Key stroke control method and device for clothing processing equipment

By obtaining user scores to calculate the best key stroke and dynamically adjust it, the poor user experience problem caused by the fixed key stroke of the clothing processing equipment is solved, and personalized adjustment of the key stroke and user experience improvement is achieved.

CN116479616BActive Publication Date: 2025-08-19HISENSE(SHANDONG)REFRIGERATOR CO LTD
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Patent Information

Application Number
CN202310419878.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-18
Publication Date
2025-08-19
Estimated Expiration
2043-04-18

AI Technical Summary

Technical Problem

The button stroke of existing clothing processing equipment is fixed to the default value set before leaving the factory, which cannot meet the personalized needs of different users for the key sound and feel, resulting in poor user experience.

Method used

By obtaining the user's hand feel score and sound score under different key strokes, the stroke score is calculated based on weighting operations, the best key stroke is selected, and the key stroke is dynamically adjusted through the stroke regulator to meet user needs.

Benefits of technology

It realizes personalized adjustment of the key strokes of clothing processing equipment, improves the user experience, and meets the personalized needs of different users for the sound and feel of the keys.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application discloses a method and device for controlling the key stroke of a clothing processing device. The solution obtains the user's feel rating of the key feel and the user's sound rating of the key sound under each preset key stroke, obtains the stroke score corresponding to each preset key stroke based on the feel score and the sound score, and selects the preset key stroke corresponding to the highest stroke score as the target key stroke, and sets the key stroke of the clothing processing device to the target key stroke, thereby realizing dynamic adjustment of the key stroke of the clothing processing device according to the user's personalized needs, so that the clothing processing device is no longer limited to the default key stroke set before leaving the factory as the key stroke, effectively improving the user experience of the clothing processing device.
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Description

Technical Field

[0001] The present application relates to the technical field of clothing processing equipment, and in particular to a method and device for controlling the key stroke of clothing processing equipment. Background Art

[0002] At present, some clothing processing equipment uses a button-type control panel. The control panel is set at a distance from the computer board. The user triggers the computer board by operating the buttons on the control panel to control the clothing processing equipment to perform corresponding operations, such as controlling the start and pause of the clothing processing equipment.

[0003] When a user presses a key, they experience a keystroke feel. Simultaneously, the keystroke's collision with the corresponding area of the computer board also produces a sound. Key travel is a key factor influencing both keystroke feel and sound. Generally, the shorter the keystroke, the quieter the sound. However, too short a keystroke can easily make it difficult for users to determine whether a keystroke is valid.

[0004] Different users have different acceptance of key sounds and perceptions of key feel. However, currently, the key travel of clothing processing equipment is fixed to a default value set before leaving the factory, resulting in a poor user experience. Summary of the Invention

[0005] In order to solve the problem that the key stroke of a clothing processing device is fixed to a default key stroke value set before leaving the factory, the present application provides a method and device for controlling the key stroke of a clothing processing device.

[0006] According to a first aspect of an embodiment of the present application, a method for controlling the key stroke of a clothing processing device is disclosed, which is applied to a smart terminal. The key stroke of the clothing processing device is adjustable. The method includes:

[0007] Obtain user ratings of the key feel and key sound under preset key travel;

[0008] Obtaining a stroke score corresponding to the preset key stroke based on the feel score and the sound score;

[0009] Based on the obtained stroke scores corresponding to the preset key strokes, the preset key stroke corresponding to the highest stroke score is selected as the target key stroke;

[0010] generating, based on the target key stroke, instruction information for triggering the clothes treating device to be set to a corresponding key stroke;

[0011] The instruction information is sent to the clothes treating device, so that the clothes treating device sets a key stroke based on the instruction information.

[0012] In an exemplary embodiment, obtaining a stroke score corresponding to the preset key stroke based on the feel score and the sound score includes:

[0013] Obtaining a hand feel weight coefficient corresponding to the hand feel score and a sound weight coefficient corresponding to the sound score;

[0014] A weighted calculation is performed based on the feel score, the feel weight coefficient, the sound score, and the sound weight coefficient to obtain a travel score corresponding to the preset key travel.

[0015] In an exemplary embodiment, obtaining the user's rating of the key feel and the user's rating of the key sound under the preset key stroke includes:

[0016] Acquiring user information of the user, the user information at least including: information for distinguishing different users of the same clothing processing device;

[0017] Obtaining a key feel rating and a key sound rating of a user corresponding to the user information under a preset key stroke;

[0018] Then, in the step of selecting the preset key stroke corresponding to the highest stroke score as the target key stroke based on the obtained stroke scores corresponding to the preset key strokes, the preset key stroke corresponding to the highest stroke score is selected as the target key stroke corresponding to the user information based on the stroke scores corresponding to the preset key strokes corresponding to the user information;

[0019] Before generating instruction information for triggering the clothes treating device to be set to the corresponding key stroke based on the target key stroke, the method further includes:

[0020] User information of the user is obtained, and a target key stroke is determined based on a mapping relationship between the user information and the target key stroke.

[0021] According to a second aspect of an embodiment of the present application, a method for controlling the key stroke of a clothing processing device is disclosed. The method is applied to the clothing processing device, wherein the clothing processing device includes a control panel provided with a plurality of keys, a computer board corresponding to the plurality of keys, and a stroke adjuster for setting the key stroke. When the keys move toward the computer board through a specified stroke, the computer board can be triggered. The method includes:

[0022] Receiving instruction information sent by the smart terminal, the instruction information at least including: information for triggering a key stroke control instruction;

[0023] generating, based on the indication information, a control instruction for triggering the stroke adjuster to set the key stroke to a preset key stroke;

[0024] The control instruction is sent to the stroke regulator, so that the stroke regulator is set to the corresponding key stroke based on the control instruction.

[0025] In an exemplary embodiment, the stroke regulator sets the key stroke by controlling the distance between the computer board and the plurality of keys, and the stroke regulator is connected to the computer board. The control instruction for triggering the stroke regulator to set the key stroke to the preset key stroke based on the indication information includes:

[0026] Based on the indication information, a control instruction is generated to trigger the stroke regulator to drive the computer board to move a corresponding distance.

[0027] According to a third aspect of an embodiment of the present application, a method for controlling the key stroke of a clothing processing device is disclosed. The method is applied to the clothing processing device, wherein the clothing processing device includes a control panel provided with a plurality of keys, a computer board corresponding to the plurality of keys, and a stroke adjuster for setting the key stroke. When the keys move toward the computer board through a specified stroke, the computer board can be triggered. The method includes:

[0028] Obtain user ratings of the key feel and key sound under preset key travel;

[0029] Obtaining a stroke score corresponding to the preset key stroke based on the feel score and the sound score;

[0030] Based on the obtained stroke scores corresponding to the preset key strokes, the preset key stroke corresponding to the highest stroke score is selected as the target key stroke;

[0031] generating a control instruction for triggering the stroke adjuster to set the key stroke to the corresponding key stroke based on the target key stroke;

[0032] The control instruction is sent to the stroke regulator, so that the stroke regulator sets the key stroke based on the control instruction.

[0033] In an exemplary embodiment, obtaining a stroke score corresponding to the preset key stroke based on the feel score and the sound score includes:

[0034] Obtaining a hand feel weight coefficient corresponding to the hand feel score and a sound weight coefficient corresponding to the sound score;

[0035] A weighted calculation is performed based on the feel score, the feel weight coefficient, the sound score, and the sound weight coefficient to obtain a travel score corresponding to the preset key travel.

[0036] According to a fourth aspect of an embodiment of the present application, a key stroke control device for a laundry processing device is disclosed, which is provided in a smart terminal. The key stroke of the laundry processing device is adjustable, and the device includes:

[0037] An information acquisition module, configured to acquire a user's rating of the key feel and a user's rating of the key sound under a preset key stroke;

[0038] A first processing module, configured to obtain a travel score corresponding to the preset key travel based on the feel score and the sound score;

[0039] a second processing module, configured to select, based on the acquired stroke scores corresponding to the preset key strokes, the preset key stroke corresponding to the highest stroke score as the target key stroke;

[0040] an information generating module, configured to generate, based on the target key stroke, instruction information for triggering the clothes treating device to be set to a corresponding key stroke;

[0041] The information sending module is used to send the instruction information to the clothes processing device, so that the clothes processing device sets the key stroke based on the instruction information.

[0042] According to a fifth aspect of the embodiments of the present application, a key stroke control device for a clothing processing device is disclosed. The device is provided in the clothing processing device. The clothing processing device includes a control panel provided with a plurality of keys, a computer board corresponding to the plurality of keys, and a stroke adjuster for setting the key stroke. When the key moves toward the computer board through a specified stroke, the computer board can be triggered. The device includes:

[0043] An information receiving module is used to receive instruction information sent by the intelligent terminal, wherein the instruction information at least includes: information for triggering a key stroke control instruction;

[0044] A processing module, configured to generate, based on the indication information, a control instruction for triggering the stroke adjuster to set the key stroke to a preset key stroke;

[0045] The instruction sending module is used to send the control instruction to the stroke regulator, so that the stroke regulator is set to the corresponding key stroke based on the control instruction.

[0046] According to a sixth aspect of the embodiments of the present application, a smart terminal is disclosed, comprising:

[0047] one or more processors;

[0048] The memory is used to store one or more programs, and when the one or more programs are executed by the one or more processors, the smart terminal implements any method described in the first aspect above.

[0049] According to a seventh aspect of an embodiment of the present application, a clothes processing device is disclosed, comprising:

[0050] case;

[0051] A control panel is provided on the housing, and the control panel is provided with a plurality of buttons;

[0052] A computer board is arranged on the housing, the computer board is arranged corresponding to the plurality of buttons, and the computer board can be triggered when the buttons move toward the computer board by a specified stroke;

[0053] A stroke regulator, the stroke regulator is used to adjust the distance between the computer board and the plurality of keys to set the key stroke;

[0054] one or more processors;

[0055] The memory is used to store one or more programs, and when the one or more programs are executed by the one or more processors, the clothing processing device implements any method described in the second aspect above.

[0056] According to an eighth aspect of an embodiment of the present application, a computer-readable storage medium is disclosed, wherein the computer-readable storage medium stores computer-readable instructions. When the computer-readable instructions are executed by a processor of a computer, the computer executes any of the methods described in the first aspect above.

[0057] According to the ninth aspect of the embodiments of the present application, a computer-readable storage medium is disclosed, which stores computer-readable instructions. When the computer-readable instructions are executed by a processor of a computer, the computer executes any one of the methods described in the second aspect above.

[0058] The technical solutions provided by the embodiments of the present application include at least the following beneficial effects:

[0059] The technical solution provided by the present application obtains the user's feel rating of the key feel and the user's sound rating of the key sound under each preset key stroke, obtains the stroke score corresponding to each preset key stroke based on the feel score and the sound score, and screens out the preset key stroke corresponding to the highest stroke score as the target key stroke, and sets the key stroke of the clothing processing device to the target key stroke, thereby realizing dynamic adjustment of the key stroke of the clothing processing device according to the user's personalized needs, so that the clothing processing device is no longer limited to the default key stroke set before leaving the factory as the key stroke, effectively improving the user experience of the clothing processing device.

[0060] It should be understood that the foregoing general description and the following detailed description are merely illustrative and are not restrictive of the present application. BRIEF DESCRIPTION OF THE DRAWINGS

[0061] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present application and, together with the description, serve to explain the principles of the present application.

[0062] Figure 1 A schematic diagram showing an exemplary system architecture to which the technical solutions of the embodiments of the present application can be applied;

[0063] Figure 2 A flow chart showing a method for controlling a key stroke of a clothes processing device according to an embodiment of the present application is shown;

[0064] Figure 3 A flowchart of key stroke evaluation according to an embodiment of the present application is shown;

[0065] Figure 4 A flowchart of a keystroke screening process for optimal user experience according to an embodiment of the present application is shown;

[0066] Figure 5 A flowchart of key stroke matching for optimal experience of family members according to one embodiment of the present application is shown;

[0067] Figure 6 A flow chart showing a method for controlling a key stroke of a clothes processing device according to an embodiment of the present application is shown;

[0068] Figure 7 A partial structural schematic diagram of a clothes processing device according to an embodiment of the present application is shown;

[0069] Figure 8 A schematic diagram showing a control panel and a computer board of a clothes processing device according to an embodiment of the present application is shown;

[0070] Figure 9 A schematic diagram of a control panel of a clothes processing device according to an embodiment of the present application is shown;

[0071] Figure 10 A flow chart showing a method for controlling a key stroke of a clothes processing device according to an embodiment of the present application is shown;

[0072] Figure 11 A block diagram showing a key stroke control device for a clothes processing device according to an embodiment of the present application is shown;

[0073] Figure 12 A block diagram showing a key stroke control device for a clothes processing device according to an embodiment of the present application is shown;

[0074] Figure 13 A schematic diagram of the structure of a computer system suitable for implementing an electronic device according to an embodiment of the present application is shown. DETAILED DESCRIPTION

[0075] Example embodiments will now be described more fully with reference to the accompanying drawings. However, example embodiments can be implemented in many forms and should not be construed as limited to the examples set forth herein; rather, these embodiments are provided so that this application will be thorough and complete and will fully convey the concepts of the example embodiments to those skilled in the art.

[0076] In addition, described feature, structure or characteristic can be combined in one or more embodiments in any suitable manner.In the following description, many specific details are provided so as to provide a full understanding of the embodiments of the present application. However, it will be appreciated by those skilled in the art that the technical scheme of the present application can be put into practice without one or more of the specific details, or other methods, components, devices, steps etc. can be adopted. In other cases, known methods, devices, implementations or operations are not shown or described in detail to avoid blurring the various aspects of the application.

[0077] The block diagrams shown in the accompanying drawings are merely functional entities and do not necessarily correspond to physically separate entities. That is, these functional entities may be implemented in software, in one or more hardware modules or integrated circuits, or in different networks and / or processor devices and / or microcontroller devices.

[0078] The flowcharts shown in the accompanying drawings are for illustrative purposes only and do not necessarily include all contents and operations / steps, nor must they be executed in the order described. For example, some operations / steps may be decomposed, while others may be combined or partially combined. Therefore, the actual execution order may vary depending on the actual situation.

[0079] Different users have different acceptance of key sounds and different feelings about the feel of keys. For example, some users can accept loud key sounds and hope to clearly feel that the key is pressed to avoid repeatedly operating the key because they cannot judge whether the key action is effective; while some users hope that the clothing processing device will respond accordingly when they touch the key lightly, and hope that the key sound is as quiet as possible; some users hope that the key sound and key feel are moderate. Moreover, even under the same key stroke, the feel experience when different users operate the key may be different. In addition, the same user's acceptance of key sounds will be different in different situations. For example, during the night rest time, the user hopes that the key sound is as quiet as possible, while during the daytime, the user can accept a relatively loud key sound. The key stroke of existing clothing processing equipment is fixed to the default value of the key stroke set before leaving the factory, which cannot meet the personalized needs of the user, resulting in a poor user experience. To this end, the present application provides a key stroke control method and related device for clothing processing equipment to improve the user experience of clothing processing equipment.

[0080] The key stroke control method and related devices of the clothing processing device provided by this application are described in detail below in conjunction with specific embodiments.

[0081] Figure 1 A schematic diagram shows an exemplary system architecture to which the technical solutions of the embodiments of the present application can be applied.

[0082] like Figure 1 As shown, the system architecture 100 may include a clothing processing device 101 and a smart terminal (such as Figure 1 The smart terminal 102a, smart terminal 102b, smart terminal 102c shown in FIG. 1 can establish a communication connection with the clothing processing device 101 to realize the sending and receiving of instruction information. It should be understood that Figure 1 The number of intelligent terminals shown in FIG is merely illustrative, and any number of intelligent terminals may be provided according to implementation requirements.

[0083] The clothing processing device 101 includes a control panel, a computer board, and a travel adjuster. The control panel is provided with a number of buttons. When the buttons move toward the computer board to a specified travel distance, the computer board is triggered, thereby allowing the clothing processing device 101 to be controlled by operating the buttons. The travel adjuster is used to set the button travel, specifically by controlling the distance between the computer board and the buttons. The clothing processing device 101 can be a washing machine or a washer-dryer. When the clothing processing device 101 is a washer-dryer, the clothing processing device 101 also includes a drying component. The drying component is connected to the clothing processing drum and is used to heat air and then pass it into the clothing processing drum to dry the washed clothes.

[0084] The smart terminal 102a / 102b / 102c can be a smart phone, a tablet computer, a portable computer, etc. The smart terminal 102a / 102b / 102c and the laundry processing device 101 are respectively located in different spaces, that is, the smart terminal and the laundry processing device 101 are separately arranged.

[0085] Figure 2 A flowchart showing a key stroke control method for a clothes processing device according to an embodiment of the present application is shown. The key stroke control method can be executed by a smart terminal. The smart terminal can be Figure 1 The smart terminal shown in . Figure 2 As shown, the key stroke control method includes at least steps S210 to S250, which are described in detail as follows:

[0086] In step S210 , the user's rating of the key feel and the user's rating of the key sound under the preset key stroke are obtained.

[0087] In one embodiment of the present application, the preset key stroke is one or more key strokes selected by the user, and the user's feel score for the key feel and the user's sound score for the key sound are obtained under each key stroke.

[0088] In one embodiment of the present application, a key travel selection window may be automatically popped up for a preset key travel, and the user's clicks, sliding operations, etc. in the key travel selection window may be obtained to obtain the preset key travel selected by the user. The key travel selection window may be a key travel gear menu bar, for example, a menu bar including four key travel gears, and the user's clicks, sliding operations, etc. in the key travel gear menu bar may be obtained to obtain the preset key travel selected by the user. The key travel selection window may include a reference key travel gear and a gear adjustment button, and the user's clicks, sliding operations, etc. in the reference key travel gear and the gear adjustment button may be obtained to obtain the preset key travel selected by the user.

[0089] Furthermore, in one embodiment, before the key stroke selection window is automatically popped up, a selection window for whether to perform a key stroke experience may be popped up first. When the user chooses to perform a key stroke experience, a key stroke selection window may be further popped up for the user to select a preset key stroke; when the user chooses not to perform a key stroke experience, the default key stroke value may be directly used as the target key stroke.

[0090] In one embodiment of the present application, the feel rating of the key feel and the sound rating of the key sound can be triggered by triggering the selection menu bar in the interface through a set trigger method (such as clicking a menu), and then clicking the corresponding selection control in the selection menu bar. For example, when the key rating menu is clicked, the key feel rating and key sound rating selection menu bar is triggered, and the user's click, slide operation, etc. in the selection menu bar is obtained to enter the corresponding key feel rating interface or key sound rating interface. For the feel rating of the key feel and the sound rating of the key sound, the key feel rating interface and the key sound rating interface can also be automatically popped up in response to the preset key stroke selected by the user.

[0091] The following describes the key stroke evaluation process of the clothing processing device of the present application by taking a washing machine as an example.

[0092] like Figure 3 As shown, in one embodiment, the key stroke evaluation process may include the following steps S310 to S370, which are described in detail as follows:

[0093] In step S310, the washing machine smart APP is turned on.

[0094] It can be triggered by a set method, such as when the washing machine smart APP icon is clicked to trigger the start. The washing machine smart APP is loaded in the smart terminal, and the smart terminal executes the key stroke control method of the clothing processing device of this application through the washing machine smart APP.

[0095] In step S320, the washing machine is powered on.

[0096] In step S330, the washing machine smart APP is connected to the washing machine.

[0097] At this point, a communication connection is established between the washing machine smart APP and the washing machine, and information can be sent and received between the washing machine smart APP and the washing machine.

[0098] It should be noted that in some embodiments, the washing machine smart app can be connected to the washing machine when it is turned on. The washing machine smart app can set a washing machine startup control menu. When the washing machine startup control menu is operated in a set triggering manner, the washing machine smart app sends a startup instruction message to the washing machine, thereby starting the washing machine. In other words, step S320 is switched to be executed after step S330.

[0099] In step S340, the stroke adjuster of the washing machine sets the distance between the computer board and the button according to the preset button stroke Sx.

[0100] Generally speaking, keystroke sound is positively correlated with keystroke travel Sx. The larger the keystroke travel Sx, the louder the keystroke sound. Accordingly, the greater the user's hand's pressing distance, the more noticeable the keystroke feel. The smaller the keystroke travel Sx, the quieter the keystroke sound. Accordingly, the shorter the user's hand's pressing distance, the less noticeable the keystroke feel.

[0101] After the key stroke is set to the preset key stroke through the stroke adjuster, the user can obtain the tactile experience and sound experience corresponding to the preset key stroke when operating the key.

[0102] In step S350, the user's feel score M(Sx) for the key feel is obtained.

[0103] In step S360, the user's sound score N(Sx) for the key pressing sound is obtained.

[0104] In step S370, the user's touch score M(Sx) for the key feel and the sound score N(Sx) for the key sound are stored in the APP database.

[0105] In step S220 , a stroke score corresponding to the preset key stroke is obtained based on the feel score and the sound score.

[0106] In one embodiment of the present application, in step S220, the feel weight coefficient corresponding to the feel score and the sound weight coefficient corresponding to the sound score are obtained, and a weighted operation is performed based on the feel score, the feel weight coefficient, the sound score and the sound weight coefficient to obtain a travel score corresponding to the preset key travel.

[0107] In detail, set the key travel to Sx, the feel score to M(Sx), the sound score to N(Sx), the feel weight coefficient to A, the sound weight coefficient to B, and calculate based on Q=A*M(Sx)+B*N(Sx) to obtain the travel score Q corresponding to the key travel Sx.

[0108] The touch weight coefficient A and sound weight coefficient B can be flexibly set by the user according to personalized needs. In one example, the touch weight coefficient A is 0.7 and the sound weight coefficient B is 0.3; in another example, the touch weight coefficient A is 0.4 and the sound weight coefficient B is 0.6; in another example, the touch weight coefficient A is 0.5 and the sound weight coefficient B is 0.5.

[0109] In one embodiment of the present application, for the feel weight coefficient and the sound weight coefficient, after the washing machine smart app is turned on, a weight coefficient setting interface may be automatically popped up to accept the weight coefficient setting or change operation. Alternatively, after the washing machine smart app is turned on, a weight coefficient change inquiry window may be automatically popped up to obtain the user's operation in the inquiry window and determine whether to enter the weight coefficient setting interface or directly call the historical weight coefficient as the feel weight coefficient and the sound weight coefficient. Alternatively, the weight coefficient setting interface may be triggered by a set trigger method (such as clicking a menu).

[0110] By setting the hand feel weight coefficient and the sound weight coefficient, and then performing weighted calculations on the hand feel score and the sound score to obtain a travel score, the user can flexibly adjust the hand feel weight coefficient and the sound weight coefficient based on actual needs, thereby further determining a new target key travel and changing the key travel of the clothing processing device through subsequent steps S230 to S250. The key travel setting of the clothing processing device is more flexible, which can further enhance the user experience of the clothing processing device.

[0111] like Figure 4 As shown, in one embodiment, the screening process for the user's best experienced key feel and key sound (i.e., the user's best experienced key travel) may include the following steps S410 to S460, which are detailed as follows:

[0112] In step S410, the washing machine smart APP is turned on.

[0113] In step S420 , the hand feeling weight coefficient A is set.

[0114] In step S430, the sound weight coefficient B is set.

[0115] It should be noted that in some embodiments, the sound weight coefficient B may be set first, and then the touch weight coefficient A is set, that is, step S420 is switched to be executed after step S430. Alternatively, the touch weight coefficient A and the sound weight coefficient B may be set at the same time.

[0116] In step S440 , the stroke score corresponding to each key stroke Sx is calculated: Q=A*M(Sx)+B*N(Sx).

[0117] Specifically, the feel score M(Sx) and sound score N(Sx) stored in the APP database in the aforementioned step S370 are called, and then the travel score Q corresponding to each key travel Sx is calculated based on Q=A*M(Sx)+B*N(Sx).

[0118] In step S450, the key stroke S(Qmax) corresponding to the highest score is screened out.

[0119] In step S460, the user's best experience key stroke S (Qmax) is stored in the APP database.

[0120] In one embodiment of the present application, in step S220, an averaging operation may be performed directly based on the hand feel score and the sound score to obtain a travel score corresponding to the preset key travel.

[0121] In step S230 , based on the acquired stroke scores corresponding to the preset key strokes, the preset key stroke corresponding to the highest stroke score is selected as the target key stroke.

[0122] For each travel score, there will be a corresponding preset key travel. Every time a travel score is obtained, all the currently obtained travel scores can be sorted by size through step S230, the highest travel score can be screened out, and the preset key travel corresponding to the highest travel score can be used as the target key travel.

[0123] For example, after executing steps S210 and S220 multiple times, the stroke scores corresponding to the key strokes of the first and second stroke gears have been obtained. Then, in step S230, based on the stroke scores when the key strokes are the first and second stroke gears respectively, the key stroke gear corresponding to the highest stroke score is selected as the target key stroke.

[0124] For example, after executing steps S210 and S220 multiple times, the stroke scores corresponding to the key travel positions of the first travel position, the second travel position, and the third travel position have been obtained. Then, in step S230, based on the stroke scores when the key travel positions are the first travel position, the second travel position, and the third travel position, the key travel position corresponding to the highest stroke score is selected as the target key travel.

[0125] In the case where step S210 and step S220 are only executed once, that is, only a stroke score corresponding to one key stroke position is currently obtained, then in step S230, the key stroke position corresponding to the currently obtained stroke score can be directly used as the target key stroke.

[0126] In step S240, instruction information for triggering the clothes treating device to be set to the corresponding key stroke is generated based on the target key stroke.

[0127] It should be noted that the indication information may be any information that can trigger the clothes processing device to be set to a corresponding key stroke.

[0128] In one embodiment of the present application, after the laundry processing device is restarted, that is, when the laundry processing device is required to process the laundry next time, step S240 is executed. In other words, the aforementioned steps S210 to S230 are executed during the last laundry processing by the laundry processing device or after the last laundry processing by the laundry processing device is completed.

[0129] In some embodiments of the present application, the user can be identified based on the user account, and operations under the same user account (i.e., the same smart terminal) are considered to be operations by the same user. In step S240, the instruction information for triggering the clothing treatment device to be set to the corresponding key stroke is generated directly based on the target key stroke obtained historically.

[0130] However, in some cases, there may be situations where multiple family members operate through the same smart terminal. Therefore, in some embodiments of the present application, before executing step S240, the user information of the user is first obtained, and the target key stroke is determined based on the mapping relationship between the user information and the target key stroke. Then, step S240 is executed again. Correspondingly, in step S210, the user information of the user is first obtained, and the user information includes at least: information used to distinguish different users of the same clothing processing device; then, the user's corresponding user's feel score for the key feel and the sound score for the key sound under the preset key stroke are obtained. Correspondingly, in step S220, based on the feel score and sound score of the corresponding user of the user information, the stroke score corresponding to the preset key stroke is obtained. Correspondingly, in step S230, based on the stroke scores corresponding to each preset key stroke corresponding to the user information, the preset key stroke corresponding to the highest stroke score is filtered out as the target key stroke corresponding to the user information.

[0131] This embodiment determines the target key travel based on user information, enabling the key travel of a laundry treatment device to be adjusted to the individual needs of each family member when multiple family members operate the same smart terminal. In other words, different family members can individually rate the key feel and sound of the laundry treatment device's keys. When the corresponding family member uses the laundry treatment device, the device intelligently sets the key travel based on that member's rating.

[0132] In some embodiments of the present application, when multiple family members operate through the same smart terminal, the user can be identified by obtaining the user's fingerprint, that is, the user information is the user's fingerprint. In some embodiments of the present application, the user can be identified by obtaining personal information input by the user, such as the name or family member number input by the user, that is, the user information is the personal information input by the user. Before executing step S240, the user's user information can be obtained through the smart terminal or through the clothing processing device, and the clothing processing device then feeds the user information back to the smart terminal.

[0133] like Figure 5 As shown, in one embodiment, the process of matching the best experience key strokes of different family members may include the following steps S510 to S560, which are described in detail as follows:

[0134] In step S510, the washing machine smart APP is turned on.

[0135] In step S520, the washing machine is powered on.

[0136] In step S530, the washing machine smart APP is connected to the washing machine.

[0137] In step S540, user information corresponding to the current family member is obtained.

[0138] It should be noted that the current family members are the users who are currently using the washing machine.

[0139] In step S550, the optimal experience key stroke S (Qmax) corresponding to the family member is obtained.

[0140] Specifically, the user's best experience key stroke S (Qmax) stored in the APP database in the aforementioned step S460 is called. After obtaining the user information corresponding to the current family member through step S540, the best experience key stroke S (Qmax) corresponding to the family member can be obtained based on the mapping relationship between the user information and the key stroke S (Qmax).

[0141] In step S560, instruction information for triggering the washing machine to be set to the key stroke S(Qmax) is generated based on the key stroke S(Qmax).

[0142] In step S250, the instruction information is sent to the clothes treating device, so that the clothes treating device sets the key stroke based on the instruction information.

[0143] That is, the clothes treating apparatus sets the key stroke to the key stroke S(Qmax) based on the instruction information.

[0144] In the present application, by obtaining the user's feel rating of the button feel and the user's sound rating of the button sound under each preset button stroke, based on the feel rating and the sound rating, the stroke score corresponding to each preset button stroke is obtained, and the preset button stroke corresponding to the highest stroke score is screened out as the target button stroke, and based on the target button stroke, an indication information for triggering the clothing processing device to be set to the corresponding button stroke is generated and the indication information is sent to the clothing processing device. This can realize dynamic adjustment of the button stroke of the clothing processing device according to the user's personalized needs, so that the clothing processing device is no longer limited to the default value of the button stroke set before leaving the factory as the button stroke, thereby effectively improving the user experience of the clothing processing device.

[0145] Accordingly, Figure 6 The flowchart of the key stroke control method of the laundry processing device according to one embodiment of the present application is also shown. The key stroke control method can be executed by the laundry processing device, specifically by the controller of the laundry processing device. The laundry processing device can be Figure 1 The laundry treatment appliance shown in . Figure 6 As shown, the key stroke control method includes at least steps S610 to S630, which are described in detail as follows:

[0146] In step S610, instruction information sent by the smart terminal is received, where the instruction information at least includes information for triggering a key stroke control instruction.

[0147] Specifically, the information that triggers the key stroke control instruction may be information that triggers the clothes processing device to be set to a specific key stroke.

[0148] The indication information may be based on Figure 2 The key stroke control method of the clothes processing device is obtained.

[0149] In step S620 , a control instruction for triggering the stroke adjuster to set the key stroke to a preset key stroke is generated based on the indication information.

[0150] like Figure 7 As shown, in one embodiment of the present application, the clothes processing device includes a housing 701, a control panel 702, a computer board 703, a stroke regulator 704 and some necessary components.

[0151] The control panel 702 is provided on the housing 701 and is provided with one or more buttons 705. For example, Figure 8 and Figure 9As shown, the control panel 702 is provided with multiple buttons 705, each of which is connected to a button shaft 706. When a button 705 is pressed, the button 705 drives the corresponding button shaft 706 to move toward the computer board 703. When the button 705 drives the corresponding button shaft 706 to move a specified distance toward the computer board 703, the corresponding button shaft 706 presses the corresponding circuit component on the computer board 703, thereby triggering the computer board 703 to perform the corresponding operation. When the button 705 is released, the button 705 returns to its original position and drives the corresponding button shaft 706 back to its original position.

[0152] Of course, in some embodiments, the button axis 706 may not be provided.

[0153] For example, the clothing processing device is a washing machine, and the control panel 702 is provided with a start button for triggering the computer board to control the washing machine to start the washing program, a pause button for triggering the computer board to control the washing machine to pause the washing program, a water level selection button for triggering the computer board to control the washing machine to wash at a set water level, etc.

[0154] Computer board 703 is mounted on housing 701, facing control panel 702. Circuit components are located on computer board 703 at positions corresponding to buttons 705. When a button 705 moves a specified distance toward computer board 703, the corresponding circuit component is pressed, triggering computer board 703 to perform the corresponding operation.

[0155] It should be noted that the device on the computer board 703 has a control circuit, which can specifically be a PCB board provided with a control circuit. The control circuit includes a controller, which responds to the pressing of the button 705 and controls the corresponding components of the clothing processing device to perform corresponding operations.

[0156] In one embodiment of the present application, the control panel 702 is fixedly mounted on the housing 701, and the computer board 703 is movably mounted on the housing 701. By moving the computer board 703 away from or toward the control panel 702, the distance between the computer board 703 and the control panel 702 is adjusted, thereby adjusting the distance between the computer board 703 and the key 705, thereby setting the key travel. For example, the laundry processing device is a washing machine, the housing 701 is the washing machine's tray, the control panel 702 is mounted on the surface of the tray 701, and the computer board 703 is movably mounted inside the tray 701.

[0157] The travel adjuster 704 is used to adjust the distance between the computer board 703 and the key 705, thereby setting the key travel to the preset key travel. When the travel adjuster 704 receives a control instruction for triggering it to set the key travel to the preset key travel, it adjusts the distance between the computer board 703 and the key 705 accordingly based on the control instruction, thereby setting the key travel to the preset key travel.

[0158] exist Figure 7 In the illustrated embodiment, the stroke regulator 704 is connected to the computer board 703. The stroke regulator 704 drives the computer board 703 away from or close to the control panel 702 based on the control instruction, thereby adjusting the distance between the computer board 703 and the button 705, and then setting the button stroke to the preset button stroke.

[0159] Exemplarily, the stroke adjuster 704 includes a drive motor, the output shaft of which is connected to a push-pull rod 707, the other end of which is connected to the computer board 703. The drive motor 704 controls the extension and retraction of the push-pull rod 707, thereby pushing the computer board 703 toward the control panel 702 or pulling the computer board 703 away from the control panel 702.

[0160] Furthermore, the laundry processing device is further provided with a plurality of slide rails 708, which are mounted within the housing 701 and extend along the travel direction of the key 705. The four corners of the computer board 703 are slidably mounted on corresponding slide rails 708 and, driven by the travel adjuster 704, slide along the slide rails 708, thereby moving away from or closer to the control panel 702, thereby setting the travel of the key 705 to a preset travel.

[0161] The necessary components are some basic components that make up the clothing processing device. For example, when the clothing processing device is a washing machine, the necessary components may include a washing drum, a driving motor for driving the washing drum to rotate, a drainage device for draining the washing water in the washing drum, etc.

[0162] Furthermore, in some embodiments, Figure 9 As shown, the control panel 702 is further provided with a display 709, which displays relevant information of the clothing processing device, such as remaining processing time information, etc.

[0163] The key stroke control method of the clothing processing device of the present application is applied to Figure 7 In the case of the laundry processing device shown, in step S620, based on the indication information, a control instruction is generated to trigger the stroke adjuster to drive the computer board to move a corresponding distance. The stroke adjuster drives the computer board to move a corresponding distance, thereby controlling the distance between the computer board and the key to a distance corresponding to the preset key stroke.

[0164] Of course, the key travel setting is not limited to Figure 7 The implementation structure forms listed in .

[0165] In step S630 , the control instruction is sent to the stroke regulator, so that the stroke regulator is set to the corresponding key stroke based on the control instruction.

[0166] In step S630, the stroke regulator is set to the corresponding key stroke based on the control instruction, that is, the stroke regulator controls the distance between the computer board and the plurality of keys based on the control instruction so that the key stroke is the corresponding key stroke.

[0167] In this application, the clothing processing device is configured to receive indication information and adjust the distance between the computer board and the key based on the target key stroke corresponding to the indication information, so that the clothing processing device is no longer limited to the default key stroke set before leaving the factory as the key stroke, effectively improving the user experience of the clothing processing device.

[0168] See next Figure 10 , Figure 10 The flowchart of the key stroke control method of a clothes processing device according to one embodiment of the present application is shown. The key stroke control method can be executed by the clothes processing device, specifically by the controller of the clothes processing device. Figure 10 As shown, the key stroke control method includes at least steps S1010 to S1050, which are described in detail as follows:

[0169] In step S1010 , a user's rating of the key feel and a user's rating of the key sound under a preset key stroke are obtained.

[0170] In step S1020, a stroke score corresponding to the preset key stroke is obtained based on the feel score and the sound score.

[0171] In step S1030 , based on the acquired stroke scores corresponding to the preset key strokes, the preset key stroke corresponding to the highest stroke score is selected as the target key stroke.

[0172] In step S1040, a control instruction for triggering a stroke adjuster to set the key stroke to a corresponding key stroke is generated based on the target key stroke.

[0173] In step S1050 , the control instruction is sent to the stroke regulator, so that the stroke regulator sets the key stroke based on the control instruction.

[0174] In step S1050, the stroke regulator sets the key stroke based on the control instruction, that is, the stroke regulator controls the distance between the computer board and the key based on the control instruction, thereby setting it to the corresponding key stroke.

[0175] Different from the above embodiment, Figure 10 In the embodiment shown, the operation steps executed by the smart terminal are integrated into the laundry processing device. For steps S1010 to S1030, please refer to the description of the aforementioned steps S210 to S230. In step S1040, Figure 2 and Figure 6 The illustrated embodiment differs in that step S1040 directly generates a control instruction for triggering the travel adjuster to set the key travel to the corresponding key travel based on the target key travel, rather than generating the control instruction based on the instruction information. This eliminates the steps of generating and transmitting the instruction information, as well as the step of receiving the transmitted instruction information. For step S1050, please refer to the description of step S630 above.

[0176] The clothing processing device may be provided with a touch screen, and accept user operations through the touch screen, so that the controller of the clothing processing device can further execute the key stroke control method of the present application.

[0177] The present application obtains the user's feel rating of the key feel and the user's sound rating of the key sound under each preset key stroke, obtains the stroke score corresponding to each preset key stroke based on the feel score and the sound score, and filters out the preset key stroke corresponding to the highest stroke score as the target key stroke, and then generates a control instruction for triggering the stroke regulator to set the key stroke to the corresponding key stroke based on the target key stroke, and then sends the control instruction to the stroke regulator to control the stroke regulator to adjust the distance between the computer board and the key to the distance corresponding to the target key stroke, thereby realizing dynamic adjustment of the key stroke of the clothing processing device according to the user's personalized needs, so that the clothing processing device is no longer limited to the default key stroke set before leaving the factory as the key stroke, effectively improving the user experience of the clothing processing device.

[0178] Corresponding to the aforementioned embodiment of the key stroke control method for a clothing processing device, the present application also provides a key stroke control device for a clothing processing device.

[0179] See Figure 11 As shown, Figure 11 A block diagram of a key stroke control device for a clothes processing device according to an embodiment of the present invention is shown. The key stroke control device can be applied to a smart terminal to execute Figures 2 to 5 All or part of the steps of any of the key stroke control methods shown. Figure 11 As shown, the device 1100 includes but is not limited to: an information acquisition module 1101 , a first processing module 1102 , a second processing module 1103 , an information generation module 1104 and an information sending module 1105 .

[0180] The information acquisition module 1101 is used to obtain the user's feel rating of the keystroke and the user's sound rating of the keystroke under a preset keystroke travel.

[0181] The first processing module 1102 is configured to obtain a stroke score corresponding to a preset key stroke based on the feel score and the sound score.

[0182] In some embodiments of the present application, based on the aforementioned scheme, the first processing module 1102 is configured to obtain the tactile weight coefficient corresponding to the tactile score and the sound weight coefficient corresponding to the sound score, and perform weighted operations based on the tactile score, the tactile weight coefficient, the sound score and the sound weight coefficient to obtain the travel score corresponding to the preset key travel.

[0183] The second processing module 1103 is configured to select, based on the acquired stroke scores corresponding to the preset key strokes, the preset key stroke corresponding to the highest stroke score as the target key stroke.

[0184] The information generating module 1104 is configured to generate instruction information for triggering the clothes treating device to be set to the corresponding key stroke based on the target key stroke.

[0185] In some embodiments of the present application, based on the aforementioned solution, the apparatus 1100 further includes a user information acquisition module 1106, which is configured to acquire user information of the user. The information generation module 1104 is configured to determine a target key stroke based on a mapping relationship between the user information acquired by the user information acquisition module 1106 and the target key stroke, and to generate, based on the target key stroke, instruction information for triggering the laundry treatment device to be set to the corresponding key stroke.

[0186] The information sending module 1105 is configured to send the instruction information to the clothes treating device, so that the clothes treating device sets the key stroke based on the instruction information.

[0187] See Figure 12 As shown, Figure 12 A block diagram of a key stroke control device for a clothes processing device according to an embodiment of the present invention is shown. The key stroke control device can be applied to the clothes processing device to execute Figure 6 All or part of the steps of the key stroke control method shown. Figure 12 As shown, the device 1200 includes but is not limited to: an information receiving module 1201 , a processing module 1202 and an instruction sending module 1203 .

[0188] The information receiving module 1201 is used to receive instruction information sent by the smart terminal, and the instruction information at least includes: information for triggering a key stroke control instruction.

[0189] The processing module 1202 is configured to generate, based on the indication information, a control instruction for triggering the stroke adjuster to set the key stroke to a preset key stroke.

[0190] In some embodiments of the present application, based on the aforementioned solution, the processing module 1202 is configured to generate, based on the indication information, a control instruction for triggering the stroke regulator to drive the computer board to move a corresponding distance.

[0191] The instruction sending module 1203 is used to send the control instruction to the stroke regulator, so that the stroke regulator sets the key stroke based on the control instruction.

[0192] The implementation process of the functions and effects of each module in the above-mentioned devices 1100 and 1200 is specifically described in the implementation process of the corresponding steps in the key stroke control method of the above-mentioned clothing processing equipment, and will not be repeated here.

[0193] Corresponding to the above-mentioned key stroke control method embodiment of the clothing processing device, the present application also provides an electronic device, which can be applied to a smart terminal to perform Figures 2 to 5 All or part of the steps of the key stroke control method of any of the clothes processing equipment shown; the electronic device can also be used in the clothes processing equipment, and the electronic device is, for example, a controller of the clothes processing equipment to execute Figure 6 All or part of the steps of the key stroke control method of the clothes processing device shown.

[0194] Figure 13 A schematic diagram of the structure of a computer system suitable for implementing an electronic device according to an embodiment of the present application is shown.

[0195] It should be noted that Figure 13 The computer system 1300 of the electronic device shown is only an example and should not limit the functions and scope of use of the embodiments of the present application.

[0196] like Figure 13As shown, the computer system 1300 includes a central processing unit (CPU) 1301, which can perform various appropriate actions and processes according to the program stored in the read-only memory (ROM) 1302 or the program loaded from the storage part 1308 to the random access memory (RAM) 1303, such as executing the method described in the above embodiment. Various programs and data required for system operation are also stored in the RAM 1303. The CPU 1301, ROM 1302 and RAM 1303 are connected to each other via a bus 1304. An input / output (I / O) interface 1305 is also connected to the bus 1304.

[0197] The following components are connected to the I / O interface 1305: an input section 1306 including a keyboard, a mouse, and the like; an output section 1307 including devices such as a cathode ray tube (CRT), a liquid crystal display (LCD), and a speaker; a storage section 1308 including a hard disk; and a communication section 1309 including a network interface card such as a LAN (Local Area Network) card or a modem. The communication section 1309 performs communication processing via a network such as the Internet. A drive 1310 is also connected to the I / O interface 1305 as needed. Removable media 1311, such as a magnetic disk, an optical disk, a magneto-optical disk, or a semiconductor memory, is installed in the drive 1310 as needed, so that computer programs read from the removable media can be installed in the storage section 1308 as needed.

[0198] In particular, according to an embodiment of the present application, the process described above with reference to the flowchart can be implemented as a computer software program. For example, an embodiment of the present application includes a computer program product, which includes a computer program carried on a computer-readable medium, and the computer program includes a computer program for executing the method shown in the flowchart. In such an embodiment, the computer program can be downloaded and installed from a network via the communication section 1309, and / or installed from a removable medium 1311. When the computer program is executed by the central processing unit (CPU) 1301, the various functions defined in the system of the present application are executed.

[0199] It should be noted that the computer-readable medium shown in the embodiments of the present application may be a computer-readable signal medium or a computer-readable storage medium or any combination of the two. The computer-readable storage medium may be, for example, but not limited to, an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, device or component, or any combination of the above. More specific examples of computer-readable storage media may include, but are not limited to: an electrical connection with one or more wires, a portable computer disk, a hard disk, a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM), a flash memory, an optical fiber, a portable compact disk read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination of the above. In the present application, a computer-readable storage medium may be any tangible medium containing or storing a program that can be used by or in combination with an instruction execution system, device or device. In the present application, a computer-readable signal medium may include a data signal propagated in baseband or as part of a carrier wave, which carries a computer-readable computer program. Such propagated data signals may take various forms, including but not limited to electromagnetic signals, optical signals, or any suitable combination thereof. A computer-readable signal medium may also be any computer-readable medium other than a computer-readable storage medium that can transmit, propagate, or transport a program for use by or in connection with an instruction execution system, apparatus, or device. A computer program embodied on a computer-readable medium may be transmitted using any suitable medium, including but not limited to wireless, wired, or any suitable combination thereof.

[0200] The flowcharts and block diagrams in the accompanying drawings illustrate the possible implementation architecture, functions and operations of the systems, methods and computer program products according to various embodiments of the present application. Among them, each box in the flowchart or block diagram can represent a module, program segment, or part of the code, and the above-mentioned module, program segment, or part of the code contains one or more executable instructions for implementing the specified logical function. It should also be noted that in some alternative implementations, the functions marked in the box can also occur in an order different from that marked in the accompanying drawings. For example, two boxes represented in succession can actually be executed substantially in parallel, and they can sometimes be executed in the opposite order, depending on the functions involved. It should also be noted that each box in the block diagram or flowchart, and the combination of boxes in the block diagram or flowchart, can be implemented with a dedicated hardware-based system that performs the specified function or operation, or can be implemented with a combination of dedicated hardware and computer instructions.

[0201] The units involved in the embodiments described in this application may be implemented by software or hardware, and the units described may also be set in a processor. In some cases, the names of these units do not constitute limitations on the units themselves.

[0202] As another aspect, the present application further provides a computer-readable medium, which may be included in the electronic device described in the above embodiments, or may exist independently without being incorporated into the electronic device. The computer-readable medium carries one or more programs, and when the one or more programs are executed by the electronic device, the electronic device implements the method described in the above embodiments.

[0203] It should be noted that, although several modules or units of the device for action execution are mentioned in the above detailed description, this division is not mandatory. In fact, according to the embodiment of the application, the features and functions of two or more modules or units described above can be concretized in one module or unit. On the contrary, the features and functions of one module or unit described above can be further divided into multiple modules or units to be concretized.

[0204] Through the description of the above embodiments, it is easy for those skilled in the art to understand that the example embodiments described herein can be implemented by software or by combining software with necessary hardware. Therefore, the technical solution according to the embodiments of the present application can be embodied in the form of a software product, which can be stored in a non-volatile storage medium (which can be a CD-ROM, a USB flash drive, a mobile hard disk, etc.) or on a network, and includes several instructions to enable a computing device (which can be a personal computer, a server, a touch terminal, or a network device, etc.) to execute the method according to the embodiments of the present application.

[0205] Those skilled in the art will readily conceive of other embodiments of the present application after considering the specification and practicing the embodiments disclosed herein. This application is intended to cover any variations, uses, or adaptations of the present application that follow the general principles of this application and include common knowledge or customary techniques in the art that are not disclosed herein.

[0206] It should be understood that the present application is not limited to the exact structures that have been described above and shown in the drawings, and that various modifications and changes can be performed without departing from the scope thereof. The scope of the present application is limited only by the appended claims.

Claims

1. A method for controlling the key stroke of a clothes processing device, characterized in that: Applied in a smart terminal, the key stroke of the clothing processing device is adjustable, and the method includes: Obtain user ratings of the key feel and key sound under preset key travel; Obtaining a stroke score corresponding to the preset key stroke based on the feel score and the sound score; Based on the obtained stroke scores corresponding to the preset key strokes, the preset key stroke corresponding to the highest stroke score is selected as the target key stroke; generating, based on the target key stroke, instruction information for triggering the clothes treating device to be set to a corresponding key stroke; The instruction information is sent to the clothes treating device, so that the clothes treating device sets a key stroke based on the instruction information.

2. The method according to claim 1, characterized in that The obtaining, based on the feel score and the sound score, a stroke score corresponding to the preset key stroke includes: Obtaining a hand feel weight coefficient corresponding to the hand feel score and a sound weight coefficient corresponding to the sound score; A weighted calculation is performed based on the feel score, the feel weight coefficient, the sound score, and the sound weight coefficient to obtain a travel score corresponding to the preset key travel.

3. The method according to claim 1, characterized in that The step of obtaining the user's rating of the key feel and the user's rating of the key sound under the preset key stroke includes: Acquiring user information of the user, the user information at least including: information for distinguishing different users of the same clothing processing device; Obtaining a key feel rating and a key sound rating of a user corresponding to the user information under a preset key stroke; Then, in the step of selecting the preset key stroke corresponding to the highest stroke score as the target key stroke based on the obtained stroke scores corresponding to the preset key strokes, the preset key stroke corresponding to the highest stroke score is selected as the target key stroke corresponding to the user information based on the stroke scores corresponding to the preset key strokes corresponding to the user information; Before generating instruction information for triggering the clothes treating device to be set to the corresponding key stroke based on the target key stroke, the method further includes: User information of the user is obtained, and a target key stroke is determined based on a mapping relationship between the user information and the target key stroke.

4. A method for controlling the key stroke of a clothes processing device, characterized in that: Applied to a clothes processing device, the clothes processing device includes a control panel provided with a plurality of buttons, a computer board corresponding to the plurality of buttons, and a stroke adjuster for setting the button stroke, wherein the computer board can be triggered when the button moves toward the computer board through a specified stroke, and the method includes: Receiving instruction information sent by the smart terminal, the instruction information at least including: information for triggering a key travel control instruction, the instruction information being generated based on the method according to any one of claims 1 to 3; generating, based on the indication information, a control instruction for triggering the stroke adjuster to set the key stroke to a preset key stroke; The control instruction is sent to the stroke regulator, so that the stroke regulator is set to the corresponding key stroke based on the control instruction.

5. The method according to claim 4, characterized in that The stroke regulator sets the key stroke by controlling the distance between the computer board and the plurality of keys, and the stroke regulator is connected to the computer board. The control instruction for triggering the stroke regulator to set the key stroke to the preset key stroke based on the indication information includes: Based on the indication information, a control instruction is generated to trigger the stroke regulator to drive the computer board to move a corresponding distance.

6. A method for controlling the key stroke of a clothes processing device, characterized in that: Applied to a clothes processing device, the clothes processing device includes a control panel provided with a plurality of buttons, a computer board corresponding to the plurality of buttons, and a stroke adjuster for setting the button stroke, wherein the computer board can be triggered when the button moves toward the computer board through a specified stroke, and the method includes: Obtain user ratings of the key feel and key sound under preset key travel; Obtaining a stroke score corresponding to the preset key stroke based on the feel score and the sound score; Based on the obtained stroke scores corresponding to the preset key strokes, the preset key stroke corresponding to the highest stroke score is selected as the target key stroke; generating a control instruction for triggering the stroke adjuster to set the key stroke to the corresponding key stroke based on the target key stroke; The control instruction is sent to the stroke regulator, so that the stroke regulator sets the key stroke based on the control instruction.

7. The method according to claim 6, characterized in that The obtaining, based on the feel score and the sound score, a stroke score corresponding to the preset key stroke includes: Obtaining a hand feel weight coefficient corresponding to the hand feel score and a sound weight coefficient corresponding to the sound score; A weighted calculation is performed based on the feel score, the feel weight coefficient, the sound score, and the sound weight coefficient to obtain a travel score corresponding to the preset key travel.

8. A key stroke control device for a clothes processing device, characterized in that: The key stroke of the laundry processing device is adjustable and is provided in a smart terminal. The device includes: An information acquisition module, configured to acquire a user's rating of the key feel and a user's rating of the key sound under a preset key stroke; A first processing module, configured to obtain a travel score corresponding to the preset key travel based on the feel score and the sound score; a second processing module, configured to select, based on the acquired stroke scores corresponding to the preset key strokes, the preset key stroke corresponding to the highest stroke score as the target key stroke; an information generating module, configured to generate, based on the target key stroke, instruction information for triggering the clothes treating device to be set to a corresponding key stroke; The information sending module is used to send the instruction information to the clothes processing device, so that the clothes processing device sets the key stroke based on the instruction information.

9. A key stroke control device for a clothes processing device, characterized in that: The device is provided in a clothes processing device, the clothes processing device including a control panel provided with a plurality of buttons, a computer board provided corresponding to the plurality of buttons, and a stroke adjuster for setting the button stroke. When the button moves toward the computer board through a specified stroke, the computer board can be triggered. The device includes: An information receiving module is used to receive instruction information sent by the intelligent terminal, wherein the instruction information at least includes: information for triggering a key stroke control instruction; a processing module, configured to generate, based on the indication information, a control instruction for triggering the stroke adjuster to set the key stroke to a preset key stroke, wherein the indication information is generated based on the method according to any one of claims 1 to 3; The instruction sending module is used to send the control instruction to the stroke regulator, so that the stroke regulator is set to the corresponding key stroke based on the control instruction.

10. A clothes processing device, characterized in that: include: case; A control panel is provided on the housing, and the control panel is provided with a plurality of buttons; A computer board is arranged on the housing, the computer board is arranged corresponding to the plurality of buttons, and the computer board can be triggered when the buttons move toward the computer board by a specified stroke; A stroke regulator, the stroke regulator is used to adjust the distance between the computer board and the plurality of keys to set the key stroke; one or more processors; A memory for storing one or more programs, which, when executed by the one or more processors, enables the laundry processing device to implement the method according to any one of claims 4 to 5.

11. The clothes treating device according to claim 10, characterized in that: The control panel is fixedly arranged on the shell, the computer board is movably arranged on the shell, and the stroke regulator is connected to the computer board and is used to drive the computer board away from or close to the control panel to adjust the distance between the computer board and the plurality of buttons.

12. The clothes processing device according to claim 11, characterized in that: Also includes: A slide rail extending along a travel direction of the key; The computer board is slidably assembled on the slide rail and slides along the slide rail under the drive of the stroke adjuster to move away from or close to the control panel.

Citation Information

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