Air conditioner control method and device, electronic equipment and storage medium
By acquiring target user information and using human infrared sensors and temperature sensors to automatically control air conditioners and curtains, the problem of air conditioners failing to meet the environmental needs of infants and young children is solved, achieving efficient environmental regulation and improved user satisfaction.
Patent Information
- Application Number
- CN202310719422.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-16
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2043-06-16
AI Technical Summary
Existing air conditioners are unable to automatically adjust their operating modes and curtain settings to meet the environmental needs of target users such as infants and young children, resulting in insufficient user experience and satisfaction.
By acquiring user information of target users, using human infrared sensors to detect activity status, and combining evaporator coil temperature and outdoor temperature sensors, the system automatically controls the operating mode of the air conditioner and the opening and closing of the curtains to meet the temperature and light intensity needs of infants and young children.
It enables automatic coordination between air conditioners and curtains, efficiently meeting the environmental needs of infants and young children in their spaces, and enhancing user experience and satisfaction.
Smart Images

Figure CN119146552B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of air conditioners, and in particular to an air conditioner control method and device, an electronic device, and a storage medium. BACKGROUND
[0002] With the popularity of air conditioners, more and more families begin to use air conditioners, however, target users with special needs in the family, such as infants, have relatively strict requirements for the environmental conditions in the space range in which the infants are located.
[0003] According to related technologies, the operation of an air conditioner is often adjusted by manual operation to meet the needs of a target user for the environment in the space range in which the target user is located.
[0004] Therefore, it is currently a research hotspot to find a control method for automatically adjusting the operation of an air conditioner to meet the needs of a target user for the environment in the space range in which the target user is located. SUMMARY
[0005] The present application provides an air conditioner control method and device, an electronic device, and a storage medium, which can automatically adjust the operation mode of an air conditioner and the opening and closing state of a curtain interconnected with the air conditioner to meet the needs of a target user for the environment in the space range in which the target user is located, thereby improving the experience and satisfaction of the user.
[0006] The present application provides an air conditioner control method, which comprises: obtaining user information of a target user, and determining environmental needs of the target user for the environment based on the user information; and controlling the operation mode of the air conditioner and the opening and closing state of a curtain based on the environmental needs, wherein the air conditioner is in communication connection with the curtain.
[0007] According to the air conditioner control method provided by the present application, the environmental needs include optimal temperature needs and light intensity needs, and the air conditioner is provided with a human body infrared sensor; before the step of controlling the operation mode of the air conditioner and the opening and closing state of the curtain based on the environmental needs, the method further comprises: obtaining an activity state of the target user based on the human body infrared sensor; in the case where it is detected that the activity state is an activity frequency of the target user in a preset time period being less than or equal to a frequency threshold, it is determined that the target user enters a sleep state; and the step of controlling the operation mode of the air conditioner and the opening and closing state of the curtain based on the environmental needs specifically comprises: obtaining an evaporator coil temperature of the air conditioner, and controlling the operation mode of the air conditioner based on the optimal temperature needs and the evaporator coil temperature, and controlling the opening and closing state of the curtain based on a first light intensity need corresponding to the target user entering the sleep state.
[0008] According to the air conditioner control method provided by the application, after the activity state of the target user is acquired based on the human body infrared sensor, the method further comprises: in the case that the activity frequency of the target user in the preset time period is greater than the frequency threshold, determining that the target user is in an active state; and based on the environmental requirement, controlling the operation mode of the air conditioner and the opening and closing state of the curtain, specifically comprising: acquiring the evaporator coil temperature of the air conditioner, and based on the optimal temperature requirement and the evaporator coil temperature, controlling the operation mode of the air conditioner, and based on the second light intensity requirement corresponding to the active state of the target user, controlling the opening and closing state of the curtain.
[0009] According to the air conditioner control method provided by the application, the optimal temperature requirement comprises a minimum temperature and a maximum temperature, and the air conditioner comprises an outdoor temperature sensor; based on the optimal temperature requirement and the evaporator coil temperature, the operation mode of the air conditioner is controlled, specifically comprising: in the case that the evaporator coil temperature is greater than or equal to the minimum temperature and less than or equal to the maximum temperature, the operation mode of the air conditioner is controlled according to the outdoor temperature detected by the outdoor temperature sensor and the evaporator coil temperature, so that the evaporator coil temperature remains at the current temperature.
[0010] According to the air conditioner control method provided by the application, the operation mode of the air conditioner is controlled according to the outdoor temperature detected by the outdoor temperature sensor and the evaporator coil temperature, specifically comprising: in the case that the evaporator coil temperature is greater than the outdoor temperature, and the temperature difference between the evaporator coil temperature and the outdoor temperature is greater than the difference threshold, the air conditioner is controlled to operate in a heating mode; in the case that the evaporator coil temperature is less than the outdoor temperature, and the temperature difference between the outdoor temperature and the evaporator coil temperature is greater than the difference threshold, the air conditioner is controlled to operate in a cooling mode.
[0011] According to the air conditioner control method provided by the application, the optimal temperature requirement comprises a minimum temperature, and the air conditioner comprises an outdoor temperature sensor; based on the optimal temperature requirement and the evaporator coil temperature, the operation mode of the air conditioner is controlled, specifically comprising: in the case that the evaporator coil temperature is less than the minimum temperature, the air conditioner is controlled to operate in a heating mode, and the inner machine rotating speed of the air conditioner is adjusted to a low wind mode.
[0012] According to the air conditioner control method provided by the application, the most suitable temperature requirement comprises a highest temperature, the air conditioner comprises an outdoor temperature sensor; and the operation mode of the air conditioner is controlled based on the most suitable temperature requirement and the evaporator coil temperature, specifically comprising: in the case that the evaporator coil temperature is greater than the highest temperature, the air conditioner is controlled to operate in a refrigeration mode, and the rotation speed of the indoor unit of the air conditioner is adjusted to a low wind mode.
[0013] According to the air conditioner control method provided by the application, the opening and closing state of the curtain is controlled based on the first light intensity requirement corresponding to the target user entering a sleep state, specifically comprising: the closing area of the curtain is adjusted to a preset area based on the first light intensity requirement corresponding to the target user entering a sleep state, so that the light intensity of the environment meets the first light intensity requirement, wherein the preset area is determined according to a first mapping table, and the first mapping table comprises a corresponding relationship between different light intensity requirements and the closing area of the curtain.
[0014] According to the air conditioner control method provided by the application, the opening and closing state of the curtain is controlled based on the second light intensity requirement corresponding to the target user being in an active state, specifically comprising: the closing area of the curtain is adjusted to a preset area based on the second light intensity requirement corresponding to the target user being in an active state, so that the light intensity of the environment meets the second light intensity requirement, wherein the preset area is determined according to a first mapping table, and the first mapping table comprises a corresponding relationship between different light intensity requirements and the closing area of the curtain.
[0015] According to the air conditioner control method provided by the application, the user information comprises age information and body state information, and in the case that the environment requirement is a most suitable temperature requirement, the environment requirement of a target user for an environment is determined based on the user information, specifically comprising: a first initial minimum temperature and a first initial maximum temperature corresponding to the age information are respectively determined based on the age information; a second initial minimum temperature and a second initial maximum temperature corresponding to the body state information are respectively determined based on the body state information; a minimum temperature in the most suitable temperature is determined based on the first initial minimum temperature and the second initial minimum temperature; and a maximum temperature in the most suitable temperature is determined based on the first initial maximum temperature and the second initial maximum temperature.
[0016] According to the air conditioner control method provided by the application, the user information includes age information and body state information, in the case that the environment demand is illumination intensity demand, the target user's environment demand for the environment is determined based on the user information, specifically including: based on the age information, the first initial sleep state illumination intensity demand corresponding to the age information when entering the sleep state and the first initial activity state illumination intensity demand corresponding to the age information when in the activity state are determined respectively; based on the body state information, the second initial sleep state illumination intensity demand corresponding to the body state information when entering the sleep state and the second initial activity state illumination intensity demand corresponding to the body state information when in the activity state are determined respectively; based on the first initial sleep state illumination intensity demand and the second initial sleep state illumination intensity demand, the first illumination intensity demand corresponding to the target user entering the sleep state is determined; based on the first initial activity state illumination intensity demand and the second initial activity state illumination intensity demand, the second illumination intensity demand corresponding to the target user in the activity state is determined.
[0017] The application further provides an air conditioner control device, which comprises: an acquisition module, configured to acquire user information of a target user and determine an environment demand of the target user for an environment based on the user information; and a control module, configured to control an operation mode of the air conditioner and an open / close state of a curtain based on the environment demand, wherein the air conditioner and the curtain are in communication connection.
[0018] The application further provides an electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor implements the air conditioner control method according to any one of the above-mentioned embodiments when executing the program.
[0019] The application further provides a non-transitory computer readable storage medium having a computer program stored thereon, wherein the computer program is executable on a processor to implement the air conditioner control method according to any one of the above-mentioned embodiments.
[0020] The application further provides a computer program product comprising a computer program, wherein the computer program is executable on a processor to implement the air conditioner control method according to any one of the above-mentioned embodiments.
[0021] The air conditioner control method, device, electronic device and storage medium provided by the application can automatically and efficiently meet the demand of the target user by acquiring the user information of the target user and determining the environment demand of the target user for the environment based on the user information, so as to automatically adjust the operation mode of the air conditioner and the open / close state of the curtain interconnected with the air conditioner to meet the demand of the target user for the environment in the space range where the target user is located, thereby improving the experience and satisfaction of the user. Attached Figure Description
[0022] To more clearly illustrate the technical solutions in this invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this invention. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0023] Figure 1 This is a flowchart illustrating the air conditioner control method provided by the present invention;
[0024] Figure 2 This is one of the flowcharts provided by the present invention for controlling the operating mode of an air conditioner and the opening and closing state of curtains based on environmental requirements;
[0025] Figure 3 This is the second flowchart provided by the present invention, which controls the operating mode of the air conditioner and the opening and closing state of the curtains based on environmental requirements.
[0026] Figure 4 This is one of the flowcharts provided by the present invention for determining the environmental needs of a target user based on user information.
[0027] Figure 5 This is the second flowchart of the process for determining the environmental needs of a target user based on user information, provided by the present invention.
[0028] Figure 6 This is a schematic diagram of the structure of the air conditioner control device provided by the present invention;
[0029] Figure 7 This is a schematic diagram of the structure of the electronic device provided by the present invention. Detailed Implementation
[0030] To make the objectives, technical solutions, and advantages of this invention clearer, the technical solutions of this invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this invention. All other embodiments obtained by those skilled in the art based on the embodiments of this invention without creative effort are within the scope of protection of this invention.
[0031] Figure 1 This is a flowchart illustrating the air conditioner control method provided by the present invention.
[0032] The following will combine Figure 1 The process of the air conditioner control method provided by the present invention will be described.
[0033] In an example embodiment of the present application, the air conditioner control method comprises steps 110 and 120, which will be introduced respectively. Figure 1 It can be seen that the air conditioner control method can comprise steps 110 and 120, which will be introduced respectively.
[0034] In step 110, user information of a target user is obtained, and environmental demand of the target user for an environment is determined based on the user information.
[0035] In step 120, the running mode of the air conditioner and the opening and closing state of the curtain are controlled based on the environmental demand, wherein the air conditioner and the curtain are in communication connection.
[0036] In an embodiment, the user information of the target user can be obtained, wherein the target user can be a user with special demand, for example, an infant. The user information can be information about the characteristics of the target user, for example, age information and physical condition information. In application, for the target user, since the target user has special demand, the characteristics of the target user can affect the environmental demand of the target user for the environment, for example, temperature demand and illumination intensity demand.
[0037] In an example, the environmental demand of the target user for the environment can be determined based on the user information, thereby laying a foundation for automatically and efficiently controlling the running mode of the air conditioner and the opening and closing state of the curtain, so as to meet the demand of the target user for the environment in the space range where the target user is located through the coordinated cooperation of the air conditioner and the curtain.
[0038] In an application scenario, when the target user (infant) is alone in a space, in order to free the hands of the parents and also meet the demand of the infant for the environment, the environmental demand of the infant for the environment can be determined based on the user information of the infant, and further, the running mode of the air conditioner and the opening and closing state of the curtain are controlled based on the environmental demand, so as to meet the demand of the infant for the environment in the space range where the infant is located through the coordinated cooperation of the air conditioner and the curtain. Through the embodiment, the hands of the parents are freed under the premise of meeting the demand of the infant for the environment, and the experience and satisfaction of the parents and the infant are improved.
[0039] The air conditioner control method provided by the present application can automatically and efficiently meet the demand of the target user by obtaining the user information of the target user and determining the environmental demand of the target user for the environment based on the user information, so as to control the running mode of the air conditioner and the opening and closing state of the curtain based on the environmental demand. The running mode of the air conditioner and the opening and closing state of the curtain interconnected with the air conditioner can be automatically adjusted to meet the demand of the target user for the environment in the space range where the target user is located, thereby improving the experience and satisfaction of the user.
[0040] Figure 2is one of the process diagrams provided by the present application, which controls the operation mode of the air conditioner and the opening and closing state of the curtain based on environmental requirements.
[0041] The following will be described in conjunction with Figure 2 The process of the air conditioner control method provided by the present application will be described.
[0042] In an exemplary embodiment of the present application, the environmental requirements can include optimal temperature requirements and light intensity requirements, and the air conditioner can be provided with a human body infrared sensor. In conjunction with Figure 2 It can be seen that controlling the operation mode of the air conditioner and the opening and closing state of the curtain based on environmental requirements can include steps 210 to 240, which will be introduced respectively.
[0043] In step 210, the activity state of the target user is obtained based on the human body infrared sensor.
[0044] In an embodiment, the target user is taken as an infant as an example. Since the activity state of the infant can be distinguished as whether the infant is in a sleep state or in an active state, and different states of the infant have different environmental requirements for the environment where the infant is located, the operation mode of the air conditioner and the opening and closing state of the curtain can be controlled to meet the requirements of the infant.
[0045] In an example, the activity state of the target user can be obtained in conjunction with the human body infrared sensor, wherein the activity state can be understood as the activity frequency of the target user in a unit of time.
[0046] In step 220, if it is detected that the activity state is the activity frequency of the target user in a preset time period is less than or equal to a frequency threshold, it is determined that the target user enters a sleep state.
[0047] In an embodiment, when it is detected that the activity state is the activity frequency of the infant in a preset time period is less than or equal to a frequency threshold, it indicates that the infant is about to enter or has entered a sleep state. At this time, the operation mode of the air conditioner and the opening and closing state of the curtain need to be controlled according to the environmental requirements corresponding to the sleep state to meet the growth requirements of the infant.
[0048] In step 230, the evaporator coil temperature of the air conditioner is obtained, and the operation mode of the air conditioner is controlled based on the optimal temperature requirements and the evaporator coil temperature.
[0049] In an embodiment, the evaporator coil temperature of the air conditioner can be obtained. The operation mode of the air conditioner is controlled according to the optimal temperature requirements of the infant in the sleep state and the evaporator coil temperature, so that the temperature of the space where the infant is located meets the requirements of the infant.
[0050] In step 240, the opening and closing state of the curtain is controlled based on the first light intensity requirement corresponding to the target user entering the sleep state.
[0051] In an embodiment, the opening and closing state of the curtain can also be controlled according to the first light intensity requirement corresponding to the infant entering the sleep state, so that the light intensity of the space where the infant is located meets the requirement of the infant in the sleep state.
[0052] In another exemplary embodiment of the present application, the above steps 240 are continued to be described as follows. Figure 2 The step 240 is described as an example, and the opening and closing state of the curtain is controlled based on the first light intensity requirement corresponding to the target user entering the sleep state, which can be implemented in the following manner:
[0053] The closing area of the curtain is adjusted to a preset area based on the first light intensity requirement corresponding to the target user entering the sleep state, so that the light intensity of the environment meets the first light intensity requirement, wherein the preset area is determined according to a first mapping table, and the first mapping table includes a corresponding relationship between different light intensity requirements and the closing area of the curtain.
[0054] In an embodiment, the closing area of the curtain can be adjusted to a preset area according to the requirement of the infant in the sleep state on the light intensity (corresponding to the first light intensity requirement). The preset area can be determined according to a first mapping table, and the first mapping table includes a corresponding relationship between different light intensity requirements and the closing area of the curtain. Through this embodiment, the opening and closing state of the curtain can be automatically controlled, so that the light intensity of the space where the infant is located meets the requirement of the infant in the sleep state.
[0055] In order to further introduce the air conditioner control method provided by the present application, the following will be described in combination with Figure 3 .
[0056] In an exemplary embodiment of the present application, the above steps 210 are continued to be described as follows. Figure 3 It can be seen that based on the environmental requirement, the control of the operating mode of the air conditioner and the opening and closing state of the curtain can also include steps 310 to 340, wherein step 310 is the same as or similar to step 210, and the specific implementation and advantages thereof are described above, and in this embodiment, it is not specifically limited, and steps 320 to 340 will be described respectively.
[0057] In step 320, it is determined that the target user is in the active state when it is detected that the activity frequency of the target user in the preset time period is greater than the frequency threshold.
[0058] In an embodiment, when it is detected that the activity state of the infant is that the activity frequency of the infant in the preset time period is greater than the frequency threshold, it is indicated that the infant is in the activity state. At this time, the operation mode of the air conditioner and the open and close state of the curtain are controlled according to the environmental requirement corresponding to the activity state, so as to meet the growth requirement of the infant.
[0059] In step 330, the evaporator coil temperature of the air conditioner is obtained, and the operation mode of the air conditioner is controlled based on the optimal temperature requirement and the evaporator coil temperature.
[0060] In an embodiment, the evaporator coil temperature of the air conditioner can be obtained. The operation mode of the air conditioner is controlled according to the optimal temperature requirement of the infant in the activity state and the evaporator coil temperature, so that the temperature of the space where the infant is located meets the requirement of the infant.
[0061] In step 340, the open and close state of the curtain is controlled based on the second light intensity requirement corresponding to the activity state of the target user.
[0062] In an embodiment, the open and close state of the curtain can also be controlled according to the second light intensity requirement corresponding to the activity state of the infant, so that the light intensity of the space where the infant is located meets the requirement of the infant in the activity state.
[0063] In another example embodiment of the present application, the steps 340 are described as follows: Figure 3 The open and close state of the curtain is controlled based on the second light intensity requirement corresponding to the activity state of the target user, which can be implemented in the following way:
[0064] The closing area of the curtain is adjusted to a preset area based on the second light intensity requirement corresponding to the activity state of the target user, so that the light intensity of the environment meets the second light intensity requirement, wherein the preset area is determined according to a first mapping table, and the first mapping table includes the corresponding relationship between different light intensity requirements and the closing area of the curtain.
[0065] In an embodiment, the closing area of the curtain can be adjusted to a preset area according to the requirement of the infant in the activity state for the light intensity (corresponding to the second light intensity requirement). The preset area can be determined according to a first mapping table, and the first mapping table includes the corresponding relationship between different light intensity requirements and the closing area of the curtain. Through this embodiment, the open and close state of the curtain can be automatically controlled, so that the light intensity of the space where the infant is located meets the requirement of the infant in the activity state.
[0066] In another example embodiment of the present application, the optimal temperature requirement can include the minimum temperature and the maximum temperature, and the air conditioner can include an outdoor temperature sensor.
[0067] Continuing with the example of step 230 in FIG. 2A or step 330 in FIG. 3A, based on the minimum temperature requirement and the evaporator coil temperature, the operating mode of the air conditioner can be controlled in the following manner: Figure 2 Figure 3 Continuing with the example of step 230 in FIG. 2A or step 330 in FIG. 3A, based on the minimum temperature requirement and the evaporator coil temperature, the operating mode of the air conditioner can be controlled in the following manner:
[0068] In the case where the evaporator coil temperature is detected to be greater than or equal to the minimum temperature and less than or equal to the maximum temperature, the operating mode of the air conditioner is controlled based on the outdoor temperature detected by the outdoor temperature sensor and the evaporator coil temperature, so that the evaporator coil temperature is maintained at the current temperature.
[0069] In one embodiment, when the evaporator coil temperature is detected to be greater than or equal to the minimum temperature and less than or equal to the maximum temperature, it can be indicated that the environmental temperature of the environment in which the infant is located meets the temperature requirement of the infant. In application, it is necessary to control the environmental temperature to be always within the current temperature range.
[0070] In order to ensure that the environmental temperature is within the current temperature range, it is necessary to ensure that the air conditioner is in a state of non-stop temperature reaching. In an example, the operating mode of the air conditioner can be controlled based on the outdoor temperature detected by the outdoor temperature sensor and the evaporator coil temperature, so that the evaporator coil temperature is maintained at the current temperature. Through this embodiment, the user does not need to set a thermometer in the space where the infant is located, but simply relies on the air conditioner to ensure that the environmental temperature is always within the most suitable temperature range for the infant.
[0071] In another example embodiment of the present application, continuing with the previous embodiment described above, the operating mode of the air conditioner can be controlled based on the outdoor temperature detected by the outdoor temperature sensor and the evaporator coil temperature in the following manner:
[0072] In the case where the evaporator coil temperature is greater than the outdoor temperature, and the temperature difference between the evaporator coil temperature and the outdoor temperature is greater than the difference threshold, the air conditioner is controlled to operate in a heating mode;
[0073] In the case where the evaporator coil temperature is less than the outdoor temperature, and the temperature difference between the outdoor temperature and the evaporator coil temperature is greater than the difference threshold, the air conditioner is controlled to operate in a cooling mode.
[0074] In one embodiment, when the evaporator coil temperature is greater than the outdoor temperature, and the temperature difference between the evaporator coil temperature and the outdoor temperature is greater than the difference threshold, it indicates that the outdoor temperature is relatively cold. In order to ensure that the indoor temperature in which the infant is located is always maintained within the most suitable temperature range, the air conditioner can be controlled to operate in a heating mode.
[0075] In yet another embodiment, when it is detected that the evaporator coil temperature is less than the outdoor temperature, and the temperature difference between the outdoor temperature and the evaporator coil temperature is greater than a difference threshold, it indicates that the outdoor is at a relatively hot temperature. To ensure that the indoor temperature where the infant is located can always be kept within the optimal temperature range, the air conditioner can be controlled to operate in the cooling mode.
[0076] In yet another exemplary embodiment of the present application, the optimal temperature requirement can include a maximum temperature, and the air conditioner can include an outdoor temperature sensor; wherein the operation mode of the air conditioner is controlled based on the optimal temperature requirement and the evaporator coil temperature, and the following method can also be used to achieve the control:
[0077] In the case where the evaporator coil temperature is greater than the maximum temperature, the air conditioner is controlled to operate in the cooling mode, and the indoor unit speed of the air conditioner is adjusted to a low wind mode.
[0078] In an embodiment, when it is detected that the evaporator coil temperature is greater than the maximum temperature, it indicates that the temperature of the space where the infant is located is higher than the optimal temperature range, and in this scenario, the temperature needs to be lowered. In an example, the air conditioner can be controlled to operate in the cooling mode, and to avoid the infant being blown by the air blown by the air conditioner, the indoor unit speed of the air conditioner can be controlled to be adjusted to a low wind mode.
[0079] In yet another exemplary embodiment of the present application, the optimal temperature requirement can include a maximum temperature, and the air conditioner can include an outdoor temperature sensor; wherein the operation mode of the air conditioner is controlled based on the optimal temperature requirement and the evaporator coil temperature, and the following method can also be used to achieve the control:
[0080] In the case where the evaporator coil temperature is greater than the maximum temperature, the air conditioner is controlled to operate in the cooling mode, and the indoor unit speed of the air conditioner is adjusted to a low wind mode.
[0081] In an embodiment, when it is detected that the evaporator coil temperature is greater than the maximum temperature, it indicates that the temperature of the space where the infant is located is higher than the optimal temperature range, and in this scenario, the temperature needs to be lowered. In an example, the air conditioner can be controlled to operate in the cooling mode, and to avoid the infant being blown by the air blown by the air conditioner, the indoor unit speed of the air conditioner can be controlled to be adjusted to a low wind mode.
[0082] Figure 4 is one of the flowcharts provided by the present application for determining the environmental requirement of a target user for an environment based on user information.
[0083] The following will be described in conjunction with Figure 4 The process of determining the environmental requirement of a target user for an environment based on user information will be described.
[0084] In an example embodiment of the present application, the user information can include age information and body state information, and in the case that the environmental requirement is the optimal temperature requirement, the age information and the body state information are combined to determine the optimal temperature requirement of the target user for the environment. Figure 4 It can be seen that the determination of the environmental requirement of the target user for the environment based on the user information can include steps 410 to 440, which will be introduced respectively.
[0085] In step 410, based on the age information, a first initial minimum temperature and a first initial maximum temperature corresponding to the age information are determined respectively.
[0086] In step 420, based on the body state information, a second initial minimum temperature and a second initial maximum temperature corresponding to the body state information are determined respectively.
[0087] In step 430, based on the first initial minimum temperature and the second initial minimum temperature, a minimum temperature in the optimal temperature is determined.
[0088] In step 440, based on the first initial maximum temperature and the second initial maximum temperature, a maximum temperature in the optimal temperature is determined.
[0089] In an example embodiment, the first initial minimum temperature and the first initial maximum temperature corresponding to the age information of the target user can be determined respectively according to the age information of the target user. The second initial minimum temperature and the second initial maximum temperature corresponding to the body state information can be determined respectively according to the body state information. The body state information can be divided into healthy and unhealthy, and the unhealthy can be considered as a health problem diagnosed by medical personnel that needs extra attention.
[0090] In order to consider the age information and the body state information in the optimal temperature of the target user, the minimum temperature in the optimal temperature is determined based on the first initial minimum temperature and the second initial minimum temperature, and the maximum temperature in the optimal temperature is determined based on the first initial maximum temperature and the second initial maximum temperature.
[0091] It should be noted that the minimum temperature can be determined according to the weighted sum of the first initial minimum temperature and the second initial minimum temperature. The maximum temperature can be determined according to the weighted sum of the first initial maximum temperature and the second initial maximum temperature.
[0092] It should be noted that when the body state information of the target user is in the unhealthy state, the weight value of the second initial minimum temperature or the second initial minimum temperature is higher. When the body state information of the target user is in the healthy state, the weight value of the first initial minimum temperature or the first initial minimum temperature is higher.
[0093] Figure 5 is a second flowchart of determining the environmental requirement of the target user for the environment based on user information provided by the present application.
[0094] The following will be described in conjunction with Figure 5 The process of determining the environmental demand of the target user to the environment based on the user information will be described.
[0095] In an exemplary embodiment of the present application, the user information can include age information and body state information, and in the case of the environmental demand being the light intensity demand, the first initial sleep state light intensity demand corresponding to the age information and the first initial active state light intensity demand corresponding to the age information are determined based on the age information. Figure 5 It can be seen that the process of determining the environmental demand of the target user to the environment based on the user information can include steps 510 and 540, which will be described respectively.
[0096] In step 510, based on the age information, the first initial sleep state light intensity demand corresponding to the age information and the first initial active state light intensity demand corresponding to the age information are determined.
[0097] In step 520, based on the body state information, the second initial sleep state light intensity demand corresponding to the body state information and the second initial active state light intensity demand corresponding to the body state information are determined.
[0098] In step 530, based on the first initial sleep state light intensity demand and the second initial sleep state light intensity demand, the first light intensity demand corresponding to the target user entering the sleep state is determined.
[0099] In step 540, based on the first initial active state light intensity demand and the second initial active state light intensity demand, the second light intensity demand corresponding to the target user being in the active state is determined.
[0100] In an embodiment, the first initial sleep state light intensity demand and the first initial active state light intensity demand corresponding to the age information can be determined according to the age information of the target user, and the second initial sleep state light intensity demand and the second initial active state light intensity demand corresponding to the body state information can be determined according to the body state information. The body state information can be divided into healthy and unhealthy, and the unhealthy can be considered as the health problem diagnosed by medical personnel that needs extra attention.
[0101] In order to enable the light intensity demand corresponding to the target user to consider the age information and the body state information at the same time, the first light intensity demand corresponding to the target user entering the sleep state is determined based on the first initial sleep state light intensity demand and the second initial sleep state light intensity demand, and the second light intensity demand corresponding to the target user being in the active state is determined based on the first initial active state light intensity demand and the second initial active state light intensity demand.
[0102] It should be noted that when the body state information of the target user is the non-healthy state, the weight value of the second initial sleep state light intensity requirement or the second initial activity state light intensity requirement is higher. When the body state information of the target user is the healthy state, the weight value of the first initial sleep state light intensity requirement or the first initial activity state light intensity requirement is higher.
[0103] It should be noted that when the body state information of the target user is the non-healthy state, the weight value of the second initial sleep state light intensity requirement or the second initial activity state light intensity requirement is higher. When the body state information of the target user is the healthy state, the weight value of the first initial sleep state light intensity requirement or the first initial activity state light intensity requirement is higher.
[0104] According to the above description, the air conditioner control method provided by the application can automatically and efficiently meet the demand of the target user by obtaining the user information of the target user and determining the environmental demand of the target user for the environment based on the user information, so as to realize automatic adjustment of the running mode of the air conditioner and the opening and closing state of the curtain connected with the air conditioner, so as to meet the demand of the target user for the environment in the space range where the target user is located, thereby improving the experience and satisfaction of the user.
[0105] Based on the same concept, the application also provides an air conditioner control device.
[0106] The air conditioner control device provided by the application will be described below, and the air conditioner control device described below can be mutually corresponding with the air conditioner control method described above.
[0107] Figure 6 is a structural schematic diagram of the air conditioner control device provided by the application.
[0108] In an exemplary embodiment of the application, the air conditioner control device can be configured to obtain the user information of the target user and determine the environmental demand of the target user for the environment based on the user information. Figure 6 It can be known that the air conditioner control device can include an acquisition module 610 and a control module 620, which will be introduced respectively.
[0109] The acquisition module 610 can be configured to obtain the user information of the target user and determine the environmental demand of the target user for the environment based on the user information.
[0110] The control module 620 can be configured to control the running mode of the air conditioner and the opening and closing state of the curtain based on the environmental demand, wherein the air conditioner and the curtain are in communication connection.
[0111] In an exemplary embodiment of the application, the environmental demand can include the most suitable temperature demand and the light intensity requirement, and the air conditioner can be provided with a human body infrared sensor.
[0112] The control module 620 can be configured to:
[0113] acquire an activity state of the target user based on the human body infrared sensor;
[0114] determine that the target user enters a sleep state in a case where the activity state is detected as an activity frequency of the target user within a preset time period being less than or equal to a frequency threshold value;
[0115] The control module 620 can control the operation mode of the air conditioner and the open / close state of the curtain based on the environmental requirement in the following manner:
[0116] acquire an evaporator coil temperature of the air conditioner, and control the operation mode of the air conditioner based on an optimal temperature requirement and the evaporator coil temperature, and
[0117] control the open / close state of the curtain based on a first light intensity requirement corresponding to the target user entering the sleep state.
[0118] In an example embodiment of the present application, the control module 620 can be further configured to:
[0119] determine that the target user is in an active state in a case where the activity state is detected as an activity frequency of the target user within a preset time period being greater than a frequency threshold value;
[0120] The control module 620 can control the operation mode of the air conditioner and the open / close state of the curtain based on the environmental requirement in the following manner:
[0121] acquire an evaporator coil temperature of the air conditioner, and control the operation mode of the air conditioner based on an optimal temperature requirement and the evaporator coil temperature, and
[0122] control the open / close state of the curtain based on a second light intensity requirement corresponding to the target user being in the active state.
[0123] In an example embodiment of the present application, the optimal temperature requirement can include a minimum temperature and a maximum temperature, and the air conditioner can include an outdoor temperature sensor;
[0124] The control module 620 can control the operation mode of the air conditioner based on the optimal temperature requirement and the evaporator coil temperature in the following manner:
[0125] in a case where the evaporator coil temperature is detected as being greater than or equal to the minimum temperature and less than or equal to the maximum temperature, control the operation mode of the air conditioner according to an outdoor temperature detected by the outdoor temperature sensor and the evaporator coil temperature, so as to maintain the evaporator coil temperature at a current temperature.
[0126] In an example embodiment of the present application, the control module 620 can implement the following manner to control the operation mode of the air conditioner according to the outdoor temperature detected by the outdoor temperature sensor and the evaporator coil temperature:
[0127] In the case that the evaporator coil temperature is greater than the outdoor temperature, and the temperature difference between the evaporator coil temperature and the outdoor temperature is greater than the difference threshold, the air conditioner is controlled to operate in the heating mode;
[0128] In the case that the evaporator coil temperature is less than the outdoor temperature, and the temperature difference between the outdoor temperature and the evaporator coil temperature is greater than the difference threshold, the air conditioner is controlled to operate in the cooling mode.
[0129] In an example embodiment of the present application, the optimal temperature requirement can include a minimum temperature, and the air conditioner can include an outdoor temperature sensor;
[0130] The control module 620 can implement the following manner to control the operation mode of the air conditioner based on the optimal temperature requirement and the evaporator coil temperature:
[0131] In the case that the evaporator coil temperature is less than the minimum temperature, the air conditioner is controlled to operate in the heating mode, and the indoor unit speed of the air conditioner is adjusted to the low wind mode.
[0132] In an example embodiment of the present application, the optimal temperature requirement can include a maximum temperature, and the air conditioner can include an outdoor temperature sensor;
[0133] The control module 620 can implement the following manner to control the operation mode of the air conditioner based on the optimal temperature requirement and the evaporator coil temperature:
[0134] In the case that the evaporator coil temperature is greater than the maximum temperature, the air conditioner is controlled to operate in the cooling mode, and the indoor unit speed of the air conditioner is adjusted to the low wind mode.
[0135] In an example embodiment of the present application, the control module 620 can implement the following manner to control the open and close state of the curtain based on the first light intensity requirement corresponding to the target user entering the sleep state:
[0136] Based on the first light intensity requirement corresponding to the target user entering the sleep state, the closing area of the curtain is adjusted to a preset area to make the light intensity of the environment meet the first light intensity requirement, wherein the preset area is determined according to a first mapping table, and the first mapping table includes a corresponding relationship between different light intensity requirements and the closing area of the curtain.
[0137] In an example embodiment of the present application, the control module 620 can implement the following manner to control the open and close state of the curtain based on the second light intensity requirement corresponding to the target user being in the active state:
[0138] based on the second light intensity requirement corresponding to the target user being in the active state, control the closing area of the window curtain to be adjusted to a preset area, so that the light intensity of the environment meets the second light intensity requirement, wherein the preset area is determined according to a first mapping table, and the first mapping table includes a corresponding relationship between different light intensity requirements and the closing area of the window curtain.
[0139] In an example embodiment of the present application, the user information can include age information and body state information, and in the case of the environment requirement being the most suitable temperature requirement, the obtaining module 610 can determine the environment requirement of the target user for the environment based on the user information in the following manner:
[0140] based on the age information, respectively determine a first initial minimum temperature and a first initial maximum temperature corresponding to the age information;
[0141] based on the body state information, respectively determine a second initial minimum temperature and a second initial maximum temperature corresponding to the body state information;
[0142] based on the first initial minimum temperature and the second initial minimum temperature, determine the minimum temperature in the most suitable temperature;
[0143] based on the first initial maximum temperature and the second initial maximum temperature, determine the maximum temperature in the most suitable temperature.
[0144] In an example embodiment of the present application, the user information can include age information and body state information, and in the case of the environment requirement being the light intensity requirement, the obtaining module 610 can determine the environment requirement of the target user for the environment based on the user information in the following manner:
[0145] based on the age information, respectively determine a first initial sleep state light intensity requirement for entering a sleep state and a first initial active state light intensity requirement for being in an active state corresponding to the age information;
[0146] based on the body state information, respectively determine a second initial sleep state light intensity requirement for entering a sleep state and a second initial active state light intensity requirement for being in an active state corresponding to the body state information;
[0147] based on the first initial sleep state light intensity requirement and the second initial sleep state light intensity requirement, determine a first light intensity requirement corresponding to the target user entering a sleep state;
[0148] based on the first initial active state light intensity requirement and the second initial active state light intensity requirement, determine a second light intensity requirement corresponding to the target user being in an active state.
[0149] Figure 7 An example of a schematic diagram of a physical structure of an electronic device is shown in FIG. 1. Figure 7 As shown, the electronic device can include a processor 710, a communications interface 720, a memory 730, and a communications bus 740, wherein the processor 710, the communications interface 720, and the memory 730 can communicate with each other through the communications bus 740. The processor 710 can invoke a logical instruction in the memory 730 to execute an air conditioner control method, which includes obtaining user information of a target user and determining an environmental demand of the target user for an environment based on the user information; and controlling an operation mode of the air conditioner and an open / close state of a curtain based on the environmental demand, wherein the air conditioner is in communication connection with the curtain.
[0150] In addition, the logical instruction in the memory 730 described above can be implemented in the form of a software functional unit and sold or used as an independent product, which can be stored in a computer-readable storage medium. Based on such understanding, the technical solutions of the present application, in essence or the part that contributes to the prior art, or part of the technical solutions can be embodied in the form of a software product, which is stored in a storage medium and includes a plurality of instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the method described in the various embodiments of the present application. The aforementioned storage medium includes a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, and various media that can store program codes.
[0151] On the other hand, the present application also provides a computer program product, which includes a computer program that can be stored on a non-transitory computer-readable storage medium, and the computer program can be executed by a processor to enable a computer to execute the air conditioner control method provided by the above-mentioned methods, which includes obtaining user information of a target user and determining an environmental demand of the target user for an environment based on the user information; and controlling an operation mode of the air conditioner and an open / close state of a curtain based on the environmental demand, wherein the air conditioner is in communication connection with the curtain.
[0152] In yet another aspect, the present application also provides a non-transitory computer readable storage medium having stored thereon a computer program, which, when executed by a processor, implements the air conditioner control method provided by the above method, and the method comprises: obtaining user information of a target user, and determining an environment demand of the target user for an environment based on the user information; and controlling an operation mode of the air conditioner and an open / close state of a curtain based on the environment demand, wherein the air conditioner is in communication connection with the curtain.
[0153] The device embodiments described above are merely illustrative, wherein the units described as separate components can or can not be physically separate, and the components displayed as units can or can not be physical units, i.e., can be located in one place, or can be distributed on multiple network units. Part or all of the modules can be selected to achieve the purpose of the embodiment scheme according to actual needs. Those skilled in the art can understand and implement without creative labor.
[0154] From the above description of the embodiments, those skilled in the art can clearly understand that the embodiments can be realized by means of software plus necessary general hardware platforms, and of course can also be realized by hardware. Based on such understanding, the above technical solutions can be embodied in the form of a software product, which can be stored in a computer readable storage medium, such as ROM / RAM, magnetic disk, optical disk, etc., and includes a number of instructions to make a computer device (which can be a personal computer, a server, or a network device, etc.) execute the methods described in each embodiment or some parts of the embodiments.
[0155] It should be further understood that, although the operations are described in a particular order in the drawings, they should not be construed as requiring a particular order or a serial order to be executed, or requiring all of the operations to be executed to obtain a desired result. In a particular environment, multi-tasking and parallel processing can be advantageous.
[0156] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, and not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacements to some technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. An air conditioner control method characterized by comprising: The method comprises: obtaining user information of a target user, and determining an environment demand of the target user for an environment based on the user information; based on the environment demand, controlling the operation mode of the air conditioner and the opening and closing state of the curtain, wherein the air conditioner is in communication connection with the curtain, wherein the environment demand comprises an optimal temperature demand, and the control of the operation mode of the air conditioner and the opening and closing state of the curtain based on the environment demand specifically comprises: obtaining the evaporator coil temperature of the air conditioner, and controlling the operation mode of the air conditioner based on the optimal temperature demand and the evaporator coil temperature; The optimal temperature demand comprises a minimum temperature and a maximum temperature, and the air conditioner comprises an outdoor temperature sensor; the control of the operation mode of the air conditioner based on the optimal temperature demand and the evaporator coil temperature specifically comprises: in the case where it is detected that the evaporator coil temperature is greater than or equal to the minimum temperature and less than or equal to the maximum temperature, controlling the operation mode of the air conditioner according to the outdoor temperature detected by the outdoor temperature sensor and the evaporator coil temperature, so as to keep the evaporator coil temperature at the current temperature; wherein The control of the operation mode of the air conditioner according to the outdoor temperature detected by the outdoor temperature sensor and the evaporator coil temperature specifically comprises: in the case where the evaporator coil temperature is greater than the outdoor temperature, and the temperature difference between the evaporator coil temperature and the outdoor temperature is greater than a difference threshold value, controlling the air conditioner to operate in a heating mode; in the case where the evaporator coil temperature is less than the outdoor temperature, and the temperature difference between the outdoor temperature and the evaporator coil temperature is greater than a difference threshold value, controlling the air conditioner to operate in a cooling mode.
2. The air conditioner control method according to claim 1, characterized by, The environment demand further comprises an illumination intensity demand, and the air conditioner is provided with a human body infrared sensor; before the control of the operation mode of the air conditioner and the opening and closing state of the curtain based on the environment demand, the method further comprises: obtaining an activity state of the target user based on the human body infrared sensor; in the case where it is detected that the activity state is an activity frequency of the target user within a preset time period being less than or equal to a frequency threshold value, determining that the target user enters a sleep state; The control of the operation mode of the air conditioner and the opening and closing state of the curtain based on the environment demand further specifically comprises: controlling the opening and closing state of the curtain based on a first illumination intensity demand corresponding to the target user entering the sleep state.
3. The air conditioner control method according to claim 2, wherein After the obtaining of the activity state of the target user based on the human body infrared sensor, the method further comprises: in the case where it is detected that the activity state is an activity frequency of the target user within a preset time period being greater than a frequency threshold value, determining that the target user is in an active state; The control of the operation mode of the air conditioner and the opening and closing state of the curtain based on the environment demand specifically comprises: obtaining the evaporator coil temperature of the air conditioner, and controlling the operation mode of the air conditioner based on the optimal temperature demand and the evaporator coil temperature, and Control an open and close state of the window curtain based on a second light intensity requirement corresponding to the target user being in an active state.
4. The air conditioner control method of claim 2 or 3, wherein the controlling the operation mode of the air conditioner based on the optimal temperature requirement and the evaporator coil temperature comprises: in a case where the evaporator coil temperature is detected to be less than the minimum temperature, controlling the air conditioner to operate in a heating mode, and controlling a speed of an indoor unit of the air conditioner to be adjusted to a low wind mode. the controlling the operation mode of the air conditioner based on the optimal temperature requirement and the evaporator coil temperature comprises:
5. The air conditioner control method according to claim 2 or 3, characterized by, in a case where the evaporator coil temperature is detected to be greater than the maximum temperature, controlling the air conditioner to operate in a cooling mode, and controlling the speed of the indoor unit of the air conditioner to be adjusted to the low wind mode. the controlling the open and close state of the window curtain based on the first light intensity requirement corresponding to the target user entering a sleep state comprises:
6. The air conditioner control method according to claim 2, wherein based on the first light intensity requirement corresponding to the target user entering the sleep state, controlling a closing area of the window curtain to be adjusted to a preset area, so that the light intensity of the environment meets the first light intensity requirement, wherein the preset area is determined according to a first mapping table, and the first mapping table includes a corresponding relationship between different light intensity requirements and the closing area of the window curtain. the controlling the open and close state of the window curtain based on the second light intensity requirement corresponding to the target user being in the active state comprises:
7. The air conditioner control method according to claim 3, wherein based on the second light intensity requirement corresponding to the target user being in the active state, controlling the closing area of the window curtain to be adjusted to a preset area, so that the light intensity of the environment meets the second light intensity requirement, wherein the preset area is determined according to a first mapping table, and the first mapping table includes a corresponding relationship between different light intensity requirements and the closing area of the window curtain. the user information includes age information and body state information, and in a case where the environment requirement is an optimal temperature requirement, the determining the environment requirement of a target user for an environment based on the user information comprises:
8. The air conditioner control method of claim 1, wherein, based on the age information, respectively determining a first initial minimum temperature and a first initial maximum temperature corresponding to the age information; based on the body state information, respectively determining a second initial minimum temperature and a second initial maximum temperature corresponding to the body state information; based on the first initial minimum temperature and the second initial minimum temperature, determining a minimum temperature in the optimal temperature; based on the first initial maximum temperature and the second initial maximum temperature, determining a maximum temperature in the optimal temperature. the user information includes age information and body state information, and in a case where the environment requirement is a light intensity requirement, the determining the environment requirement of a target user for an environment based on the user information comprises:
9. The air conditioner control method of claim 1, wherein, based on the age information, respectively determining a first initial sleep state light intensity requirement for entering a sleep state and a first initial active state light intensity requirement for being in an active state corresponding to the age information; determine, based on the body state information, a second initial sleep state light intensity requirement corresponding to the body state information and a second initial activity state light intensity requirement corresponding to the target user being in an active state; determine, based on the first initial sleep state light intensity requirement and the second initial sleep state light intensity requirement, a first light intensity requirement corresponding to the target user entering a sleep state; determine, based on the first initial activity state light intensity requirement and the second initial activity state light intensity requirement, a second light intensity requirement corresponding to the target user being in an active state.
10. An air conditioner control device characterized by comprising: The device is used to implement the air conditioner control method of any one of claims 1 to 9, and the device comprises: an acquisition module configured to acquire user information of a target user and determine an environment requirement of the target user for an environment based on the user information; a control module configured to control an operation mode of the air conditioner and an open / close state of a curtain based on the environment requirement, wherein the air conditioner is in communication connection with the curtain.
11. An electronic device comprising a memory, a processor, and a computer program stored on the memory and executable on the processor, characterized in that, The processor executes the program to implement the air conditioner control method of any one of claims 1 to 9.
12. A non-transitory computer-readable storage medium having stored thereon a computer program, characterized in that, The computer program is executed by the processor to implement the air conditioner control method of any one of claims 1 to 9.
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