Automobile air conditioner control method and system and medium
By locking the riding position and identifying the environment mode, combining rule matching technology, dynamically adjusting the air conditioning parameters, the shortcomings of the smart cockpit in scenario-based services are solved, precise temperature control and differentiated comfort adjustment are achieved in sub-regional areas, and user experience is improved.
Patent Information
- Application Number
- CN202510474472.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-16
- Publication Date
- 2025-05-30
AI Technical Summary
The existing smart cockpit lacks accurate state perception and active service capabilities, and cannot effectively meet users' personalized, emotional and scenario-based service needs in different scenarios.
By locking the target user's riding position and identifying the current environmental mode, combining rule matching technology, dynamically adjusting the temperature, air volume and air outlet status of the air conditioner to achieve precise temperature control and differentiated comfort adjustment in different regions.
Effectively reduce somatosensory discomfort caused by direct blowing of hot and cold air, meet users' comfort needs in different scenarios, and improve user experience.
Smart Images

Figure CN120056690A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of vehicle control, and particularly relates to an automobile air-conditioning control method, system and medium. Background Art
[0002] With the rapid development of vehicle intelligent technologies, in-vehicle intelligent cockpits have gradually evolved from traditional function integration platforms to mobile spaces integrating user experience and scenario-based services. Consumers' demands for intelligent cockpits are no longer limited to basic human-computer interaction and entertainment functions, but they pay more attention to personalized, emotional and scenario-based service experiences. Vehicles are gradually becoming the third space for human survival, and people need to complete various life needs in this third space. For the differentiated demands in specific scenarios, existing intelligent cockpits lack accurate state perception and proactive service capabilities. Summary of the Invention
[0003] In view of the above-mentioned disadvantages of the prior art, the purpose of the present invention is to provide an automobile air-conditioning control method, system and medium, which solves at least one of the technical problems in the above background art.
[0004] To achieve the above purpose, the present invention adopts the following technical solutions.
[0005] The first aspect of the present invention provides an automobile air-conditioning control method, including: Lock the seating position of the target user and identify the current environmental mode; Perform rule matching on the seating position and the current environmental mode to obtain a matching result; Based on the matching result, match and control the target temperature, target air volume and / or target air outlet state on the seating position side corresponding to the seating position.
[0006] As an implementation manner of the present invention, the target user includes at least female users during menstruation; before locking the seating position of the target user and identifying the current environmental mode, it includes: Record the menstrual period of the target user through the vehicle-mounted computer or mobile terminal, and correct the menstrual period of the target user through big data calculation and heart rate data of wearable devices; Estimate the time of the next menstruation and give a pre-reminder to the target user.
[0007] As an implementation manner of the present invention, before locking the seating position of the target user and identifying the current environmental mode, it further includes: Configure the menstrual mode of the vehicle, and selectively confirm it through the user based on the user's configuration; And during the actual menstrual period of the user, selectively turn on the menstrual mode and select the seating position based on the user's configuration.
[0008] As an implementation manner of the present invention, among the corresponding target temperature on the side of the seating position, the target air volume on the side of the seating position, and / or the target air outlet state on the side of the seating position that are matched and controlled based on the matching result: The target temperature on the side of the seating position is configured as the temperature that is shifted by a preset degree in a preset direction based on the current temperature on the side of the seating position; the target air volume on the side of the seating position is set to be lower than a preset gear; the target air outlet state on the side of the seating position is set to a preset air outlet state.
[0009] As an implementation manner of the present invention, the recognition of the current environmental mode includes: Obtain the current time data and environmental parameter data of the seating position, where the time data is obtained through a global positioning system or a local calendar system, and the environmental parameter data is obtained through a meteorological sensor or a meteorological data interface; Set the month intervals corresponding to each season according to the geographical location of the target area; Judge whether the current date falls into the preset month interval, and output the corresponding season as the recognized current environmental mode.
[0010] As an implementation manner of the present invention, performing rule matching on the seating position and the current environmental mode to obtain a matching result, including: The seating position includes the driver's seat, the front passenger seat, and the rear row; If the seating position is the driver's seat and the current environmental mode is summer, obtain a first matching result; If the seating position is the driver's seat and the current environmental mode is winter, obtain a second matching result; If the seating position is the driver's seat and the current environmental mode is spring or autumn, obtain a third matching result; If the seating position is the front passenger seat and the current environmental mode is summer, obtain a fourth matching result; If the seating position is the front passenger seat and the current environmental mode is winter, obtain a fifth matching result; If the seating position is the front passenger seat and the current environmental mode is spring or autumn, obtain a sixth matching result; If the seating position is the rear row and the current environmental mode is summer, obtain a seventh matching result; If the seating position is the rear row and the current environmental mode is winter, obtain an eighth matching result; If the seating position is the rear row and the current environmental mode is spring or autumn, obtain a ninth matching result.
[0011] As an implementation manner of the present invention, the matching and controlling of the corresponding target temperature, target air volume, and / or target air outlet state on the seat side based on the matching result includes: When the air conditioner is turned on, based on the first matching result, the corresponding target temperature on the seat side is matched and controlled to be the temperature of the current temperature on the seat side shifted forward by a preset degree, the target air volume on the seat side is set to be lower than the preset gear; the target air outlet state on the seat side is set to the state of blowing away from people.
[0012] As an implementation manner of the present invention, before matching and controlling the corresponding target temperature, target air volume, and / or target air outlet state on the seat side based on the matching result, judge the on / off state of the vehicle air conditioner. If the vehicle air conditioner is in the off state at this time, maintain the off state and stop matching and controlling the corresponding target temperature, target air volume, and / or target air outlet state on the seat side based on the matching result.
[0013] As an implementation manner of the present invention, before locking the seat position of the target user and identifying the current environment mode, it further includes: Configure the dining mode of the vehicle, and selectively confirm it through the user based on the user's configuration; And during the actual dining period of the user, selectively turn on the dining mode based on the user's configuration.
[0014] As an implementation manner of the present invention, after performing rule matching on the seat position and the current environment mode to obtain a matching result, it further includes: Matching and controlling the corresponding air volume of the air conditioner, compressor state, air conditioner circulation mode, air conditioner cleaning mode, and / or windows based on the matching result.
[0015] As an implementation manner of the present invention, performing rule matching on the seat position and the current environment mode to obtain a matching result includes: During the opening period of the dining mode, the seat position is the actual usage position of the user, the actual usage position of the user is confirmed by the seat position where the user actually sits, and at least one air outlet corresponding to the seat position is configured; Performing rule matching on the seat position and the current environment mode to obtain a matching result includes: If the current environment mode is spring or autumn, obtain the tenth matching result; If the current environment mode is summer or winter, obtain the eleventh matching result.
[0016] As an implementation manner of the present invention, the matching and controlling of the corresponding air volume of the air conditioner, the state of the compressor, the air-conditioning circulation mode, the air-conditioning cleaning mode, and / or the window based on the matching result includes: When the user gets out of the vehicle and during the dining mode, based on the tenth matching result, the corresponding air volume of the air conditioner is matched and controlled to be the maximum air volume which is a preset air volume, the state of the compressor is the off state, the air-conditioning cleaning mode is a preset cleaning module, and the window is half open.
[0017] As an implementation manner of the present invention, the matching and controlling of the corresponding air volume of the air conditioner, the state of the compressor, the air-conditioning cleaning mode, and / or the window based on the matching result includes: When the user gets out of the vehicle and during the dining mode, based on the eleventh matching result, the corresponding air volume of the air conditioner is matched and controlled to be the maximum air volume which is a preset air volume, the state of the compressor is the off state, the air-conditioning cleaning mode is a preset cleaning module, and the window is fully closed.
[0018] The second aspect of the present invention provides an automotive air-conditioning control system, including: An acquisition unit, at least used for locking the seating position of the target user and identifying the current environmental mode; A matching unit, at least used for performing rule matching on the seating position and the current environmental mode to obtain a matching result; An execution unit, at least used for matching and controlling the corresponding target temperature on the seating position side, the target air volume on the seating position side, and / or the state of the target air outlet on the seating position side based on the matching result.
[0019] The third aspect of the present invention provides an electronic device, including: At least one processor; and at least one memory communicatively connected to the processor, wherein: the memory stores program instructions executable by the processor, and the processor can execute the steps of the method as described in the first aspect of the present invention by invoking the program instructions.
[0020] The fourth aspect of the present invention provides a readable storage medium storing a computer program, and the computer program is executed by a processor to perform the steps of the method as described in the first aspect of the present invention.
[0021] In summary, compared with the prior art, the present invention locates the actual seating position of the user and integrates the environmental mode recognition technology, and combines the rule dynamic matching method to achieve accurate temperature control in different regions and differential comfort adjustment. This method can dynamically adjust the air-conditioning temperature, the wind avoidance angle, and the low-grade air volume control, etc., reduce the physical discomfort caused by direct blowing of hot and cold air, and can effectively meet the user experience. Description of the Drawings
[0022] To more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the accompanying drawings required for the description of the embodiments. Obviously, the accompanying drawings in the following description are only some embodiments of the present application. For those skilled in the art, without creative efforts, other accompanying drawings can be obtained based on these drawings.
[0023] Figure 1 It is a schematic flowchart of a method for controlling an automotive air conditioner according to a specific embodiment of the present invention.
[0024] Figure 2 It is a schematic flowchart of another method for controlling an automotive air conditioner according to a specific embodiment of the present invention.
[0025] Figure 3 It is a schematic diagram of the multi-view setting of the air inlet and outlet of an air conditioner according to a specific embodiment of the present invention.
[0026] Figure 4 It is a schematic flowchart of another method for controlling an automotive air conditioner according to a specific embodiment of the present invention.
[0027] Figure 5 It is a block diagram of an automotive air conditioner control system according to a specific embodiment of the present invention.
[0028] Figure 6 It is a schematic structural diagram of an electronic device according to an embodiment of the present invention. Specific Embodiments
[0029] The following will clearly and completely describe the technical solutions in the embodiments of the present application in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only some embodiments of the present application, rather than all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative efforts belong to the scope of protection of the present application. In addition, it should be understood that the specific embodiments described herein are only used to illustrate and explain the present application, and are not used to limit the present application.
[0030] It should be noted that the description order of the following embodiments does not limit the preferred order of the embodiments of the present application. And in the following embodiments, each embodiment has its own emphasis. For the parts not detailed in a certain embodiment, reference can be made to the relevant descriptions of other embodiments.
[0031] Current smart cockpit technology can trigger and switch vehicle modes through multimodal interaction (such as voice, touch, biometric recognition, etc.). The vehicle mode can control seat adjustment, air-conditioning parameters, audio and video systems and other functions based on preset rules. For example, it can obtain the current vehicle status (such as temperature, seat position, air quality) through user input or sensor data, and automatically match the preset parameter combination to provide standardized services.
[0032] In view of this, if Figure 1 As shown, the first aspect of the present invention provides a vehicle air conditioning control method, comprising the following steps.
[0033] Step S100: Lock the seating position of the target user and identify the current environment mode.
[0034] Specifically, the target users are locked or determined based on actual conditions, and are generally users in the car, such as the driver and passengers in the car; or drivers and passengers with certain attributes, such as female menstruating users who are in need of care based on other data information.
[0035] Specifically, the seating positions are divided according to actual situations. For example, the seating positions include the driver's seat, the co-driver's seat and the back row. The seating positions are the positions actually used by users. The positions actually used by users are confirmed by the seat positions actually occupied by users. For example, in a car configured with 5 / 6 seats, the seating positions are specifically the seat positions actually used by users of each seat.
[0036] Specifically, the current environmental mode can be divided into four seasons: spring, summer, autumn and winter. In addition, it can also be divided into temperature ranges, or a weighted algorithm can be used to calculate factors such as temperature and humidity and then divide them. Technical personnel in this field can set it according to actual needs without affecting the protection scope of the present invention.
[0037] Step S200: performing rule matching on the seating position and the current environment mode (see Table 1 below for details of rule matching) to obtain a matching result.
[0038] Step S300: matching and controlling the corresponding seating position side target temperature, seating position side target air volume and / or seating position side target air outlet state based on the matching result.
[0039] Specifically, in the corresponding seating position side target temperature, seating position side target air volume and / or seating position side target air outlet state matched and controlled based on the matching result: The seating position side target temperature is configured as a temperature shifted by a preset degree in a preset direction based on the current temperature of the seating position side.
[0040] Specifically, taking a cold patient or a menstruating woman as an example of the target user, the required air-conditioning temperature needs to be shifted in the positive direction by 2°C compared to that of a normal person; the target air volume on the side of the seating position is set to be lower than the preset gear. Taking a cold patient or a menstruating woman as an example of the target user, the target air volume can be set to below the third gear or below the medium speed gear; the target air outlet state on the side of the seating position is set to the preset air outlet state. Exemplarily, the preset air outlet state can specifically be the state of avoiding blowing directly at people or the non-direct blowing state.
[0041] Herein, the present invention locates the actual seating position of the user and integrates the environmental mode recognition technology, combines the rule-based dynamic matching method, and realizes the precise temperature control in different regions and the differential comfort adjustment. This method can dynamically adjust the air-conditioning temperature, the air avoidance angle, and the low-gear air volume control, reduce the physical discomfort caused by the direct blowing of cold and hot air, and effectively meet the user experience.
[0042] In an embodiment of the present invention, the recognition of the current environmental mode includes: Obtain the current time data and environmental parameter data of the seating position. The time data is obtained through the global positioning system or the local calendar system, and the environmental parameter data is obtained through the meteorological sensor or the meteorological data interface; According to the geographical location of the target area, set the month intervals corresponding to each season; Judge whether the current date falls into the preset month interval, and output the corresponding season as the recognized current environmental mode.
[0043] In addition, specific solar terms can also be used as the starting points of the seasons. For example, taking the Beginning of Spring (February 3rd of the Gregorian calendar), the Beginning of Summer (May 5th of the Gregorian calendar), the Beginning of Autumn (August 7th of the Gregorian calendar), and the Beginning of Winter (November 7th of the Gregorian calendar) as the starting points of the four seasons respectively, and output the corresponding season as the recognized current environmental mode.
[0044] Herein, through this method, the global positioning / local calendar time data and meteorological parameters can be integrated, combined with the geographical location to set the season month interval or the solar term astronomical algorithm (such as the Beginning of Spring, the Beginning of Summer, etc.), improve the objectivity and accuracy of season determination, avoid the subjective error of traditional manual division, provide a reliable environmental mode recognition basis for the dynamic adaptation control strategy of the air conditioner, and enhance the coordination of comfort and energy efficiency optimization.
[0045] In an embodiment of the present invention, the target user at least includes female users during menstruation; before locking the seating position of the target user and recognizing the current environmental mode, it includes: Record the menstrual period of the target user through the vehicle-mounted computer or the mobile terminal, and correct the menstrual period of the target user through big data calculation and the heart rate data of the wearable device; Speculate the time of the next menstruation and give a pre-reminder to the target user.
[0046] Exemplarily, the menstrual period is recorded in two ways through the in-vehicle computer or a mobile terminal such as a mobile phone APP, corrected by big data calculation and the heart rate data provided by the wearable device, etc., and the occurrence time T of the next menstrual period is speculated, and the user is reminded on the in-vehicle computer / mobile phone APP at T-3 days, which can improve the user experience and care for the user.
[0047] In an embodiment of the present invention, before locking the riding position of the target user and identifying the current environment mode, it further includes: Configuring the menstrual period mode of the vehicle, and selectively confirming through the user's confirmation of the menstrual period mode based on the user's configuration; And during the user's actual menstrual period, selectively turn on the menstrual period mode and select the riding position based on the user's configuration.
[0048] Specifically, the user's configuration can be understood as the user actively or passively controlling the opening of the menstrual period mode according to their own situation. Passive control includes that the user needs to confirm the opening of the menstrual period mode through the user to realize functions such as pushing to the user, and during the user's actual menstrual period, the user also needs to manually turn on the menstrual period mode.
[0049] Exemplarily, during the user's actual menstrual period, the vehicle owner can turn on the menstrual period mode through the in-vehicle computer / mobile phone APP and select the riding position in the main driver's seat / passenger seat / rear row in the mode.
[0050] In an embodiment of the present invention, as shown in the following table, the riding position and the current environment mode are matched according to rules to obtain a matching result, including: The riding position includes positions such as the main driver's seat, passenger seat, and rear row; If the riding position is the main driver's seat and the current environment mode is summer, a first matching result is obtained; If the riding position is the main driver's seat and the current environment mode is winter, a second matching result is obtained; If the riding position is the main driver's seat and the current environment mode is spring and autumn, a third matching result is obtained; If the riding position is the passenger seat and the current environment mode is summer, a fourth matching result is obtained; If the riding position is the passenger seat and the current environment mode is winter, a fifth matching result is obtained; If the riding position is the passenger seat and the current environment mode is spring and autumn, a sixth matching result is obtained; If the riding position is the rear row and the current environment mode is summer, a seventh matching result is obtained; If the riding position is the rear row and the current environment mode is winter, an eighth matching result is obtained; If the seating position is in the rear row and the current environmental mode is spring or autumn, the ninth matching result is obtained. Occupied position Current environmental mode Matching result Driver's seat Summer First matching result Driver's seat Winter Second matching result Driver's seat Spring and Autumn Third matching result Passenger seat Summer Fourth matching result Passenger seat Winter Fifth matching result Passenger seat Spring and Autumn Sixth matching result Rear seats Summer Seventh matching result Rear seats Winter Eighth matching result Rear seats Spring and Autumn Ninth matching result There is at least one actually occupied seat position Spring and Autumn Tenth matching result There is at least one actually occupied seat position Summer and Winter Eleventh matching result 。
[0051] Among them, referring to the following, the tenth and eleventh matching results' precise requirements for the seating position are manifested as that there is at least one actual occupied seat position to represent that there is at least one person dining, so as to remove the dining smell.
[0052] In an embodiment of the present invention, the matching and controlling of the corresponding target temperature, target air volume, and / or target air outlet state on the seating position side based on the matching result includes: When the air conditioner is turned on, based on the first matching result, the corresponding target temperature on the seating position side is controlled to be the temperature on the seating position side at the current temperature shifted forward by a preset degree in the positive direction, the target air volume on the seating position side is set to be lower than the preset gear; the target air outlet state on the seating position side is set to the state of avoiding blowing on people.
[0053] In an embodiment of the present invention, before the matching and controlling of the corresponding target temperature, target air volume, and / or target air outlet state on the seating position side based on the matching result, the opening state of the vehicle air conditioner is judged. If the vehicle air conditioner is in the closed state at this time, the closed state is maintained, and the matching and controlling of the corresponding target temperature, target air volume, and / or target air outlet state on the seating position side based on the matching result is stopped.
[0054] Specifically, the seating position corresponding to the first matching result is the driver's seat, and the corresponding environmental mode is summer.
[0055] Exemplarily, when this function is first turned on: if the air conditioner is closed at this time, the closed state is maintained; if the air conditioner is turned on at this time, the temperature on the driver's side Tdriverset = current setting + 2, the air volume on the driver's side Fdriverset <= 3 gears, the electric air outlet state on the driver's side = avoiding blowing on people, and the settings of the other areas of the air conditioner are maintained as current. In addition, other devices can also be linked, for example, the seat heating function is turned on, the steering wheel heating function is turned on, and the anti-fatigue driving mode is turned on.
[0056] The user performs the user settings on the above functions during this period, and records the state of the above function settings when exiting this mode. When it is turned on again under summer working conditions, the above user settings are executed.
[0057] Specifically, the seating position corresponding to the fourth matching result is the passenger seat, and the corresponding environmental mode is summer; and specifically, when the seating position corresponding to the seventh matching result is the rear row and the corresponding environmental mode is summer: When this function is first turned on: If the air conditioner is off at this time, it remains off; if the air conditioner is on at this time, the driver's side temperature Tdriverset = current setting + 2, the driver's side air volume Fdriverset <= 3 gears, the driver's side electric air outlet state = blowing away from people, and the settings of the other areas of the air conditioner remain the same as the current. The seat heating function is turned on, and the seat back angle is adjusted to the semi-reclined state.
[0058] During this period, the user makes settings for the above functions, executes the user settings, and records the status of the above function settings when exiting this mode. When it is turned on again under summer working conditions, the above user settings are executed.
[0059] Similarly, for the second matching result, the third matching result, the fifth matching result, the sixth matching result, the eighth matching result, and the ninth matching result corresponding to the driver's seat, the passenger seat, and the rear row respectively when the current environmental mode is winter and spring / autumn, when this function state is first turned on, the same operation as in summer is performed. The difference is that the usage mode for winter or spring / autumn is memorized. When it is determined to be winter working conditions and this function is turned on again, the above user settings are executed. Among them, in the present invention, by dividing the four seasons, it is expressed that only users in the menstrual period can enjoy this function, while ensuring the normal use of the remaining non-menstrual users, that is, the settings of the remaining areas remain the same as the current air conditioner settings, similar to the concept of a zoned air conditioner.
[0060] Specifically, the first use refers to the first use of this function on this vehicle head unit, which only involves the initialization scenario.
[0061] Here, the present invention can turn on the menstrual period mode (which can be renamed) through the UI interface during the actual menstrual period. This control strategy will detect the current season and provide different zoned air conditioner implementation strategies for the driver's seat / passenger seat / rear row users for summer / winter / spring and autumn respectively, and record the current state after the user makes independent adjustments as the next implementation strategy.
[0062] In an embodiment of the present invention, before locking the sitting position of the target user and identifying the current environmental mode, it further includes: configuring the dining mode of the vehicle, and selectively confirming through the user based on the user's configuration; And during the user's actual dining period, selectively turn on the dining mode based on the user's configuration.
[0063] Specifically, the dining scenario can also include the smoking scenario. In the user's actual dining scenario, the vehicle owner can turn on the dining mode through the vehicle head unit / mobile phone APP.
[0064] As Figure 2 shown, in an embodiment of the present invention, after performing rule matching on the sitting position and the current environmental mode to obtain a matching result, it further includes: Step S400: Based on the matching result, match and control the corresponding air volume of the air conditioner, the state of the compressor, the air conditioning circulation mode, the air conditioning cleaning mode, and / or the windows.
[0065] In an embodiment of the present invention, performing rule matching on the seating position and the current environmental mode to obtain a matching result includes: During the opening of the dining mode, the seating position is the actual usage position of the user, and the actual usage position of the user is confirmed by the seat position where the user actually sits. At least one corresponding air outlet is configured for the seating position. Performing rule matching on the seating position and the current environmental mode to obtain a matching result includes: If the current environmental mode is spring or autumn, obtain the tenth matching result; If the current environmental mode is summer or winter, obtain the eleventh matching result.
[0066] Specifically, as Figure 3 shown, the air inlet of the air conditioner is arranged on both sides of the vehicle parallel to the actual usage position of the user, and is set as corresponding and symmetric air outlets according to the actual vehicle configuration [such as 5 seats / 6 seats]. The air outlet of the air conditioner is arranged at the central axis position of the roof. During actual use, the air flow at the air inlets on both sides of the vehicle flows towards the central axis of the vehicle and forms a head-on collision in the central axis area. A fan and a guide are arranged at the air outlet to guide this air flow and flow out from above to the external environment. Among them, both the air outlet and the air exhaust port refer to the air flow direction. The air outlet means outside → inside the vehicle cabin; the air exhaust port means inside the vehicle cabin → outside.
[0067] As Figure 4 shown, in an embodiment of the present invention, the matching and controlling the corresponding air volume of the air conditioner, the state of the compressor, the air conditioning circulation mode, the air conditioning cleaning mode, and / or the windows based on the matching result includes: When the user leaves the vehicle and during the dining mode, based on the tenth matching result, match and control the corresponding air volume of the air conditioner to the maximum air volume which is a preset air volume, the compressor state is the off state, the air conditioning cleaning mode is a preset cleaning module, and the windows are half open.
[0068] Exemplarily, when the user turns on this function, the windows are half open, and all settings of the air conditioner remain the same.
[0069] During this power on and off cycle, when the user leaves the vehicle, a pop-up window appears on the UI interface to prompt the user to select: whether to perform light / deep cleaning of the vehicle. If the user selects cleaning, after the user leaves the vehicle, the air conditioner is turned on, the compressor is turned off, the air volume is set to 80% of the maximum air volume, the circulation is set to the external circulation, and the rest of the settings remain the same. Among them, the light cleaning performs the above operations for 3 minutes; the deep cleaning performs the above operations for 5 minutes.
[0070] During this period, the user performs the above functions, executes user settings, and records the status of the above function settings when exiting this mode. When it is opened again under spring / autumn working conditions, the above user settings are executed.
[0071] Please continue to refer to Figure 4 , in an embodiment of the present invention, the matching control of the corresponding air volume of the air conditioner, the compressor state, the air conditioner cleaning mode, and / or the window based on the matching result includes: When the user leaves the vehicle and during the dining mode, based on the eleventh matching result, the corresponding air volume of the air conditioner is matched and controlled to be the maximum air volume, which is a preset air volume, the compressor state is the off state, the air conditioner cleaning mode is the preset cleaning module, and the windows are fully closed.
[0072] Exemplarily, when the user turns on this function, the window is closed, the air conditioner is turned on, and the air conditioner temperature, compressor state, air volume, and mode maintain the user's last settings, and the circulation is set to the external circulation.
[0073] During the current power-on and power-off cycle, when the user leaves the vehicle, a pop-up window on the UI interface prompts the user to select a preset cleaning mode: whether to perform a light / deep cleaning of the vehicle. If the user selects cleaning, after the user leaves the vehicle, the air conditioner is turned on, the compressor is turned off, the air volume is set to 80% of the maximum air volume, the circulation is set to the external circulation, and the remaining settings are maintained as current. Among them, the light cleaning is performed for 3 minutes; the deep cleaning is performed for 5 minutes.
[0074] During this period, the user performs the above functions, executes user settings, and records the status of the above function settings when exiting this mode. When it is opened again under summer / winter working conditions, the above user settings are executed.
[0075] Here, through this method, it is possible to improve the situation that many office workers or travelers nowadays choose to dine in the vehicle interior, resulting in unpleasant odors in the vehicle, as well as in extreme temperature conditions in winter and summer, where opening the window to remove odors will cause the cabin to be too cold / too hot, and closing the window will block the air flow and make it difficult to remove the odors. The present invention adjusts the air outlet / vent arrangement of the air conditioner, guides the air flow direction, discharges the dining odor out of the cabin, and further exhausts the air after the user gets out of the vehicle to ensure the comfort of the vehicle cabin environment during and after dining.
[0076] Furthermore, through this method, in terms of hardware settings, the air inlet and outlet of the air conditioner are changed. The air inlet is set on both sides of the vehicle parallel to the actual user's position, and the air outlet is set above the roof. A fan and a deflector are set behind the air outlet to ensure the effectiveness of the exhaust; in terms of software settings, a user dining mode is established. When this mode is turned on, the air conditioner maintains the current setting state and works. After the current power-off, the air conditioner turns on the exhaust mode to deeply clean the vehicle cabin environment to ensure the air cleanliness when the user gets in the vehicle for the second time.
[0077] As shown in Figure 5 the following figure, the second aspect of the present invention provides an automotive air conditioning control system, including: a collection unit, at least used for locking the sitting position of the target user and identifying the current environmental mode; a matching unit, at least used for performing rule matching on the sitting position and the current environmental mode to obtain a matching result; and an execution unit, at least used for matching and controlling the target temperature, target air volume, and / or target air outlet state on the sitting position side based on the matching result.
[0078] Based on the same idea as the method in the above embodiments, the system provided by the present invention can implement the method in the above embodiments. For the convenience of description, in the schematic structural diagram of the system embodiment, only the parts related to the embodiments of the present invention are shown. Those skilled in the art can understand that the illustrated structure does not constitute a limitation on the system, and it may include more or fewer components than those illustrated, or combine certain components, or have different component arrangements.
[0079] As shown in Figure 6 the following figure, the third aspect of the present invention provides an electronic device, including: at least one processor; and at least one memory communicatively connected to the processor, wherein: the memory stores program instructions executable by the processor, and the processor can execute the steps of the method according to any one of the above embodiments by invoking the program instructions.
[0080] The fourth aspect of the present invention discloses a readable storage medium storing a computer program, and the computer program is executed by a processor to perform the steps of the method according to any one of the above embodiments.
[0081] The computer-readable storage medium may include: any entity or device capable of carrying the computer program, recording medium, USB flash drive, mobile hard disk, magnetic disk, optical disk, computer memory, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), and software distribution medium, etc. The computer program includes computer program code. The computer program code may be in source code form, object code form, executable file, or some intermediate form, etc. The computer-readable storage medium may include: any entity or device capable of carrying the computer program code, recording medium, USB flash drive, mobile hard disk, magnetic disk, optical disk, computer memory, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), and software distribution medium, etc.
[0082] Any process or method description represented in a flowchart or otherwise described herein can be understood to represent a module, segment, or portion of code including one or more executable instructions for implementing a specific logical function or process, and the scope of the preferred embodiments of the present invention includes additional implementations, where the functions may be executed in a substantially simultaneous manner or in a reverse order according to the functions involved, rather than in the order shown or discussed, which should be understood by those skilled in the art to which the embodiments of the present invention pertain.
[0083] The logic and / or steps represented in a flowchart or otherwise described herein, for example, can be considered as a sequenced list of executable instructions for implementing a logical function, and can be embodied specifically in any computer-readable medium for use by or in connection with an instruction execution system, apparatus, or device, such as a computer-based system, a system including a processing module, or other systems that can fetch and execute instructions from the instruction execution system, apparatus, or device.
[0084] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A method for controlling an automobile air conditioner, characterized in that: include: Lock the target user's riding position and identify the current environment mode; Performing rule matching on the seating position and the current environment mode to obtain a matching result; Based on the matching result, the corresponding seating position side target temperature, seating position side target air volume and / or seating position side target air outlet state are matched and controlled.
2. The automobile air conditioning control method according to claim 1, characterized in that: The target users at least include female users who are on their menstrual period; Before locking the target user's riding position and identifying the current environment mode, it includes: Record the target user's menstrual period through the car computer or mobile terminal, and correct the target user's menstrual period through big data calculation and heart rate data of wearable devices; Estimate the time of the next menstrual period and give advance reminders to target users.
3. The automobile air conditioning control method according to claim 2, characterized in that: Before locking the target user's riding position and identifying the current environment mode, it also includes: Configuring a holiday mode for the vehicle, and selectively allowing the user to confirm the holiday mode based on the user's configuration; During the user's actual vacation period, the vacation mode is selectively turned on and the riding position is selected based on the user's configuration.
4. The automobile air conditioning control method according to claim 3, characterized in that: In the corresponding seating position side target temperature, seating position side target air volume and / or seating position side target air outlet state matched and controlled based on the matching result: The target temperature at the seating position side is configured as a temperature shifted by a preset degree in a preset direction based on the current temperature at the seating position side; the target air volume at the seating position side is set to be lower than a preset gear; The seating position side target air outlet state is set as a preset air outlet state.
5. The automobile air conditioning control method according to claim 4, characterized in that: The identifying the current environment mode comprises: Acquire current time data and environmental parameter data of the riding position, wherein the time data is acquired through a global positioning system or a local calendar system, and the environmental parameter data is acquired through a meteorological sensor or a meteorological data interface; According to the geographical location of the target area, set the month intervals corresponding to each season; Determine whether the current date falls within the preset month interval, and output the corresponding season as the identified current environmental mode.
6. The automobile air conditioning control method according to claim 4, characterized in that: Performing rule matching on the seating position and the current environment mode to obtain a matching result includes: The seating positions include the main seat, the co-pilot seat and the back seat; If the seating position is the main driving position and the current environment mode is summer, a first matching result is obtained; If the seating position is the main driving position and the current environment mode is winter, a second matching result is obtained; If the sitting position is the main driving position and the current environment mode is spring and autumn, a third matching result is obtained; If the seating position is the front passenger seat and the current environment mode is summer, a fourth matching result is obtained; If the seating position is the front passenger seat and the current environment mode is winter, a fifth matching result is obtained; If the seat is the front passenger seat and the current environment mode is spring and autumn, a sixth matching result is obtained; If the seating position is the back row and the current environment mode is summer, a seventh matching result is obtained; If the seating position is the back row and the current environment mode is winter, an eighth matching result is obtained; If the seating position is the back row and the current environment mode is spring and autumn, a ninth matching result is obtained.
7. The automobile air conditioning control method according to claim 6, characterized in that: The matching and controlling the corresponding seating position side target temperature, seating position side target air volume and / or seating position side target air outlet state based on the matching result includes: When the air conditioner is turned on, the target temperature on the seating position side corresponding to the first matching result is matched and controlled to be a temperature shifted in a positive direction by a preset number of degrees based on the current temperature on the seating position side, and the target air volume on the seating position side is set to be lower than a preset gear; the target air outlet state on the seating position side is set to a state of avoiding blowing by people.
8. The automobile air conditioning control method according to claim 6, characterized in that: Before matching and controlling the corresponding target temperature on the seating position side, the target air volume on the seating position side and / or the target air outlet status on the seating position side based on the matching result, determine the on status of the vehicle air conditioner; if the vehicle air conditioner is in the off status at this time, maintain the off status, and stop matching and controlling the corresponding target temperature on the seating position side, the target air volume on the seating position side and / or the target air outlet status on the seating position side based on the matching result.
9. The automobile air conditioning control method according to claim 1, characterized in that: Before locking the target user's riding position and identifying the current environment mode, it also includes: Configuring a dining mode for the vehicle, and selectively confirming the dining mode by the user based on the user's configuration; And during the user's actual dining period, the dining mode is selectively turned on based on the user's configuration.
10. The automobile air conditioning control method according to claim 9, characterized in that: After performing rule matching on the seating position and the current environment mode to obtain a matching result, the method further includes: Based on the matching result, the corresponding air conditioning air volume, compressor status, air conditioning circulation mode, air conditioning cleaning mode and / or vehicle window are matched and controlled.
11. The automobile air conditioning control method according to claim 10, characterized in that: Performing rule matching on the seating position and the current environment mode to obtain a matching result includes: During the dining mode, the sitting position is the actual position used by the user, the actual position used by the user is confirmed by the seat position where the user actually sits, and the sitting position is configured with at least one corresponding air outlet; Performing rule matching on the seating position and the current environment mode to obtain a matching result includes: If the current environment mode is spring and autumn, the tenth matching result is obtained; If the current environment mode is summer and winter, the eleventh matching result is obtained.
12. The automobile air conditioning control method according to claim 11, characterized in that: The matching and controlling of the corresponding air conditioning air volume, compressor state, air conditioning circulation mode, air conditioning cleaning mode and / or vehicle window based on the matching result includes: When the user leaves the car and during the dining mode, based on the tenth matching result, the corresponding air conditioning air volume is matched and controlled to be the maximum air volume or the preset air volume, the compressor state is the off state, the air conditioning cleaning mode is the preset cleaning module, and the car window is half open.
13. The automobile air conditioning control method according to claim 11, characterized in that: The matching and controlling the corresponding air conditioning air volume, compressor state, air conditioning cleaning mode and / or vehicle window based on the matching result includes: When the user leaves the car and is in dining mode, the corresponding air conditioning air volume is matched and controlled based on the eleventh matching result to be the maximum air volume or the preset air volume, the compressor state is the off state, the air conditioning cleaning mode is the preset cleaning module, and the windows are fully closed.
14. An automobile air conditioning control system, characterized in that: include: A collection unit, at least used to lock the seating position of the target user and identify the current environment mode; A matching unit, at least used for performing rule matching between the seating position and the current environment mode to obtain a matching result; The execution unit is at least used for matching and controlling the corresponding seating position side target temperature, seating position side target air volume and / or seating position side target air outlet state based on the matching result.
15. An electronic device, characterized in that: include: at least one processor; And at least one memory communicatively connected to the processor, wherein: the memory stores program instructions executable by the processor, and the processor calls the program instructions to execute the steps of the automobile air conditioning control method as described in any one of claims 1-13.
16. A readable storage medium storing a computer program, characterized in that: The computer program is executed by a processor to execute the steps of the automobile air conditioning control method as described in any one of claims 1-13.