Method and device for prompting microorganisms in vehicle, vehicle and storage medium

By obtaining the air humidity parameters of the vehicle, the opening time of the vehicle components and the parking time, determining the microorganism generation location in the vehicle, and triggering prompt information, the problem of the inability to accurately find the microorganism generation location in the vehicle is solved, and effectively reminding users to disinfect and protect the health of the driver and passengers.

CN119974884AActive Publication Date: 2025-05-13GREAT WALL MOTOR CO LTD
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Patent Information

Application Number
CN202510145873.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-10
Publication Date
2025-05-13
Estimated Expiration
2045-02-10

AI Technical Summary

Technical Problem

The location of microorganism generation cannot be accurately found in the vehicle, resulting in the inability to effectively remind users to disinfect, affecting the physical health of the driver and passengers.

Method used

By obtaining the air humidity parameters of the vehicle, the opening time of the vehicle components and the parking time, the target position in the vehicle is determined, and the prompt information for this position is triggered to remind the user of the location where the microorganism exists.

Benefits of technology

It realizes that when microorganisms are detected in the vehicle, the user is accurately reminded of the location of microorganisms, effectively promotes the user to disinfect the target location, and protects the health of the driver and passengers.

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Abstract

The invention provides a vehicle microorganism existence prompting method and device, a vehicle and a storage medium, the method is applied to the field of vehicles, and the method comprises the steps that any one of the air humidity parameter of the vehicle, the starting duration of vehicle components and the parking duration of the vehicle is obtained; the starting duration of the vehicle assembly is the use duration of the vehicle assembly after the vehicle is powered on, and the parking duration is the single parking duration after the vehicle is powered off; when it is detected that microorganisms exist in the vehicle, at least one target position in the vehicle is determined based on any one of the air humidity parameter, the starting duration of the vehicle assembly and the parking duration of the vehicle, and the target position is the position where the microorganisms exist; based on the at least one target position, prompting information for the target position is triggered, and the prompting information is used for prompting that microorganisms exist in the target position. The method can timely remind the user of the position where the microorganisms exist under the condition that the microorganisms exist in the vehicle, so that the user can quickly determine the position.
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Description

Technical Field

[0001] The present application relates to the field of vehicles, and more specifically, to a method, device, vehicle and storage medium for prompting microorganisms in a vehicle in the field of vehicles. Background Art

[0002] The presence of microorganisms in the vehicle will not only affect the cleanliness and appearance of the vehicle, but also affect the health of the drivers and passengers in the vehicle. Therefore, if microorganisms may exist in the vehicle, the user is prompted to remove the microorganisms to reduce the growth of microorganisms.

[0003] In the related art, when there are microorganisms in the vehicle, the user is prompted to open the window for ventilation. However, there are many locations where microorganisms are generated in the vehicle, and it is impossible to accurately find the location where microorganisms are generated in the vehicle, so it is impossible to effectively remind the user to disinfect the location where microorganisms are generated, which affects the health of the drivers and passengers in the vehicle. Summary of the invention

[0004] The present application provides a method, device, vehicle and storage medium for prompting the presence of microorganisms in a vehicle. The method can promptly remind a user of the location of the microorganisms when the presence of microorganisms is detected in the vehicle, so as to avoid the user being unable to determine the location of the microorganisms in the vehicle.

[0005] In a first aspect, a method for indicating the presence of microorganisms in a vehicle is provided, the method comprising:

[0006] Obtaining any one of the air humidity parameter of the vehicle, the activation time of the vehicle component, and the parking time of the vehicle; wherein the activation time of the vehicle component is the usage time of the vehicle component after the vehicle is powered on, and the parking time is the single parking time of the vehicle after the vehicle is powered off;

[0007] In the case where the presence of microorganisms is detected in the vehicle, determining at least one target location in the vehicle based on any one of the air humidity parameter, the duration of the vehicle component being turned on, and the duration of the vehicle being parked, the target location being a location where the microorganisms are present;

[0008] Based on the at least one target location, prompt information for the target location is triggered, where the prompt information is used to prompt that microorganisms exist at the target location.

[0009] Through the above technical solution, the method can obtain any one of the vehicle's air humidity parameters, the opening time of the vehicle component, and the parking time of the vehicle; wherein, the opening time of the vehicle component is the use time of the vehicle component after the vehicle is powered on, and the parking time is the single parking time after the vehicle is powered off. Since the air humidity parameter, the opening of the vehicle component, and the parking time will affect the generation of microorganisms in the vehicle, when the presence of microorganisms in the vehicle is detected, based on the air humidity parameter, the opening time of the vehicle component, and the parking time of the vehicle, at least one target position in the vehicle is determined, and the target position is the position where the microorganisms exist. In the case of the presence of microorganisms in the vehicle, continuing to use the vehicle will easily cause the user to have an allergic reaction and affect the user's health. Therefore, based on at least one target position, a prompt information for the target position is triggered, and the prompt information is used to prompt the presence of microorganisms at the target position, thereby reminding the user to quickly and accurately find the position where the microorganisms are generated in the vehicle, and effectively reminding the user to disinfect the target position.

[0010] In conjunction with the first aspect, in some possible implementations, the air humidity parameter includes humidity inside the vehicle and humidity outside the vehicle, the opening duration of the vehicle component includes opening duration of a window of the vehicle, and before determining at least one target position in the vehicle based on any one of the air humidity parameter, the opening duration of the vehicle component, and the parking duration of the vehicle, the method includes:

[0011] When the humidity in the vehicle is greater than or equal to a first preset humidity, determining whether a first duration during which the humidity in the vehicle is greater than or equal to the first preset humidity is greater than or equal to the first preset duration;

[0012] When the first continuous time length during which the humidity in the vehicle is greater than or equal to the first preset humidity length is greater than or equal to the first preset time length, it is determined that microorganisms exist in the vehicle; when the first continuous time length during which the humidity in the vehicle is greater than or equal to the first preset humidity length is less than the first preset time length, it is determined that no microorganisms exist in the vehicle;

[0013] When the humidity outside the vehicle is greater than or equal to the second preset humidity, determining whether the window opening time of the vehicle is less than or equal to the second preset time; or determining whether the parking time of the vehicle is greater than or equal to the third preset time;

[0014] When the window opening time is less than or equal to the second preset time, it is determined that there are microorganisms in the vehicle; when the window opening time is greater than the second preset time, it is determined that there are no microorganisms in the vehicle; wherein the window opening time is the accumulated window opening time after the vehicle is powered on;

[0015] Alternatively, when the parking time of the vehicle is greater than or equal to the third preset time, it is determined that microorganisms exist in the vehicle; when the parking time of the vehicle is less than the third preset time, it is determined that no microorganisms exist in the vehicle.

[0016] Through the above technical solution, the method can determine whether there are microorganisms in the vehicle based on the air humidity parameter, the non-use time and the use time, thereby monitoring the air quality in the vehicle in real time.

[0017] In conjunction with the first aspect, in some possible implementations, the air humidity parameter includes humidity inside the vehicle and humidity outside the vehicle, the opening duration of the vehicle component includes opening duration of a window of the vehicle, and the determining of at least one target location in the vehicle based on any one of the air humidity parameter, the opening duration of the vehicle component, and the parking duration of the vehicle includes:

[0018] When the humidity in the vehicle is greater than or equal to a first preset humidity, determining the target position to be an onboard air conditioner of the vehicle, a seat of the vehicle, and a carpet of the vehicle;

[0019] When the second duration of the humidity outside the vehicle being greater than or equal to the second preset humidity is greater than or equal to the second preset duration, determining that the target position is a closed component of the vehicle; wherein the closed component is used to prevent liquid or gas from leaking or intruding into the vehicle;

[0020] When the window opening time is less than or equal to a second preset time, determining the target position to be a carpet of the vehicle and a seat of the vehicle;

[0021] When the parking time of the vehicle is greater than or equal to the first preset time, the target position is determined to be the vehicle air conditioner.

[0022] Through the above technical solution, when the method detects the presence of microorganisms in the vehicle, it can promptly determine the target location where the microorganisms exist based on the air humidity parameters, the non-use time and the use time, so as to facilitate subsequent targeted reminders to the user.

[0023] In conjunction with the first aspect, in some possible implementations, triggering prompt information for the target location based on the at least one target location includes:

[0024] Determining the urgency level corresponding to the prompt information based on a third duration of the presence of the microorganisms at the at least one target location;

[0025] Based on the urgency level corresponding to the prompt information, the prompt information for the target location is triggered.

[0026] Through the above technical solution, the method can determine the urgency of the prompt information based on the third duration, and trigger the prompt information accordingly based on the urgency, thereby being able to more quickly and accurately prompt the user of the location where the microorganisms exist.

[0027] In combination with the first aspect, in some possible implementations, determining the urgency level corresponding to the prompt information based on the third duration of the presence of the microorganism at the at least one target location includes:

[0028] When the duration of the existence of the microorganisms at the at least one target location is less than a third preset duration, determining that the urgency level corresponding to the prompt information is a first level;

[0029] When the duration of the presence of the microorganisms at the at least one target location is greater than or equal to the third preset duration, it is determined that the urgency level corresponding to the prompt information is a second level, and the urgency level of the second level is greater than the first level.

[0030] Through the above technical solution, the method can determine the urgency corresponding to the prompt information according to the duration of the existence of microorganisms, thereby prompting the user to disinfect the target location in a targeted manner.

[0031] In conjunction with the first aspect, in some possible implementations, triggering the prompt information for the target location based on the urgency level corresponding to the prompt information includes:

[0032] When the urgency level corresponding to the prompt information is the first level, generating the prompt text and the prompt audio; displaying the prompt text and broadcasting the prompt audio;

[0033] When the urgency level corresponding to the prompt information is the second level, the target location is displayed on the vehicle model on the display screen of the vehicle to prompt the user to disinfect the target location; wherein the vehicle model is a model used to describe the vehicle's own state and behavior.

[0034] Through the above technical solution, the method can determine different prompting methods according to different urgency levels, so that the user can more quickly and effectively determine the target location where microorganisms exist.

[0035] In combination with the first aspect, in some possible implementations, the method further includes:

[0036] When the emergency level corresponding to the prompt information is the first level, controlling the window of the vehicle to open to a preset opening so that the vehicle is ventilated;

[0037] When the urgency level corresponding to the prompt information is the second level, a disinfection device of the vehicle is controlled to start so as to disinfect the target location; wherein the disinfection device is used to eliminate microorganisms in the vehicle.

[0038] Through the above technical solution, when there are microorganisms in the vehicle, the method can timely control the opening of the windows to ventilate the vehicle, or control the opening of the vehicle's disinfection equipment to disinfect the target location, thereby preventing the microorganisms from harming the user's body.

[0039] In a second aspect, a device for indicating microorganisms in a vehicle is provided, the device comprising:

[0040] An acquisition module, used to acquire any one of the vehicle's air humidity parameters, vehicle component activation time, and vehicle parking time; wherein the vehicle component activation time is the vehicle component usage time after the vehicle is powered on, and the parking time is the single parking time after the vehicle is powered off;

[0041] A determination module, configured to determine at least one target location in the vehicle based on any one of an air humidity parameter, a duration of time during which a vehicle component is turned on, and a duration during which the vehicle is parked, when the presence of microorganisms in the vehicle is detected; the target location is a location where the microorganisms exist;

[0042] The trigger module is used to trigger prompt information for the target location based on at least one target location, where the prompt information is used to prompt that microorganisms exist at the target location.

[0043] In a third aspect, a vehicle is provided, comprising a memory and a processor. The memory is used to store executable program code, and the processor is used to call and run the executable program code from the memory, so that the vehicle executes the method executed by the above-mentioned method for prompting microorganisms in the vehicle.

[0044] In a fourth aspect, a computer program product is provided, which includes: a computer program code, which, when executed on a computer, enables the computer to execute the method executed by the above-mentioned method for prompting microorganisms in a vehicle.

[0045] In a fifth aspect, a computer-readable storage medium is provided, which stores a computer program code. When the computer program code runs on a computer, the computer executes the method executed by the above-mentioned method for prompting microorganisms in a vehicle. BRIEF DESCRIPTION OF THE DRAWINGS

[0046] Figure 1 It is a schematic diagram of an implementation environment of a method for prompting microorganisms in a vehicle provided in an embodiment of the present application;

[0047] Figure 2 is a schematic flow chart of a method for detecting microorganisms in a vehicle provided in an embodiment of the present application;

[0048] Figure 3is a schematic flow chart of another method for prompting microorganisms in a vehicle provided in an embodiment of the present application;

[0049] Figure 4 It is a structural schematic diagram of a device for prompting microorganisms in a vehicle provided by an embodiment of the present application;

[0050] Figure 5 It is a structural schematic diagram of a vehicle provided in an embodiment of the present application. DETAILED DESCRIPTION

[0051] The technical solution in the present application will be described clearly and in detail below in conjunction with the accompanying drawings. In the description of the embodiments of the present application, unless otherwise specified, " / " means or, for example, A / B can mean A or B: "and / or" in the text is only a description of the association relationship of associated objects, indicating that there can be three relationships, for example, A and / or B can mean: A exists alone, A and B exist at the same time, and B exists alone. In addition, in the description of the embodiments of the present application, "multiple" means two or more than two.

[0052] In the following, the terms "first" and "second" are used for descriptive purposes only and are not to be understood as suggesting or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the features.

[0053] Figure 1 It is a schematic diagram of the implementation environment of a method for prompting microorganisms in a vehicle provided in an embodiment of the present application.

[0054] For example, Figure 1 As shown, the implementation environment includes a head unit terminal (HUT) 110 and a display screen 120 .

[0055] The vehicle computer 110 is used to generate control information of vehicle components. For example, the display screen 120 of the vehicle is controlled to trigger prompt information. In some embodiments, the vehicle computer 110 can be set in the driving space. In some embodiments, the operation of the vehicle computer 110 is implemented based on voice commands. For example, the vehicle computer 110 controls the display screen 120 of the vehicle to display prompt information in response to a voice command to control the display screen 120 of the vehicle.

[0056] The display screen 120 is used to display various information of the vehicle multimedia system. For example, the various information includes navigation information, prompt information, etc. In some embodiments, the vehicle computer 110 and the display screen 120 are integrated into the same component.

[0057] Figure 2It is a schematic flow chart of a method for prompting microorganisms in a vehicle provided in an embodiment of the present application.

[0058] For example, Figure 2 As shown, taking the execution subject as a vehicle computer as an example, a method for prompting microorganisms in a vehicle of the present application is described, and the method 200 includes the following steps 201-203.

[0059] Step 201, obtaining any one of the air humidity parameter of the vehicle, the activation time of the vehicle components and the parking time of the vehicle.

[0060] Among them, the air humidity parameter is used to describe the water vapor content inside and outside the vehicle. That is, the air humidity parameter includes the humidity inside the vehicle and the humidity outside the vehicle. Vehicle components are the various components that make up the vehicle. Among them, vehicle components include body system components, electrical system components, power system components, chassis system components, etc. For example, body system components include body shells, doors, windows, seats and dashboards. The opening time of vehicle components is the opening time of vehicle components after the vehicle is powered on, and the opening time of vehicle components includes the opening time of vehicle windows. The parking time of the vehicle is the single parking time after the vehicle is powered off.

[0061] It should be understood that in practical applications, it is easier to grow and reproduce microorganisms in a high humidity environment. In a vehicle, more microorganisms are likely to have a negative impact on the user's health. For example, bacteria and molds in microorganisms can cause user diseases. If the windows or doors of the vehicle are completely closed, the interior of the vehicle is relatively closed and the air is not circulating. At this time, if the humidity in the vehicle is high, it is easy to cause the humidity in the vehicle to be unable to be removed. In practical applications, if the windows or doors of the vehicle are not completely closed, rain or moisture can easily penetrate into the vehicle on rainy days or in a humid environment, increasing the humidity in the vehicle. In practical applications, after the user uses the vehicle on a rainy day, there will be moisture in the carpet or seat in the vehicle. In this case, if the moisture in the vehicle is not eliminated, the vehicle is parked for a long time and the windows are closed, the air in the vehicle is not circulating, and the humidity cannot be removed in time, which is easy to cause microbial growth. In this case, it is necessary to obtain the air humidity parameters of the vehicle, the opening time of the vehicle components, or the parking time of the vehicle.

[0062] Step 202 : when the presence of microorganisms in the vehicle is detected, determining at least one target location in the vehicle based on any one of an air humidity parameter, a duration of vehicle component activation, and a duration of vehicle parking.

[0063] Among them, the microorganisms present in the vehicle include bacteria and mold. In the field of vehicles, the bacteria and mold present in the vehicle will have a negative impact on human health. If the humidity in the vehicle is high, the mold can produce a large number of spores during the reproduction process, and the spores will be inhaled into the lungs by the occupants of the vehicle, thereby causing respiratory diseases in the occupants of the vehicle. If there are food residues in the vehicle, the food residues will easily breed bacteria and cause the occupants of the vehicle to be infected with diseases. The target position is the location where the microorganisms exist. If the presence of microorganisms in the vehicle is detected, in order to facilitate the cleaning of the microorganisms, it is necessary to determine the target position where the microorganisms are located. Since the air humidity parameters of the vehicle, the opening time of the vehicle components, and the parking time of the vehicle will affect the humidity of different positions in the vehicle, microorganisms will be generated at different target positions. In this case, at least one target position in the vehicle can be determined based on the air humidity parameters or the opening time of the vehicle components and the parking time of the vehicle.

[0064] In actual applications, the microbial growth environment is warm, humid and contains organic matter, so microorganisms are easily generated in vehicles with high air humidity. For example, if the air humidity in the vehicle is high and the vehicle windows are closed for a long time, it is easy for microorganisms to grow in the air conditioner or carpet in the vehicle. In other words, the target location in the vehicle is the air conditioner or carpet.

[0065] Step 203: based on at least one target location, trigger prompt information for the target location, where the prompt information is used to prompt that microorganisms exist at the target location.

[0066] Among them, the prompt information is used to prompt the existence of microorganisms at the target location. Therefore, even if there are microorganisms in the vehicle, the prompt information can effectively remind the user that the existence of microorganisms in the vehicle will harm the user's health, thereby prompting the user to process the target location.

[0067] The embodiment of the present application provides a method for prompting microorganisms in a vehicle, which can obtain any one of the air humidity parameter of the vehicle, the opening time of the vehicle component, and the parking time of the vehicle; wherein, the opening time of the vehicle component is the use time of the vehicle component after the vehicle is powered on, and the parking time is the single parking time after the vehicle is powered off. Since the air humidity parameter, the opening of the vehicle component, and the parking time will affect the generation of microorganisms in the vehicle, when the presence of microorganisms in the vehicle is detected, based on any one of the air humidity parameter, the opening time of the vehicle component, and the parking time of the vehicle, at least one target position in the vehicle is determined, and the target position is the position where the microorganisms exist. In the case of the presence of microorganisms in the vehicle, continuing to use the vehicle will easily cause the user to have an allergic reaction and affect the user's physical health. Therefore, based on at least one target position, a prompt information for the target position is triggered, and the prompt information is used to prompt the presence of microorganisms at the target position, thereby reminding the user to quickly and accurately find the position where the microorganisms are generated in the vehicle, and effectively reminding the user to disinfect the target position.

[0068] Figure 3 It is a schematic flow chart of a method for prompting microorganisms in a vehicle provided in an embodiment of the present application.

[0069] It should be noted that the above steps 201-203 are a simple description of a method for prompting microorganisms in a vehicle provided in an embodiment of the present application. The following will provide a more detailed description of a method for prompting microorganisms in a vehicle provided in an embodiment of the present application in combination with some examples. Figure 3 Taking the execution subject as a vehicle computer as an example, the method includes the following steps 301 to 305.

[0070] Step 301, obtaining any one of the vehicle's air humidity parameters, vehicle component activation time, and vehicle parking time; wherein, the vehicle component activation time is the usage time of the vehicle component after the vehicle is powered on, and the parking time is the single parking time after the vehicle is powered off.

[0071] The air humidity parameter of the vehicle includes the air humidity inside the vehicle and the air humidity outside the vehicle. The opening time of the vehicle components includes the window opening time.

[0072] In one possible implementation, an air humidity parameter of the vehicle is acquired based on a humidity sensor.

[0073] The humidity sensor is arranged inside or outside the vehicle. If the humidity sensor is arranged inside the vehicle, the air humidity parameter inside the vehicle is obtained. If the humidity sensor is arranged outside the vehicle, the air humidity parameter outside the vehicle is obtained.

[0074] It is understandable that the air humidity parameters of the vehicle can also be obtained through other means, for example, directly obtaining the air humidity parameters outside the vehicle through the weather forecast on the Internet. The embodiment of the present application does not limit the specific form of obtaining the air humidity parameters of the vehicle.

[0075] In this embodiment, the air humidity parameters of the vehicle are monitored in real time to determine whether microorganisms exist in the vehicle.

[0076] It should be understood that if the humidity in the vehicle is high and the window opening time is short, the humidity in the vehicle cannot be completely removed, which can easily lead to the growth and reproduction of microorganisms in the vehicle. Therefore, it is necessary to obtain the window opening time to determine whether there are microorganisms in the vehicle.

[0077] In one possible implementation, when at least one window of the vehicle is opened, a first moment when the at least one window is opened is determined; when all windows of the vehicle are closed, a second moment when all windows are closed is determined; and a window opening duration is determined based on the first moment and the second moment.

[0078] It should be understood that the window opening time is the accumulated window opening time after the vehicle is powered on.

[0079] In some embodiments, a single window opening duration is determined based on a difference between a first moment and a second moment; and a cumulative window opening duration is determined based on multiple single window opening durations.

[0080] For example, when the left front window of the vehicle is open, the first moment when the left front window is opened is determined to be 16:01 on March 1, 2021. When all the windows of the vehicle are closed, the second moment when all the windows are closed is determined to be 18:01 on March 1, 2021. The difference between the first moment and the second moment is 2 hours, so the opening time of the left front window is determined to be 2 hours.

[0081] In this embodiment, when at least one window of the vehicle is opened, the opening time of at least one window of the vehicle is obtained, and the window opening time is monitored in real time to determine whether there are microorganisms in the vehicle.

[0082] In one possible implementation, after the vehicle is powered off, the first position of the vehicle and the power-off time are obtained; after the vehicle is powered on, the second position of the vehicle and the power-on time are obtained; and the parking time of the vehicle is determined based on the first position, the second position, the power-off time, and the power-on time.

[0083] In some embodiments, when the distance between the first position and the second position is less than or equal to a preset distance, the parking time of the vehicle is determined based on the difference between the power-off time and the power-on time of the vehicle.

[0084] It should be understood that in actual applications, the vehicle positioning system has certain errors. Even if the vehicle is stopped, the vehicle's position information may change due to signal blocking factors. Therefore, a preset distance is set to reduce the error caused by inaccurate signals.

[0085] Wherein, the distance between the first position and the second position is less than or equal to the preset distance, indicating that the vehicle is parked. The difference between the power-off time and the power-on time of the vehicle can determine the duration of a single parking of the vehicle. That is, the parking duration of the vehicle can be determined based on the first position, the second position, the power-off time, and the power-on time.

[0086] The preset distance is automatically determined by the vehicle computer, or is set by a technician according to actual conditions, and the present application embodiment does not limit this. For example, the preset distance is 100 meters.

[0087] For example, the vehicle is at position A when it is powered off, and the power-off time is 18:01 on March 1, 2021. The vehicle is at position B after it is powered on, and the power-on time is 18:01 on March 2, 2021. If the distance between position A and position B is 50 meters, the vehicle is determined to be stationary, and the parking time of the vehicle is determined based on the difference between the power-off time and the power-on time, that is, the parking time of the vehicle is 24 hours.

[0088] In some embodiments, when the distance between the first position and the second position is greater than a preset distance, it is determined that the vehicle is not parked.

[0089] That is, if the distance between the first position and the second position of the vehicle is greater than the preset distance, it means that they are not parked at the same position.

[0090] In this embodiment, after the vehicle is powered off, the parking time of the vehicle is determined based on the vehicle's location information and the vehicle's power-on and power-off times. In other words, whether the vehicle has not been used for a long time is monitored in real time to determine whether there are microorganisms in the vehicle.

[0091] Step 302 : determining whether microorganisms exist in the vehicle based on any one of the air humidity parameter, the duration of vehicle component activation, and the duration of vehicle parking.

[0092] It should be understood that the air humidity parameter, the duration of vehicle component opening, and the duration of vehicle parking will affect the living environment of microorganisms. For example, if a vehicle is parked for a long time with the windows closed and the humidity inside the vehicle is high, microorganisms will be generated inside the vehicle. Therefore, based on the air humidity parameter, the duration of vehicle component opening, and the duration of vehicle parking, it is determined whether microorganisms exist in the vehicle.

[0093] The following describes the content of determining whether microorganisms exist in the vehicle based on the air humidity parameter.

[0094] In a possible implementation, when the air humidity parameter includes the humidity in the vehicle and the humidity in the vehicle is greater than or equal to a first preset humidity, it is determined whether microorganisms exist in the vehicle based on a first duration during which the humidity in the vehicle is greater than or equal to the first preset humidity.

[0095] The first preset humidity is automatically determined by the vehicle computer, or is set by a technician according to actual conditions, and this embodiment of the present application does not limit this. For example, the first preset humidity may be 60%.

[0096] In some embodiments, when the humidity in the vehicle is greater than or equal to a first preset humidity, it is determined whether a first duration during which the humidity in the vehicle is greater than or equal to the first preset humidity is greater than or equal to the first preset duration.

[0097] The first preset duration is automatically determined by the vehicle computer, or is set by a technician according to actual conditions, and the present application embodiment does not limit this. For example, the first preset duration may be 2 days.

[0098] For example, when the humidity in the vehicle is greater than or equal to 60%, it is determined whether the first duration of the humidity in the vehicle being greater than or equal to 60% is greater than or equal to 2 days.

[0099] It should be understood that if a vehicle is in a high-humidity environment for a long time, microorganisms may be generated in the vehicle. Therefore, when the humidity in the vehicle is greater than or equal to a first preset humidity, it is determined whether the first duration for which the humidity in the vehicle is greater than or equal to the first preset humidity is greater than or equal to the first preset duration to determine whether microorganisms are present in the vehicle.

[0100] In some embodiments, when the humidity in the vehicle is greater than or equal to a first preset humidity for a first duration that is greater than or equal to a first preset duration, it is determined that microorganisms exist in the vehicle.

[0101] For example, when the first continuous period during which the humidity in the vehicle is greater than or equal to 60% is greater than or equal to 2 days, it is determined that microorganisms exist in the vehicle.

[0102] In some embodiments, when the first duration during which the humidity in the vehicle is greater than or equal to the first preset humidity is less than the first preset duration, it is determined that no microorganisms exist in the vehicle.

[0103] For example, if the user disinfects or ventilates the vehicle in time, even if the humidity in the vehicle is greater than or equal to 60%, and the first continuous time when the humidity in the vehicle is greater than or equal to 60% is less than 2 days, no microorganisms will be generated in the vehicle. That is, if the first continuous time when the humidity in the vehicle is greater than or equal to 60% is less than 2 days, it is determined that there are no microorganisms in the vehicle.

[0104] In this embodiment, when the humidity in the vehicle is greater than or equal to the first preset humidity, it is determined whether microorganisms exist in the vehicle based on the first duration, that is, the presence of microorganisms in the vehicle is monitored in real time to prevent the microorganisms in the vehicle from affecting the user's health.

[0105] The following describes the content of determining whether microorganisms exist in the vehicle based on the air humidity parameter and the opening time of the vehicle component.

[0106] In a possible implementation, when the air humidity parameter includes the humidity outside the vehicle and the humidity outside the vehicle is greater than or equal to a second preset humidity, it is determined whether microorganisms exist in the vehicle based on the activation time of the vehicle component.

[0107] The vehicle component opening time includes the window opening time, which is the cumulative window opening time after the vehicle is powered on.

[0108] The second preset humidity is automatically determined by the vehicle computer, or is set by a technician according to actual conditions, and the present application embodiment does not limit this. For example, the second preset humidity may be 65%.

[0109] It should be understood that if a vehicle is in a high-humidity environment for a long time and the windows are closed, the air in the vehicle will not circulate, which may easily lead to the growth of microorganisms in the vehicle. Therefore, it is necessary to determine whether there are microorganisms in the vehicle based on the length of time the vehicle's windows are open.

[0110] In some embodiments, when the humidity outside the vehicle is greater than or equal to a second preset humidity, it is determined whether the window opening time of the vehicle is less than or equal to the second preset time.

[0111] The second preset time length is automatically determined by the vehicle computer, or is set by a technician according to actual conditions, and the present application embodiment does not limit this. For example, the second preset time length may be 2 hours.

[0112] It should be understood that microorganisms are likely to breed in the vehicle only when the vehicle is in a high-humidity environment for a long time and the windows are closed for a long time. Therefore, the cumulative window opening time of the vehicle within the preset period is determined to determine whether the windows are closed for a long time.

[0113] In some embodiments, it is determined whether the accumulated window opening time within a preset period is less than or equal to a second preset time.

[0114] The preset period is automatically determined by the vehicle computer or set by the technician according to the actual situation, and the present application embodiment does not limit this. For example, the preset period can be the second duration when the humidity outside the vehicle is greater than or equal to the second preset humidity.

[0115] For example, if the first window opening time is determined to be 10 minutes, the second window opening time is 20 minutes, and the third window opening time is 5 minutes within 7 days, then the cumulative window opening time is 35 minutes. In other words, the cumulative window opening time of the vehicle in a high humidity environment is determined to be 35 minutes within 7 days.

[0116] In some embodiments, when the window opening time is less than or equal to a second preset time, it is determined that microorganisms exist in the vehicle.

[0117] It should be understood that if the vehicle is in a high-humidity environment for a long time and the vehicle's windows are opened for a short period of time, it is determined that the air in the vehicle is not circulating, and microorganisms will breed in the vehicle.

[0118] For example, when the cumulative window opening time of a vehicle is determined to be less than or equal to 2 hours within 7 days in a high humidity environment, it is determined that microorganisms exist in the vehicle.

[0119] In some embodiments, when the window is opened for longer than a second preset time period, it is determined that no microorganisms exist in the vehicle.

[0120] For example, when it is determined that the cumulative window opening time of a vehicle is greater than 2 hours within 7 days in a high-humidity environment, it is determined that no microorganisms exist in the vehicle.

[0121] In this embodiment, when the air humidity parameter includes the humidity outside the vehicle and the humidity outside the vehicle is greater than or equal to the second preset humidity, it is determined whether there are microorganisms in the vehicle based on the window opening time. That is, whether there are microorganisms in the vehicle is monitored in real time to prevent the microorganisms in the vehicle from affecting the health of the user.

[0122] The following describes the content of determining whether microorganisms exist in the vehicle based on the air humidity parameter and the parking time of the vehicle.

[0123] In a possible implementation, when the air humidity parameter includes the humidity outside the vehicle and the humidity outside the vehicle is greater than or equal to a second preset humidity, it is determined whether microorganisms are present in the vehicle based on the parking time of the vehicle.

[0124] Among them, the parking time of the vehicle is the single parking time after the vehicle is powered off.

[0125] It should be understood that if the vehicle is in a high humidity environment for a long time and the vehicle is parked for a long time, the moisture in the vehicle cannot be removed, which can easily lead to the growth of microorganisms. Therefore, it is necessary to determine whether there are microorganisms in the vehicle based on the parking time of the vehicle.

[0126] In some embodiments, when the humidity outside the vehicle is greater than or equal to a second preset humidity, it is determined whether the parking time of the vehicle is greater than or equal to a third preset time.

[0127] The third preset time length is automatically determined by the vehicle computer, or is set by a technician according to actual conditions, and the present application embodiment does not limit this. For example, the third preset time length may be 720 hours.

[0128] It is understandable that the specific implementation of determining the parking time of the vehicle can refer to the relevant description in the aforementioned step 301, which will not be repeated here.

[0129] In some embodiments, when the parking time of the vehicle is greater than or equal to a third preset time, it is determined that microorganisms exist in the vehicle.

[0130] For example, when a vehicle is in a high humidity environment and it is determined that the parking time of the vehicle is greater than or equal to 720 hours, it is determined that microorganisms exist in the vehicle.

[0131] In some embodiments, when the parking time of the vehicle is less than a third preset time, it is determined that no microorganisms exist in the vehicle.

[0132] For example, if a vehicle is in a high humidity environment and it is determined that the parking time of the vehicle is less than 720 hours, it is determined that no microorganisms exist in the vehicle.

[0133] In this embodiment, when the air humidity parameter includes the humidity outside the vehicle and the humidity outside the vehicle is greater than or equal to the second preset humidity, it is determined whether there are microorganisms in the vehicle based on the parking time of the vehicle. That is, whether there are microorganisms in the vehicle is monitored in real time to prevent the microorganisms in the vehicle from affecting the health of the user.

[0134] It is understandable that in practical applications, other methods may be used to determine whether microorganisms exist in the vehicle.

[0135] In a possible implementation, whether microorganisms exist in the vehicle is detected by a microorganism detection sensor.

[0136] Among them, the microorganism detection sensor includes an ultraviolet sensor and an odor sensor. Under the irradiation of the ultraviolet sensor, the microorganism will emit fluorescence, so the ultraviolet sensor can detect whether there are microorganisms in the vehicle.

[0137] In some embodiments, whether microorganisms exist in the vehicle is detected based on an ultraviolet sensor; if a fluorescent signal is detected in the vehicle, it is determined that microorganisms exist in the vehicle; if no fluorescent signal is detected in the vehicle, it is determined that no microorganisms exist in the vehicle.

[0138] In some embodiments, the presence of microorganisms in the vehicle is detected based on an air quality sensor.

[0139] For example, if the air quality sensor detects the presence of mold spores in the vehicle, it is determined that mold exists in the vehicle; if the air quality sensor does not detect the presence of mold spores in the vehicle, it is determined that mold does not exist in the vehicle.

[0140] For another example, if the air quality sensor detects the presence of food odor molecules in the vehicle and the food odor lasts for a long time, it is determined that bacteria exist in the vehicle; if the air quality sensor does not detect the presence of food odor molecules in the vehicle, it is determined that no bacteria exist in the vehicle.

[0141] In this embodiment, the presence of microorganisms in the vehicle is detected by a microorganism detection sensor, that is, the presence of microorganisms in the vehicle is more accurately monitored.

[0142] In a possible implementation, if the air-conditioning system in the vehicle is not disinfected within a fourth preset time period, it is determined that microorganisms exist in the vehicle; if disinfection of the air-conditioning system in the vehicle is detected within the fourth preset time period, it is determined that no microorganisms exist in the vehicle.

[0143] The fourth preset time period is automatically determined by the vehicle computer, or is set by a technician according to actual conditions, and this embodiment of the present application does not limit this. For example, the fourth preset time period may be 6 months.

[0144] The air conditioning system is used to adjust the temperature inside the vehicle and purify the air inside the vehicle.

[0145] In this embodiment, the presence of microorganisms in the vehicle is monitored in real time based on the air conditioning system in the vehicle, thereby more accurately monitoring the air quality in the vehicle.

[0146] It is understandable that after executing the above step 302, the following steps 302 to 304 are directly executed, and the above step 301 may also be executed.

[0147] In a possible implementation, when it is detected that no microorganisms exist in the vehicle, the air humidity parameter of the vehicle, the usage time of the vehicle, and the non-use time of the vehicle are acquired.

[0148] It is understandable that the specific implementation of obtaining the air humidity parameter of the vehicle, the usage time of the vehicle and the non-use time of the vehicle can refer to the aforementioned step 301.

[0149] Step 303, when the presence of microorganisms in the vehicle is detected, at least one target location in the vehicle is determined based on any one of the air humidity parameters, the duration of vehicle component activation, and the vehicle parking duration, where the microorganisms exist.

[0150] It should be understood that after the presence of microorganisms in the vehicle is detected, in order to facilitate cleaning of the microorganisms, it is necessary to determine at least one target location in the vehicle where the microorganisms exist.

[0151] It is understandable that the specific implementation of detecting the presence of microorganisms in the vehicle can refer to the related description of the aforementioned step 302.

[0152] The following is a description of the content of determining at least one target position in the vehicle based on any one of an air humidity parameter, a duration of time when a vehicle component is turned on, and a duration of time when the vehicle is parked.

[0153] In a possible implementation, when the humidity in the vehicle is greater than or equal to a first preset humidity, the target position is determined to be an onboard air conditioner of the vehicle, a seat of the vehicle, and a carpet of the vehicle.

[0154] It should be understood that if the humidity inside the vehicle is greater than or equal to the first preset humidity, moisture is likely to accumulate inside the vehicle air conditioner, which provides favorable conditions for the growth of microorganisms, especially in components such as cooling coils and evaporators, which are prone to accumulate condensed water and breed microorganisms.

[0155] Since the seat materials and carpet materials in the vehicle are mostly knitted or leather, both of these materials are hygroscopic. When the humidity in the vehicle is greater than or equal to the first preset humidity, the seat and carpet of the vehicle are easy to absorb moisture, providing conditions for the growth of microorganisms.

[0156] Under this embodiment, when the humidity in the vehicle is greater than or equal to the first preset humidity, the locations where microorganisms may exist in the vehicle are effectively determined to be the vehicle air conditioner, the vehicle seats and the vehicle carpets, so as to subsequently remind the user to disinfect the vehicle air conditioner, carpets and seats.

[0157] In one possible implementation, when the humidity outside the vehicle is greater than or equal to the second preset humidity and the second duration is greater than or equal to the second preset duration, the target location is determined to be a closed component of the vehicle; wherein the closed component is used to prevent liquid or gas from leaking or intruding into the vehicle.

[0158] Among them, the closing components include sealing rings at the gap between the door and the body, sealing rings at the gap between the window and the body, and sealing rings at the gap between the engine hood and the body.

[0159] It should be understood that since the sealing ring is usually made of rubber or other elastic materials, the sealing ring is hygroscopic. When the humidity outside the vehicle is greater than or equal to the second preset humidity for a second duration greater than or equal to the second preset duration, the sealing ring easily absorbs moisture and becomes wet, thereby causing the presence of microorganisms.

[0160] In this embodiment, when the humidity outside the vehicle is greater than or equal to the second preset humidity for a second duration that is greater than or equal to the second preset duration, the target location is determined to be a closed component of the vehicle, so as to subsequently remind the user to disinfect the closed component of the vehicle.

[0161] In a possible implementation manner, when the window opening time is less than or equal to the second preset time, the target position is determined to be a carpet of the vehicle and a seat of the vehicle.

[0162] It should be understood that when the window opening time is less than or equal to the second preset time, the air in the vehicle is not circulated, and the carpets and seats in the vehicle are more likely to absorb moisture, so the carpets and seats in the vehicle are more likely to breed microorganisms.

[0163] In this embodiment, when the window opening time is less than or equal to the second preset time, the target position is determined to be the carpet and the seat of the vehicle, so as to subsequently remind the user to disinfect the carpet and the seat of the vehicle.

[0164] In a possible implementation, when the parking time of the vehicle is greater than or equal to the first preset time, the target position is determined to be the vehicle air conditioner.

[0165] It should be understood that if the vehicle is parked for a long time, water vapor and dirt in the air will enter the vehicle air conditioner and adhere to the evaporator, ventilation duct and other components. These dirt will not only cause microorganisms to grow in the vehicle air conditioner, but also hinder air circulation, making the microorganisms grow faster. In this case, the target location is determined to be the vehicle air conditioner.

[0166] In this embodiment, when the parking time of the vehicle is greater than or equal to the first preset time, the target location is determined to be the vehicle air conditioner, so as to subsequently remind the user to disinfect the vehicle air conditioner.

[0167] Step 304: trigger prompt information for the target location based on the at least one target location.

[0168] In a possible implementation, the urgency level corresponding to the prompt information is determined based on a third duration of the presence of the microorganisms at the at least one target location; and based on the urgency level corresponding to the prompt information, the prompt information for the target location is triggered.

[0169] It should be understood that if the third duration of the presence of microorganisms at the target location is longer, more microorganisms will grow, thus causing a greater impact on the user's health. Therefore, the longer the third duration, the higher the urgency of the prompt information.

[0170] In this embodiment, the urgency of the prompt information is determined based on the third duration, and the prompt information is triggered based on the urgency, so that the user can be prompted more quickly and accurately about the location where the microorganisms exist.

[0171] In order to explain the above implementation in more detail, the above implementation is explained in several parts below.

[0172] The first part describes the content of determining the urgency level corresponding to the prompt information based on the third duration of the presence of microorganisms at the at least one target location.

[0173] In a possible implementation, when the duration for which the microorganisms exist at the at least one target location is less than a third preset duration, it is determined that the urgency level corresponding to the prompt information is the first level.

[0174] The third preset time length is automatically determined by the vehicle computer, or is set by a technician according to actual conditions, and this embodiment of the present application does not limit this. For example, the third preset time length may be 3 hours.

[0175] It should be understood that the duration of the presence of microorganisms at the at least one target location being less than the third preset duration indicates that the duration of the presence of microorganisms in the vehicle is shorter, and at this time there are fewer microorganisms in the vehicle, so the urgency level corresponding to the prompt information is determined to be the first level.

[0176] For example, when the duration of microorganisms existing at the at least one target location is 2 hours, it is determined that there are fewer microorganisms in the vehicle, so the urgency level corresponding to the prompt information is determined to be the first level, thereby prompting the user that microorganisms exist at the at least one target location.

[0177] In this embodiment, when the duration of the presence of microorganisms at the at least one target location is less than the third preset duration, the urgency level corresponding to the prompt information is determined to be the first level, that is, the urgency level of the prompt information is determined based on the number of microorganisms present in the vehicle, so as to facilitate subsequent targeted prompting of the user of the presence of microorganisms at the target location.

[0178] In a possible implementation, when the duration of existence of the microorganisms at the at least one target location is greater than or equal to the third preset duration, the urgency level corresponding to the prompt information is determined to be a second level, and the second level of urgency is greater than the first level.

[0179] The second degree of urgency is greater than the first degree.

[0180] It should be understood that the duration of the presence of microorganisms at at least one target location being greater than or equal to the third preset duration indicates that the presence of microorganisms in the vehicle is longer and there are more microorganisms in the vehicle at this time, so the urgency level corresponding to the prompt information is determined to be the second level.

[0181] For example, when the duration of microorganisms existing at the at least one target location is 3 hours, it is determined that there are many microorganisms in the vehicle, so the urgency level corresponding to the prompt information is determined to be the second level, thereby prompting the user that microorganisms exist at the at least one target location.

[0182] Under this embodiment, when the duration of the presence of microorganisms at the at least one target location is greater than or equal to the third preset duration, the urgency corresponding to the prompt information is determined to be the second level, that is, the urgency of the prompt information is determined based on the number of microorganisms present in the vehicle, so as to facilitate subsequent targeted prompting of the user of the presence of microorganisms at the target location.

[0183] The second part describes the content of the prompt information for the target location that is triggered based on the urgency level corresponding to the prompt information.

[0184] It should be understood that for different urgency levels corresponding to the prompt information, the user should be prompted in different ways that microorganisms exist at the target location.

[0185] In a possible implementation manner, when the urgency level corresponding to the prompt information is the first level, generating the prompt text and the prompt audio; displaying the prompt text and broadcasting the prompt audio;

[0186] The prompt information for the target location includes prompt text and reminder audio.

[0187] In some embodiments, a prompt text is displayed on a dashboard or an in-vehicle screen of the vehicle; and the prompt audio is broadcast on the in-vehicle audio system of the vehicle.

[0188] For example, if the target location includes the vehicle's air conditioner and seats, the prompt text or prompt audio may be "There are microorganisms on the vehicle's air conditioner and driver's seat, please disinfect them in time."

[0189] Under this embodiment, when the urgency level corresponding to the prompt information is the first level, continuing to use the vehicle is likely to affect the user's health, and there are fewer microorganisms in the vehicle. Therefore, the user is promptly reminded through prompt text or prompt audio that there are microorganisms at the target location to avoid the microorganisms in the vehicle causing an allergic reaction in the user.

[0190] In a possible implementation, the prompt text and the prompt audio are stored in a prompt storage medium.

[0191] For example, the alarm prompt storage medium includes a USB flash drive, a mobile hard disk, a magnetic disk or an optical disk.

[0192] In this implementation, the prompt text and the prompt audio are stored in a prompt storage medium, so that the vehicle computer can read the prompt text and the prompt audio.

[0193] In a possible implementation, when the urgency level corresponding to the prompt information is the second level, the target location is displayed on the vehicle model on the display screen of the vehicle to prompt the user to disinfect the target location; wherein the vehicle model is a model used to describe the vehicle's own state and behavior.

[0194] Among them, the vehicle's own vehicle model is a three-dimensional digital model of the vehicle on the vehicle computer.

[0195] It should be understood that since the self-vehicle model can accurately display the various components of the vehicle, the target location where microorganisms exist in the vehicle can be displayed in real time based on the self-vehicle model to prompt the user to disinfect the target location.

[0196] In some embodiments, when the urgency level corresponding to the prompt information is the second level and the target location includes a vehicle air conditioner, the vehicle air conditioner is marked on the vehicle model on the display screen of the vehicle to prompt the user that microorganisms exist in the vehicle air conditioner.

[0197] In this embodiment, when the urgency level corresponding to the prompt information is the second level, continuing to use the vehicle is likely to affect the user's health, and there are many microorganisms in the vehicle. Therefore, the vehicle model is used to promptly remind the user that there are microorganisms at the target location, so as to prompt the user to disinfect the target location in time.

[0198] Step 305: Based on the urgency level corresponding to the prompt information, control the vehicle to remove microorganisms in the vehicle.

[0199] In a possible implementation, when the urgency level corresponding to the prompt information is the first level, the windows of the vehicle are controlled to open to a preset opening so that the vehicle is ventilated.

[0200] The preset opening is automatically determined by the vehicle computer or set by the technician according to the actual situation, which is not limited in the embodiment of the present application. For example, the preset opening is 35%.

[0201] It should be understood that the urgency level corresponding to the prompt information is the first level, which means that there are microorganisms in the vehicle but the number of microorganisms is small. Therefore, controlling the windows of the vehicle to open to a preset opening can eliminate the microorganisms in the vehicle.

[0202] For example, when the urgency level corresponding to the prompt information is the first level, the windows of the vehicle are controlled to be opened to 35% so that the vehicle can be ventilated.

[0203] In a possible implementation, when the urgency level corresponding to the prompt information is the second level, a disinfection device of the vehicle is controlled to be turned on to disinfect the target location; wherein the disinfection device is used to eliminate microorganisms in the vehicle.

[0204] Among them, the vehicle's disinfection equipment includes high-temperature disinfection equipment, spray disinfection equipment, and ultraviolet disinfection equipment; among them, the high-temperature disinfection equipment can keep the interior of the vehicle at a high temperature to achieve the effect of high-temperature disinfection, the spray disinfection equipment can spray disinfectant liquid or gas to disinfect the interior of the vehicle, and the ultraviolet disinfection equipment can emit ultraviolet rays to disinfect the interior of the vehicle.

[0205] It should be understood that since the vehicle's disinfection equipment may cause irreversible damage to the user or the animal, it is necessary to determine whether there are any living things in the vehicle before controlling the vehicle's disinfection equipment to start.

[0206] In some embodiments, it is determined whether there is a living thing in the vehicle. If there is no living thing in the vehicle, the disinfection equipment of the vehicle is controlled to turn on. If there is a living thing in the vehicle, the window of the vehicle is controlled to open to a preset opening.

[0207] In this implementation, when the urgency level corresponding to the prompt information is the second level, the disinfection device of the vehicle is controlled to start to disinfect the target location. That is, when the air quality in the vehicle is poor, the interior of the vehicle is disinfected in time to improve the air quality inside the vehicle.

[0208] The embodiment of the present application provides a method for prompting microorganisms in a vehicle, which can obtain any one of the air humidity parameters of the vehicle, the opening time of the vehicle component, and the parking time of the vehicle; wherein, the opening time of the vehicle component is the use time of the vehicle component after the vehicle is powered on, and the parking time is the single parking time after the vehicle is powered off; since the air humidity parameters, the opening time of the vehicle component, and the parking time of the vehicle will affect the generation of microorganisms in the vehicle, it is determined whether the vehicle has microorganisms based on any one of the air humidity parameters of the vehicle, the opening time of the vehicle component, and the parking time of the vehicle. In the case of detecting the presence of microorganisms in the vehicle, at least one target position in the vehicle is determined based on any one of the air humidity parameters of the vehicle, the opening time of the vehicle component, and the parking time of the vehicle, and the target position is the position where the microorganisms exist. In the case of the presence of microorganisms in the vehicle, continuing to use the vehicle will easily cause allergic reactions in the user and affect the user's health. Therefore, based on the at least one target position, a prompt information for the target position is triggered. Based on the urgency corresponding to the prompt information, the vehicle is controlled to eliminate the microorganisms in the vehicle. It not only effectively reminds users to quickly and accurately find the location where microorganisms are generated in the vehicle, but also can quickly disinfect the target location to prevent the microorganisms in the vehicle from causing harm to the user's body.

[0209] Figure 4 It is a structural schematic diagram of a device for prompting microorganisms in a vehicle provided in an embodiment of the present application.

[0210] For example, Figure 4 As shown, the device 400 includes:

[0211] The acquisition module 401 is used to acquire any one of the air humidity parameter of the vehicle, the activation time of the vehicle component and the parking time of the vehicle; wherein the activation time of the vehicle component is the usage time of the vehicle component after the vehicle is powered on, and the parking time is the single parking time of the vehicle after the vehicle is powered off;

[0212] A determination module 402 is used to determine at least one target location in the vehicle based on any one of an air humidity parameter, a duration of vehicle component activation, and a vehicle parking duration when the presence of microorganisms in the vehicle is detected, the target location being a location where the microorganisms exist;

[0213] The trigger module 403 is used to trigger prompt information for the target location based on at least one target location, where the prompt information is used to prompt that microorganisms exist at the target location.

[0214] In a possible implementation manner, the device 400 further includes:

[0215] A microorganism determination module is used to determine whether a first duration during which the humidity in the vehicle is greater than or equal to the first preset humidity is greater than or equal to the first preset duration when the humidity in the vehicle is greater than or equal to the first preset humidity;

[0216] A microorganism determination module is used to determine that microorganisms exist in the vehicle when the first duration of the humidity in the vehicle being greater than or equal to the first preset humidity is greater than or equal to the first preset duration; and to determine that microorganisms do not exist in the vehicle when the first duration of the humidity in the vehicle being greater than or equal to the first preset humidity is less than the first preset duration;

[0217] A microbial determination module is used to determine whether the window opening time of the vehicle is less than or equal to the second preset time when the humidity outside the vehicle is greater than or equal to the second preset humidity; or determine whether the parking time of the vehicle is greater than or equal to the third preset time;

[0218] A microorganism determination module is used to determine that microorganisms exist in the vehicle when the window opening time is less than or equal to a second preset time; and to determine that microorganisms do not exist in the vehicle when the window opening time is greater than the second preset time; wherein the window opening time is the accumulated window opening time after the vehicle is powered on;

[0219] The microorganism determination module is used to determine the presence of microorganisms in the vehicle when the parking time of the vehicle is greater than or equal to a third preset time; and to determine the absence of microorganisms in the vehicle when the parking time of the vehicle is less than the third preset time.

[0220] In a possible implementation manner, the device 400 further includes:

[0221] The determination module 402 is used to determine that the target position is the vehicle air conditioner of the vehicle, the seat of the vehicle and the carpet of the vehicle when the humidity in the vehicle is greater than or equal to the first preset humidity;

[0222] The determination module 402 is used to determine that the target location is a closed component of the vehicle when the humidity outside the vehicle is greater than or equal to the second preset humidity and the second duration is greater than or equal to the second preset duration; wherein the closed component is used to prevent liquid or gas from leaking or intruding into the vehicle;

[0223] A determination module 402, configured to determine that the target position is a carpet of the vehicle and a seat of the vehicle when the window opening time is less than or equal to a second preset time;

[0224] The determination module 402 is used to determine that the target position is the vehicle air conditioner when the parking time of the vehicle is greater than or equal to a first preset time.

[0225] In a possible implementation manner, the device 400 further includes:

[0226] An urgency determination module, configured to determine an urgency corresponding to the prompt information based on a third duration of the presence of the microorganisms at the at least one target location;

[0227] The trigger module 403 is used to trigger the prompt information for the target location based on the urgency level corresponding to the prompt information.

[0228] In a possible implementation manner, the device 400 further includes:

[0229] An urgency determination module, configured to determine that the urgency corresponding to the prompt information is a first degree if the duration of the presence of the microorganisms at the at least one target location is less than a third preset duration;

[0230] The urgency determination module is used to determine that the urgency corresponding to the prompt information is a second degree when the duration of the presence of microorganisms in the at least one target location is greater than or equal to a third preset duration, and the second degree of urgency is greater than the first degree.

[0231] In a possible implementation manner, the device 400 further includes:

[0232] The trigger module 403 is used to generate the prompt text and the prompt audio when the urgency level corresponding to the prompt information is the first level; display the prompt text and broadcast the prompt audio;

[0233] The trigger module 403 is used to display the target location on the vehicle model on the display screen of the vehicle when the urgency level corresponding to the prompt information is the second level, so as to prompt the user to disinfect the target location; wherein the vehicle model is a model used to describe the vehicle's own state and behavior.

[0234] In a possible implementation manner, the device 400 further includes:

[0235] a control module, configured to control the window of the vehicle to open to a preset opening degree so as to ventilate the vehicle when the urgency level corresponding to the prompt information is a first level;

[0236] The control module is used to control the disinfection equipment of the vehicle to start up to disinfect the target location when the urgency level corresponding to the prompt information is the second level; wherein the disinfection equipment is used to eliminate microorganisms in the vehicle.

[0237] Figure 5 It is a structural schematic diagram of a vehicle provided in an embodiment of the present application.

[0238] For example, Figure 5 As shown, the vehicle 500 includes: a memory 501 and a processor 502, wherein the memory 501 stores an executable program code 503, and the processor 502 is used to call and execute the executable program code 503 to perform a method for prompting microorganisms in the vehicle.

[0239] In addition, an embodiment of the present application also protects a device, which may include a memory and a processor, wherein the memory stores executable program code, and the processor is used to call and execute the executable program code to execute a method for prompting microorganisms in a vehicle provided in an embodiment of the present application.

[0240] In this embodiment, the functional modules of the device can be divided according to the above method example. For example, each functional module can be corresponded, or two or more functions can be integrated into one processing module. The above integrated module can be implemented in the form of hardware. It should be noted that the division of modules in this embodiment is schematic and is only a logical function division. There may be other division methods in actual implementation.

[0241] In the case of dividing each functional module according to each function, the device may also include a microorganism determination module, an urgency determination module, a control module, etc. It should be noted that all relevant contents of each step involved in the above method embodiment can be referred to the functional description of the corresponding functional module, which will not be repeated here.

[0242] It should be understood that the device provided in this embodiment is used to execute the above-mentioned method for prompting microorganisms in a vehicle, and thus can achieve the same effect as the above-mentioned implementation method.

[0243] In the case of an integrated unit, the device may include a processing module and a storage module. When the device is applied to a vehicle, the processing module may be used to control and manage the actions of the vehicle. The storage module may be used to support the vehicle in executing related program codes, etc.

[0244] The processing module may be a processor or a controller, which may implement or execute various exemplary logic blocks, modules and circuits shown in conjunction with the disclosure of the present application. The processor may also be a combination that implements computing functions, such as a combination of one or more microprocessors, a combination of digital signal processing (DSP) and a microprocessor, etc. The storage module may be a memory.

[0245] In addition, the device provided in the embodiments of the present application may specifically be a chip, a component or a module, and the chip may include a connected processor and a memory; wherein the memory is used to store instructions, and when the processor calls and executes the instructions, the chip can execute a method for prompting microorganisms in a vehicle provided in the above embodiments.

[0246] This embodiment also provides a computer-readable storage medium, in which a computer program code is stored. When the computer program code is executed on a computer, the computer executes the above-mentioned related method steps to implement a method for prompting microorganisms in a vehicle provided in the above embodiment.

[0247] This embodiment also provides a computer program product. When the computer program product is run on a computer, the computer is caused to execute the above-mentioned related steps to implement a method for prompting microorganisms in a vehicle provided in the above embodiment.

[0248] Among them, the device, computer-readable storage medium, computer program product or chip provided in this embodiment is used to execute the corresponding method provided above. Therefore, the beneficial effects that can be achieved can refer to the beneficial effects in the corresponding method provided above, and will not be repeated here.

[0249] Through the description of the above implementation methods, technical personnel in the relevant field can understand that for the convenience and simplicity of description, only the division of the above-mentioned functional modules is used as an example. In actual applications, the above-mentioned functions can be assigned to different functional modules as needed, that is, the internal structure of the device can be divided into different functional modules to complete all or part of the functions described above.

[0250] In the embodiments provided in the present application, it should be understood that the disclosed devices and methods can be implemented in other ways. For example, the device embodiments described above are only schematic, for example, the division of modules or units is only a logical function division, and there may be other division methods in actual implementation, such as multiple units or components can be combined or integrated into another device, or some features can be ignored or not executed. Another point is that the mutual coupling or direct coupling or communication connection shown or discussed can be through some interfaces, indirect coupling or communication connection of devices or units, which can be electrical, mechanical or other forms.

[0251] The above contents are only specific implementation methods of the present application, but the protection scope of the present application is not limited thereto. Any technician familiar with the technical field can easily think of changes or substitutions within the technical scope disclosed in the present application, which should be included in the protection scope of the present application. Therefore, the protection scope of the present application should be based on the protection scope of the claims.

Claims

1. A method for detecting microorganisms in a vehicle, characterized in that: The method comprises: Obtain any one of the air humidity parameter of the vehicle, the activation time of the vehicle component, and the parking time of the vehicle; wherein the activation time of the vehicle component is the usage time of the vehicle component after the vehicle is powered on, and the parking time is the single parking time of the vehicle after the vehicle is powered off; In the case where the presence of microorganisms is detected in the vehicle, determining at least one target location in the vehicle based on any one of the air humidity parameter, the duration of the vehicle component being turned on, and the duration of the vehicle being parked, the target location being a location where the microorganisms exist; Based on the at least one target location, prompt information for the target location is triggered, where the prompt information is used to prompt that microorganisms exist at the target location.

2. The method according to claim 1, characterized in that: The air humidity parameter includes the humidity inside the vehicle and the humidity outside the vehicle, the opening time of the vehicle component includes the opening time of the vehicle window, and before determining at least one target position in the vehicle based on any one of the air humidity parameter, the opening time of the vehicle component and the parking time of the vehicle, the method includes: In a case where the humidity in the vehicle is greater than or equal to a first preset humidity, determining whether a first duration during which the humidity in the vehicle is greater than or equal to the first preset humidity is greater than or equal to the first preset duration; When the first duration during which the humidity in the vehicle is greater than or equal to the first preset humidity is greater than or equal to the first preset duration, it is determined that microorganisms exist in the vehicle; when the first duration during which the humidity in the vehicle is greater than or equal to the first preset humidity is less than the first preset duration, it is determined that no microorganisms exist in the vehicle; When the humidity outside the vehicle is greater than or equal to a second preset humidity, determining whether the window opening time of the vehicle is less than or equal to the second preset time; or determining whether the parking time of the vehicle is greater than or equal to a third preset time; When the window opening time is less than or equal to the second preset time, it is determined that there are microorganisms in the vehicle; when the window opening time is greater than the second preset time, it is determined that there are no microorganisms in the vehicle; wherein the window opening time is the accumulated window opening time after the vehicle is powered on; Alternatively, when the parking time of the vehicle is greater than or equal to a third preset time, it is determined that microorganisms exist in the vehicle; when the parking time of the vehicle is less than the third preset time, it is determined that no microorganisms exist in the vehicle.

3. The method according to claim 1, characterized in that The air humidity parameter includes the humidity inside the vehicle and the humidity outside the vehicle, the opening time of the vehicle component includes the opening time of the vehicle window, and determining at least one target position in the vehicle based on any one of the air humidity parameter, the opening time of the vehicle component and the parking time of the vehicle includes: When the humidity in the vehicle is greater than or equal to a first preset humidity, determining the target position to be an onboard air conditioner of the vehicle, a seat of the vehicle, and a carpet of the vehicle; When the second duration of the humidity outside the vehicle being greater than or equal to the second preset humidity is greater than or equal to the second preset duration, determining that the target position is a closed component of the vehicle; wherein the closed component is used to prevent liquid or gas from leaking or intruding into the vehicle; When the window opening time is less than or equal to a second preset time, determining the target position to be a carpet of the vehicle and a seat of the vehicle; When the parking time of the vehicle is greater than or equal to a first preset time, the target position is determined to be the vehicle air conditioner.

4. The method according to claim 1, characterized in that The triggering of prompt information for the target location based on the at least one target location includes: Determining the urgency level corresponding to the prompt information based on a third duration of the presence of microorganisms in the at least one target location; Based on the urgency level corresponding to the prompt information, the prompt information for the target location is triggered.

5. The method according to claim 4, characterized in that The determining the urgency level corresponding to the prompt information based on the third duration of the presence of the microorganisms at the at least one target location comprises: When the duration of the existence of the microorganisms at the at least one target location is less than a third preset duration, determining that the urgency level corresponding to the prompt information is a first level; When the duration of the presence of microorganisms in the at least one target location is greater than or equal to the third preset duration, the urgency level corresponding to the prompt information is determined to be a second level, and the urgency level of the second level is greater than the first level.

6. The method according to claim 4, characterized in that The triggering of the prompt information for the target location based on the urgency level corresponding to the prompt information includes: When the urgency level corresponding to the prompt information is the first level, generating the prompt text and the prompt audio; displaying the prompt text and broadcasting the prompt audio; When the urgency level corresponding to the prompt information is the second level, the target location is displayed on the vehicle model on the display screen of the vehicle to prompt the user to disinfect the target location; wherein the vehicle model is a model used to describe the vehicle's own state and behavior.

7. The method according to claim 6, characterized in that The method further comprises: When the urgency level corresponding to the prompt information is the first level, controlling the window of the vehicle to open to a preset opening so that the vehicle is ventilated; When the urgency level corresponding to the prompt information is the second level, a disinfection device of the vehicle is controlled to start so as to disinfect the target location; wherein the disinfection device is used to eliminate microorganisms in the vehicle.

8. A device for indicating microorganisms in a vehicle, characterized in that: The device comprises: An acquisition module, used to acquire any one of the air humidity parameter of the vehicle, the activation time of the vehicle component and the parking time of the vehicle; wherein the activation time of the vehicle component is the usage time of the vehicle component after the vehicle is powered on, and the parking time is the single parking time of the vehicle after the vehicle is powered off; a determination module, configured to determine, when the presence of microorganisms in the vehicle is detected, at least one target position in the vehicle based on any one of the air humidity parameter, the duration of the vehicle component being turned on, and the duration of the vehicle being parked, the target position being a position where the microorganisms exist; The trigger module is used to trigger prompt information for the target location based on the at least one target location, wherein the prompt information is used to prompt that microorganisms exist at the target location.

9. A vehicle, characterized in that: The vehicle comprises: A memory for storing executable program codes; A processor, configured to call and run the executable program code from the memory, so that the vehicle executes the method according to any one of claims 1 to 7.

10. A computer-readable storage medium, characterized in that: The computer-readable storage medium stores a computer program, and when the computer program is executed, the method according to any one of claims 1 to 7 is implemented.

Citation Information

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