Interface display method of clothes treatment equipment, electronic equipment and storage medium

By combining natural language input, physiological data, and historical usage information with the interface display method of clothing processing equipment, the display position is determined and extended information is added. This solves the problems of fixed operation and poor user experience in existing display schemes, and achieves more flexible and personalized user interaction.

CN121597076APending Publication Date: 2026-03-03QINGDAO HAIER WASHING MASCH CO LTD +1
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Patent Information

Application Number
CN202411153772.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-08-21
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

Existing display screen solutions for garment processing equipment have fixed operation and lack flexibility and convenience. Intelligent and personalized display solutions require precise natural language input, resulting in a poor user experience.

Method used

The accuracy of the user's natural language input is determined by acquiring the input. If it is inaccurate, the display location is determined by combining physiological data or historical usage information, and an additional layer is added at that location to display extended information, including processing parameters, applicable clothing types, and processing time.

Benefits of technology

Even when natural language input is ambiguous or physiological data is unclear, it can still determine the display position related to the user's attention, optimize the interactive experience, provide rich personalized content, and improve the convenience and satisfaction of users in obtaining information.

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Abstract

The invention relates to the field of clothes treatment, in particular to an interface display method of clothes treatment equipment, electronic equipment and a storage medium, and aims to solve the problem that the user experience is poor due to the fact that a display scheme of a display screen is fixed in operation and lacks convenience, or an interface layer is single and the requirement for natural language input of a user is accurate. The method comprises the steps that natural language input of a user is acquired, and whether the natural language input is accurate or not is judged; if yes, determining a display position related to the attention of the user based on the natural language input; otherwise, acquiring physiological data of the user, and determining a display position based on the natural language input and the physiological data; if the natural language input is not accurate and the effective physiological data is not obtained, determining a display position based on the historical use information; and adding layer display extension information in a display area corresponding to the display position. Through the above implementation mode, the interaction experience of the user is optimized, and the convenience and satisfaction degree of the user to obtain the information are improved.
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Description

Technical Field

[0001] This application relates to the field of clothing processing technology, specifically to an interface display method, electronic device, and storage medium for clothing processing equipment. Background Technology

[0002] Currently, display solutions for garment processing equipment screens mainly include conventional display solutions and intelligent personalized display solutions. Conventional display solutions typically show a fixed interface, while intelligent personalized display solutions generate a corresponding display interface based on the user's natural language input.

[0003] However, conventional display solutions operate on a fixed schedule, requiring a set process that lacks flexibility and convenience, failing to meet the diverse and personalized needs of users. Intelligent personalized display solutions are more intelligent, but their interfaces consist of only one layer, making intelligent display in video interfaces impossible. Furthermore, they require relatively precise natural language input; if the user's expression is unclear or inaccurate, the system may not understand the user's intent, thus failing to generate the desired display interface, resulting in a poor user experience.

[0004] Accordingly, a new technical solution is needed in this field to solve the above problems. Summary of the Invention

[0005] In order to overcome the above-mentioned defects, this application is made to provide a display method, electronic device and storage medium for clothing processing equipment that solves or at least partially solves the technical problems of fixed operation, lack of convenience or single interface layer and high requirements for accurate natural language input by users, resulting in poor user experience.

[0006] In a first aspect, a method for displaying an interface of a garment processing device is provided, characterized in that the method includes:

[0007] S1. Obtain the user's natural language input and determine whether the natural language input is accurate;

[0008] S2. If so, determine the display position related to the user's attention based on the natural language input;

[0009] S3. Otherwise, acquire the user's physiological data and determine the display position based on the natural language input and the physiological data;

[0010] S4. If the natural language input is inaccurate and no valid physiological data is obtained, the display position is determined based on historical usage information.

[0011] S5. Add a layer to the display area corresponding to the display position to display extended information.

[0012] In one technical solution of the interface display method for the aforementioned clothing processing equipment, the physiological data includes the user's finger pointing and / or eye gaze direction; acquiring the user's physiological data includes:

[0013] Obtain the user's human body image;

[0014] Based on the human body image, determine the direction of the finger;

[0015] And / or,

[0016] Obtain the user's facial image;

[0017] The direction of eye gaze is determined based on the facial image.

[0018] In one technical solution of the interface display method for the aforementioned clothing processing equipment, the method further includes:

[0019] When multiple types of valid physiological data are obtained, the physiological data to be used is determined based on a preset priority.

[0020] In one technical solution of the interface display method for the aforementioned clothing processing device, the display position related to user attention is the display position of the clothing processing program selected by the user on the interface; determining the display position based on historical usage information includes:

[0021] Obtain the historical usage information of the garment processing equipment within a preset historical time period;

[0022] Based on the historical usage information, determine the clothing processing procedure that the user selected most frequently;

[0023] The display position is determined based on the clothing processing procedure selected most frequently by the user.

[0024] In one technical solution of the interface display method for the aforementioned clothing processing equipment, adding layer display extension information to the display area corresponding to the display position includes:

[0025] Add the layer to the display area corresponding to the display position, and determine the font color of the extended information according to the background color of the display area;

[0026] The extended information includes at least one of the following: processing parameters corresponding to the clothing processing procedure, applicable clothing types, processing time range, maintenance information, common problems and solutions.

[0027] In one technical solution of the interface display method for the aforementioned clothing processing equipment, after adding layer display extension information to the display area corresponding to the display position, the method further includes:

[0028] When the display area corresponding to the display position moves, the layer moves synchronously;

[0029] And / or,

[0030] When the background color of the display area changes, the font color of the extended information is adaptively adjusted.

[0031] In one technical solution of the interface display method of the above-mentioned clothing processing equipment, the method further includes, in response to the received closing command, stopping the acquisition of the natural language input and the physiological data;

[0032] If the shutdown command is not received, repeat steps S1-S5 to add multiple layers to display the extended information.

[0033] In a second aspect, an electronic device is provided, comprising a processor and a memory, the memory being adapted to store a plurality of program codes, the program codes being adapted to be loaded and executed by the processor to perform the interface display method of the clothing processing device described in any of the above-described technical solutions.

[0034] In a third aspect, a computer-readable storage medium is provided, which stores a plurality of program codes adapted to be loaded and run by a processor to perform the interface display method of the clothing processing device described in any of the technical solutions above.

[0035] In a fourth aspect, a garment processing device is provided, which includes a garment processing device body and the electronic device described in the above-mentioned electronic device technical solution.

[0036] The above-described technical solutions of this application have at least one or more of the following features. Beneficial effects:

[0037] In implementing the technical solution of this application, the user's natural language input is acquired, and it is determined whether the natural language input is accurate. If so, the display position related to the user's attention is determined based on the natural language input. Otherwise, the user's physiological data is acquired, and the display position is determined based on the natural language input and the physiological data. If the natural language input is inaccurate and no valid physiological data is acquired, the display position is determined based on historical usage information, and layered display extension information is added to the display area corresponding to the display position. Through the above implementation method, it is possible to ensure that the display position related to the user's attention can be determined even when the natural language input is ambiguous, no physiological data is acquired, or the physiological data is chaotic. This optimizes the user's interaction experience with the clothing processing device's display screen and allows for the addition of layered display extension information, providing users with richer and more comprehensive content, meeting the diverse and personalized needs of users, and improving the convenience and satisfaction of users in obtaining information. Attached Figure Description

[0038] The disclosure of this application will become more readily understood with reference to the accompanying drawings. It will be readily understood by those skilled in the art that these drawings are for illustrative purposes only and are not intended to limit the scope of protection of this application. Wherein:

[0039] Figure 1 This is a schematic flowchart of the main steps of an interface display method for a clothing processing device according to an embodiment of this application;

[0040] Figure 2 This is a flowchart illustrating the main steps of determining the display position based on historical usage information according to an embodiment of this application;

[0041] Figure 3 This is a schematic flowchart of the main steps of an interface display method for a clothing processing device according to another embodiment of this application;

[0042] Figure 4 This is a schematic diagram of the main structure of an electronic device according to an embodiment of this application.

[0043] List of reference numerals in the attached diagram:

[0044] 401: Processor; 402: Memory. Detailed Implementation

[0045] Some embodiments of this application are described below with reference to the accompanying drawings. Those skilled in the art should understand that these embodiments are merely illustrative of the technical principles of this application and are not intended to limit the scope of protection of this application.

[0046] In the description of this application, "processor" can include hardware, software, or a combination of both. A processor can be a central processing unit, microprocessor, graphics processor, digital signal processor, or any other suitable processor. A processor has data and / or signal processing capabilities. A processor can be implemented in software, in hardware, or a combination of both. Non-transitory computer-readable storage media includes any suitable medium capable of storing program code, such as magnetic disks, hard disks, optical disks, flash memory, read-only memory, random access memory, etc. The term "A and / or B" means all possible combinations of A and B, such as only A, only B, or A and B. The terms "at least one A or B" or "at least one of A and B" have a similar meaning to "A and / or B" and can include only A, only B, or A and B. The singular terms "a" or "this" can also include plural forms.

[0047] As described in the background section, the display solutions for garment processing equipment screens mainly include conventional display solutions and intelligent personalized display solutions. Conventional display solutions typically display a fixed interface, while intelligent personalized display solutions generate a corresponding display interface based on the user's natural language input.

[0048] However, conventional display solutions operate on a fixed schedule, requiring a set process that lacks flexibility and convenience, failing to meet the diverse and personalized needs of users. Intelligent personalized display solutions are more intelligent, but their interfaces consist of only one layer, making intelligent display in video interfaces impossible. Furthermore, they require relatively precise natural language input; if the user's expression is unclear or inaccurate, the system may not understand the user's intent, thus failing to generate the desired display interface, resulting in a poor user experience.

[0049] To address the aforementioned issues, this application provides an interface display method for a garment processing device, an electronic device, and a storage medium.

[0050] The garment handling equipment can include washing machines, dryers, washer-dryer combos, and garment care machines. The display interface of the garment handling equipment can be a smart display capable of displaying video content, such as a thin-film transistor (TFT) display, an organic light-emitting diode (OLED) display, an active-matrix organic light-emitting diode (AMOLED) display, or an in-plane switching (IPS) display.

[0051] See appendix Figure 1 , Figure 1This is a schematic flowchart illustrating the main steps of an interface display method for a clothing processing device according to an embodiment of this application. Figure 1 As shown, the interface display method of the clothing processing device in this embodiment mainly includes the following steps S101 to S105.

[0052] Step S101: Obtain the user's natural language input and determine whether the natural language input is accurate;

[0053] Further, if so, proceed to step S102; otherwise, proceed to step S103.

[0054] Step S102: Determine the display position related to the user's attention based on natural language input;

[0055] Step S103: Obtain the user's physiological data and determine the display position based on natural language input and physiological data;

[0056] Step S104: If the natural language input is inaccurate and no valid physiological data is obtained, the display position is determined based on historical usage information;

[0057] Step S105: Add a layer to the display area corresponding to the display position to display extended information.

[0058] Based on the methods described in steps S101 to S105 above, it is possible to ensure that the display position related to the user's attention can be determined in various situations such as fuzzy natural language input, lack of physiological data, or chaotic physiological data. This optimizes the user's interactive experience with the display screen of the clothing processing device and allows for the addition of layers to display extended information, providing users with richer and more comprehensive content, meeting the diverse and personalized needs of users, and improving the convenience and satisfaction of users in obtaining information.

[0059] The following provides further explanation of steps S101 to S105.

[0060] In some embodiments of step S101, the garment processing device can collect the user's voice through an equipped sound-receiving device, such as a microphone. When the user issues instructions to the garment processing device in the form of natural language, the sound-receiving device will capture these sounds, allowing the user to interact with the garment processing device by speaking, without the need to use complex operation instructions or button combinations.

[0061] Furthermore, after acquiring the user's natural language input, software programs such as voice assistants can analyze the user's natural language input, perform semantic understanding of the natural language input, and determine whether the natural language input is accurate.

[0062] For example, when the natural language input is "show the parameter information of the shirt program", it can be determined that the user has selected the shirt program, so the natural language input is determined to be accurate, and step S102 can be executed at this time; when the natural language input is "show the parameter information of that program", it cannot be determined which clothing processing program the user has selected, so the natural language input is determined to be inaccurate, and step S103 can be executed at this time.

[0063] Furthermore, in some embodiments of step S102, if it is determined that the user's natural language input is accurate, the display position related to the user's attention can be determined based on the natural language input.

[0064] Among them, the display position related to user attention is the display position of the clothing processing program selected by the user on the interface.

[0065] For example, when the natural language input is "display parameter information of the shirt program", it means that the clothing processing program selected by the user is "shirt program". At this time, the display position related to the user's attention can be determined as the display position of the "shirt program" card on the display screen of the clothing processing device.

[0066] In some embodiments of step S103, if it is determined that the user's natural language input is inaccurate, the user's physiological data can be obtained, and the display position can be determined based on the natural language input and the physiological data.

[0067] Among them, the user's physiological data includes the user's finger pointing and / or eye gaze direction.

[0068] For example, if the natural language input is "show the parameter information of that program", it is determined that the natural language input is inaccurate. At this time, the user's finger pointing and / or eye gaze direction can be obtained.

[0069] In some implementations, a human body image of the user can be acquired, and the finger direction can be determined based on the human body image.

[0070] Specifically, the image acquisition function of a camera can be used to obtain images of the user's body. Image recognition technology can then be used to analyze these images and identify the hand region. The position of the fingers can then be precisely located, either by recognizing specific shape and color features of the fingers or by training a large number of finger images using machine learning algorithms. Further analysis of the finger's extension direction and its relative position to the surrounding environment can determine the finger's direction. For example, if a finger is pointing to a specific object or direction, the system can infer its direction based on the finger's angle and position information.

[0071] In some implementations, a user's facial image can be acquired, and the direction of eye gaze can be determined based on the facial image.

[0072] Specifically, facial images of the user can be captured using a camera, and facial recognition technology can be used to quickly identify key facial features and determine the approximate position of the eyes. Then, a detailed analysis of the eye area can be performed to pinpoint the precise location of the eyeballs. This can be achieved by detecting the eyeball's contour, color changes, and texture features. For example, eyeballs typically have a specific circular shape and color distribution; identifying these features can determine the eyeball's position in the image. Once the eyeball's position is determined, the gaze direction can be inferred based on the eyeball's center position, pupil position, and eye geometry. For example, if the pupil is deviated to the left of the eye, it can be inferred that the user is looking to the left. Furthermore, machine learning algorithms can be incorporated; by training on a large number of eye images with known gaze directions, the system can more accurately determine the gaze direction in different situations.

[0073] In some implementations, the user's body image and facial image can be acquired simultaneously, and the direction of finger pointing and eye gaze can be determined based on the body image and facial image.

[0074] Furthermore, the display location can be determined based on natural language input and physiological data.

[0075] For example, if the user's natural language input is "show the parameter information of that program", and the user's finger is pointing to the location of the shirt program or the user's eyes are staring at the location of the shirt program, then the display position related to the user's attention is determined to be the display position of the "shirt program" card on the display screen of the clothing processing device.

[0076] In some implementations, when multiple types of valid physiological data are acquired, the physiological data to be used can be determined based on a preset priority.

[0077] Specifically, the priority of finger pointing can be set to be higher than the direction of eye gaze. For example, if the user's natural language input is "show the parameter information of that program", and at the same time the finger points to the location of the shirt program and the eyes are gazing at the location of the windbreaker program, then the display position related to the user's attention is determined to be the display position of the "shirt program" card on the clothing processing device's display screen interface.

[0078] In addition, you can set the priority of eye gaze direction to be greater than finger pointing, which is not limited here.

[0079] The above is a further explanation of step S103. Step S104 will now be explained in more detail.

[0080] In some implementations of step S104 above, if the natural language input is inaccurate and no valid physiological data is obtained, the display position is determined based on historical usage information.

[0081] Among these, failure to obtain valid physiological data includes not obtaining physiological data or obtaining physiological data that is disordered or invalid.

[0082] For example, the camera might fail to detect the user's finger pointing or gaze direction because the user did not extend a finger to indicate anything, the finger was outside the camera's detection range, the user was not looking directly at the camera, or was wearing sunglasses, eye protection, or other obstructions. Alternatively, a device malfunction could prevent the capture of human or facial images, resulting in a lack of physiological data.

[0083] Furthermore, users may move their fingers rapidly or extend multiple fingers simultaneously, resulting in unclear, unstable, or difficult-to-determine finger positions captured by cameras and other devices. Alternatively, users may frequently and rapidly rotate their eyes, exhibit eye tremors, or blink excessively, leading to unclear, unstable, or contradictory results when analyzing eye position to determine gaze direction. Environmental factors, such as excessively dim or bright lighting or complex backgrounds, can also interfere, causing errors in human or facial image recognition and resulting in chaotic or invalid physiological data.

[0084] At this point, the display location can be determined based on historical usage information.

[0085] Specifically, see the appendix. Figure 2 , Figure 2 This is a schematic flowchart illustrating the main steps of determining the display position based on historical usage information according to an embodiment of this application. Figure 2 As shown, it mainly includes the following steps S201 to S203.

[0086] Step S201: Obtain historical usage information of the clothing processing equipment within a preset historical time period;

[0087] Step S202: Determine the clothing processing procedure most frequently selected by the user based on historical usage information;

[0088] Step S203: Determine the display position based on the clothing processing program selected most frequently by the user.

[0089] This involves identifying the clothing processing program most frequently used by users within a preset historical period (e.g., 30 days) and determining the display position related to user attention as the display position of the clothing processing program's icon on the clothing processing device's display screen.

[0090] The above is a further explanation of step S104. Step S105 will now be explained further.

[0091] In some embodiments of step S105 above, a layer can be added to the display area corresponding to the display position related to the user's attention, and the font color of the extended information can be determined according to the background color of the display area.

[0092] Specifically, a transparent layer can be added to the display area above the display position to display extended information, and the font color of the extended information can be determined based on the background color of the display area.

[0093] For example, a transparent layer can be added to the display area above the shirt program's chart to display extended information. If the background color of the display area directly above the shirt program's chart is white, the font color of the extended information will be black; if the background color of the display area is black, the font color of the extended information will be white, and so on.

[0094] The extended information includes at least one of the following: processing parameters corresponding to the garment processing program (such as processing temperature, water level, spin speed and number of rinses), applicable garment types, processing time range, maintenance information, and common problems and solutions. No limitation is made here.

[0095] Furthermore, in some implementations, the layer is moved synchronously when the display area corresponding to the display position is moved.

[0096] For example, when a user slides a card in the shirt program on the display screen of the garment processing device, the layer above it moves synchronously with the card in the shirt program.

[0097] In some implementations, the font color of the extended information is adaptively adjusted when the background color of the display area changes.

[0098] Specifically, explicit color contrast rules can be set to determine the optimal font color under different background colors. Generally, choosing a font color with high contrast to the background color ensures text clarity. For example, when the background is white, black font provides high contrast, making the text easy to read; while when the background is gray, white font is easier to read. Therefore, when the background color of the display area changes, a new font color can be determined according to the color contrast rules, and the font color of extended information can be automatically adjusted to ensure that the extended information remains clearly readable under different background colors, improving the user experience.

[0099] Furthermore, the garment handling device can respond to a received shutdown command by ceasing to acquire natural language input and physiological data.

[0100] The shutdown command can be a specific user action, such as pressing a physical button on the device, performing a specific gesture on the touchscreen, or issuing a shutdown command via voice. When the garment processing device receives this shutdown command, it will stop acquiring natural language input and physiological data, reducing device power consumption and avoiding errors or interference that might occur from continuing data processing when not needed.

[0101] In some implementations, if the above-mentioned shutdown command is not received, steps S101 to S105 can be repeated to add multiple layers to display extended information.

[0102] By repeatedly performing steps S101 to S105, the garment processing device can add multiple layers to display multiple pieces of extended information according to different user operations and needs.

[0103] For example, add a transparent layer to the display area directly above the washing program card to display extended information about the washing program, and add a transparent layer to the display area directly above the drying program card to display extended information about the drying program.

[0104] The above is a further explanation of steps S101 to S105.

[0105] Further, see appendix. Figure 3 , Figure 3 This is a schematic flowchart illustrating the main steps of an interface display method for a clothing processing device according to another embodiment of this application. Figure 3 As shown, it mainly includes the following steps S301 to S3010.

[0106] Step S301: Obtain the user's natural language input;

[0107] Step S302: Determine whether the natural language input is accurate;

[0108] Further, if so, proceed to step S309; ​​otherwise, proceed to step S303.

[0109] Step S303: Determine whether valid physiological data has been obtained;

[0110] Further, if so, proceed to step S304; otherwise, proceed to step S308.

[0111] Step S304: Determine whether to acquire the user's human body image;

[0112] Further, if so, proceed to step S305; otherwise, proceed to step S306.

[0113] Step S305: Determine the finger's direction based on the human body image;

[0114] Further, proceed to step S309;

[0115] Step S306: Obtain the user's facial image;

[0116] Step S307: Determine the gaze direction based on the facial image;

[0117] Further, proceed to step S309;

[0118] Step S308: Obtain historical usage information of the garment processing equipment within a preset historical time period;

[0119] Further, proceed to step S309;

[0120] Step S309: Determine the display location relevant to the user's attention;

[0121] Step S3010: Add a layer to the display area corresponding to the display position to display extended information;

[0122] Step S3011: Determine whether a shutdown command has been received;

[0123] Further, if so, the program ends; otherwise, return to step S301 and repeat the method.

[0124] The above implementation methods enhance the technological sophistication and practicality of the garment processing equipment, optimize the user's interaction with the display screen, provide users with richer and more comprehensive content, meet users' diverse and personalized needs, improve the convenience and satisfaction of users in obtaining information, and provide a better user experience.

[0125] It should be noted that although the steps in the above embodiments are described in a specific order, those skilled in the art will understand that in order to achieve the effect of this application, different steps do not necessarily have to be executed in such an order. They can be executed simultaneously (in parallel) or in other orders, and these variations are all within the scope of protection of this application.

[0126] Those skilled in the art will understand that all or part of the processes in the method of the above-described embodiment can also be implemented by a computer program instructing related hardware. The computer program can be stored in a computer-readable storage medium, and when executed by a processor, it can implement the steps of the various method embodiments described above. The computer program includes computer program code, which can be in the form of source code, object code, executable file, or some intermediate form. The computer-readable storage medium can include any entity or device capable of carrying the computer program code, a medium, a USB flash drive, a portable hard drive, a magnetic disk, an optical disk, a computer memory, a read-only memory, a random access memory, an electrical carrier signal, a telecommunication signal, and a software distribution medium, etc.

[0127] Furthermore, this application also provides an electronic device. (See appendix) Figure 4 , Figure 4 This is a schematic diagram of the main structure of an electronic device according to an embodiment of this application. Figure 4 As shown, the electronic device in this embodiment mainly includes a processor 401 and a memory 402. The memory 402 can be configured to store a program for executing the interface display method of the clothing processing device in the above-described method embodiments. The processor 401 can be configured to execute the program in the memory 402, which includes, but is not limited to, the program for executing the interface display method of the clothing processing device in the above-described method embodiments. For ease of explanation, only the parts related to the embodiments of this application are shown. For specific technical details not disclosed, please refer to the method section of the embodiments of this application.

[0128] In some possible embodiments of this application, the electronic device may include multiple processors 401 and multiple memories 402. The program executing the interface display method of the clothing processing device according to the above method embodiments can be divided into multiple subroutines. Each subroutine can be loaded and run by a processor 401 to execute different steps of the interface display method of the clothing processing device according to the above method embodiments. Specifically, each subroutine can be stored in different memories 402, and each processor 401 can be configured to execute programs in one or more memories 402 to jointly implement the interface display method of the clothing processing device according to the above method embodiments. That is, each processor 401 executes different steps of the interface display method of the clothing processing device according to the above method embodiments to jointly implement the interface display method of the clothing processing device according to the above method embodiments.

[0129] The aforementioned multiple processors 401 can be processors deployed on the same device. For example, the aforementioned electronic device can be a high-performance device composed of multiple processors, and the aforementioned multiple processors 401 can be processors configured on that high-performance device. Alternatively, the aforementioned multiple processors 401 can also be processors deployed on different devices. For example, the aforementioned electronic device can be a server cluster, and the aforementioned multiple processors 401 can be processors on different servers within the server cluster.

[0130] Furthermore, this application also provides a garment processing device. In one embodiment of a garment processing device according to this application, the garment processing device may include a garment processing device body and the electronic device described in the above-described electronic device embodiment.

[0131] Furthermore, this application also provides a computer-readable storage medium. In one embodiment of the computer-readable storage medium according to this application, the computer-readable storage medium can be configured to store a program for executing the interface display method of the clothing processing device described in the above-described method embodiments. This program can be loaded and run by a processor to implement the interface display method of the clothing processing device described above. For ease of explanation, only the parts related to the embodiments of this application are shown; for specific technical details not disclosed, please refer to the method section of the embodiments of this application. The computer-readable storage medium can be a memory device formed by various electronic devices. Optionally, in the embodiments of this application, the computer-readable storage medium is a non-transitory computer-readable storage medium.

[0132] It should be noted that the user information (including but not limited to user device information, user personal information, object information corresponding to clothing processing equipment usage data, etc.) and data (including but not limited to data used for analysis, stored data, displayed data, clothing processing equipment usage data, etc.) involved in the embodiments of this disclosure are all information and data authorized by the user or fully authorized by all parties.

[0133] The data acquisition and collection actions involved in the embodiments of this disclosure are all performed after authorization by the user or object, or after full authorization by all parties.

[0134] The technical solution of this application has been described above with reference to one embodiment shown in the accompanying drawings. However, it will be readily understood by those skilled in the art that the scope of protection of this application is obviously not limited to these specific embodiments. Without departing from the principles of this application, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will all fall within the scope of protection of this application.

Claims

1. A method for displaying the interface of a garment processing device, characterized in that, The method includes: S1. Obtain the user's natural language input and determine whether the natural language input is accurate; S2. If so, determine the display position related to the user's attention based on the natural language input; S3. Otherwise, acquire the user's physiological data and determine the display position based on the natural language input and the physiological data; S4. If the natural language input is inaccurate and no valid physiological data is obtained, the display position is determined based on historical usage information. S5. Add a layer to the display area corresponding to the display position to display extended information.

2. The interface display method for the garment processing equipment according to claim 1, characterized in that, The physiological data includes the user's finger pointing and / or eye gaze direction; the acquisition of the user's physiological data includes: Obtain the user's human body image; Based on the human body image, determine the direction of the finger; And / or, Obtain the user's facial image; The direction of eye gaze is determined based on the facial image.

3. The interface display method for the clothing processing equipment according to claim 2, characterized in that, The method further includes: When multiple types of valid physiological data are obtained, the physiological data to be used is determined based on a preset priority.

4. The interface display method for the garment processing equipment according to claim 1, characterized in that, The display position related to user attention is the display position of the clothing processing program selected by the user on the interface; Determining the display location based on historical usage information includes: Obtain the historical usage information of the garment processing equipment within a preset historical time period; Based on the historical usage information, determine the clothing processing procedure that the user selected most frequently; The display position is determined based on the clothing processing procedure selected most frequently by the user.

5. The interface display method for the garment processing equipment according to claim 4, characterized in that, Adding a layer to the display area corresponding to the display position to display extended information includes: Add the layer to the display area corresponding to the display position, and determine the font color of the extended information according to the background color of the display area; The extended information includes at least one of the following: processing parameters corresponding to the clothing processing procedure, applicable clothing types, processing time range, maintenance information, common problems and solutions.

6. The interface display method for the garment processing equipment according to claim 5, characterized in that, After adding a layer to display extended information in the display area corresponding to the display position, the method further includes: When the display area corresponding to the display position moves, the layer moves synchronously; And / or, When the background color of the display area changes, the font color of the extended information is adaptively adjusted.

7. The interface display method for the garment processing equipment according to any one of claims 1 to 6, characterized in that, The method further includes: In response to the received shutdown command, the acquisition of the natural language input and the physiological data is stopped; If the shutdown command is not received, repeat steps S1-S5 to add multiple layers to display the extended information.

8. An electronic device comprising a processor and a memory, the memory being adapted to store a plurality of program codes, characterized in that, The program code is adapted to be loaded and run by the processor to perform the interface display method of the clothing handling device according to any one of claims 1 to 7.

9. A computer-readable storage medium storing a plurality of program codes, characterized in that, The program code is adapted to be loaded and run by a processor to perform the interface display method of the clothing handling device according to any one of claims 1 to 7.

10. A garment processing device, characterized in that, The garment processing device includes a garment processing device body and the electronic device as described in claim 8.