A remote control method, system, and intelligent device for vehicle air purification.

CN117284051BActive Publication Date: 2026-09-18CHONGQING CHANGAN TECH CO LTD
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Patent Information

Application Number
CN202311381594.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-10-23
Publication Date
2026-09-18
Estimated Expiration
2043-10-23

AI Technical Summary

Technical Problem

[0005]本申请提供了一种车辆空气净化的远程控制方法、系统及智能设备,以解决现有技术中车辆内利用空气净化器进行空气净化时,耗电量大,且无法短时间完成车辆内空气净化的缺陷

Benefits of technology

[0065] This embodiment of the invention discloses a remote control method, system, and intelligent device for vehicle air purification. It acquires real-time weather information and parking space information of the target vehicle's location; determines whether the real-time weather information meets the conditions for remote control air purification of the target vehicle; if the real-time weather information meets the conditions, it locates a target parking space based on the parking space information, controls the target vehicle to park in the target parking space, and purifies the in-vehicle air using an external circulation method. This method utilizes weather information from the internet and parking space information to achieve remote air purification control of the vehicle. It is convenient to operate, saves energy, and can quickly improve the air quality inside the vehicle, thus meeting users' needs for more intelligent, convenient, and economical vehicle air purification operation.

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Abstract

This invention discloses a remote control method, system, and intelligent device for vehicle air purification. It acquires real-time weather information and parking space information of the target vehicle's location; determines whether the real-time weather information meets the remote control air purification conditions for the target vehicle; if the real-time weather information meets the conditions, it locates a target parking space based on the parking space information, controls the target vehicle to park in the target parking space, and purifies the in-vehicle air using an external circulation method. This embodiment utilizes weather information from the internet and parking space information to achieve remote air purification control of vehicles. It is convenient to operate, saves energy, and can quickly improve the air quality inside the vehicle, thus meeting users' needs for smarter, more convenient, and more economical vehicle air purification operation.
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Description

Technical Field

[0001] This application relates to the field of vehicle control technology, specifically to a remote control method, system, and intelligent device for vehicle air purification. Background Technology

[0002] Vehicles are widely used as a convenient means of transportation. When users are using a vehicle, the air quality inside the vehicle has a significant impact on human health, especially during long-term driving, where poor air quality can potentially harm health.

[0003] Currently, the common method for purifying and regulating the air quality inside a vehicle is to install an air purifier. The air purifier is used to purify the air inside the vehicle to meet human health requirements. However, air purifiers consume a lot of electricity and cannot complete the air purification in a short time, thus failing to meet users' needs for low energy consumption and high efficiency in vehicle air purification.

[0004] Therefore, existing technologies still need to be improved and enhanced. Summary of the Invention

[0005] This application provides a remote control method, system, and intelligent device for vehicle air purification, to solve the shortcomings of existing technologies that use air purifiers in vehicles, such as high power consumption and inability to complete vehicle air purification in a short time.

[0006] To achieve the above objectives, this application adopts the following technical solution:

[0007] The first aspect of this application provides a remote control method for vehicle air purification, comprising:

[0008] Obtain real-time weather information and parking space information for the target vehicle's location;

[0009] The system determines whether the real-time weather information meets the remote control air purification conditions for the target vehicle.

[0010] If the real-time weather information meets the remote control air purification conditions of the target vehicle, the target parking space is located according to the parking space information of the parking lot, the target vehicle is controlled to park in the target parking space, and the air inside the vehicle is purified in the form of external circulation.

[0011] Based on the aforementioned technical means, the remote control method for vehicle air purification provided in this application determines whether the conditions for remote control air purification are met based on the parking space information and weather conditions of the current vehicle location. If the conditions are met, the method controls the air inside the vehicle to be purified using external air circulation. Since the method provided in this embodiment utilizes the internal and external air circulation to purify the air inside the vehicle, it can save costs and quickly improve the air quality inside the vehicle, making it particularly suitable for vehicles with low air quality.

[0012] Optionally, in one embodiment of this application, the step of obtaining real-time weather information of the target vehicle's location and parking space information of the parking lot includes:

[0013] Locate the current position of the target vehicle and query real-time weather information based on the location information;

[0014] Send a request to the parking lot monitoring system to obtain parking space information, and receive the parking space information returned by the parking lot monitoring system.

[0015] Based on the above technical means, the method of this application embodiment can obtain the weather conditions of the vehicle's location through the network, and obtain the vacancy information of parking spaces by querying the parking situation of vehicles in the parking lot, thereby realizing remote control of the vehicle's air purification.

[0016] Optionally, in one embodiment of this application, the step of determining whether the remote-controlled air purification conditions of the target vehicle are met based on the obtained real-time weather information includes:

[0017] Determine whether the current weather is sunny based on the obtained real-time weather information;

[0018] If the current weather is sunny, then the conditions for remote-controlled air purification of the target vehicle are met.

[0019] Based on the above-mentioned technical means, the weather conditions are judged in this embodiment of the application. Only when the weather is sunny and there are vacant parking spaces on the ground in the parking lot, the vehicle is automatically parked in the ground parking space, and the air is purified by controlling the ventilation inside and outside. Therefore, the method of this embodiment can remotely purify the air of the vehicle by using weather information on the network and parking space information of the smart parking lot.

[0020] Optionally, in one embodiment of this application, the step of finding a target parking space based on the parking space information of the parking lot includes:

[0021] Determine if there are any available above-ground parking spaces based on the parking information;

[0022] If available, the target parking space will be the above-ground parking space;

[0023] Otherwise, determine whether there are any vacant underground parking spaces based on the parking space information;

[0024] If there is a vacant underground parking space, the target vehicle will be controlled to drive to the underground parking space automatically, and the vehicle parking information of the above-ground parking space will be obtained in real time; if there is a vacant above-ground parking space, the target vehicle will be controlled to park automatically in the above-ground parking space, and the above-ground parking space will be used as the target parking space.

[0025] Based on the aforementioned technical means, this application embodiment utilizes the communication connection between the control device and the intelligent control system of the parking lot to obtain the vacancy status of each parking space in the parking lot from the intelligent control system, thereby determining whether there are any vacant above-ground parking spaces, and thus whether the location meets the conditions for remote control air purification. If there are no vacant above-ground parking spaces in the current parking lot, the vehicle is parked in an underground parking space; when an above-ground parking space becomes vacant, the vehicle is parked in an above-ground parking space to meet the conditions for air purification.

[0026] Optionally, in one embodiment of this application, the step of controlling the target vehicle to park in the target parking space and purifying the in-vehicle air in the form of external circulation includes:

[0027] Control the target vehicle to automatically park from its current location to the target parking space;

[0028] Control the vehicle to open windows and / or sunroof to purify the air inside the vehicle using external air circulation.

[0029] Based on the above-mentioned technical means, the features disclosed in the embodiments of this application can enable remote control of the vehicle to a ground parking space and control the vehicle to automatically open the windows and / or sunroof to achieve air purification inside the vehicle.

[0030] Optionally, in one embodiment of this application, the step of controlling the target vehicle to automatically park from its current location to the target parking space includes:

[0031] Create a navigation map based on the current location of the target vehicle and the location information of the target parking space;

[0032] Using the navigation map, control the target vehicle to drive from its current location to the target parking space.

[0033] Based on the aforementioned technical means, this application embodiment can also realize remote control of vehicle parking, so that the vehicle can perform air purification in a suitable location. Since the current location of the vehicle may not meet the requirements for vehicle air purification, it is necessary to find a suitable parking space for the vehicle according to the needs to facilitate air purification. In addition, if the current location of the vehicle is not the ideal target parking space, a navigation map can be created to automatically park the vehicle from the current location to the ideal target parking space, realizing automatic parking of the vehicle and providing convenience for users.

[0034] Optionally, in one embodiment of this application, the step of controlling the vehicle to open the windows and / or sunroof to purify the air inside the vehicle via external air circulation includes:

[0035] Control the opening of the windows to a preset first area of ​​window gaps and / or the opening of the sunroof to a preset second area of ​​upturned openings, so as to purify the air inside the vehicle by circulating the air inside the vehicle with the air outside the vehicle.

[0036] Based on the above-mentioned technical means, in this embodiment of the application, the air circulation inside and outside the vehicle is achieved by simply opening the car window or sunroof, which facilitates the purification of the air inside the vehicle. In specific implementation, only the window gaps and the upturned opening of the sunroof of a preset area are opened, so as to achieve the purification of the air inside the vehicle while protecting the safety of the vehicle.

[0037] Optionally, in one embodiment of this application, the step of controlling the vehicle to open the windows or sunroof to purify the air inside the vehicle via external air circulation further includes:

[0038] Send a command to query the air quality inside the vehicle and obtain the air quality information fed back by the air quality detector inside the target vehicle;

[0039] Based on the air quality information, the air quality inside the target vehicle is controlled within a preset range.

[0040] Based on the above technical means, this embodiment can also control the air purification status inside the vehicle according to the acquired air quality information inside the vehicle, so that when the air quality inside the vehicle meets the requirements, the windows and sunroof can be closed in time. When the air quality inside the vehicle does not meet the requirements, the air circulation inside and outside can be strengthened, or other auxiliary methods can be used to keep the air quality inside the vehicle within a preset range.

[0041] A second aspect of this application provides a remote control system for vehicle air purification, comprising:

[0042] The information acquisition module is used to acquire real-time weather information and parking space information of the target vehicle's location.

[0043] The condition judgment module is used to determine whether the remote control air purification conditions of the target vehicle are met based on the real-time weather information obtained.

[0044] The purification control module is used to find the target parking space according to the parking space information of the parking lot if the real-time weather information meets the remote control air purification conditions of the target vehicle, control the target vehicle to park in the target parking space, and purify the air in the vehicle in the form of external circulation.

[0045] Optionally, the information acquisition module includes: a weather query unit and a parking space information query unit;

[0046] The weather query unit is used to locate the current location of the target vehicle and query real-time weather information based on the location information.

[0047] The parking space information query unit is used to send a request to the parking lot monitoring system to obtain parking space information, and to receive the parking space information returned by the parking lot monitoring system.

[0048] Optionally, the condition judgment module includes: a weather judgment unit;

[0049] The weather judgment unit is used to determine whether the current weather is sunny based on the real-time weather information obtained. If the current weather is sunny, it meets the remote control air purification conditions of the target vehicle.

[0050] Optionally, the parking control unit includes: a parking control subunit and a temporary parking control subunit;

[0051] The parking control unit is used to determine whether there are any vacant above-ground parking spaces based on parking space information; if so, it controls the target vehicle to park in the target parking space.

[0052] The temporary parking control unit is used to determine whether there are vacant underground parking spaces when there are no vacant above-ground parking spaces in the parking lot; if there are vacant underground parking spaces, it controls the target vehicle to automatically drive to the underground parking space and obtains the vehicle parking information of the above-ground parking space in real time; if there are vacant above-ground parking spaces, it controls the target vehicle to automatically park to the above-ground parking space and uses the above-ground parking space as the target parking space.

[0053] Optionally, the purification control module includes: a parking unit and a purification unit;

[0054] The parking unit is used to control the target vehicle to automatically park from its current location to the target parking space;

[0055] The purification unit is used to control the opening of the vehicle windows and / or sunroof to purify the air inside the vehicle through external circulation.

[0056] Optionally, the parking unit includes: a parking control subunit;

[0057] The parking control subunit is used to create a navigation map based on the current location of the target vehicle and the location information of the target parking space.

[0058] Using the navigation map, control the target vehicle to drive from its current location to the target parking space.

[0059] Optionally, the purification unit includes: an external circulation control subunit;

[0060] The external circulation control subunit is used to control the opening of the window to a preset first area and / or the opening of the sunroof to a preset second area, so as to purify the air inside the vehicle by circulating the air inside the vehicle with the air outside the vehicle.

[0061] Optionally, the purification unit further includes: a quality conditioning subunit;

[0062] The quality adjustment subunit is used to issue an air quality query command inside the vehicle, obtain air quality information fed back by the air quality detector inside the target vehicle, and control the air quality inside the target vehicle within a preset range based on the air quality information.

[0063] A third aspect of this application provides an intelligent device, comprising: a memory, a processor, and a remote control program for vehicle air purification stored in the memory and executable on the processor. When the processor executes the remote control program for vehicle air purification, it implements the steps of the remote control method for vehicle air purification.

[0064] The beneficial effects of this application are:

[0065] This embodiment of the invention discloses a remote control method, system, and intelligent device for vehicle air purification. It acquires real-time weather information and parking space information of the target vehicle's location; determines whether the real-time weather information meets the conditions for remote control air purification of the target vehicle; if the real-time weather information meets the conditions, it locates a target parking space based on the parking space information, controls the target vehicle to park in the target parking space, and purifies the in-vehicle air using an external circulation method. This method utilizes weather information from the internet and parking space information to achieve remote air purification control of the vehicle. It is convenient to operate, saves energy, and can quickly improve the air quality inside the vehicle, thus meeting users' needs for more intelligent, convenient, and economical vehicle air purification operation. Attached Figure Description

[0066] The above and / or additional aspects and advantages of this application will become apparent and readily understood from the following description of the embodiments taken in conjunction with the accompanying drawings, wherein:

[0067] Figure 1 This is a flowchart illustrating the steps of the remote control method for vehicle air purification according to this application;

[0068] Figure 2 This is a schematic diagram illustrating the principle of the remote control method for vehicle air purification in this application.

[0069] Figure 3 A flowchart illustrating the steps of a specific application embodiment of the remote control method for vehicle air purification according to this application;

[0070] Figure 4 This is a flowchart of the steps for recalling vehicles in the remote control method for vehicle air purification according to this application;

[0071] Figure 5 This is a schematic diagram of the remote control system for vehicle air purification in the embodiments of this application.

[0072] Figure 6 This is a structural principle block diagram of the smart device provided in the embodiments of this application. Detailed Implementation

[0073] The embodiments of this application are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this application, and should not be construed as limiting this application.

[0074] Since the quality of air inside a vehicle has a certain impact on the health of passengers, whether a vehicle can intelligently purify its internal air has become an evaluation standard for the level of vehicle intelligence.

[0075] Currently, vehicle air purification is generally achieved by installing an internal air purifier. However, air purifiers consume a lot of electricity and cannot quickly improve air quality. Furthermore, the filters of air purifiers need to be replaced or cleaned periodically, which increases costs and causes inconvenience to users.

[0076] Existing technology also discloses a method for improving in-vehicle air quality. This method involves a program that detects the position of the vent valve until it is detected as being in recirculation mode, at which point it checks the vehicle's power supply status. The duration of the OFF position is only timed if the power supply is in the OFF position. If the vehicle is parked for an extended period, the vent valve is switched to external recirculation mode; if the OFF position is only short, the timer stops, and the program returns to detecting the power supply status. This method addresses the problem of deteriorating in-vehicle air quality caused by poor air circulation during prolonged parking. Additionally, existing technology discloses an in-vehicle air quality management method. By detecting in-vehicle air quality, if it does not meet a first preset standard, air purification is initiated to prevent air pollution and improve in-vehicle air quality. Both of these methods can achieve air purification, but they are not effective for quickly improving in-vehicle air quality, especially in new cars that require rapid and prolonged air purification, given poor air quality.

[0077] To overcome the problem of the aforementioned technologies' inability to quickly improve in-vehicle air quality, this embodiment provides a remote control method, system, and intelligent device for vehicle air purification. It determines whether air purification conditions are met by judging the weather conditions at the vehicle's current location and the availability of a suitable parking space. If the weather and parking space are suitable, the target vehicle is remotely controlled to perform in-vehicle air purification. This embodiment's method is convenient and easy to implement. Because in-vehicle air purification is based on the air circulation inside and outside the vehicle, it saves costs. Furthermore, it can utilize parking time for air purification, enabling long-term purification. Remote control also allows for on-demand in-vehicle air purification as needed, providing flexibility and enhancing vehicle intelligence while offering convenience for users.

[0078] The following description, in conjunction with the accompanying drawings, provides a more detailed explanation of a remote control method, system, and intelligent device for vehicle air purification in this embodiment.

[0079] The first aspect of this application provides a remote control method for vehicle air purification, such as... Figure 1 As shown, the method includes the following steps:

[0080] Step S1: Obtain real-time weather information and parking space information of the target vehicle's location.

[0081] After a user uses the vehicle, they can park it in a parking lot as needed. When the user needs to turn on the air purification in the vehicle, the system first obtains the weather information of the target vehicle's location and the parking space information in the parking lot. Based on the above information, it determines whether it is appropriate to perform the air purification steps in the vehicle.

[0082] Specifically, the method in this embodiment can utilize a smart device to remotely control vehicle air purification. In practical applications, the smart device can interact with the vehicle and the parking lot monitoring system to achieve relevant control over the air purification inside the vehicle.

[0083] In detail, this smart device can be a mobile phone, computer, or smart wearable device, such as a smartwatch. It establishes a communication connection with the vehicle's control system to send control signals and receive execution status information from the control system. The smart device also establishes a communication connection with the parking lot's monitoring system to obtain the status information of each parking space, thus determining whether the target parking space is vacant. The smart device can also control the vehicle's air purification system by installing an application, enabling it to send vehicle control signals, request parking space information, and display the vehicle's current air quality.

[0084] In one implementation, the step of obtaining real-time weather information and parking space information of the target vehicle's location in this step includes:

[0085] Locate the current position of the target vehicle and query real-time weather information based on the location information;

[0086] Send a request to the parking lot monitoring system to obtain parking space information, and receive the parking space information returned by the parking lot monitoring system.

[0087] Smart devices can locate the position of a target vehicle, obtain real-time weather information corresponding to the location, and send a request to the parking lot monitoring system to obtain parking space information, so as to obtain the current parking status of vehicles in the parking lot.

[0088] Step S2: Determine whether the real-time weather information meets the remote control air purification conditions of the target vehicle.

[0089] Once the weather information of the target vehicle's location and the parking space information of the current parking lot are obtained in step S1 above, it can be determined whether the vehicle is suitable for air purification based on the obtained information. Air purification can only be performed on the vehicle if certain conditions are met. Specifically, the conditions to be met are: the current weather is sunny and there are vacant ground parking spaces in the parking lot.

[0090] Therefore, this step also includes:

[0091] The system determines whether the current weather is sunny based on the obtained real-time weather information. If the current weather is sunny and there are vacant parking spaces on the ground in the parking lot, then the conditions for remote control air purification of the target vehicle are met.

[0092] Step S3: If the real-time weather information meets the remote control air purification conditions of the target vehicle, find the target parking space according to the parking space information of the parking lot, control the target vehicle to park in the target parking space, and purify the air in the vehicle in the form of external circulation.

[0093] If the weather is sunny at the current location of the vehicle and there are available parking spaces on the ground, it means that the current weather and location meet the conditions for air purification of the vehicle, and thus the remote purification control of the vehicle can be activated.

[0094] Specifically, in this step, we can determine whether each parking space on the ground is available based on the usage markers of each parking space in the parking space information or the usage status information of each parking space in the parking lot.

[0095] Because the parking lot's monitoring system monitors and manages vehicles entering and exiting the parking lot in real time, it can obtain the occupancy status of each parking space. Therefore, by establishing a communication connection between smart devices and the parking lot's monitoring system, the current occupancy status of each parking space can be obtained, making it easy to determine whether there are vacant above-ground parking spaces. Alternatively, smart devices can directly request information from the parking lot's monitoring system regarding the availability of above-ground parking spaces. The monitoring system then directly returns the query results to the smart devices, which can then determine whether the current weather conditions are suitable for performing air purification operations on the target vehicle based on the weather conditions and the query results returned by the monitoring system.

[0096] Furthermore, if there are no available parking spaces on the ground floor, the target vehicle can be temporarily parked in an underground parking space. When a parking space becomes available on the ground floor, the target vehicle will be automatically moved to the ground floor parking space to purify the air inside the vehicle. Specifically:

[0097] Determine if there are any available above-ground parking spaces based on the parking information;

[0098] If available, the target parking space will be the above-ground parking space;

[0099] Otherwise, determine whether there are any vacant underground parking spaces based on the parking space information;

[0100] If there is a vacant underground parking space, the target vehicle will be controlled to drive to the underground parking space automatically, and the vehicle parking information of the above-ground parking space will be obtained in real time; if there is a vacant above-ground parking space, the target vehicle will be controlled to park automatically in the above-ground parking space, and the above-ground parking space will be used as the target parking space.

[0101] If the current weather conditions meet the requirements for air purification and a parking space is found, the user can control the target vehicle to activate the air purification system via a smart device. This process generally includes two steps: first, the vehicle needs to be automatically parked in the target parking space; second, once the vehicle is parked, the air purification process begins.

[0102] First, if the vehicle is not currently parked in the target parking space, that is, not in a parking space on the ground, then the vehicle needs to be controlled to automatically park in the target parking space on the ground so that air purification can be carried out at that location.

[0103] If the vehicle is already in a suitable above-ground parking space, the automatic parking step is unnecessary. Specifically, the steps to achieve automatic parking for the target vehicle include: controlling the target vehicle to automatically park from its current location to the target parking space. Specifically, the target vehicle uses a navigation map to automatically park from its current location to the target parking space. Specifically, a navigation map is first constructed based on the current location, the location of the target parking space, and the route between these two locations. The vehicle then follows the navigation route in this map to drive from its current location to the target parking space, thus achieving automatic parking.

[0104] Furthermore, if there are no available above-ground parking spaces in the parking lot, the target vehicle can be parked in an underground parking space first. When an available above-ground parking space is detected, the target vehicle will be automatically parked in the above-ground parking space to achieve air purification for the target vehicle.

[0105] Second, the air purification step in this process is: automatically triggering the vehicle to open the windows or sunroof to purify the air inside the vehicle through external air circulation.

[0106] In practice, the window opening is controlled to a preset first area of ​​window gap and / or the sunroof opening is controlled to a preset second area of ​​raised opening, purifying the air inside the vehicle by circulating air between the vehicle interior and exterior. Because this step utilizes the natural environment to improve vehicle air quality, it is cost-effective and easy to implement, especially for new cars requiring rapid improvement in in-vehicle air quality. Specifically, the first and second areas can be adjusted in real-time according to the in-vehicle air quality status, or they can be set to fixed values.

[0107] Furthermore, intelligent devices can also obtain real-time information on changes in the air quality inside the vehicle through a communication connection with the vehicle controller, and control the vehicle's air purification operation based on the air quality status inside the vehicle.

[0108] In other words, this step also includes:

[0109] Send a command to query the air quality inside the vehicle and obtain the air quality information fed back by the air quality detector inside the target vehicle;

[0110] Based on the air quality information, the air quality inside the target vehicle is controlled within a preset range.

[0111] The smart device can display the air quality information it receives. Users can customize the range of air quality required inside the vehicle. When the air quality inside the vehicle is lower than the minimum value of the preset range, the windows and sunroof will continue to be opened to purify the air quality inside the vehicle. When the air quality inside the vehicle is within the preset range, the windows and sunroof will be closed to end the air quality purification operation.

[0112] Specifically, in combination Figure 2-4 As shown, the steps of the embodiments of the present invention in specific application embodiments will be described in detail.

[0113] like Figure 2 The diagram illustrates the principle of remote control in this embodiment. The vehicle, intelligent devices (taking a remote-controlled mobile phone as an example), and the monitoring system located in the parking lot together form a smart park system. The monitoring system in the parking lot includes a central computer and an interactive computer, and vehicle actuators are installed on the vehicles. The central computer, the interactive computer, the vehicle actuators, and the intelligent devices communicate with each other to achieve automatic driving, automatic parking, air quality control within the vehicle, temperature settings, and target parking space selection. Specifically, the intelligent devices communicate with the interactive computer and the central computer via Ethernet, while the central computer and the vehicle actuators exchange information via a CAN network.

[0114] Combination Figure 3 As shown, taking a mobile phone as an example, the method disclosed in this embodiment includes the following steps in specific applications:

[0115] Step K1: First, determine whether the vehicle's air purification mode is enabled in the user's mobile application. If it is enabled, proceed to step K2; otherwise, end the process and do not perform the air purification operation on the vehicle.

[0116] Step K2: Locate the vehicle's position to obtain its location information and obtain the weather information for that location based on the located location information.

[0117] Step K3: Determine whether the remote control conditions for vehicle air purification are met based on the weather information at this location. If the current weather is sunny and the remote control conditions are met, proceed to step K4; otherwise, end the operation and do not perform the vehicle air purification operation.

[0118] Step K4: Record the current location of the vehicle and proceed to step K5.

[0119] Step K5: Locate the target parking space based on the current location, and proceed to step K6.

[0120] Step K6: Determine whether the target parking space has been found and the automatic parking has been successful. If so, proceed to step K8; otherwise, proceed to step K7.

[0121] Step K7: Is the target parking space vacant? If yes, proceed to K9; otherwise, proceed to step K10.

[0122] Step K8: Control the sunroof tilt and / or the window gaps to allow air circulation between the vehicle interior and the outside, thereby purifying the air inside the vehicle.

[0123] Step K9: Control the vehicle to automatically drive to the target parking space and execute step K8.

[0124] Step K10: The autonomous vehicle moves to the underground parking space.

[0125] Step K11: Send the current parking space information and in-vehicle air quality information to your mobile phone.

[0126] The method in this embodiment utilizes existing vehicle intelligence technology and combines it with the Internet of Things information of smart parks to perform various information interactions and control of vehicles. It can automatically drive vehicles to above-ground and underground parking spaces as needed, quickly and efficiently improve vehicle air quality, and can also use the same technical approach to perform more intelligent control, thereby achieving intelligent vehicle control and meeting various user needs.

[0127] Furthermore, if the current weather conditions meet the requirements for vehicle interior air purification, then... Figure 4 Alternatively, you can first park the vehicle in an underground parking space, and when it detects that there is a vacant above-ground parking space, it will automatically park in the above-ground parking space to facilitate the purification of the air inside the vehicle.

[0128] Specifically, the implementation method is as follows:

[0129] Step H1: First, determine whether the mobile phone has issued a vehicle recall command. If it has, the process ends; otherwise, proceed to step H2.

[0130] Step H2: Determine if there are any available underground parking spaces. If so, proceed to step H3; otherwise, end the process.

[0131] Step H3: Determine if the pre-set parking space is vacant. If it is vacant, proceed to step H4; otherwise, proceed to step H5.

[0132] Step H4: Control the vehicle to drive automatically to the designated underground parking space, and then proceed to step H6.

[0133] Step H5: Control the vehicle to automatically drive to other available underground parking spaces.

[0134] Step H6: Send the current parking space of the vehicle to the user's mobile phone so that the user can know the current location of the vehicle in a timely manner.

[0135] The method provided in this embodiment acquires real-time local weather data. When in-vehicle air purification is needed, a suitable air quality range is set to facilitate air purification in the vehicle under suitable weather conditions. The current parking space is set as the default location, allowing for easy return to the original location or nearby when purification is terminated. The vehicle's central computer can park and exit parking spaces as needed, enabling autonomous driving between underground and surface parking spaces. After the vehicle arrives at a surface parking space, the intelligent device detects the actual weather conditions. If the weather is sunny, it can accelerate in-vehicle air purification by lowering windows and raising the sunroof. The intelligent device can receive notifications of changes in parking space and air quality status, and can also recall the vehicle with a single click and remotely control air purification, providing convenience for users.

[0136] A second aspect of this application provides a remote control system for vehicle air purification, such as... Figure 5 As shown, it includes:

[0137] The information acquisition module 100 is used to acquire real-time weather information and parking space information of the target vehicle's location; its function is as shown in step S1.

[0138] The condition judgment module 200 is used to determine whether the remote control air purification conditions of the target vehicle are met based on the real-time weather information obtained; its function is as shown in step S2.

[0139] The purification control module 300 is used to find the target parking space according to the parking space information of the parking lot if the real-time weather information meets the remote control air purification conditions of the target vehicle, control the target vehicle to park in the target parking space, and perform in-vehicle air purification in the form of external circulation. Its function is as shown in step S3.

[0140] Optionally, the information acquisition module 100 includes: a weather query unit and a parking space information query unit;

[0141] The weather query unit is used to locate the current location of the target vehicle and query real-time weather information based on the location information.

[0142] The parking space information query unit is used to send a request to the parking lot monitoring system to obtain parking space information, and to receive the parking space information returned by the parking lot monitoring system.

[0143] Optionally, the information acquisition module includes: a weather query unit and a parking space information query unit;

[0144] The weather query unit is used to locate the current location of the target vehicle and query real-time weather information based on the location information.

[0145] The parking space information query unit is used to send a request to the parking lot monitoring system to obtain parking space information, and to receive the parking space information returned by the parking lot monitoring system.

[0146] Optionally, the condition judgment module includes: a weather judgment unit;

[0147] The weather judgment unit is used to determine whether the current weather is sunny based on the real-time weather information obtained. If the current weather is sunny, it meets the remote control air purification conditions of the target vehicle.

[0148] Optionally, the parking control unit includes: a parking control subunit and a temporary parking control subunit;

[0149] The parking control unit is used to determine whether there are any vacant above-ground parking spaces based on parking space information; if so, it controls the target vehicle to park in the target parking space.

[0150] The temporary parking control unit is used to determine whether there are vacant underground parking spaces when there are no vacant above-ground parking spaces in the parking lot; if there are vacant underground parking spaces, it controls the target vehicle to automatically drive to the underground parking space and obtains the vehicle parking information of the above-ground parking space in real time; if there are vacant above-ground parking spaces, it controls the target vehicle to automatically park to the above-ground parking space and uses the above-ground parking space as the target parking space.

[0151] Optionally, the purification control module includes: a parking unit and a purification unit;

[0152] The parking unit is used to control the target vehicle to automatically park from its current location to the target parking space;

[0153] The purification unit is used to control the opening of the vehicle windows and / or sunroof to purify the air inside the vehicle through external circulation.

[0154] Optionally, the parking unit includes: a parking control subunit;

[0155] The parking control subunit is used to create a navigation map based on the current location of the target vehicle and the location information of the target parking space.

[0156] Using the navigation map, control the target vehicle to drive from its current location to the target parking space.

[0157] Optionally, the purification unit includes: an external circulation control subunit;

[0158] The external circulation control subunit is used to control the opening of the window to a preset first area and / or the opening of the sunroof to a preset second area, so as to purify the air inside the vehicle by circulating the air inside the vehicle with the air outside the vehicle.

[0159] Optionally, the purification unit further includes: a quality conditioning subunit;

[0160] The quality adjustment subunit is used to issue an air quality query command inside the vehicle, obtain air quality information fed back by the air quality detector inside the target vehicle, and control the air quality inside the target vehicle within a preset range based on the air quality information.

[0161] In addition to the system described above, this embodiment also provides a smart device, such as... Figure 6 As shown, the intelligent device includes: a memory 601, a processor 602, and a remote control program for vehicle air purification stored in the memory 601 and executable on the processor 602. When the processor 602 executes the remote control program for vehicle air purification, it implements the steps of the remote control method for vehicle air purification.

[0162] Furthermore, smart devices also include:

[0163] Communication interface 603 is used for communication between memory 601 and processor 602.

[0164] The memory 601 is used to store computer programs that can run on the processor 602.

[0165] The memory 601 may include high-speed RAM memory, and may also include non-volatile memory, such as at least one disk storage device.

[0166] If the memory 601, processor 602, and communication interface 603 are implemented independently, then the communication interface 603, memory 601, and processor 602 can be interconnected via a bus to complete communication between them. The bus can be an Industry Standard Architecture (ISA) bus, a Peripheral Component Interconnect (PCI) bus, or an Extended Industry Standard Architecture (EISA) bus, etc. The bus can be divided into address bus, data bus, control bus, etc. For ease of representation, Figure 6 The bus is represented by a single thick line, but this does not mean that there is only one bus or one type of bus.

[0167] Optionally, in a specific implementation, if the memory 601, processor 602, and communication interface 603 are integrated on a single chip, then the memory 601, processor 602, and communication interface 603 can communicate with each other through an internal interface.

[0168] The processor 602 may be a central processing unit (CPU), an application specific integrated circuit (ASIC), or one or more integrated circuits configured to implement the embodiments of this application.

[0169] This embodiment also provides a computer-readable storage medium storing a computer program that, when executed by a processor, implements the above-described remote control method for vehicle air purification.

[0170] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of this application. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.

[0171] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, "N" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0172] Any process or method description in the flowchart or otherwise herein can be understood as representing a module, segment, or portion of code comprising one or N executable instructions for implementing custom logic functions or processes, and the scope of the preferred embodiments of this application includes additional implementations in which functions may be performed not in the order shown or discussed, including substantially simultaneously or in reverse order depending on the functions involved, as should be understood by those skilled in the art to which embodiments of this application pertain.

[0173] The logic and / or steps represented in the flowchart or otherwise described herein, for example, can be considered as a ordered list of executable instructions for implementing logical functions, and can be embodied in any computer-readable medium for use by, or in conjunction with, an instruction execution system, apparatus, or device (such as a computer-based system, a processor-included system, or other system that can read and execute instructions from or in conjunction with such an instruction execution system, apparatus, or device). For the purposes of this specification, "computer-readable medium" can be any means that can contain, store, communicate, propagate, or transmit programs for use by or in conjunction with an instruction execution system, apparatus, or device. More specific examples (a non-exhaustive list) of computer-readable media include: an electrical connection having one or more wires (electronic device), a portable computer disk drive (magnetic device), random access memory (RAM), read-only memory (ROM), erasable and editable read-only memory (EPROM or flash memory), fiber optic devices, and portable optical disc read-only memory (CDROM). In addition, computer-readable media can even be paper or other suitable media on which programs can be printed, because programs can be obtained electronically by optically scanning paper or other media, followed by editing, interpreting or otherwise processing as necessary, and then stored in computer memory.

[0174] It should be understood that the various parts of this application can be implemented using hardware, software, firmware, or a combination thereof. In the above embodiments, the N steps or methods can be implemented using software or firmware stored in memory and executed by a suitable instruction execution system. If implemented in hardware, as in another embodiment, it can be implemented using any one or a combination of the following techniques known in the art: discrete logic circuits having logic gates for implementing logical functions on data signals, application-specific integrated circuits (ASICs) having suitable combinational logic gates, programmable gate arrays (PGAs), field-programmable gate arrays (FPGAs), etc.

[0175] Those skilled in the art will understand that all or part of the steps of the methods described in the above embodiments can be implemented by a program instructing related hardware, and the program can be stored in a computer-readable storage medium. When executed, the program includes one or a combination of the steps of the method embodiments.

[0176] Furthermore, the functional units in the various embodiments of this application can be integrated into a processing module, or each unit can exist physically separately, or two or more units can be integrated into a module. The integrated module can be implemented in hardware or as a software functional module. If the integrated module is implemented as a software functional module and sold or used as an independent product, it can also be stored in a computer-readable storage medium.

[0177] The storage medium mentioned above can be a read-only memory, a disk, or an optical disk, etc. Although embodiments of this application have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting this application. Those skilled in the art can make changes, modifications, substitutions, and variations to the above embodiments within the scope of this application.

Claims

1. A remote control method for vehicle air purification, characterized in that, include: Obtain real-time weather information and parking space information for the target vehicle's location; The system determines whether the real-time weather information meets the remote-controlled air purification conditions for the target vehicle. If the real-time weather information meets the remote control air purification conditions of the target vehicle, the target parking space is located according to the parking space information of the parking lot, the target vehicle is controlled to park in the target parking space, and the air inside the vehicle is purified in the form of external circulation. The steps to find a target parking space based on the parking lot's parking space information include: Determine if there are any available above-ground parking spaces based on the parking information; If available, the target parking space will be the above-ground parking space; Otherwise, determine whether there are any vacant underground parking spaces based on the parking space information; If there is an available underground parking space, the target vehicle will be controlled to drive to the underground parking space automatically, and the vehicle parking information of the above-ground parking space will be obtained in real time; if there is an available parking space on the ground, the target vehicle will be controlled to park automatically on the ground and the ground parking space will be used as the target parking space. The step of controlling the target vehicle to park in the target parking space and purifying the in-vehicle air using external circulation includes: Control the target vehicle to automatically park from its current location to the target parking space; Control the vehicle to open windows and / or sunroof to purify the air inside the vehicle through external air circulation; The system controls the opening of the window to a preset first area and / or the opening of the sunroof to a preset second area, thereby purifying the air inside the vehicle by circulating air between the vehicle interior and the outside. The first and second areas are adjusted in real time according to the air quality inside the vehicle, or can be set to fixed values. The step of controlling the vehicle to open the windows and / or sunroof to purify the air inside the vehicle through external air circulation also includes: Send a command to query the air quality inside the vehicle and obtain the air quality information fed back by the air quality detector inside the target vehicle; Based on the air quality information, determine whether the current air quality inside the vehicle has reached a preset threshold; If the preset threshold is not reached, the windows and / or sunroof remain open; if the preset threshold is reached, the windows and / or sunroof are closed, and the target vehicle is returned from the target parking space to its original parking position. The step of determining whether the remote-controlled air purification conditions of the target vehicle are met based on the obtained real-time weather information includes: Determine whether the current weather is sunny based on the obtained real-time weather information; If the current weather is sunny, then the conditions for remote-controlled air purification of the target vehicle are met.

2. The remote control method for vehicle air purification according to claim 1, characterized in that, The steps of obtaining real-time weather information and parking space information of the target vehicle's location include: Locate the current position of the target vehicle and query real-time weather information based on the location information; Send a request to the parking lot monitoring system to obtain parking space information, and receive the parking space information returned by the parking lot monitoring system.

3. The remote control method for vehicle air purification according to claim 1, characterized in that, The steps of controlling the target vehicle to automatically park from its current location to the target parking space include: Create a navigation map based on the current location of the target vehicle and the location information of the target parking space; Using the navigation map, control the target vehicle to drive from its current location to the target parking space.

4. A remote control system for vehicle air purification, characterized in that, include: The information acquisition module is used to acquire real-time weather information and parking space information of the target vehicle's location. The condition judgment module is used to determine whether the remote control air purification conditions of the target vehicle are met based on the real-time weather information obtained. The purification control module is used to find the target parking space according to the parking space information of the parking lot if the real-time weather information meets the remote control air purification conditions of the target vehicle, control the target vehicle to park in the target parking space, and purify the air in the vehicle in the form of external circulation. The steps to find a target parking space based on the parking lot's parking space information include: Determine if there are any available above-ground parking spaces based on the parking information; If available, the target parking space will be the above-ground parking space; Otherwise, determine whether there are any vacant underground parking spaces based on the parking space information; If there is an available underground parking space, the target vehicle will be controlled to drive to the underground parking space automatically, and the vehicle parking information of the above-ground parking space will be obtained in real time; if there is an available parking space above ground, the target vehicle will be controlled to park automatically in the above-ground parking space, and the above-ground parking space will be used as the target parking space. The step of controlling the target vehicle to park in the target parking space and purifying the in-vehicle air using external circulation includes: Control the target vehicle to automatically park from its current location to the target parking space; Control the vehicle to open windows and / or sunroof to purify the air inside the vehicle through external air circulation; The system controls the opening of the windows to a preset first area and / or the opening of the sunroof to a preset second area, thereby purifying the air inside the vehicle by circulating air between the vehicle interior and the outside. The first and second areas are adjusted in real time according to the air quality inside the vehicle, or can be set to fixed values. The step of controlling the vehicle to open the windows and / or sunroof to purify the air inside the vehicle through external air circulation also includes: Send a command to query the air quality inside the vehicle and obtain the air quality information fed back by the air quality detector inside the target vehicle; Based on the air quality information, determine whether the current air quality inside the vehicle has reached a preset threshold; If the preset threshold is not reached, the window and / or sunroof remain open; if the preset threshold is reached, the window and / or sunroof are closed, and the target vehicle is returned from the target parking space to its original parking position. The step of determining whether the remote-controlled air purification conditions of the target vehicle are met based on the obtained real-time weather information includes: Determine whether the current weather is sunny based on the obtained real-time weather information; If the current weather is sunny, then the conditions for remote-controlled air purification of the target vehicle are met.

5. A smart device, characterized in that, include: The system includes a memory, a processor, and a remote control program for vehicle air purification stored in the memory and executable on the processor. When the processor executes the remote control program for vehicle air purification, it implements the steps of the remote control method for vehicle air purification as described in any one of claims 1-3.

Citation Information

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