Shoe cleaning and nursing system and control method thereof
By integrating multi-functional zoning and image recognition technology, the shoe cleaning and care system solves the problem of limited functionality in existing equipment. It enables the selection of appropriate cleaning and care modes based on the specific needs of the shoes, reducing wear and tear and extending the lifespan of the shoes.
Patent Information
- Application Number
- CN202411046223.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-31
- Publication Date
- 2026-02-06
AI Technical Summary
Existing shoe cleaning and care equipment has limited functionality and cannot meet the diverse needs of shoe treatment; moreover, traditional cleaning methods can cause wear and tear on shoes.
Design a shoe cleaning and care system that integrates multiple zones to perform brushing, steam cleaning, airflow dust removal, drying, sterilization, and deodorization modes. The system automatically selects the appropriate operating mode based on the degree of dirtiness and care time of the shoes through image recognition and mobile terminal control.
It enables users to select the appropriate cleaning and care mode based on the specific needs of the shoes, reducing wear and tear, extending the lifespan of the shoes, and improving the user experience.
Smart Images

Figure CN121465486A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a shoe cleaning and care system, specifically providing a shoe cleaning and care system and its control method. Background Technology
[0002] Shoe washing machines typically come with brushes that rub against the shoes to remove dirt. However, this cleaning method can cause wear and tear on the shoes, shortening their lifespan. While other shoe care devices can care for shoes in different ways, these devices are usually separate from shoe washing machines, making them inconvenient to use.
[0003] Therefore, there is an urgent need in the field for a shoe cleaning and care system and its control method to solve the above problems. Summary of the Invention
[0004] The present invention aims to solve the above-mentioned technical problems, namely, to solve the problem that existing shoe cleaning and care equipment has only one function and cannot meet the different shoe processing needs.
[0005] In a first aspect, the present invention provides a shoe cleaning and care system, the shoe cleaning and care system comprising:
[0006] The shoe cleaning and care equipment includes multiple zones, each of which is capable of performing at least one of the following operating modes: brushing, steam cleaning, airflow dust removal, drying, sterilization, and deodorization.
[0007] In a specific embodiment of the aforementioned shoe cleaning and care system, the system further includes a mobile terminal, which is communicatively connected to the shoe cleaning and care equipment. The mobile terminal is capable of acquiring images of the shoes and transmitting these images to the shoe cleaning and care equipment; and / or
[0008] The shoe cleaning and care equipment includes an image acquisition device, which can acquire images of the shoes and transmit the images of the shoes to the mobile terminal.
[0009] In a specific embodiment of the above-mentioned shoe cleaning and care system, the mobile terminal can control the operating mode of the shoe cleaning and care equipment.
[0010] In a second aspect, the present invention provides a control method for a shoe cleaning and care system, the shoe cleaning and care system including shoe cleaning and care equipment, the control method comprising the following steps:
[0011] The operating mode of the shoe cleaning and care equipment is determined based on the image of the shoe.
[0012] In a specific implementation of the above control method, "determining the operating mode of the shoe cleaning and care equipment based on the image of the shoe" includes the following steps:
[0013] Obtain an image of the shoes;
[0014] The degree of dirtiness of the shoes is determined based on the image of the shoes;
[0015] The operating mode of the shoe cleaning and care equipment is determined based on the degree of dirtiness of the shoes.
[0016] In a specific implementation of the above control method, "determining the operating mode of the shoe cleaning and care equipment based on the degree of dirtiness of the shoes" includes the following steps:
[0017] When the shoes are dirtier than a first preset value, the shoes are brushed and washed.
[0018] When the degree of dirtiness of the shoes is less than the first preset value and greater than the second preset value, the shoes are steam cleaned.
[0019] When the degree of dirt on the shoes is less than the second preset value, the shoes are subjected to airflow dust removal.
[0020] Wherein, the first preset value is greater than the second preset value.
[0021] In a specific implementation of the above control method, "determining the operating mode of the shoe cleaning and care equipment based on the image of the shoe" includes the following steps:
[0022] Obtain an image of the shoes;
[0023] The time of the last care of the shoes is obtained from the image of the shoes;
[0024] Whether the shoes need to be cared for depends on the time since the last caring treatment.
[0025] The care includes at least one of the following operating modes: drying, sterilization, and deodorization.
[0026] In a specific implementation of the above control method, "determining the operating mode of the shoe cleaning and care equipment based on the image of the shoe" further includes the following steps:
[0027] After the shoe cleaning and care equipment has cleaned and cared for the shoes, it records the care time of the shoes.
[0028] In a specific implementation of the above control method, "determining the care operation mode of the shoe cleaning and care equipment based on the time of the last care of the shoe" includes the following steps:
[0029] When the time since the last cleaning of the shoes exceeds a preset time, the shoes are cleaned.
[0030] If the last time the shoes were cared for was less than a preset time, the shoes are inspected, and a decision is made based on the inspection results as to whether the shoes need further care.
[0031] In a specific implementation of the above control method, "inspecting the shoes and determining whether to care for the shoes based on the inspection results" includes the following steps:
[0032] Detect the humidity of the shoes, and determine whether to dry the shoes based on the humidity; and / or
[0033] Detect the microbial status of the shoes, and determine whether to disinfect the shoes based on the microbial status; and / or
[0034] The odor of the shoes is detected, and the odor is used to determine whether the shoes need to be deodorized.
[0035] When adopting the above technical solution, the shoe cleaning and care equipment of the present invention includes multiple zones, each zone capable of performing at least one of the following operating modes: brushing, steam cleaning, airflow dust removal, drying, sterilization, and deodorization. This configuration integrates multiple shoe processing operating modes into one device, making it convenient for users to select the appropriate operating mode to process shoes.
[0036] Furthermore, the control method of the shoe cleaning and care system of the present invention can determine the operating mode of the shoe cleaning and care equipment based on the image of the shoe, and assist the user in selecting the appropriate operating mode to process the shoes.
[0037] Furthermore, the control method of the present invention determines the degree of dirtiness of the shoes based on an image of the shoes, and then determines the operating mode of the shoe cleaning and care equipment based on the degree of dirtiness to clean the shoes in an appropriate manner. This setup can reduce the frequency of brushing shoes, reduce wear caused by brushing, and thus extend the service life of the shoes.
[0038] Furthermore, the control method of the present invention obtains the time of the last shoe care based on the image of the shoe, and then determines whether to care for the shoe based on the time of the last shoe care. This setting method enables regular shoe care to keep the shoe in a comfortable condition and improve the user experience.
[0039] Furthermore, it can detect the condition of shoes before they reach their scheduled care time to determine whether they need care, and then provide care based on the actual condition of the shoes. Attached Figure Description
[0040] The preferred embodiments of the present invention are described below with reference to the accompanying drawings, in which:
[0041] Figure 1 This is a schematic diagram of the structure of the shoe cleaning and care equipment provided by the present invention;
[0042] Figure 2 This is a flowchart of the control method for the shoe cleaning and care equipment according to Embodiment 1 of the present invention;
[0043] Figure 3 This is a detailed flowchart of the control method for the shoe cleaning and care equipment according to Embodiment 1 of the present invention;
[0044] Figure 4 This is a flowchart of the control method for the shoe cleaning and care equipment according to Embodiment 2 of the present invention;
[0045] Figure 5 This is a detailed flowchart of the cleaning and care control method of the shoe cleaning and care equipment according to Embodiment 2 of the present invention;
[0046] Figure 6 This is a detailed flowchart of the drying and care control method of the shoe cleaning and care equipment according to Embodiment 2 of the present invention;
[0047] Figure 7 This is a detailed flowchart of the sterilization and care control method of the shoe cleaning and care equipment according to Embodiment 2 of the present invention;
[0048] Figure 8 This is a detailed flowchart of the deodorization and care control method of the shoe cleaning and care equipment according to Embodiment 2 of the present invention.
[0049] List of reference numerals in the attached diagram:
[0050] 1. Shoe cleaning and care equipment; 2. Washing area; 3. Care area. Detailed Implementation
[0051] Preferred embodiments of the present invention will now be described with reference to the accompanying drawings. Those skilled in the art should understand that these embodiments are merely illustrative of the technical principles of the present invention and are not intended to limit the scope of protection of the present invention.
[0052] It should be noted that in the description of this invention, terms such as "upper," "lower," "left," "right," "inner," and "outer," indicating directional or positional relationships, are based on the directional or positional relationships shown in the accompanying drawings. These are merely for ease of description and do not indicate or imply that the device or element must have a specific orientation, or be constructed and operated in a specific orientation; therefore, they should not be construed as limitations on this invention. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0053] Furthermore, it should be noted that, in the description of this invention, unless otherwise explicitly specified and limited, the terms "installation," "setting," and "connection" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection, an indirect connection through an intermediate medium, or a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.
[0054] To address the problem that existing shoe cleaning and care equipment has limited functionality and cannot meet the diverse needs of shoe processing, this embodiment discloses a shoe cleaning and care system and its control method.
[0055] This shoe cleaning and care system includes shoe cleaning and care equipment and a mobile terminal. The shoe cleaning and care equipment specifically includes one of the following: a shoe washing machine, a smart shoe cabinet, or a combined laundry and shoe washing machine. The mobile terminal specifically includes, but is not limited to, mobile phones, tablets, and other devices. The mobile terminal communicates with the shoe cleaning and care equipment; specifically, the shoe cleaning and care equipment is equipped with a communication module, and the mobile terminal can communicate with this module. The shoe cleaning and care equipment can acquire images of the shoes and transmit these images to the mobile terminal; the mobile terminal can also acquire images of the shoes and transmit them to the shoe cleaning and care equipment. The mobile terminal can also transmit control commands to the shoe cleaning and care equipment to control its operating mode.
[0056] Reference Figure 1 The shoe cleaning and care equipment 1 includes a brushing zone 2 and two care zones 3. The brushing zone 2 is used to brush the shoes. Specifically, the brushing zone 2 includes a roller with brushes inside. The roller drives the shoes inside to rotate, causing the brushes to rub the shoes and remove dirt. The care zones 3 can perform various cleaning and care treatments on the shoes; both care zones 3 have the same function. Cleaning treatments include, but are not limited to, steam cleaning and airflow dust removal. The specific principle of steam cleaning is to clean the shoes by fumigating them with steam. In this embodiment, low-temperature steam at 50 to 60 degrees Celsius is used to reduce energy consumption. This low-temperature steam cleaning method is also known as micro-cleaning. Airflow dust removal uses a high-velocity airflow to remove dust from the surface of the shoes. Furthermore, high-temperature airflow is used for airflow dust removal, which can both remove dust and dry the shoes. Care treatments include, but are not limited to, drying, sterilization, and deodorization. Drying specifically involves evaporating moisture from the shoes using a high-temperature airflow. Sterilization specifically involves irradiating the shoes with ultraviolet light. The deodorization process specifically involves fumigating the shoes with scented gases.
[0057] Regarding the shoe cleaning and care equipment 1, it should be noted that although the shoe cleaning and care equipment 1 in this embodiment includes a brushing area 2 and a care area 3, this arrangement is not a limitation of the present invention. Without departing from the principles of the present invention, those skilled in the art can use other arrangements in other embodiments. For example, the shoe cleaning and care equipment 1 can be configured with multiple zones, each zone being used to execute one or more operating modes. Specifically, two zones can be configured, with brushing, steam cleaning, and airflow dust removal in one zone, and drying, sterilization, and deodorization in another zone; or, six zones can be configured, with each zone used for one of the six operating modes: brushing, steam cleaning, airflow dust removal, drying, sterilization, and deodorization. These changes do not depart from the basic principles of the present invention and therefore fall within the protection scope of the present invention.
[0058] The shoe cleaning and care equipment 1 includes multiple operating modes such as brushing, steam cleaning, airflow dust removal, drying, sterilization, and deodorization. Users can send control commands to the shoe cleaning and care equipment 1 via a mobile device, or via the voice recognition module on the mobile device, or via the voice recognition module on the shoe cleaning and care equipment 1, to control the operating mode of the shoe cleaning and care equipment 1. The shoe cleaning and care equipment 1 can also automatically determine the operating mode based on an image of the shoe. The control method of the shoe cleaning and care equipment 1 is illustrated below through two embodiments.
[0059] Example 1
[0060] The control method in this embodiment is used to determine which cleaning mode to use for the shoes. The cleaning modes specifically include brushing, steam cleaning, and airflow dust removal. The control method includes the following steps:
[0061] Determine whether the shoes need to be cleaned based on the image of the shoes.
[0062] Reference Figure 2 The control method specifically includes the following steps:
[0063] S101: Acquire an image of the shoe. Specifically, acquire an image of the shoe using an image acquisition device or a mobile device. Then execute S102.
[0064] S102: Determine the degree of dirtiness of the shoes based on the shoe image. In this embodiment, a standard image of the shoes to be processed is stored in the shoe cleaning and care system. The standard image refers to an image of the shoes in a clean state. The shoe cleaning and care system can obtain the standard image of the shoes based on the current image of the shoes; then, by comparing the current image and the standard image, it identifies data such as the type, area, color difference, and thickness of dirt on the current image of the shoes, and calculates the degree of dirtiness of the shoes based on the above data. In other embodiments, an image recognition model can also be trained so that the image recognition model can determine the degree of dirtiness of the shoes based on the shoe image.
[0065] Then execute S103.
[0066] S103: Determine the operating mode of the shoe cleaning and care equipment 1 based on the degree of soiling. Specifically, when the shoes are heavily soiled, brush them; when the shoes are moderately soiled, steam them; when the shoes are lightly soiled, use airflow to remove dust; and when the shoes are very lightly soiled, do not clean them, but recommend shoe care instead. This setting allows for a gentler cleaning mode when the shoes are lightly soiled, thus reducing damage and extending their lifespan.
[0067] Reference Figure 3 The specific steps of the control method in this embodiment are provided below:
[0068] S201: Obtain the current image of the shoe, then execute S202.
[0069] S202: Obtain the standard image of the shoe based on the current image of the shoe, and then execute S203.
[0070] S203: Determine the degree of dirtiness of the shoes based on the current image and the standard image. Then proceed to S204.
[0071] S204: Determine if the degree of dirtiness of the shoes exceeds the first preset value. If the degree of dirtiness of the shoes exceeds the first preset value, it means that the shoes are seriously dirty, then proceed to S205; if the degree of dirtiness of the shoes does not exceed the first preset value, then proceed to S206.
[0072] S205: Instruct the user to place the shoes in washing area 2, and then wash the shoes.
[0073] S206: Determine if the degree of dirtiness of the shoes is greater than the second preset value. The first preset value is greater than the second preset value. If the degree of dirtiness of the shoes is greater than the second preset value, it means that the degree of dirtiness of the shoes is moderate, then execute S207; if the degree of dirtiness of the shoes is not greater than the second preset value, then execute S208.
[0074] S207: Instruct the user to place the shoe in care area 3, and then steam clean the shoe.
[0075] S208: Determine if the degree of dirtiness of the shoes is greater than the third preset value. The second preset value is greater than the third preset value. If the degree of dirtiness of the shoes is greater than the third preset value, it means that the degree of dirtiness of the shoes is relatively light, then proceed to S209; if the degree of dirtiness of the shoes is not greater than the third preset value, it means that the shoes are approximately clean, then proceed to S2010.
[0076] S209: Instruct the user to place the shoe in care area 3, and then perform airflow dust removal on the shoe.
[0077] S2010: Informs the user that there is no need to clean the shoes.
[0078] Regarding the step "determining the degree of dirtiness of the shoes based on the shoe image," it should be noted that although this embodiment determines the degree of dirtiness by comparing the current image of the shoes with a standard image, this approach is not a limitation of the invention. Without departing from the principles of the invention, those skilled in the art can employ other methods in other embodiments. For example, a convolutional neural network model for determining the degree of dirtiness of shoes can be trained using a large number of clean shoe images and shoe images with varying degrees of dirtiness. Then, the shoe images are transmitted to this model, which can then automatically determine the degree of dirtiness. This does not depart from the basic principles of the invention and therefore falls within the scope of protection of the invention.
[0079] Example 2
[0080] The control method in this embodiment is used to determine which care mode to apply to the shoes. (Refer to...) Figure 4 The control method in this embodiment includes the following steps:
[0081] S301: Acquire an image of the shoe. Specifically, acquire an image of the shoe using an image acquisition device or a mobile device. Then execute S302.
[0082] S302: Obtain the time since the last shoe care treatment based on the shoe image. Specifically, identify the shoe in the image using image recognition, then search the database for the last care time of the shoe, and calculate the time interval since the last care treatment based on the last care time and the current time. Furthermore, a record needs to be made after each shoe care treatment. Then proceed to S303.
[0083] S303: Determine whether to perform shoe care based on the time elapsed since the last care treatment. If the time elapsed since the last care treatment is greater than a preset time, perform shoe care. If the time elapsed since the last care treatment is less than a preset time, you may not perform shoe care, or you may inspect the shoes and determine whether to perform shoe care based on the inspection results.
[0084] Furthermore, steam cleaning uses steam with a certain amount of heat to fumigate the shoes, which can both clean and sterilize them. Airflow dust removal uses high-temperature airflow to dry the shoes during dust removal. Therefore, in this embodiment, steam cleaning and airflow dust removal can be used as both cleaning and care modes. A control method is provided below to determine whether the shoes require either of these care modes. (Refer to...) Figure 5 The control method includes the following steps:
[0085] S401: Obtain an image of the shoes, then execute S402.
[0086] S402: Obtain the time of the last cleaning of the shoe based on the shoe image. "Cleaning" includes brushing, steam cleaning, and airflow dust removal. The "last cleaning time" is the latest of the following: the last brushing time, the last steam cleaning time, and the last airflow dust removal time. Then execute S403.
[0087] S403: Calculate the time interval between the last cleaning and the current time of the shoes, and then execute S404.
[0088] S404: Determine if the time interval since the last cleaning of the shoes is greater than a first preset time. If it is greater than the first preset time, it means the shoes have not been cleaned for a relatively long period of time, then execute S405. If it is less than the first preset time, then execute S406.
[0089] S405: Perform steam cleaning on the shoes, then proceed to S408.
[0090] S406: Determine if the time interval since the last cleaning of the shoes is greater than the second preset time. The first preset time is greater than the second preset time. If it is greater than the second preset time, it means the shoes have not been cleaned in a short period of time, then execute S407. If it is less than the second preset time, it means the shoes have been cleaned recently, then there is no need to clean the shoes.
[0091] S407: Perform airflow dust removal on the shoes, then execute S408.
[0092] S408: Record the shoe cleaning time.
[0093] Furthermore, the care mode also includes drying. Below is a control method for determining whether shoes need drying. (See reference...) Figure 6 The control method includes the following steps:
[0094] S501: Obtain an image of the shoe, then execute S502.
[0095] S502: Obtain the last drying time of the shoe based on the shoe image. "Drying" includes airflow dust removal and drying. "Last drying time" is specifically the latest of the last airflow dust removal time and the last drying time. Then execute S503.
[0096] S503: Calculate the time interval between the last drying and the current time of the shoes, and then execute S504.
[0097] S504: Determine whether the time interval between the last drying of the shoes and the last drying time is greater than the third preset time. If it is greater than the third preset time, execute S507; if it is less than the third preset time, execute S505.
[0098] S505: Detect the humidity of the shoes. Specifically, a humidity detector is installed in the care area 3 of the shoe cleaning and care equipment 1, which can detect the humidity of the shoes. Then, proceed to S506.
[0099] S506: Determine if the humidity of the shoes is greater than the preset humidity. If it is greater than the preset humidity, proceed to S507; otherwise, there is no need to dry the shoes.
[0100] S507: Dry the shoes, then proceed to S508.
[0101] S508: Record the drying time of the shoes.
[0102] Furthermore, the care process also includes sterilization. Below is a control method for determining whether shoes require sterilization. (Refer to...) Figure 7 The control method includes the following steps:
[0103] S601: Obtain an image of the shoes, then execute S602.
[0104] S602: Obtain the time of the last sterilization of the shoe based on the image of the shoe, and then execute S603.
[0105] S603: Calculate the time interval between the last sterilization of the shoes and the current time, and then execute S604.
[0106] S604: Determine if the time interval between the last sterilization of the shoes is greater than the fourth preset time. If it is greater than the fourth preset time, execute S607; if it is less than the fourth preset time, execute S605.
[0107] S605: Detect the microbial content of the shoes. Specifically, a microbial detection device is installed in the care area 3 of the shoe cleaning and care equipment 1. The microbial detection device can detect the microbial content of the shoes. Specifically, the microbial detection device can provide a microbial test strip and can make the test strip contact the shoe, causing the test strip to change color. Then, image recognition technology is used to identify the color of the test strip to determine the microbial content on the shoes. Then, S606 is executed.
[0108] S606: Determine whether the microbial content of the shoes is greater than the first preset content. If it is greater than the first preset content, proceed to S607; if it is less than the first preset content, there is no need to sterilize the shoes.
[0109] S607: Determine if the microbial content of the shoes is greater than the second preset content. If it is greater than the second preset content, it means that the microbial content of the shoes is very high, then execute S608; if it is less than the second preset content, then execute S609.
[0110] S608: Instructs the user to place the shoes in washing area 2 for a thorough cleaning.
[0111] S609: Sterilize the shoes. Specifically, the shoe cleaning and care equipment 1 has a sterilization component, namely an ultraviolet lamp, installed in the care area 3, which sterilizes the shoes using ultraviolet light. Further, the ultraviolet light irradiation time is adjusted according to the microbial content. Then, proceed to S610.
[0112] S610: Records the sterilization time of the shoes.
[0113] Furthermore, the care process also includes deodorization. Below is a control method for determining whether shoes need deodorization. (See reference...) Figure 8 The control method includes the following steps:
[0114] S701: Obtain an image of the shoes, then execute S702.
[0115] S702: Obtain the time of the last deodorization of the shoe based on the image of the shoe, and then execute S703.
[0116] S703: Calculate the time interval between the last deodorization and the current time, and then execute S704.
[0117] S704: Determine if the time interval since the last deodorization of the shoes is greater than the fifth preset time. If it is greater than the fifth preset time, execute S707; if it is less than the fifth preset time, execute S705.
[0118] S705: Detect odor inside shoes. Specifically, an odor detection device is installed in the care area. The odor detection device is specifically a gas sensor or an electronic nose. The odor detection device can detect the concentration of odor gases on the shoes. Odor gases are specifically common shoe odor substances, such as ammonia, methyl mercaptan, acetic acid, etc. Then proceed to S706.
[0119] S706: Determine whether the concentration of odorous gas inside the shoes is greater than a first preset concentration. If it is greater than the first preset concentration, proceed to S707; if it is less than the first preset concentration, there is no need to sterilize the shoes.
[0120] S707: Determine if the concentration of odor gas inside the shoes is greater than the second preset concentration. If it is greater than the second preset concentration, it means that the concentration of odor gas inside the shoes is high and they should be cleaned; then proceed to S708. If it is less than the second preset concentration, then proceed to S709.
[0121] S708: Instructs the user to place the shoes in washing area 2 for thorough washing.
[0122] S709: Deodorize the shoes. Specifically, the shoe cleaning and care equipment 1 has a deodorizing component in its care area 3. This component provides a fragrant gas, which fumes the shoes to achieve deodorization. Then, proceed to S710.
[0123] S710: Records the odor removal time of shoes.
[0124] The technical solution of the present invention has been described above with reference to the preferred embodiments shown in the accompanying drawings. However, it will be readily understood by those skilled in the art that the scope of protection of the present invention is obviously not limited to these specific embodiments. Without departing from the principles of the present invention, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after such changes or substitutions will all fall within the scope of protection of the present invention.
Claims
1. A shoe cleaning and care system, characterized in that, include: The shoe cleaning and care equipment includes multiple zones, which are capable of performing at least one of the following operating modes: brushing, steam cleaning, airflow dust removal, drying, sterilization, and deodorization.
2. The shoe cleaning and care system according to claim 1, characterized in that, The shoe cleaning and care system also includes a mobile terminal, which is communicatively connected to the shoe cleaning and care equipment. The mobile terminal is able to acquire images of the shoes and transmit the images of the shoes to the shoe cleaning and care equipment. And / or The shoe cleaning and care equipment includes an image acquisition device, which can acquire images of the shoes and transmit the images of the shoes to the mobile terminal.
3. The shoe cleaning and care system according to claim 2, characterized in that, The mobile device can control the operating mode of the shoe cleaning and care equipment.
4. A control method for a shoe cleaning and care system, characterized in that, The shoe cleaning and care system includes shoe cleaning and care equipment, and the control method includes the following steps: The operating mode of the shoe cleaning and care equipment is determined based on the image of the shoe.
5. The control method according to claim 4, characterized in that, "Determining the operating mode of the shoe cleaning and care equipment based on the image of the shoe" includes the following steps: Obtain an image of the shoes; The degree of dirtiness of the shoes is determined based on the image of the shoes; The operating mode of the shoe cleaning and care equipment is determined based on the degree of dirtiness of the shoes.
6. The control method according to claim 5, characterized in that, "Determining the operating mode of the shoe cleaning and care equipment based on the degree of dirt on the shoes" includes the following steps: When the shoes are dirtier than a first preset value, the shoes are brushed and washed. When the degree of dirtiness of the shoes is less than the first preset value and greater than the second preset value, the shoes are steam cleaned. When the degree of dirt on the shoes is less than the second preset value, the shoes are subjected to airflow dust removal. Wherein, the first preset value is greater than the second preset value.
7. The control method according to claim 4, characterized in that, "Determining the operating mode of the shoe cleaning and care equipment based on the image of the shoe" includes the following steps: Obtain an image of the shoes; The time of the last care of the shoes is obtained from the image of the shoes; Whether the shoes need to be cared for depends on the time since the last caring treatment. The nursing care includes any one of the following operating modes: drying, sterilization, and deodorization.
8. The control method according to claim 7, characterized in that, "Determining the operating mode of the shoe cleaning and care equipment based on the image of the shoe" also includes the following steps: After the shoe cleaning and care equipment has cleaned and cared for the shoes, it records the care time of the shoes.
9. The control method according to claim 8, characterized in that, "Determining the care operation mode of the shoe cleaning and care equipment based on the time of the last care of the shoes" includes the following steps: When the time since the last cleaning of the shoes exceeds a preset time, the shoes are cleaned. If the last time the shoes were cared for was less than a preset time, the shoes are inspected, and a decision is made based on the inspection results as to whether the shoes need further care.
10. The control method according to claim 9, characterized in that, "Inspecting the shoes and determining whether to treat them based on the inspection results" includes the following steps: Detect the humidity of the shoes, and determine whether to dry the shoes based on the humidity; and / or Detect the microbial status of the shoes, and determine whether to disinfect the shoes based on the microbial status; and / or The odor of the shoes is detected, and the odor is used to determine whether the shoes need to be deodorized.