module to adjust the indoor temperature according to the outdoor temperature and the sleep quality evaluation data comprises: obtaining a target fresh air gear corresponding to the sleep quality evaluation data; calculating a fresh air starting time of the target fresh air gear according to the outdoor temperature and the indoor temperature; starting the fresh air module to adjust the indoor temperature according to the target fresh air gear and the fresh air starting time.
5. The air conditioner control method according to claim 1, wherein Before obtaining the running duration of the sleep mode and determining the sleep stage of the target user according to the running duration, the method further comprises: obtaining sleep detection information of the target user and indoor light data; evaluating the sleep state of the target user according to the sleep detection information and the indoor light data; if the sleep state is a sleep state, switching the running mode of the air conditioner to the sleep mode and recording the running duration of the sleep mode.
6. The air conditioner control method according to claim 5, wherein The evaluation of the sleep state of the target user according to the sleep detection information and the indoor light data comprises: obtaining body movement data in the sleep detection information, performing sleep analysis on the body movement data to obtain a first sleep analysis result; comparing the indoor light data with a preset sleep light threshold to obtain a second sleep analysis result; If the first sleep analysis result is that the body movement data is sleep body movement data, and the second sleep analysis result is that the indoor light data is less than or equal to the preset sleep light threshold, the sleep state of the target user is evaluated as a sleep state.
7. The air conditioner control method according to claim 1, wherein The running duration of the sleep mode is obtained, and a sleep stage of the target user is determined according to the running duration. The running duration of the sleep mode is obtained. A preset sleep stage table is queried to obtain a preset sleep stage in the sleep stage table that matches the running duration, wherein the preset sleep stage includes a sleep stage, a deep sleep stage, and a wake-up stage. The preset sleep stage is set as the sleep stage of the target user.
8. An air conditioner control device characterized by comprising: The air conditioner control device includes: A sleep detection module configured to obtain a running duration of a sleep mode and determine a sleep stage of a target user according to the running duration. A room temperature acquisition module configured to obtain a room temperature if the sleep stage is a wake-up stage. A fresh air control module configured to subtract the room temperature from a preset temperature of the sleep stage to obtain a temperature deviation representing a temperature deviation state between the room temperature and the preset temperature of the sleep stage. If the temperature deviation is a negative value, it is determined that the preset temperature is less than the room temperature, and the fresh air module does not need to be started. If the temperature deviation is a positive value, it is determined that the preset temperature is greater than the room temperature, and if the temperature deviation is less than a temperature deviation threshold, the fresh air module is driven to start at a low gear to increase the room temperature. If the temperature deviation is a positive value and the temperature deviation is greater than the temperature deviation threshold, the fresh air module is driven to start at a high gear to increase the room temperature.
9. An air conditioning control device characterized by comprising: The air conditioner control device includes: One or more processors; Memory; and One or more application programs, wherein the one or more application programs are stored in the memory and configured to be executed by the processor to implement the air conditioner control method of any one of claims 1 to 7.
10. A computer-readable storage medium, characterized in that, A computer program is stored thereon, and the computer program is loaded by a processor to execute the steps of the air conditioner control method of any one of claims 1 to 7.
Citation Information
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