Drying control method of smart shoe cabinet

By obtaining the material and humidity information of the shoes, intelligently adjusting the operating parameters of the drying device, the existing intelligent shoe cabinet drying control methods are solved, and the existing intelligent shoe cabinet drying control method is inefficient and easy to damage shoes is achieved, and efficient and safe shoe drying is achieved, improving user experience.

CN114947688BActive Publication Date: 2025-08-26CHONGQING HAIER WASHING MASCH CO LTD
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Patent Information

Application Number
CN202110191863.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-02-19
Publication Date
2025-08-26
Estimated Expiration
2041-02-19

AI Technical Summary

Technical Problem

The drying control method of existing smart shoe cabinets is difficult to achieve efficient drying without damaging the shoes, and the user experience is poor.

Method used

By obtaining the material, moisture permeability and moisture content of the shoes to be dried, the operating parameters of the drying device, including the drying time and grade, the power of the heating member and the speed of the drying fan are adjusted to adapt to the actual situation of different shoes.

Benefits of technology

It achieves improving drying efficiency, improving user experience, and expanding the scope of application without damaging the shoes, saving time without the need for users to set parameters.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention belongs to the field of shoe processing technology, and specifically relates to a drying control method for an intelligent shoe cabinet. The present invention aims to solve the problem that the drying control methods of existing intelligent shoe cabinets are difficult to achieve efficient drying without damaging the shoes. To this end, the drying control method of the present invention includes: obtaining the material of the shoes to be dried; determining the moisture permeability of the shoes to be dried based on the obtained material; obtaining the current weight of the shoes to be dried; determining the moisture content of the shoes to be dried based on the obtained current weight and a preset weight; determining the operating parameters of the drying device based on the determined moisture permeability and moisture content of the shoes to be dried; wherein the preset weight is the weight of the shoes to be dried when they are in a dry state. The present invention can effectively adapt to the actual conditions of different shoes, and the present invention determines the moisture permeability by obtaining the material, so that the scope of application is effectively expanded, thereby maximizing the drying efficiency of the intelligent shoe cabinet while ensuring that the shoes are not damaged.
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Description

Technical Field

[0001] The present invention belongs to the technical field of shoe processing, and in particular relates to a drying control method for an intelligent shoe cabinet. Background Art

[0002] As living standards continue to improve, people are increasingly demanding better clothing care techniques. For example, shoe care technology is becoming increasingly popular. To facilitate shoe care at home, smart shoe cabinets with care functions are becoming increasingly popular. Specifically, shoes are susceptible to moisture from prolonged contact with the ground, which can lead to them becoming wet. This is especially true in rainy or snowy weather, where not only do they become damp but they can also get wet. Wet shoes can easily become moldy and discolored if not promptly treated. Therefore, many smart shoe cabinets are equipped with drying devices to facilitate shoe drying.

[0003] Furthermore, although the drying devices configured in existing smart shoe cabinets are already able to effectively dry shoes, their drying control methods still have some problems. Specifically, the drying control methods of existing smart shoe cabinets are mainly divided into three categories: the first category is to directly execute a fixed drying program, that is, after the user starts the drying program, the smart shoe cabinet automatically executes the fixed drying program to dry the shoes. This drying method is difficult to adapt to the specific conditions of different shoes, has low drying efficiency, and is even easy to damage the shoes during the drying process; the second category is for users to set the drying parameters themselves, that is, before executing the drying program, users need to set various operating parameters of the drying device by themselves. However, most users cannot set them clearly and accurately, so the parameters they set often cannot match the actual conditions of different shoes, and the drying effect is not very good; the third category is to obtain the tag information of the shoes and then set the corresponding drying program according to the tag information of the shoes. Although this drying method can treat shoes efficiently and gently, most existing shoes are not equipped with such smart tags, so its scope of application is very limited. It can be seen that the drying control method of existing smart shoe cabinets is difficult to achieve efficient drying without damaging the shoes, which in turn leads to the problem of poor user experience.

[0004] Accordingly, the art requires a new drying control method for a smart shoe cabinet to solve the above problems. Summary of the Invention

[0005] In order to solve the above-mentioned problems in the prior art, that is, to solve the problem that the drying control method of the existing smart shoe cabinet is difficult to achieve efficient drying without damaging the shoes, the present invention provides a drying control method for a smart shoe cabinet, wherein the smart shoe cabinet is provided with a drying device, and the drying control method includes: obtaining the material of the shoes to be dried; determining the moisture permeability of the shoes to be dried according to the obtained material; obtaining the current weight of the shoes to be dried; determining the moisture content of the shoes to be dried according to the obtained current weight and a preset weight; determining the operating parameters of the drying device according to the determined moisture permeability and moisture content of the shoes to be dried; wherein the preset weight is the weight of the shoes to be dried when they are in a dry state.

[0006] In the preferred technical solution of the above-mentioned drying control method, the step of "determining the operating parameters of the drying device according to the determined moisture permeability and moisture content of the shoes to be dried" specifically includes: determining the drying time of the drying device according to the determined moisture permeability and moisture content of the shoes to be dried.

[0007] In the preferred technical solution of the above-mentioned drying control method, the step of "determining the drying time of the drying device based on the determined moisture permeability and moisture content of the shoes to be dried" specifically includes: determining the initial time based on the moisture content of the shoes to be dried; determining the time correction coefficient based on the moisture permeability of the shoes to be dried; and determining the drying time of the drying device based on the determined initial time and the time correction coefficient.

[0008] In the preferred technical solution of the above-mentioned drying control method, the time correction coefficient is determined as follows: the greater the moisture permeability of the shoes to be dried, the smaller the time correction coefficient; the smaller the moisture permeability of the shoes to be dried, the greater the time correction coefficient.

[0009] In the preferred technical solution of the above drying control method, the drying device can perform multiple drying levels, and the drying control method further includes: determining the highest drying level allowed by the drying device in this drying process according to the material of the shoes to be dried.

[0010] In the preferred technical solution of the above-mentioned drying control method, the drying control method further includes: during the drying process, obtaining the current weight of the shoes to be dried again; and determining the drying level of the drying device according to the current weight obtained again and the preset weight.

[0011] In the preferred technical solution of the above-mentioned drying control method, the step of "determining the drying level of the drying device based on the current weight obtained again and the preset weight" specifically includes: determining the level adjustment coefficient based on the difference between the current weight obtained again and the preset weight; determining the drying level of the drying device based on the determined highest drying level and the level adjustment coefficient.

[0012] In the preferred technical solution of the above-mentioned drying control method, the level adjustment coefficient is determined as follows: the greater the difference between the current weight obtained again and the preset weight, the greater the level adjustment coefficient; the smaller the difference between the current weight obtained again and the preset weight, the smaller the level adjustment coefficient.

[0013] In the preferred technical solution of the above drying control method, the drying device includes a heating component and a drying fan, and the specific method of adjusting the drying level of the drying device is: adjusting the power of the electric heating component and / or the speed of the drying fan.

[0014] In the preferred technical solution of the above drying control method, the preset weight is obtained by obtaining the weight of the shoes to be dried when they were last taken out, and recording the weight as the preset weight.

[0015] In the technical solution of the present invention, a smart shoe cabinet is provided with a drying device. The drying control method of the present invention includes: obtaining the material of the shoes to be dried; determining the moisture permeability of the shoes to be dried based on the obtained material; obtaining the current weight of the shoes to be dried; determining the moisture content of the shoes to be dried based on the obtained current weight and a preset weight; and determining operating parameters of the drying device based on the determined moisture permeability and moisture content of the shoes to be dried; wherein the preset weight is the weight of the shoes to be dried when in a dry state. Based on the above control method, the present invention can determine the operating parameters of the drying device based on the moisture permeability and moisture content of the shoes to be dried to effectively adapt to the actual conditions of different shoes, thereby effectively improving drying efficiency and providing users with a more comfortable and refreshing experience. Moreover, since the present invention determines the moisture permeability by obtaining the material, it can be used without the need for a smart tag, thereby effectively expanding the scope of application of the present invention. The present invention also eliminates the need for users to set corresponding operating parameters. This not only saves users time but also maximizes the drying efficiency of the smart shoe cabinet while ensuring that the shoes are not damaged, thereby maximizing the user experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a flow chart of the main steps of the drying control method of the present invention;

[0017] Figure 2 It is a detailed step flow chart of a preferred embodiment of the present invention. DETAILED DESCRIPTION

[0018] The preferred embodiments of the present invention are described below with reference to the accompanying drawings. It should be understood by those skilled in the art that these embodiments are only used to explain the technical principles of the present invention and are not intended to limit the scope of protection of the present invention. Those skilled in the art can make adjustments to them as needed to adapt to specific applications. It should be noted that in the description of this preferred embodiment, the terms "upper", "lower", "inside", "outside" and the like indicating directions or positional relationships are based on the directions or positional relationships shown in the accompanying drawings, which are merely for the convenience of description and do not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.

[0019] In addition, in all descriptions of the present invention, unless otherwise expressly specified and limited, the term "connected" should be understood in a broad sense. For example, it can be a fixed connection or a detachable connection; it can be a direct connection or an indirect connection through an intermediate medium, or it can be a communication between the two components. For those skilled in the art, the specific meanings of the above terms in the present invention can be understood according to the specific circumstances. Although the various steps of the control method of the present invention are described in this application in a specific order, these execution orders are not restrictive. Without departing from the basic principles of the present invention, those skilled in the art can perform the steps in a different order.

[0020] Specifically, as a preferred setting method, the smart shoe cabinet of the present invention includes a cabinet body and a containing component connected to the cabinet body, the containing component is used to contain shoes to be dried, the drying device includes a drying channel, a heating component and a drying fan, the power of the heating component is adjustable to produce different heating temperatures, and the speed of the drying fan is adjustable to provide different air supply volumes. The drying device can execute program settings for different drying levels by adjusting the power of the heating component and the speed of the drying fan. In addition, the drying duct is disposed on the cabinet, and the heating element is disposed within the drying duct so that the heating element can heat the air within the drying duct. The drying duct is provided with an air inlet and an air outlet, and the drying fan is disposed at the air inlet so that the drying fan can continuously transport air from the receiving member into the drying duct. The large amount of air gathered within the drying duct further enhances the heating effect of the heating element, enabling the heating element to fully heat the air within the drying duct. Because the drying fan gathers a large amount of air within the drying duct, and this air expands after being heated, the hot air within the drying duct can flow into the receiving member through the air outlet of the drying duct in large quantities, thereby preventing local overheating while effectively ensuring the drying range of the drying device. It should be noted that the present invention does not impose any limitations on the specific structure of the drying device. Technicians can customize it according to actual needs, as long as the drying device can dry shoes and perform multiple drying levels; for example, the specific type and location of the heating element and the drying fan. These specific structural changes do not deviate from the basic principles of the present invention and fall within the scope of protection of the present invention.

[0021] In addition, it should be noted that the present invention does not impose any restrictions on the number of levels set for the drying device and the actual operating parameters of each level, that is, the present invention does not impose any restrictions on the operating power of the heating component and the operating speed of the drying fan corresponding to each drying level, as long as the higher the drying level, the stronger its drying ability; for example, ten drying levels can be set, or only five drying levels can be set, and technicians can set them according to actual usage requirements; for example, it can be set that the higher the drying level, the higher the setting values ​​of the power of the heating component and the speed of the drying fan, or it can be set that the higher the drying level, only the power of the heating component is higher and the speed of the drying fan remains unchanged, or only changes at some levels, which are not restrictive.

[0022] Furthermore, the containing member is also provided with a material detection device and a weight detection device, wherein the material detection device is capable of detecting the material of the shoes to be dried, and the weight detection device is capable of detecting the weight of the shoes to be dried. It should be noted that the present invention does not impose any restrictions on the specific types and locations of the material detection device and the weight detection device. Technicians can set them according to actual usage requirements, as long as the material detection device is capable of detecting the material of the shoes to be dried and the weight detection device is capable of detecting the weight of the shoes to be dried; for example, the material detection device can be a camera with data analysis capabilities, which can capture images of the shoes and analyze the material of the shoes based on the images.

[0023] Furthermore, the smart shoe cabinet also includes a controller, which can obtain the detection data of the material detection device and the weight detection device, and the controller can also control the operating parameters of the drying device, for example, by controlling the power of the heating component and the speed of the drying fan to adjust the drying level of the drying device, and control the drying time of the drying device, etc. It can be understood by those skilled in the art that the present invention does not impose any restrictions on the specific structure and model of the controller, and the controller can be the original controller of the smart shoe cabinet, or a controller separately set for executing the drying control method of the present invention. The technician can set the structure and model of the controller according to actual use requirements.

[0024] See first Figure 1 , which is a flow chart of the main steps of the drying control method of the present invention. Figure 1 As shown, based on the smart shoe cabinet described in the above embodiment, the drying control method of the present invention mainly includes the following steps:

[0025] S1: Get the material of the shoes to be dried;

[0026] S2: Determine the moisture permeability of the shoes to be dried based on the obtained material;

[0027] S3: Get the current weight of the shoes to be dried;

[0028] S4: Determine the moisture content of the shoes to be dried based on the obtained current weight and the preset weight;

[0029] S5: Determine operating parameters of the drying device according to the determined moisture permeability and moisture content of the shoes to be dried.

[0030] Specifically, in step S1, the controller can use the material detection device to obtain the material of the shoes to be dried, such as leather, plastic, fabric, cotton, etc.; it is understandable that the material obtained in this step is the primary material of the upper of the shoes to be dried. It should be noted that the present invention does not impose any restrictions on the specific method of obtaining the material, and technicians can customize it according to actual usage requirements. In addition, the present invention does not impose any restrictions on the method of determining the shoes to be dried. For example, the shoes placed in the receiving member can be set as the shoes to be dried, or the identification can be based on user settings, which are not restrictive.

[0031] Furthermore, in step S2, the controller can determine the moisture permeability of the shoes to be dried based on the acquired material. Specifically, each material has a corresponding moisture permeability. Once the material of the shoes to be dried is determined, the corresponding moisture permeability can be determined based on the type of material. It should be noted that this correspondence can be acquired automatically by the controller via an internet connection, or it can be pre-stored by the user or technician based on actual usage needs.

[0032] Furthermore, in step S3, the controller can obtain the current weight of the shoes to be dried through the weight detection device, that is, the weight of the shoes to be dried when they are just put into the smart shoe cabinet.

[0033] Then, in step S4, the controller can determine the moisture content of the shoes to be dried based on the current weight obtained in step S3 and the preset weight, so as to effectively judge the dryness or wetness of the shoes to be dried; wherein, the moisture content of the shoes to be dried is equal to the ratio of the difference between the current weight obtained and the preset weight to the preset weight.

[0034] It should be noted that the present invention does not impose any restrictions on the specific value-taking method of the preset weight. Technicians can set it according to actual usage requirements, as long as the preset weight can represent the weight of the shoes to be dried when they are in a dry state; for example, as a preferred value-taking method, the preset weight is set to the weight of the shoes to be dried when they were last taken out of the smart shoe cabinet, so as to fully take into account the weight reduction factor caused by wear of the shoes, thereby ensuring the accuracy of control to the greatest extent; of course, the preset weight can also directly adopt a set fixed value.

[0035] Furthermore, it should be noted that the present invention does not impose any restrictions on the specific execution order of steps S1 to S4, and technicians can adjust it according to actual use needs. For example, steps S3 and S4 can be performed first, and then steps S1 and S2. For another example, steps S1 and S3 can be performed first, and then steps S2 and S4. Such changes in the specific execution order do not deviate from the basic principles of the present invention and fall within the scope of protection of the present invention.

[0036] Finally, in step S5, the controller can determine the operating parameters of the drying device based on the determined moisture permeability and moisture content of the shoes to be dried. The operating parameters can be the drying time and drying level of the drying device, or the start-up timing of the drying device, etc. This is not restrictive.

[0037] In addition, it should be noted that the present invention does not impose any restrictions on the specific method of determining the operating parameters of the drying device based on the moisture permeability and moisture content of the shoes to be dried. Technicians can set them according to actual usage requirements. As long as the operating parameters of the drying device are determined by the moisture permeability and moisture content of the shoes to be dried, they fall within the scope of protection of the present invention; for example, they can be determined by modeling or by mapping relationships.

[0038] Next see Figure 2 , which is a detailed step flow chart of a preferred embodiment of the present invention. Figure 2 As shown, based on the smart shoe cabinet described in the above preferred embodiment, the preferred embodiment of the drying control method of the present invention specifically includes the following steps:

[0039] S101: Obtain the material of the shoes to be dried;

[0040] S102: Determine the moisture permeability of the shoes to be dried based on the acquired material;

[0041] S103: Obtain the current weight of the shoes to be dried;

[0042] S104: Obtain the weight of the shoes to be dried when they were last taken out, and record it as the preset weight;

[0043] S105: Determine the moisture content of the shoes to be dried based on the acquired current weight and the preset weight;

[0044] S106: Determining a drying time of the drying device according to the determined moisture permeability and moisture content of the shoes to be dried;

[0045] S107: Determine the maximum drying level allowed for the drying device in this drying process based on the acquired material;

[0046] S108: operating the drying device at the determined highest drying level;

[0047] S109: Obtain the current weight of the shoes to be dried again;

[0048] S110: Controlling the drying level of the drying device according to the current weight and the preset weight obtained again;

[0049] S111: Determine whether the drying time has been reached; if so, end the drying operation; if not, execute step S109 again.

[0050] In step S101, the controller can obtain the material of the shoes to be dried through the material detection device, that is, obtain the main material of the upper of the shoes to be dried, such as leather, plastic, fabric, cotton, etc. It should be noted that the present invention does not impose any restrictions on the specific method of obtaining the material, and technicians can set it according to actual use needs.

[0051] In step S102, the controller determines the moisture permeability of the shoes to be dried based on the acquired material. Each material has a corresponding moisture permeability. Once the material of the shoes to be dried is determined, the corresponding moisture permeability can be determined based on the material type. It should be noted that this correspondence can be acquired automatically by the controller via an internet connection or pre-stored by the user or technician based on actual usage needs.

[0052] In step S103, the controller uses the weight detection device to obtain the current weight of the shoes to be dried, i.e., the weight of the shoes when they are first placed in the smart shoe cabinet. Next, in step S104, the controller obtains the weight of the shoes when they were last removed from the smart shoe cabinet and records this weight as the preset weight for determination. This method of determining the preset weight fully accounts for weight loss due to wear and tear, thereby maximizing the accuracy of the entire control process. Of course, the preset weight can also be directly set to a fixed value.

[0053] Furthermore, based on the results obtained in step S103 and step S104, in step S105, the controller can determine the moisture content of the shoes to be dried according to the current weight obtained in step S103 and the preset weight obtained in step S104, so as to effectively judge the dryness or wetness of the shoes to be dried; wherein, the moisture content of the shoes to be dried is equal to the ratio of the difference between the obtained current weight and the preset weight to the preset weight.

[0054] It should be noted that the present invention does not impose any restrictions on the specific execution order of steps S101 to S105, and technicians can adjust them according to actual usage requirements; such changes in the specific execution order do not deviate from the basic principles of the present invention and fall within the scope of protection of the present invention.

[0055] Based on the moisture permeability determined in step S102 and the moisture content determined in step S105, step S106 is executed, that is, the controller can determine the drying time of the drying device according to the determined moisture permeability and moisture content of the shoes to be dried; it should be noted that the present invention does not impose any restrictions on its specific determination method, and technicians can set it by themselves according to actual usage requirements. For example, it can be determined by modeling or by a mapping relationship.

[0056] As a preferred determination method, the controller first determines an initial drying time based on the moisture content of the shoe to be dried. The moisture content of the shoe to be dried and the initial drying time have a one-to-one correspondence. A unique initial drying time can be determined based on a single moisture content, and the moisture content and initial drying time are positively correlated, i.e., the higher the moisture content, the longer the initial drying time, and the lower the moisture content, the shorter the initial drying time, thereby effectively ensuring drying efficiency. Of course, it should be noted that the present invention does not impose any restrictions on the specific method for determining the initial drying time based on the moisture content. A skilled person can customize the method based on actual usage requirements, for example, by using a relationship. Next, the controller can determine a drying time correction coefficient based on the moisture permeability of the shoe to be dried. The moisture permeability of the shoe to be dried and the time correction coefficient also have a one-to-one correspondence. A unique drying time correction coefficient can be determined based on a single moisture permeability, and the moisture permeability and time correction coefficient are negatively correlated, i.e., the higher the moisture permeability, the smaller the time correction coefficient, and the lower the moisture permeability, the larger the time correction coefficient, thereby effectively ensuring drying efficiency. Of course, the present invention does not impose any restrictions on the specific method of determining the time correction coefficient based on the moisture permeability. Technicians can set it according to actual usage requirements. For example, a relationship formula can be used for calculation. After determining the initial time and the time correction coefficient, the product of the initial time and the time correction coefficient is calculated to be the drying time of the drying device performing the current drying operation. Of course, a mapping relationship can also be used to determine the drying time of the drying device. As long as the initial time and the time correction coefficient are used to determine the drying time, it falls within the scope of protection of the present invention.

[0057] Furthermore, in step S107, the controller determines the maximum drying level permitted by the drying device during the current drying process based on the acquired material, thereby effectively ensuring that the shoes being dried are not damaged or even destroyed by high temperatures. It is understood that each material has a maximum temperature tolerance. Based on the maximum temperature tolerance of each material, the maximum drying temperature that the material can withstand can be determined, thereby determining the maximum drying level permitted by the drying device during the current drying process, thereby ensuring a drying effect while effectively protecting the shoes. Of course, technicians can customize the specific correspondence based on actual conditions, and this is not restrictive.

[0058] Then, if the maximum drying level is determined, step S108 is executed, that is, the controller controls the drying device to operate at the determined maximum drying level to effectively improve the drying efficiency. It should be noted that the maximum drying level mentioned here is not the maximum drying level of the drying device, but the highest drying level allowed to be implemented during the current drying process.

[0059] Furthermore, after the drying device operates at the determined highest drying level, step S109 is executed, whereby the controller again obtains the current weight of the shoes being dried, i.e., the real-time weight during the drying process, in order to determine the drying status of the shoes. Of course, the present invention does not impose any restrictions on the timing and frequency of executing step S109, and technicians can customize this based on actual usage requirements. For example, step S109 can be executed after a period of operation, or it can be executed in real time.

[0060] Next, in step S110, the controller can determine the drying level of the drying device based on the current weight obtained again and the preset weight, so as to selectively adjust the drying level of the drying device currently in operation. That is, if the determined drying level is lower than the currently operating drying level, the drying level of the drying device is adjusted down to the determined drying level. For example, if drying is currently being performed at level three and the determined drying level is level two, the operating level of the drying device is adjusted to level two. It should be noted that the present invention does not impose any restrictions on the specific method for determining the drying level of the drying device, and technicians can set it according to actual usage requirements.

[0061] As a preferred setting method, the controller can first determine the level adjustment coefficient based on the difference between the current weight obtained again and the preset weight, wherein the difference and the level adjustment coefficient have a one-to-one correspondence, and a unique level adjustment coefficient can be determined based on a unique difference. The difference and the level adjustment coefficient are also positively correlated, i.e., the larger the difference, the larger the level adjustment coefficient, and the smaller the difference, the smaller the level adjustment coefficient, so as to maximize the protection of the shoes from damage. Of course, it should be noted that the present invention does not impose any restrictions on the specific method of determining the level adjustment coefficient based on the difference between the current weight obtained again and the preset weight. The skilled person can set it according to actual use requirements, for example, it can also be calculated using a relationship. Next, the drying level of the drying device is determined based on the maximum drying level determined in step S107 and the level adjustment coefficient. It should be noted that since the drying levels are all integers, the product of the maximum drying level and the level adjustment coefficient can be first calculated, and then the drying level of the drying device can be determined by rounding. Then, based on the determined result, the current drying level of the drying device can be selectively adjusted to better protect the shoes to be dried.

[0062] Finally, step S111 is executed to determine whether the execution time of this drying operation has reached the drying time determined according to step S106. If it has reached the drying time, the drying operation is terminated; if its execution time has not reached the drying time determined according to step S106, step S109 is executed again to timely adjust the drying level of the drying device according to the real-time drying situation, so as to ensure the drying effect while protecting the shoes to be dried to the greatest extent, thereby maximizing the user experience.

[0063] Thus far, the technical solutions of the present invention have been described in conjunction with 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 not limited to these specific embodiments. Without departing from the principles of the present invention, those skilled in the art may make equivalent changes or substitutions to the relevant technical features, and the technical solutions after such changes or substitutions will fall within the scope of protection of the present invention.

Claims

1. A drying control method for a smart shoe cabinet, characterized in that: The smart shoe cabinet is provided with a drying device, and the drying control method includes: Get the material of the shoes to be dried; Determine the moisture permeability of the shoes to be dried based on the obtained material; Get the current weight of the shoes to be dried; Determining the moisture content of the shoes to be dried based on the acquired current weight and a preset weight; wherein the preset weight is the weight of the shoes to be dried when they are in a dry state; The operating parameters of the drying device are determined according to the determined moisture permeability and moisture content of the shoes to be dried, and the steps specifically include: Determining the drying time of the drying device according to the determined moisture permeability and moisture content of the shoes to be dried, the steps specifically include: Determine the initial drying time based on the moisture content of the shoes to be dried; Determine the time correction factor based on the moisture permeability of the shoes to be dried; The drying time of the drying device is determined according to the determined initial time and the time correction coefficient.

2. The drying control method according to claim 1, characterized in that: The duration correction coefficient is determined as follows: The greater the moisture permeability of the shoes to be dried, the smaller the time correction coefficient; The lower the moisture permeability of the shoes to be dried, the greater the time correction coefficient.

3. The drying control method according to claim 1 or 2, characterized in that: The drying device is capable of performing multiple drying levels, and the drying control method further includes: The maximum drying level allowed for the drying device during this drying process is determined according to the material of the shoes to be dried.

4. The drying control method according to claim 3, characterized in that: The drying control method further comprises: During the drying process, the current weight of the shoes to be dried is obtained again; The drying level of the drying device is determined according to the current weight obtained again and the preset weight.

5. The drying control method according to claim 4, characterized in that: The step of "determining the drying level of the drying device according to the current weight obtained again and the preset weight" specifically includes: determining a level adjustment coefficient based on the difference between the current weight obtained again and the preset weight; The drying level of the drying device is determined according to the determined highest drying level and the level adjustment coefficient.

6. The drying control method according to claim 5, characterized in that: The level adjustment coefficient is determined as follows: The greater the difference between the current weight obtained again and the preset weight, the greater the level adjustment coefficient; The smaller the difference between the current weight obtained again and the preset weight, the smaller the level adjustment coefficient.

7. The drying control method according to claim 3, characterized in that: The drying device includes a heating component and a drying fan. The specific method of adjusting the drying level of the drying device is: Adjust the power of the heating component and / or the rotation speed of the drying fan.

8. The drying control method according to claim 1, characterized in that: The method for obtaining the preset weight is: The weight of the shoes to be dried when they were last taken out is obtained and recorded as the preset weight.

Citation Information

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