Intelligent cleaning methods, systems, vehicles, and storage media for vehicle cooling modules
By installing a detergent storage device and a cleaning device on the vehicle, and using multi-dimensional environmental information to select the detergent for targeted cleaning, the problem of contaminant adhesion to the cooling module is solved, and the cooling module is effectively cleaned and the equipment is kept in stable condition.
Patent Information
- Application Number
- CN202411269041.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-11
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2044-09-11
AI Technical Summary
During use, dust, dirt, insects, and other debris can accumulate on the vehicle cooling module, reducing its ventilation area and heat dissipation efficiency, which in turn affects the equipment's working condition and lifespan.
A vehicle is equipped with a detergent storage device. By acquiring multi-dimensional environmental information, a target detergent is selected, and the cleaning device is controlled to spray it onto the cooling module. Detergents with different functions are used to clean contaminants in a targeted manner.
It effectively removes contaminants from the cooling module, ensures ventilation area and heat dissipation effect, extends equipment life, improves air conditioning cooling effect and reduces energy consumption.
Smart Images

Figure CN119037345B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of intelligent cleaning technology for vehicle cooling modules, and in particular to an intelligent cleaning method, system, vehicle, and storage medium for vehicle cooling modules. Background Technology
[0002] Vehicles are typically equipped with a front-end cooling module, which is an important heat dissipation device. The front-end cooling module consists of a condenser, intercooler, low-temperature radiator, high-temperature heat dissipation module, and cooling fan, which work together to ensure that the equipment on the vehicle can operate normally under various working conditions.
[0003] During actual vehicle use, dust, dirt, flying insects, fallen leaves and other debris in the air will adhere to the cooling module, resulting in a reduction in ventilation area and a decrease in heat dissipation effect, which in turn affects the working condition and service life of the equipment. Summary of the Invention
[0004] To address the aforementioned technical problems, this application provides an intelligent cleaning method, system, vehicle, and storage medium for a vehicle cooling module.
[0005] In a first aspect, this application provides an intelligent cleaning method for a vehicle cooling module, wherein the vehicle is equipped with a washing and care liquid storage device and a cleaning device, the washing and care liquid storage device being used to store a variety of washing and care liquids with different functions, and the cleaning device being connected to the washing and care liquid storage device.
[0006] The intelligent cleaning method includes:
[0007] Obtain multi-dimensional environmental information;
[0008] Based on the multi-dimensional environmental information, at least one target shampoo and conditioner solution is determined;
[0009] The cleaning device is controlled to spray the target washing and care liquid onto the cooling module.
[0010] In one embodiment, the step of determining the target shampoo and conditioner based on the multi-dimensional environmental information includes:
[0011] At least one pollutant is identified based on the multi-dimensional environmental information;
[0012] At least one of the target washing and care solutions is determined based on the said contaminant.
[0013] In one embodiment, the step of determining at least one of the target wash products based on the contaminants includes:
[0014] Based on the preset correspondence between the pollutants and the washing and care solutions, at least one of the target washing and care solutions is determined;
[0015] or,
[0016] The step of determining at least one of the target shampoo and conditioner solutions based on the contaminant includes:
[0017] Obtain the washing and care strategy corresponding to the pollutants;
[0018] At least one of the target shampoo and conditioner solutions is determined according to the shampooing and conditioner strategy.
[0019] In one embodiment, the washing and care strategy includes immediate washing and care tasks and / or delayed washing and care tasks;
[0020] The step of controlling the cleaning device to spray the target shampoo and conditioner solution onto the cooling module includes:
[0021] According to the instant washing and care task, the cleaning device is controlled to spray the target washing and care liquid corresponding to the instant washing and care task onto the cooling module;
[0022] And / or,
[0023] According to the delayed washing and care task, when the delayed washing and care conditions are met, the cleaning device is controlled to spray the target washing and care liquid corresponding to the delayed washing and care task onto the cooling module.
[0024] In one embodiment, the multi-dimensional environmental information includes at least one of time information, location information, weather information, air quality information, travel information, and parking environment information.
[0025] In one embodiment, the cleaning device includes a cleaning nozzle, an infusion pipeline, a water storage tank, and a motor;
[0026] The infusion pipeline is sequentially connected to the water storage tank, the washing and care solution storage device, and the cleaning nozzle;
[0027] The motor provides power to mix the water in the water tank with the target washing and care liquid and spray it from the cleaning nozzle onto the cooling module.
[0028] In one embodiment, the cleaning nozzle is disposed at the front grille of the vehicle, with the nozzle facing the cooling module.
[0029] Secondly, this application provides an intelligent cleaning system for a vehicle cooling module, used to implement the intelligent cleaning method described in the first aspect. The vehicle is equipped with a detergent storage device and a cleaning device. The detergent storage device is used to store various detergents with different functions, and the cleaning device is connected to the detergent storage device.
[0030] The intelligent cleaning system includes:
[0031] The information acquisition module is used to acquire multi-dimensional environmental information;
[0032] A shampoo and conditioner selection module is used to determine at least one target shampoo and conditioner based on the multi-dimensional environmental information.
[0033] A cleaning control module is used to control the cleaning device to spray the target cleaning solution onto the cooling module.
[0034] In one embodiment, the shampoo / conditioner selection module is used for:
[0035] At least one pollutant is identified based on the multi-dimensional environmental information;
[0036] At least one of the target washing and care solutions is determined based on the said contaminant.
[0037] In one embodiment, the shampoo and conditioner selection module is specifically used for:
[0038] Based on the preset correspondence between the pollutants and the washing and care solutions, at least one of the target washing and care solutions is determined;
[0039] or,
[0040] The shampoo and conditioner selection module is specifically used for:
[0041] Obtain the washing and care strategy corresponding to the pollutants;
[0042] At least one of the target shampoo and conditioner solutions is determined according to the shampooing and conditioner strategy.
[0043] In one embodiment, the washing and care strategy includes immediate washing and care tasks and / or delayed washing and care tasks;
[0044] The cleaning control module is used for:
[0045] According to the instant washing and care task, the cleaning device is controlled to spray the target washing and care liquid corresponding to the instant washing and care task onto the cooling module;
[0046] And / or,
[0047] According to the delayed washing and care task, when the delayed washing and care conditions are met, the cleaning device is controlled to spray the target washing and care liquid corresponding to the delayed washing and care task onto the cooling module.
[0048] In one embodiment, the multi-dimensional environmental information includes at least one of time information, location information, weather information, air quality information, travel information, and parking environment information.
[0049] In one embodiment, the cleaning device includes a cleaning nozzle, an infusion pipeline, a water storage tank, and a motor;
[0050] The infusion pipeline is sequentially connected to the water storage tank, the washing and care solution storage device, and the cleaning nozzle;
[0051] The motor provides power to mix the water in the water tank with the target washing and care liquid and spray it from the cleaning nozzle onto the cooling module.
[0052] In one embodiment, the cleaning nozzle is disposed at the front grille of the vehicle, with the nozzle facing the cooling module.
[0053] Thirdly, this application provides a vehicle that includes an intelligent cleaning system for the vehicle cooling module described in the second aspect.
[0054] Fourthly, this application provides a computer-readable storage medium having a computer program stored thereon, wherein when the computer program is executed by a processor, it implements the intelligent cleaning method for the vehicle cooling module described in the first aspect.
[0055] Based on common knowledge in the field, the above-mentioned preferred conditions can be combined arbitrarily to obtain various preferred embodiments of this application.
[0056] The aforementioned intelligent cleaning method, system, vehicle, and storage medium for vehicle cooling modules can achieve the following beneficial effects: A cleaning fluid storage device is installed on the vehicle to store various cleaning fluids with different functions. At least one cleaning fluid is selected as the target cleaning fluid based on acquired multi-dimensional environmental information. The cleaning device on the vehicle is controlled to spray the target cleaning fluid onto the cooling module. This targeted cleaning of the cooling module with different cleaning fluids effectively removes contaminants adhering to the cooling module, ensuring the ventilation area and heat dissipation effect of the cooling module. This, in turn, ensures the stable operation of the equipment on the vehicle and extends the service life of the equipment. Attached Figure Description
[0057] Figure 1 This is a schematic diagram of the first process of the intelligent cleaning method for the vehicle cooling module in the embodiments of this application;
[0058] Figure 2 This is a schematic diagram of the second process of the intelligent cleaning method for the vehicle cooling module in the embodiments of this application;
[0059] Figure 3 This is a schematic diagram of the intelligent cleaning system for the vehicle cooling module in the embodiments of this application;
[0060] Figure 4 This is a diagram showing the internal structure of a computer device in an embodiment of this application. Detailed Implementation
[0061] To make the objectives, technical solutions, and advantages of this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this application.
[0062] It should be noted that the illustrations provided in this embodiment are only schematic representations of the basic concept of this application. Therefore, the drawings only show components relevant to this application and are not drawn according to the actual number, shape, and size of components in implementation. In actual implementation, the shape, quantity, and proportion of each component can be arbitrarily changed, and the layout of the components may also be more complex. The structures, proportions, sizes, etc., shown in the accompanying drawings are only used to complement the content disclosed in the specification for those skilled in the art to understand and read, and are not intended to limit the implementation conditions of this application. Therefore, they have no substantial technical significance. Any modification to the structure, change in the proportional relationship, or adjustment of the size, without affecting the effect and purpose that this application can produce, should still fall within the scope of the technical content disclosed in this application. At the same time, the terms such as "upper," "lower," "left," "right," "middle," and "one" used in this specification are only for clarity of description and are not intended to limit the scope of implementation of this application. Changes or adjustments in their relative relationships, without substantially changing the technical content, should also be considered within the scope of implementation of this application.
[0063] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the document does not necessarily refer to the same embodiment, nor is it a mutually exclusive, independent, or alternative embodiment. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0064] As illustrated herein, unless the context clearly indicates otherwise, words such as “a,” “an,” “an,” and / or “the” do not specifically refer to the singular and may also include the plural. Generally speaking, the terms “comprising” and “including” only indicate the inclusion of explicitly identified steps and elements, which do not constitute an exclusive list, and the method or apparatus may also include other steps or elements.
[0065] The definitions used herein, such as the terms “having,” “may have,” “comprising,” or “may include,” indicate the presence of the corresponding function, operation, element, etc., and do not limit the presence of one or more other functions, operations, elements, etc. Furthermore, it should be understood that the terms “comprising” or “having” as used herein indicate the presence of the features, figures, steps, operations, elements, components, or combinations thereof described in the specification, without excluding the presence or addition of one or more other features, figures, steps, operations, elements, components, or combinations thereof.
[0066] The prefixes such as "first" and "second" used in this application embodiment are merely for distinguishing different descriptive objects and do not limit the position, order, priority, quantity, or content of the described objects. The use of ordinal numbers and other prefixes used to distinguish descriptive objects in this application embodiment does not constitute a limitation on the described objects. The description of the described objects is given in the claims or the context of the embodiments, and should not constitute unnecessary limitations due to the use of such prefixes. Furthermore, in the description of this embodiment, unless otherwise stated, "multiple" means two or more.
[0067] This application proposes installing a vehicle-mounted detergent storage device to store various detergents with different functions. At least one detergent is selected as the target detergent based on acquired multi-dimensional environmental information. A cleaning device is connected to the detergent storage device. The device controls the detergent storage device to input the target detergent into the cleaning device and sprays it onto the cooling module. This targeted cleaning of the cooling module using detergents with different functions effectively removes contaminants adhering to the cooling module, ensuring adequate ventilation and heat dissipation, thereby guaranteeing stable operation of the vehicle's equipment and extending its lifespan.
[0068] In one embodiment, such as Figure 1 As shown, the intelligent cleaning method provided in this application includes the following steps:
[0069] S101. Obtain multi-dimensional environmental information;
[0070] S102. Determine at least one target shampoo and conditioner based on multi-dimensional environmental information;
[0071] S103, Control the cleaning device to spray the target cleaning solution onto the cooling module.
[0072] The shampoo and conditioner stored in the shampoo and conditioner storage device is usually a concentrated solution, which needs to be diluted with water before being sprayed onto the cooling module.
[0073] Accordingly, the cleaning device includes a cleaning nozzle, a fluid delivery pipeline, a water tank, and a motor. The cleaning nozzle is located at the vehicle's front grille, with its nozzle facing the cooling module. The water tank has a filling port, through which water can be added. The fluid delivery pipeline connects sequentially to the water tank, the detergent storage device, and the cleaning nozzle. The motor provides power to mix the water and detergent in the water tank and spray it from the cleaning nozzle onto the cooling module.
[0074] In one embodiment, the cleaning device includes multiple cleaning nozzles spaced apart at the front grille of the vehicle. Correspondingly, the infusion pipeline includes a main pipeline connecting to a water storage tank and branch pipelines connecting to different cleaning nozzles.
[0075] For example, the above-mentioned intelligent cleaning method can be applied to the vehicle's BCM (Body Control Module). By hard-wired control of the motor, clean water in the water tank is delivered into the infusion pipeline. At the same time, the BCM controls the washing and care liquid storage device to call up washing and care liquids with different effects and deliver them into the infusion pipeline via hard-wired or CAN signals.
[0076] The shampoo and conditioner storage device can include multiple storage areas, each for storing shampoo and conditioner with different functions. Each storage area is equipped with a normally closed valve. The valve in the storage area containing the target shampoo and conditioner is opened via a hardwired connection or CAN signal, allowing the target shampoo and conditioner to flow from the storage device into the infusion pipeline. After a preset time, the valve is closed to stop the addition of the target shampoo and conditioner into the infusion pipeline.
[0077] The concentrated solution of clean water and cleaning fluid is mixed in the main pipeline and then transported through the branch pipeline to four cleaning nozzles installed on the front grille to clean and maintain the contaminants on the cooling module.
[0078] Therefore, timely cleaning and maintenance of the cooling module can prevent contaminants from adhering and caking over time, ensuring the cooling module operates at its optimal condition and extending the lifespan of components such as the condenser and radiator within the cooling module. Furthermore, it can improve the cooling efficiency of the air conditioner, thereby reducing energy consumption.
[0079] The intelligent cleaning function can be activated manually by the user, or it can be automatically activated based on user settings when certain activation conditions are met. The intelligent cleaning function is triggered by an intelligent cleaning activation signal.
[0080] For example, when a user actively presses the button to activate the smart cleaning function, a smart cleaning activation signal is generated. In response to this signal, the user executes steps to acquire multi-dimensional environmental information. Similarly, a smart cleaning activation signal is automatically generated when the corresponding activation conditions are met, and in response, the user executes steps to acquire multi-dimensional environmental information.
[0081] In one embodiment, step S101 includes:
[0082] It responds to the intelligent cleaning start signal and acquires multi-dimensional environmental information.
[0083] Specifically, to enable users to actively activate the intelligent cleaning function, a corresponding button can be installed on the vehicle, or a control interface can be provided through the central control screen, mobile device, or other means. Users can then actively activate the intelligent cleaning function by operating the button or the control interface.
[0084] Whether the intelligent cleaning function is activated actively or automatically, it is usually necessary to determine whether the necessary conditions for activating the intelligent cleaning function are met before it is started.
[0085] In one embodiment, the intelligent cleaning method further includes:
[0086] The system responds to user input to activate the intelligent cleaning function and checks whether the necessary conditions for activating the intelligent cleaning function are met.
[0087] If so, a smart cleaning start signal will be generated;
[0088] If not, a prompt message will be generated, which will show the specific reason why the smart cleaning function cannot be started.
[0089] In this embodiment, if the user actively initiates the intelligent cleaning function, it is typically necessary to first check whether the necessary activation conditions for the intelligent cleaning function are met. For example, to facilitate the addition of shampoo and conditioner, the shampoo and conditioner storage device is designed to be detachable. Before activating the intelligent cleaning function, it can be checked whether the shampoo and conditioner storage device is installed and whether there is enough water in the water tank to complete one cleaning cycle. When the above necessary activation conditions are met, an intelligent cleaning activation signal is automatically generated to start the intelligent cleaning function; if not, a corresponding prompt message is generated to inform the user of the specific reason why the intelligent cleaning function cannot be activated.
[0090] To enable the intelligent cleaning function to automatically activate based on user settings and when corresponding activation conditions are met, a settings interface can be provided via a central control screen, mobile device, or other means. Users can configure the automatic activation conditions for the intelligent cleaning function through this interface.
[0091] Accordingly, intelligent cleaning methods also include:
[0092] When the automatic start conditions for the intelligent cleaning function are met, an intelligent cleaning start signal is generated.
[0093] The automatic startup conditions can include the necessary startup conditions for the intelligent cleaning function and the custom startup conditions set by the user as needed.
[0094] For example, sufficient water in the reservoir to complete a wash, and the vehicle being parked or turned off are necessary starting conditions; user-defined starting time periods based on driving habits are custom starting conditions.
[0095] For example, the custom start conditions are set to include: the vehicle being in a parked or off state for a preset time, and the vehicle being in a parked or off state for a fixed time period. When the above necessary start conditions and custom start conditions are met, an intelligent cleaning start signal is automatically generated to activate the intelligent cleaning function.
[0096] This application takes into account that the environment that a vehicle experiences during actual use is complex and diverse, which may lead to various different pollutants adhering to the cooling module.
[0097] Existing cleaning devices simply spray water onto the cooling module to achieve the effect of rinsing it, which cannot effectively remove different types of contaminants, resulting in poor cleaning performance.
[0098] Based on the above-mentioned solution proposed in this application, at least one target cleaning fluid can be selected according to the obtained multi-dimensional environmental information, and sprayed onto the cooling module through a cleaning device, so as to use cleaning fluids with different effects to specifically remove contaminants on the cooling module and realize the intelligent cleaning function of the vehicle cooling module.
[0099] In one embodiment, the multi-dimensional environmental information includes at least one of time information, location information, weather information, air quality information, travel information, and parking environment information.
[0100] The aforementioned multi-dimensional environmental information can be collected and processed through various sensors and / or internet platforms.
[0101] For example, time information, weather information, and air quality information can be collected through the Internet; location information can be collected through a positioning device; trip information can be obtained through local vehicle records; and parking environment information can be obtained through a camera device.
[0102] Based on the above multi-dimensional environmental information, it is possible to identify debris that may adhere to the cooling module or corrosive liquids that the cooling module may come into contact with, and to select appropriate cleaning solutions with corresponding effects to clean the cooling module.
[0103] In one embodiment, step S102 includes:
[0104] S1021. Identify at least one pollutant based on multi-dimensional environmental information;
[0105] S1022. Identify at least one target washing and care solution based on the contaminant.
[0106] Based on the aforementioned multi-dimensional environmental information, one or more potential pollutants can be identified. These pollutants include willow catkins, mosquitoes, dust, soil, suspended particulate matter, and fallen leaves, as well as corrosive liquids such as acid rain and animal urine.
[0107] In one embodiment, the time information in the multi-dimensional environmental information includes the current time and season corresponding to the vehicle, the location information includes the city and specific location of the vehicle, the air quality information includes the concentration of pollutants in the air, the trip information includes the historical driving route, the historical driving speed and the planned driving route, and the parking environment information includes the cleanliness of the environment around the vehicle and whether there are animals.
[0108] For example, if the season is determined to be spring based on time information, and the city where the vehicle is located is a northern city based on travel information, willow catkins can be considered a potential pollutant. If the season is determined to be autumn based on time information, and the city where the vehicle is located is a city prone to acid rain based on location information, and the weather information indicates a rainy day, acid rain can be considered a potential pollutant. If the air quality information indicates a high concentration of pollutants in the air, suspended particulate matter can be considered a potential pollutant. If the parking environment information indicates the presence of animals around the vehicle, animal urine can be considered a potential pollutant.
[0109] In one embodiment, step S1021 can determine the mapping relationship between the above-mentioned multi-dimensional environmental information and pollutants based on the necessary conditions for the occurrence of each pollutant, that is, one or more pollutants can be determined based on the multi-dimensional environmental information and the mapping relationship.
[0110] In another embodiment, step S1021 can input the obtained multi-dimensional environmental information into a model for analysis to obtain one or more pollutants predicted by the model. This model can be an existing large-scale AI (Artificial Intelligence) model, or a model specifically trained based on the aforementioned multi-dimensional environmental information that can predict pollutants.
[0111] Different types of pollutants require different cleaning solutions with corresponding functions. For example, for impurities such as willow catkins, dust, and suspended particulate matter, a cleaning solution with anti-static properties can be prepared to reduce the amount of willow catkins and dust adhering to the cooling module by eliminating static electricity.
[0112] For mosquitoes, you can prepare a shampoo and body wash with mosquito-repellent and insect-repellent properties.
[0113] For dust, dirt, fallen leaves, and other debris, you can also prepare a cleaning solution.
[0114] For corrosive liquids such as acid rain and animal urine, since animal urine is usually weakly acidic, a special cleaning solution can be prepared to neutralize its acidity and reduce the degree of corrosion to the cooling module. Alternatively, a cleaning solution with an odor that animals dislike can be prepared to avoid animals from approaching, thereby reducing the possibility of animals urinating on the cooling module.
[0115] Based on the efficacy of the shampoo and conditioner, a preset correspondence between contaminants and the shampoo and conditioner can be established in advance. In one embodiment, step S1022 includes: determining at least one target shampoo and conditioner based on the preset correspondence between contaminants and shampoo and conditioner.
[0116] In this embodiment, after identifying the possible contaminants, one or more washing and care solutions can be selected as the target washing and care solution according to the above-mentioned preset correspondence.
[0117] This application also considers that existing cleaning devices typically only address contaminants after they have adhered to the cooling module. During the period when contaminants are attached to the cooling module, this can temporarily reduce the ventilation area and decrease heat dissipation. Furthermore, corrosive liquids, such as acid rain or animal urine, can cause contamination and damage to the cooling module even if they only adhere briefly.
[0118] In other words, in addition to treating the contaminants adhering to the cooling module, it is also necessary to reduce the possibility of contaminants remaining on the cooling module. Based on this, corresponding cleaning and maintenance strategies can be developed for different contaminants.
[0119] In another embodiment, step S1022 includes:
[0120] Obtain the corresponding washing and care strategies for pollutants;
[0121] Identify at least one target shampoo / conditioner based on the shampooing / conditioning strategy.
[0122] The washing and care strategies can be designed based on the characteristics of the pollutants and actual needs. Washing and care strategies can be pre-designed for common pollutants, allowing users to directly use these pre-designed strategies or make adaptive adjustments.
[0123] In one embodiment, the washing and care strategy includes at least one washing and care task, in which one or more of the following can be set: single washing and care duration, washing and care trigger type, target washing and care liquid, and delayed washing and care trigger conditions.
[0124] For example, when the trigger type for a washing and care task is set to "Execute Immediately," the task is considered an immediate washing and care task. When the trigger type for a washing and care task is set to "Execute Delayed," the task is considered a delayed washing and care task.
[0125] In other words, a washing and care strategy for a contaminant may include immediate washing and care tasks and / or delayed washing and care tasks.
[0126] In this embodiment, the contaminant washing and care strategy can include multiple washing and care tasks, and different washing and care tasks can be set with different target washing and care liquids. This can achieve a composite washing and care effect for a certain contaminant, effectively remove contaminants attached to the cooling module, ensure the ventilation area and heat dissipation effect of the cooling module, ensure the stable working state of the equipment on the vehicle, and thus extend the service life of the equipment on the vehicle.
[0127] Delayed washing and care tasks usually require setting delayed washing and care trigger conditions.
[0128] For example, the delayed washing and maintenance trigger condition can be set to the time the vehicle is in a parked state reaches a first preset duration, based on which the function of washing and maintaining the cooling module can be realized when the vehicle is idle.
[0129] For example, the delayed cleaning trigger condition can be set to the time elapsed after the contaminant is identified until a second preset duration is reached, enabling timely cleaning of the cooling module. In particular, by setting a set number of triggers, the delayed cleaning task can be triggered periodically, thus achieving periodic cleaning of the cooling module. That is, when the actual number of triggers is less than the set number, the delayed cleaning task is triggered when the timer reaches the second preset duration, and the timer is reset to zero until the actual number of triggers reaches the set number.
[0130] By designing instant washing and care tasks, the washing and care solution can be sprayed onto the cooling module in advance, reducing the possibility of contaminants remaining on the cooling module.
[0131] By designing a delayed washing and care task, the washing and care fluid can be sprayed onto the cooling module once or periodically when the washing and care trigger conditions are met. Regardless of whether the vehicle is parked or in motion, the cooling module can be cleaned in a timely manner, preventing contaminants from remaining on the cooling module for a long time.
[0132] In this embodiment, a corresponding washing and care strategy can be preset for each type of contaminant. After the contaminant is determined, the preset washing and care strategy for the contaminant can be obtained, and the target washing and care liquid can be determined according to the washing and care liquid to be used included in the washing and care strategy.
[0133] Accordingly, the intelligent cleaning method provided in this application can also be as follows: Figure 2 As shown, it includes:
[0134] S201. Obtain multi-dimensional environmental information;
[0135] S202. Identify at least one pollutant based on multi-dimensional environmental information;
[0136] S203. Obtain the washing and care strategies corresponding to the pollutants;
[0137] S204. Determine at least one target shampoo / conditioner based on the shampooing / conditioning strategy;
[0138] S205. According to the washing and care strategy, control the cleaning device to spray the target washing and care liquid onto the cooling module.
[0139] In this embodiment, the type of pollutant can be determined based on multi-dimensional environmental information. A pre-designed cleaning strategy for the pollutant is then obtained, a target cleaning solution is selected based on the strategy, and the cleaning device is controlled according to the strategy. Therefore, the intelligent cleaning function not only cleans the cooling module promptly but also prevents it from being contaminated and corroded, further extending the service life of the cooling module and related equipment.
[0140] In one embodiment, step S205 includes:
[0141] Based on the immediate washing and care task, the control device sprays the target washing and care liquid corresponding to the immediate washing and care task onto the cooling module;
[0142] And / or,
[0143] According to the delayed washing and care task, when the delayed washing and care triggering conditions are met, the cleaning device is controlled to spray the target washing and care liquid corresponding to the delayed washing and care task onto the cooling module.
[0144] For example, for willow catkins or acid rain, the generated washing and care strategies typically include immediate washing and care tasks and delayed washing and care tasks.
[0145] Based on the immediate cleaning and care tasks included in the willow catkin cleaning and care strategy, the cleaning device can first spray a cleaning solution with anti-static properties onto the cooling module to reduce the cooling module's ability to adsorb willow catkins. Then, based on the delayed cleaning and care tasks included in the strategy, when the delayed cleaning and care conditions are met, the cleaning device can first spray a cleaning solution with cleaning properties onto the cooling module to remove the willow catkins already attached to it, and then spray a cleaning solution with anti-static properties onto the cooling module to prevent the willow catkins from being adsorbed onto it again.
[0146] Based on the immediate cleaning and maintenance tasks included in the acid rain cleaning and maintenance strategy, the cleaning device can first be controlled to spray a cleaning and maintenance fluid capable of neutralizing acidic substances in the acid rain onto the cooling module, reducing the acidic substances remaining on the cooling module and taking preventative measures against acid rain. Then, based on the delayed cleaning and maintenance tasks included in the acid rain cleaning and maintenance strategy, when the delayed cleaning and maintenance conditions are met, the cleaning device can be controlled to spray a cleaning and maintenance fluid capable of neutralizing acidic substances in the acid rain onto the cooling module again to remove the acidic substances remaining on the cooling module.
[0147] The delayed washing / care settings can typically be set after a preset interval, or after the vehicle has traveled a preset distance and is in a parked or off state. The specific settings can be designed according to actual needs.
[0148] For example, for mosquito or animal urine, the resulting washing and care strategy typically includes an immediate washing and care task.
[0149] According to the mosquito washing and care strategy, which includes an immediate washing and care task, the control cleaning device sprays a mosquito-repelling washing and care liquid onto the cooling module to reduce the number of mosquitoes around the cooling module by repelling mosquitoes, thereby reducing the number of mosquitoes attached to the cooling module.
[0150] Based on the immediate washing task included in the animal urine washing strategy, the control device sprays a washing solution with an odor that animals dislike onto the cooling module. This reduces the likelihood of animals urinating on the cooling module by minimizing the chances of animals approaching it, thereby preventing animal urine from corroding and contaminating the cooling module.
[0151] Corresponding to the aforementioned intelligent cleaning method for vehicle cooling modules, this application also provides an intelligent cleaning system for vehicle cooling modules.
[0152] In one embodiment, such as Figure 3 As shown, the intelligent cleaning system includes:
[0153] Information acquisition module 301 is used to acquire multi-dimensional environmental information;
[0154] The shampoo and conditioner selection module 302 is used to determine at least one target shampoo and conditioner based on multi-dimensional environmental information.
[0155] The cleaning control module 303 is used to control the cleaning device to spray the target cleaning solution onto the cooling module.
[0156] In one embodiment, the wash / conditioner selection module 302 is used for:
[0157] Identify at least one pollutant based on multi-dimensional environmental information;
[0158] Identify at least one target washing and care solution based on the contaminant.
[0159] In one embodiment, the wash / conditioner selection module 302 is specifically used for:
[0160] Based on the pre-defined correspondence between pollutants and washing and care solutions, at least one target washing and care solution is determined;
[0161] or,
[0162] The shampoo and conditioner selection module 302 is specifically used for:
[0163] Obtain the corresponding washing and care strategies for pollutants;
[0164] Identify at least one target shampoo / conditioner based on the shampooing / conditioning strategy.
[0165] In one embodiment, the washing and care strategy includes immediate washing and care tasks and / or delayed washing and care tasks;
[0166] The cleaning control module 303 is used for:
[0167] Based on the immediate washing and care task, the control device sprays the target washing and care liquid corresponding to the immediate washing and care task onto the cooling module;
[0168] And / or,
[0169] According to the extended washing and care task, when the extended washing and care conditions are met, the cleaning device is controlled to spray the target washing and care liquid corresponding to the extended washing and care task onto the cooling module.
[0170] In one embodiment, the multi-dimensional environmental information includes at least one of time information, location information, weather information, air quality information, travel information, and parking environment information.
[0171] In one embodiment, the cleaning device includes a cleaning nozzle, an infusion pipeline, a water storage tank, and a motor;
[0172] The infusion pipeline is connected in sequence to a water storage tank, a washing and care solution storage device, and a cleaning nozzle;
[0173] The motor provides power to mix the water in the storage tank with the target cleaning solution and spray it from the cleaning nozzle onto the cooling module.
[0174] In one embodiment, the cleaning nozzle is located at the front grille of the vehicle, with the nozzle facing the cooling module.
[0175] Specific limitations regarding the intelligent cleaning system for the vehicle cooling module can be found in the above description of the intelligent cleaning method for the vehicle cooling module, and will not be repeated here. Each module in the aforementioned intelligent cleaning system for the vehicle cooling module can be implemented entirely or partially through software, hardware, or a combination thereof. These modules can be embedded in or independent of the processor in a computer device, or stored in the memory of a computer device as software, so that the processor can call and execute the corresponding operations of each module.
[0176] The intelligent cleaning method and system for the vehicle cooling module described above will be further illustrated with specific examples below:
[0177] User A habitually activates the smart cleaning function before each car use. After the smart cleaning function is activated, it first acquires multi-dimensional environmental information and inputs this information into a big data model for analysis. Since the time information includes the season of spring, the location information includes the city of a northern city, and the trip information includes the planned driving route that passes through sections with many willow trees, it can be determined that the pollutants include at least willow catkins.
[0178] Among them, the washing and care strategy corresponding to willow catkins is C. Washing and care strategy C includes immediate washing and care task 1 and delayed washing and care task 1. Immediate washing and care task 1 requires the use of washing and care liquid X, which has anti-static properties, while delayed washing and care task 1 requires the use of washing and care liquid Y, which has cleaning properties. The delayed washing and care is triggered when the vehicle is parked for a first preset duration. That is, the target washing and care liquids include washing and care liquid X and washing and care liquid Y.
[0179] Based on the above washing and care strategy C, the washing and care solution X is immediately diluted with water and sprayed onto the cooling module to reduce the possibility of the cooling module absorbing willow catkins during subsequent vehicle driving. After completing the planned driving route and while the vehicle is parked, the washing and care solution Y is diluted with water and sprayed onto the cooling module to promptly remove the willow catkins adhering to the cooling module and prevent them from remaining and hardening for a long time.
[0180] User B sets the smart cleaning function to automatically start at midnight every night. After the smart cleaning function is activated, it first acquires multi-dimensional environmental information and inputs this information into a big data model for analysis. Since the parking environment information includes the presence of animals around the vehicle, it can be determined that the pollutant is animal urine.
[0181] The cleaning strategy corresponding to animal urine is D. Cleaning strategy D includes immediate cleaning task 2. Immediate cleaning task 2 requires first using a cleaning solution Y, followed by a washing solution Z with an odor that the animal dislikes. That is, the target cleaning solutions include cleaning solution Y and cleaning solution Z.
[0182] Based on the above washing and care strategy D, immediately dilute the washing and care solution Y with water and spray it onto the cooling module. If there is any animal urine remaining on the cooling module, use washing and care solution Y to remove it promptly. Then dilute the washing and care solution Z with water and spray it onto the cooling module to prevent the animal from approaching the cooling module again and urinating on it.
[0183] It should be understood that, although Figure 1 The steps in the flowchart are shown sequentially as indicated by the arrows, but these steps are not necessarily executed in the order indicated by the arrows. Unless otherwise explicitly stated herein, there is no strict order in which these steps are executed, and they can be performed in other orders. Figure 1 At least some of the steps in the process may include multiple sub-steps or multiple stages. These sub-steps or stages are not necessarily completed at the same time, but can be executed at different times. The execution order of these sub-steps or stages is not necessarily sequential, but can be executed in turn or alternately with other steps or at least some of the sub-steps or stages of other steps.
[0184] This application also provides a vehicle including an intelligent cleaning system for the vehicle cooling module described in the above embodiments.
[0185] This application also provides a computer device. In one embodiment, the computer device includes a memory, a processor, and a computer program stored in the memory and executable on the processor. When the processor executes the computer program, it implements the steps of the intelligent cleaning method for the vehicle cooling module described in the above embodiment.
[0186] In another embodiment, the computer device may be a terminal, and its internal structure diagram may be as follows: Figure 3 As shown, the computer device includes a processor, memory, network interface, display screen, and input devices connected via a system bus. The processor provides computing and control capabilities. The memory includes non-volatile storage media and internal memory. The non-volatile storage media stores the operating system and computer programs. The internal memory provides an environment for the operation of the operating system and computer programs in the non-volatile storage media. The network interface is used to communicate with external terminals via a network connection. When the computer program is executed by the processor, it implements an intelligent cleaning method for a vehicle cooling module. The display screen can be an LCD screen or an e-ink screen. The input devices can be a touch layer covering the display screen, buttons, a trackball, or a touchpad on the computer device's casing, or an external keyboard, touchpad, or mouse.
[0187] Those skilled in the art will understand that Figure 3The structure shown is merely a block diagram of a portion of the structure related to the present application and does not constitute a limitation on the computer device to which the present application is applied. Specific computer devices may include more or fewer components than those shown in the figure, or combine certain components, or have different component arrangements.
[0188] This application also provides a computer-readable storage medium storing a computer program thereon, which, when executed by a processor, implements the steps of the intelligent cleaning method for the vehicle cooling module in the above embodiments.
[0189] Those skilled in the art will understand that all or part of the processes in the methods of the above embodiments can be implemented by a computer program instructing related hardware. The computer program can be stored in a non-volatile computer-readable storage medium. When executed, the computer program can include the processes of the embodiments of the above methods. Any references to memory, storage, databases, or other media used in the embodiments provided in this application can include non-volatile and / or volatile memory. Non-volatile memory may include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM), or flash memory. Volatile memory may include random access memory (RAM) or external cache memory. By way of illustration and not limitation, RAM is available in a variety of forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), dual data rate SDRAM (DDRSDRAM), enhanced SDRAM (ESDRAM), synchronous link DRAM (SLDRAM), RAMbus direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and memory bus dynamic RAM (RDRAM), etc.
[0190] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0191] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the invention patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this patent application should be determined by the appended claims.
Claims
1. A smart cleaning method for a vehicle cooling module, characterized in that, The vehicle is equipped with a detergent storage device and a cleaning device. The detergent storage device is used to store various detergents with different functions, and the cleaning device is connected to the detergent storage device. The intelligent cleaning method includes: In response to the intelligent cleaning start signal, the system acquires multi-dimensional environmental information, including at least one of time information, location information, weather information, air quality information, travel information, and parking environment information. At least one pollutant is identified based on the multi-dimensional environmental information; At least one target washing and care solution is identified based on the pollutant; The cleaning device is controlled to spray the target washing and care liquid onto the cooling module.
2. The intelligent cleaning method as described in claim 1, characterized in that, The step of determining at least one target shampoo / conditioner based on the contaminant includes: Based on the preset correspondence between the pollutants and the washing and care solutions, at least one of the target washing and care solutions is determined; or, The step of determining at least one target shampoo / conditioner based on the contaminant includes: Obtain the washing and care strategy corresponding to the pollutants; At least one of the target shampoo and conditioner solutions is determined according to the shampooing and conditioner strategy.
3. The intelligent cleaning method as described in claim 2, characterized in that, The washing and care strategy includes immediate washing and care tasks and / or delayed washing and care tasks; The step of controlling the cleaning device to spray the target shampoo and conditioner solution onto the cooling module includes: According to the instant washing and care task, the cleaning device is controlled to spray the target washing and care liquid corresponding to the instant washing and care task onto the cooling module; And / or, According to the delayed washing and care task, when the delayed washing and care conditions are met, the cleaning device is controlled to spray the target washing and care liquid corresponding to the delayed washing and care task onto the cooling module.
4. The intelligent cleaning method as described in claim 1, characterized in that, The cleaning device includes a cleaning nozzle, an infusion pipeline, a water storage tank, and a motor; The infusion pipeline is sequentially connected to the water storage tank, the washing and care solution storage device, and the cleaning nozzle; The motor provides power to mix the water in the water tank with the target washing and care liquid and spray it from the cleaning nozzle onto the cooling module.
5. The intelligent cleaning method as described in claim 4, characterized in that, The cleaning nozzle is located at the air intake grille of the vehicle, and the nozzle of the cleaning nozzle faces the cooling module.
6. An intelligent cleaning system for a vehicle cooling module, characterized in that, The vehicle is equipped with a detergent storage device and a cleaning device. The detergent storage device is used to store various detergents with different functions, and the cleaning device is connected to the detergent storage device. The intelligent cleaning system includes: The information acquisition module is used to respond to the intelligent cleaning start signal and acquire multi-dimensional environmental information, including at least one of time information, location information, weather information, air quality information, travel information, and parking environment information; A shampoo and conditioner selection module is used to determine at least one pollutant based on the multi-dimensional environmental information, and to determine at least one target shampoo and conditioner based on the pollutant. A cleaning control module is used to control the cleaning device to spray the target cleaning solution onto the cooling module.
7. A vehicle, characterized in that, The vehicle is equipped with a detergent storage device and a cleaning device. The detergent storage device is used to store various detergents with different functions. The cleaning device is connected to the detergent storage device. The vehicle includes the intelligent cleaning system as described in claim 6.
8. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by a processor, it implements the steps of the method according to any one of claims 1 to 5.
Citation Information
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