Control method, device, clothing processing equipment and computer readable storage medium

The electrolytic device of the clothing treatment equipment generates hydroxyl radicals to remove dyes in the washing water, solving the dyeing problem caused by the mixed washing of dark clothes and light-colored clothes in traditional washing machines, and achieving a more efficient and convenient washing process.

CN116163112BActive Publication Date: 2025-05-16WUXI LITTLE SWAN ELECTRIC CO LTD
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Patent Information

Application Number
CN202111412128.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-11-25
Publication Date
2025-05-16
Estimated Expiration
2041-11-25

AI Technical Summary

Technical Problem

When washing, traditional washing machines require users to manually separate dark and light-colored clothes to avoid dyeing. Manual classification and multiple classification washing consume time and electricity, reducing user satisfaction.

Method used

A control method is provided to generate hydroxyl radicals through the electrolytic device of the clothing treatment device, which chemically reacts with dye molecules in the washing water to remove dyes, thereby avoiding dyes between clothing. The method includes obtaining washing parameters in response to an operating instruction, determining operating parameters of the electrolytic device, and controlling the operation of the electrolytic device to generate hydroxyl radicals.

Benefits of technology

Effectively remove dyes from washing water, avoid dyes from dyes to dye other clothes, simplify users' washing process, reduce power and time consumption, and improve user experience.

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Abstract

The present application provides a control method, device, clothing treatment equipment and computer-readable storage medium, the method comprising: obtaining washing parameters in response to an operation instruction for executing a clothing treatment program; determining operating parameters of an electrolysis device of the clothing treatment equipment according to the washing parameters; controlling the clothing treatment equipment to start executing the clothing treatment program, and controlling the electrolysis device to operate according to the operating parameters to generate hydroxyl radicals that can react chemically with dye molecules. The hydroxyl radicals generated by the electrolysis device react chemically with dye molecules in washing water quickly, which can effectively remove dye molecules in washing water and effectively prevent the dye molecules from staining other clothes.
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Description

Technical Field

[0001] The present application relates to the technical field of household appliances, and in particular to a control method, device, clothing processing equipment and computer-readable storage medium. Background Art

[0002] As living standards continue to improve, people's requirements for clothing are getting higher and higher. In order to prevent dark clothes from fading and staining light clothes, traditional washing machines require users to deliberately distinguish dark clothes from light clothes during washing and wash them in batches. It is difficult to classify intermediate colors as light or dark, and the color depth is also relative. Manual classification by users still has the risk of staining light clothes. Manual classification and multiple classification washing are time-consuming and power-consuming, which greatly reduces the user's satisfaction with the washing machine. Summary of the invention

[0003] In view of this, embodiments of the present application provide a control method, device, clothing processing equipment, and computer-readable storage medium.

[0004] The technical solution of the embodiment of the present application is implemented as follows:

[0005] The present application provides a control method, which is applied to a clothes processing device, and the method includes:

[0006] In response to an operation instruction for executing a laundry treatment program, obtaining washing parameters;

[0007] determining operating parameters of the electrolysis device of the laundry processing equipment according to the washing parameters;

[0008] The clothes treating device is controlled to start executing the clothes treating program, and the electrolysis device is controlled to operate according to the operating parameters to generate hydroxyl radicals that can chemically react with dye molecules.

[0009] In some embodiments, in response to the operation instruction of executing the laundry processing program, obtaining the washing parameters includes:

[0010] In response to an operation instruction for executing a laundry processing program, determining whether the laundry processing program includes a dyeing processing subroutine;

[0011] Determining that the laundry processing program includes a dyeing processing subroutine, and obtaining an initial weight of the laundry to be processed in the barrel of the laundry processing device;

[0012] The initial weight was determined as the wash parameter.

[0013] In some embodiments, the step of obtaining washing parameters in response to an operation instruction for executing a laundry processing program further includes:

[0014] Determining that the laundry processing program does not include a dyeing processing subroutine, and controlling a color recognition device of the laundry processing device to recognize color information of the laundry to be processed;

[0015] determining the dyeing probability of the clothes to be processed according to the color information of the clothes to be processed;

[0016] The staining probability is determined as a washing parameter.

[0017] In some embodiments, the color recognition device controlling the laundry processing device to recognize the color information of the laundry to be processed includes:

[0018] Controlling the color recognition device to collect image information of the clothes to be processed;

[0019] The color recognition device is controlled to recognize the color information of the to-be-processed clothing according to the image information and a pre-stored first data table, wherein the first data table stores the standard depth information of dyeing.

[0020] In some embodiments, determining the staining probability of the laundry to be processed according to the color information of the laundry to be processed includes:

[0021] Determining the color distribution of the clothes to be processed according to the color information of the clothes to be processed, wherein the color distribution includes a proportion of dark colors and a proportion of light colors;

[0022] The dyeing probability of the laundry to be processed is determined according to the dark color proportion, the light color proportion and a pre-stored second data table, wherein the second data table stores a correspondence between the dark and light color proportions and the dyeing probability.

[0023] In some embodiments, the step of obtaining washing parameters in response to an operation instruction for executing a laundry processing program further includes:

[0024] Determining that the laundry processing program does not include a dyeing processing subroutine, and controlling a color recognition device of the laundry processing device to recognize color information of the washing water in the barrel;

[0025] Determining the color depth of the washing water according to the color information of the washing water and a pre-stored third data table, wherein the third data table stores standard depth information of the washing water;

[0026] The depth of colour was determined as a wash parameter.

[0027] In some embodiments, the operating parameters include a start time and a start duration, and determining the operating parameters of the electrolysis device of the laundry processing equipment according to the washing parameters includes:

[0028] Determine the washing parameter as an initial weight, determine the start time of the electrolysis device as a time of starting a water inlet device of the laundry processing device, and determine the start time of the electrolysis device as a first time, wherein the first time is determined based on the initial weight;

[0029] Determining the washing parameter as a staining probability, determining the start time of the electrolysis device as a time of opening a water inlet device of the laundry treatment device, and determining the start time of the electrolysis device as a second time, wherein the second time is determined based on the staining probability;

[0030] The washing parameter is determined to be color depth, the start time of the electrolysis device is determined to be the time when the color depth is greater than a preset depth threshold, and the start time of the electrolysis device is determined to be a third time, and the third time is determined based on the color depth.

[0031] The present application provides a control device for use in a clothes processing device, the device comprising:

[0032] An acquisition module, configured to acquire washing parameters in response to an operation instruction for executing a laundry processing program;

[0033] a determination module, configured to determine operating parameters of the electrolysis device of the laundry processing equipment according to the washing parameters;

[0034] The control module is used to control the clothing treatment device to start executing the clothing treatment program, and control the operation of the electrolysis device according to the operation parameters to generate hydroxyl radicals that can chemically react with dye molecules.

[0035] The present application provides a control device, including:

[0036] A memory for storing executable instructions;

[0037] The processor is used to implement the steps of the above control method when executing the executable instructions stored in the memory.

[0038] An embodiment of the present application provides a computer-readable storage medium storing computer-executable instructions, wherein the computer-executable instructions are configured to execute the steps of the above-mentioned control method.

[0039] The embodiment of the present application provides a control method, device, equipment and computer-readable storage medium, which are applied to a clothing processing device, the method comprising: obtaining washing parameters in response to an operation instruction for executing a clothing processing program; determining the operating parameters of an electrolysis device of the clothing processing device according to the washing parameters; controlling the clothing processing device to start executing the clothing processing program, and controlling the operation of the electrolysis device according to the operating parameters to generate hydroxyl radicals that can react chemically with dye molecules. In this way, the hydroxyl radicals generated by the electrolysis device react chemically with the dye molecules in the washing water quickly, which can effectively remove the dye molecules in the washing water and effectively prevent the dye molecules from staining other clothes. BRIEF DESCRIPTION OF THE DRAWINGS

[0040] In the drawings, which are not necessarily drawn to scale, like reference numerals may describe similar components in different views.The drawings generally illustrate, by way of example and not limitation, various embodiments discussed herein.

[0041] Figure 1 A schematic diagram of an implementation flow of the control method provided in an embodiment of the present application;

[0042] Figure 2 A schematic diagram of another implementation flow of the control method provided in an embodiment of the present application;

[0043] Figure 3 A schematic diagram of another implementation flow of the control method provided in the embodiment of the present application;

[0044] Figure 4 A schematic diagram of an implementation flow of a control method for an anti-color cross-talk program provided in an embodiment of the present application;

[0045] Figure 5 A schematic diagram of another implementation flow of the control method of the anti-color cross-talk program provided in an embodiment of the present application;

[0046] Figure 6 A schematic diagram of another implementation flow of the control method of the anti-color mixing program provided in the embodiment of the present application;

[0047] Figure 7 A schematic diagram of the structure of the control device provided in the embodiment of the present application;

[0048] Figure 8 A schematic diagram of the composition structure of the control device provided in an embodiment of the present application. DETAILED DESCRIPTION

[0049] In order to make the purpose, technical solutions and advantages of the present application clearer, the present application will be further described in detail below in conjunction with the accompanying drawings. The described embodiments should not be regarded as limiting the present application. All other embodiments obtained by ordinary technicians in the field without making creative work are within the scope of protection of this application.

[0050] In the following description, reference is made to “some embodiments”, which describe a subset of all possible embodiments, but it will be understood that “some embodiments” may be the same subset or different subsets of all possible embodiments and may be combined with each other without conflict.

[0051] In the following description, the terms "first\second\third" involved are merely used to distinguish similar objects and do not represent a specific ordering of the objects. It can be understood that "first\second\third" can be interchanged with a specific order or sequence where permitted, so that the embodiments of the present application described herein can be implemented in an order other than that illustrated or described herein.

[0052] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by those skilled in the art to which this application belongs. The terms used herein are only for the purpose of describing the embodiments of this application and are not intended to limit this application.

[0053] Based on the clothing processing equipment in the related art, such as washing machines, washing and drying machines and other household appliances capable of washing clothing, when dark-colored clothing and light-colored clothing are mixed, the light-colored clothing may be stained due to the fading of the dark-colored clothing. The embodiment of the present application provides a control method applied to the clothing processing equipment. The method provided by the embodiment of the present application can be implemented by a computer program, and when the computer program is executed, each step of the control method provided by the embodiment of the present application is completed. In some embodiments, the computer program can be executed by a processor in the clothing processing equipment. Figure 1 A schematic diagram of an implementation flow of the control method provided in the embodiment of the present application is shown in FIG. Figure 1 As shown, the control method includes the following steps:

[0054] Step S101, in response to an operation instruction for executing a laundry processing program, obtaining washing parameters.

[0055] When the clothes processing equipment in the related art washes dark clothes and light clothes together, after the dark clothes come into contact with the washing water, the dye molecules enter the water, come into contact with the light clothes and adhere to the light clothes, causing the light clothes to be stained. In order to solve the problem of clothes staining, the clothes processing equipment provided in the embodiment of the present application is provided with an electrolysis device, which is a device that can electrolyze water to produce hydroxyl radicals (—OH) that react chemically with the dye molecules. The large amount of hydroxyl radicals produced by the electrolysis device react chemically with the dye molecules that enter the water to generate CO 2 and H 2 O, etc., so that there are no dye molecules in the washing water, thereby preventing the dye molecules from adhering to light-colored clothes and causing staining of the clothes.

[0056] The clothes processing device with an electrolysis device provided in the present application can be a household appliance for washing clothes, such as a washing machine, a washing-drying machine, etc. The following takes a washing machine as an example, and the corresponding clothes processing program to be executed is washing-rinsing-spinning.

[0057] When the user needs to wash clothes, he puts the clothes to be washed into the drum of the washing machine, selects the washing function on the control panel and presses the "Start / Pause" button. The washing machine receives the operation instruction to execute the clothing processing program, responds to the operation instruction, and obtains the washing parameters.

[0058] The washing parameters here are related to the washing function selected by the user. When the user selects the anti-dyeing function, the washing parameters include at least the initial weight of the clothes to be washed, and the initial weight can be obtained based on fuzzy weighing; when the user does not select the anti-dyeing function, the washing parameters include at least one of the following: the dyeing probability of the clothes to be washed, and the color information of the washing water. Here, the dyeing probability of the clothes to be washed and the color information of the washing water can be obtained based on the color recognition device in the washing machine.

[0059] Step S102, determining the operating parameters of the electrolysis device of the clothes processing equipment according to the washing parameters.

[0060] The operating parameters of the electrolysis device include the start time and the start time. Different washing parameters will result in different start times and start times for the electrolysis device. For example, the electrolysis device can be started and operated synchronously when water is started, that is, it performs electrolysis while taking in water. After entering the washing process, the electrolyzed water is used for washing. After the start time is reached, the electrolysis device is turned off. For another example, the electrolysis device can be turned on when it is determined that the washing water will cause light-colored clothes to be stained. After generating hydroxyl radicals for a period of time, the electrolysis device is turned off when it is determined that the washing water will not cause light-colored staining.

[0061] Step S103, controlling the clothes treating device to start executing the clothes treating program, and controlling the electrolysis device to operate according to the operating parameters to generate hydroxyl radicals that can chemically react with dye molecules.

[0062] After determining the operating parameters of the electrolysis device, the clothing treatment equipment starts to execute the clothing treatment program and turns the electrolysis device on or off based on the operating parameters. The operating parameters include the start time and the start time. During the execution of the clothing treatment program, it is determined whether the start time has been reached. When the start time has been reached, the electrolysis device is turned on. During the operation of the electrolysis device, it is detected whether the time for turning on the electrolysis device has reached the start time. If the start time has been reached, the electrolysis device is turned off and the electrolysis device is controlled to stop running. During the operation of the electrolysis device, a large number of hydroxyl radicals that can react chemically with dye molecules are generated. The hydroxyl free radical has an extremely high oxidation potential, which can reach 2.80 eV (electron volts). Its oxidation ability is extremely strong and can quickly react chemically with the dye molecules in the washing water to generate carbon dioxide CO. 2 and water 2 O, which can effectively remove dye molecules in the washing water and effectively prevent the dye molecules from staining other clothes. In addition, hydroxyl radicals react chemically with the dye molecules in the washing water to generate pollution-free CO 2 and H 2 O, so that the discharged washing water is non-polluting and plays a certain role in protecting the water quality. When washing clothes, users no longer need to wash them separately according to the depth of color, making it more convenient for users to wash clothes.

[0063] In an embodiment of the present application, the electrolysis device may be turned on once or multiple times when a clothing treatment program is executed. For example, dye molecules may cause clothing to be stained during both the washing stage and the rinsing stage. Therefore, the electrolysis device may be turned on when water is introduced into the washing stage or when water is introduced into the rinsing stage. The electrolysis device may also be turned on when it is detected in the washing or rinsing stage that the number of dye molecules in the washing water exceeds a preset amount, so as to achieve flexible control of anti-staining.

[0064] In the control method provided by the embodiment of the present application, the laundry processing device obtains washing parameters in response to the operation instruction of executing the laundry processing program; determines the operating parameters of the electrolysis device of the laundry processing device according to the washing parameters; controls the laundry processing device to start executing the laundry processing program, and controls the operation of the electrolysis device according to the operating parameters to generate hydroxyl radicals that can react chemically with dye molecules. The hydroxyl radicals generated by the electrolysis device react chemically with the dye molecules in the washing water quickly, which can effectively remove the dye molecules in the washing water and effectively prevent the dye molecules from staining other clothes.

[0065] exist Figure 1On the basis of the embodiment shown, the embodiment of the present application further provides a control method capable of preventing clothing from being stained. Figure 2 Another implementation flow diagram of the control method provided in the embodiment of the present application is as follows: Figure 2 As shown, the method comprises the following steps:

[0066] Step S201, in response to an operation instruction for executing a laundry processing program, determining whether the laundry processing program includes a dyeing processing subroutine.

[0067] When it is determined that the clothing processing program includes a dyeing processing subroutine, it indicates that the user manually selected the anti-dyeing function on the control panel, that is, the user manually pressed the "anti-dyeing" button, or the program selected by the user has an anti-dyeing function by default, then enter step S202; when it is determined that the clothing processing program does not include a dyeing processing subroutine, it indicates that the user did not manually press the "anti-dyeing" button, or the program selected by the user does not have a dyeing function by default, then enter step S206, and the washing machine automatically determines whether to call the dyeing processing subroutine.

[0068] Step S202, obtaining the initial weight of the clothes to be processed in the barrel of the clothes processing equipment.

[0069] The initial weight is the weight of the clothes to be washed before water is injected. In practical applications, the washing machine can obtain the initial weight of the clothes to be washed in the barrel through a built-in weight detection device (such as a weight sensor), or obtain the initial weight of the clothes to be washed in the barrel through a fuzzy weighing method, or obtain it in other ways, which is not limited in the embodiments of the present application. The principle of the fuzzy weighing method is as follows: press the start button of the washing machine, the motor rotates for a very short time (such as 0.3 to 0.5 seconds) and then the power is turned off, and the motor continues to run under the action of inertia. The motor shaft is directly connected to the barrel body, and the barrel body is in direct contact with the clothes to be washed in the barrel. The lighter the weight of the clothes in the barrel body, the smaller the resistance between the clothes and the inner wall of the barrel body, and the shorter the time required for the barrel body to stop, that is, the shorter the time the motor stops. When the motor runs by inertia, the magnetoelectricity generates a back electromotive force. The faster the motor stops, the shorter the time it takes to generate the back electromotive force. Therefore, the weight of the clothes to be washed can be determined based on the duration of the back electromotive force. During actual fuzzy weighing, the motor can be controlled to be powered on and off multiple times to determine multiple weight values, and the average value is taken as the initial weight of the clothes to be washed, so as to reduce the measurement error and improve the accuracy of the initial weight obtained.

[0070] Step S203, determining the initial weight as a washing parameter.

[0071] Step S204, determining the start time of the electrolysis device as the time of starting the water inlet device of the clothes processing equipment, and determining the start time of the electrolysis device as the first time.

[0072] This step S204 is when the washing parameter is the initial weight, Figure 1 In one implementation of step S102 in the illustrated embodiment, the operating parameters of the electrolysis device include a start-up time and a start-up duration. The start-up time is the time when the electrolysis device starts to work, that is, the time when the electrolysis device starts to generate hydroxyl radicals. The start-up duration is the working duration of the electrolysis device, that is, the time between the time when the electrolysis device is turned on and the time when the electrolysis device is turned off.

[0073] The first duration here can be determined based on the initial weight. The greater the initial weight, that is, the more clothes to be washed, the greater the risk of staining. The more dye molecules there are in the washing water, the more hydroxyl radicals are needed, and therefore the longer the electrolysis device is turned on. Conversely, the smaller the initial weight, the shorter the electrolysis device is turned on.

[0074] The first duration is determined according to the initial weight. In one implementation, a relationship between the initial weight and the start-up duration can be pre-constructed. After obtaining the initial weight of the laundry to be washed, the initial weight is input into the pre-constructed relationship to calculate the start-up duration. In another implementation, a correspondence table between the initial weight and the start-up duration can be pre-stored in the laundry processing device. After obtaining the initial weight of the laundry to be washed, the corresponding start-up duration can be obtained by searching the correspondence table according to the initial weight.

[0075] Step S205, controlling the clothes processing device to start executing the clothes processing program, and when detecting that the water inlet device is turned on, controlling the electrolysis device to operate for a first time period to generate hydroxyl radicals that can chemically react with dye molecules.

[0076] The step S205 is when the washing parameter is the initial weight, Figure 1 An implementation of step S103 in the illustrated embodiment. During the execution of the laundry treatment program, during the washing stage and the rinsing stage, the water inlet device is turned on to inject water into the barrel, and the electrolysis device is turned on at the same time to generate hydroxyl radicals. The hydroxyl radicals react chemically with the dye molecules in the washing water or the rinsing water to generate carbon dioxide and water, thereby preventing the dye molecules from dyeing light-colored clothes.

[0077] In the process of executing the laundry treatment program, in the washing stage, under the action of the laundry detergent, more dye molecules enter the washing water, and in the rinsing stage, fewer dye molecules enter the washing water. Therefore, in actual implementation, step S205 can be replaced by: controlling the laundry treatment device to start executing the laundry treatment program in the washing stage, and when the water inlet device is detected to be turned on, controlling the electrolysis device to run for a first time length to generate hydroxyl radicals that can react chemically with the dye molecules; controlling the laundry treatment device to start executing the laundry treatment program in the rinsing stage, and when the water inlet device is detected to be turned on, controlling the electrolysis device to run for a fourth time length to generate hydroxyl radicals that can react chemically with the dye molecules. Here, the fourth time length can be set to a value less than or equal to the first time length and greater than or equal to 0. The first time length is a value less than or equal to the washing time length, and the fourth time length is a value less than or equal to the rinsing time length.

[0078] Step S206, controlling the color recognition device of the clothes processing equipment to recognize the color information of the clothes to be processed.

[0079] When the user does not select the anti-staining function, it is determined that the clothing processing program does not include a dyeing processing subroutine. At this time, the clothing processing device can determine whether to automatically call the dyeing processing subroutine according to the current actual situation. In implementation, the color recognition device can be controlled to collect image information of the clothes to be processed; the color recognition device can be controlled to identify the color information of the clothes to be processed according to the image information and the pre-stored first data table, and the first data table stores the standard depth information of the dyeing. The color recognition device includes an acquisition module and an identification module. Among them, the acquisition module (such as a camera) is used to acquire images of the clothes to be washed, and the identification module is used to segment the acquired images according to information such as color, obtain segmented images corresponding to each color, and then compare each segmented image with the reference color information stored in the storage space to obtain the reference color corresponding to each segmented image as the color information of the clothes to be washed.

[0080] Step S207, determining the dyeing probability of the clothes to be processed according to the color information of the clothes to be processed.

[0081] This step can be implemented as follows: determining the color distribution of the clothes to be processed according to the color information of the clothes to be processed, the color distribution including the proportion of dark colors and the proportion of light colors; determining the dyeing probability of the clothes to be processed according to the proportion of dark colors, the proportion of light colors and a pre-stored second data table, wherein the second data table stores the correspondence between the proportion of dark and light colors and the dyeing probability.

[0082] The darker the color of the clothes, the greater the possibility of fading, and the lighter the color of the clothes, the less likely it is to fade. Based on this, the dyeing probability of each standard color can be preset in combination with the dyeing standard depth color card, and the corresponding relationship between the dark and light color ratio and the dyeing probability can be stored in the storage space of the clothes processing device. After obtaining the color information of the clothes to be washed, the proportion of each color is determined to obtain the dark color proportion and the light color proportion, and then the corresponding relationship table between the dark and light color proportion and the dyeing probability is queried to obtain the dyeing probability of the clothes to be processed.

[0083] In another implementation, the dyeing probability of each color proportion can be preset in combination with the proportion of each color, the proportion of each color and the dyeing probability of each color can be multiplied and summed, and then the average value is calculated and used as the dyeing probability of the clothes to be processed.

[0084] Step S208, determining the staining probability as a washing parameter.

[0085] Step S209, determining the washing parameter as the staining probability, determining the start time of the electrolysis device as the time of opening the water inlet device of the clothes processing device, and determining the start time of the electrolysis device as the second time.

[0086] This step S209 is when the washing parameter is the dyeing probability, Figure 1 In one implementation of step S102 in the illustrated embodiment, the operating parameters of the electrolysis device include a start-up time and a start-up duration. The start-up time is the time when the electrolysis device starts to work, that is, the time when the electrolysis device starts to generate hydroxyl radicals. The start-up duration is the working duration of the electrolysis device, that is, the time between the time when the electrolysis device is turned on and the time when the electrolysis device is turned off.

[0087] The second duration here can be determined based on the staining probability. The greater the staining probability, the more dye molecules are in the washing water, and the more hydroxyl radicals are needed, so the electrolysis device is turned on for a longer time. Conversely, the smaller the staining probability, the shorter the electrolysis device is turned on.

[0088] The second duration is determined according to the staining probability. In one implementation, a relationship between the staining probability and the start-up duration can be pre-constructed. After the staining probability of the laundry to be washed is obtained, the staining probability is input into the pre-constructed relationship to calculate the start-up duration. In another implementation, a corresponding relationship table between the staining probability and the start-up duration can be pre-stored in the laundry processing device. After the staining probability of the laundry to be washed is obtained, the corresponding start-up duration can be obtained by querying the corresponding relationship table according to the staining probability.

[0089] Step S210, controlling the clothes processing device to start executing the clothes processing program, and when detecting that the water inlet device is turned on, controlling the electrolysis device to run for a second time period to generate hydroxyl radicals that can chemically react with dye molecules.

[0090] This step S210 is when the washing parameter is the dyeing probability, Figure 1 An implementation of step S103 in the illustrated embodiment. During the execution of the laundry treatment program, during the washing stage and the rinsing stage, the water inlet device is turned on to inject water into the barrel, and the electrolysis device is turned on at the same time to generate hydroxyl radicals. In actual implementation, step S210 can be replaced by: controlling the laundry treatment device to start the laundry treatment program in the washing stage, and when the water inlet device is detected to be turned on, the electrolysis device is controlled to run for a second duration to generate hydroxyl radicals that can react chemically with dye molecules; controlling the laundry treatment device to start the laundry treatment program in the rinsing stage, and when the water inlet device is detected to be turned on, the electrolysis device is controlled to run for a fifth duration to generate hydroxyl radicals that can react chemically with dye molecules. Here, the fifth duration can be set to a value less than or equal to the second duration and greater than or equal to 0. The second duration is a value less than or equal to the washing duration, and the fifth duration is a value less than or equal to the rinsing duration.

[0091] Step S211, determining whether the laundry processing program is completed.

[0092] When the laundry processing program is not completed, the process proceeds to step S212; when the laundry processing program is not completed, the process continues to step S211 until the end.

[0093] Step S212, end.

[0094] In the control method provided by the embodiment of the present application, the clothing processing device determines whether the clothing processing program includes a dyeing processing subroutine to select different ways to operate the electrolysis device. When the user manually selects the anti-dyeing function or selects the anti-dyeing function by default for clothing processing, the time and duration of starting the electrolysis device are determined according to the initial weight of the clothes to be processed; when the user does not manually select or select by default, the clothing processing device can determine the time and duration of starting the electrolysis device according to the probability of dyeing of the clothes to be processed. In this way, the electrolysis device can not only effectively remove the dye molecules in the washing water and effectively prevent the dye molecules from dyeing other clothes, but also can realize flexible control in a variety of different ways to improve the user experience.

[0095] exist Figure 1 On the basis of the embodiment shown, the embodiment of the present application further provides a control method capable of preventing clothing from being stained. Figure 3 A schematic diagram of another implementation flow of the control method provided in the embodiment of the present application is shown in FIG. Figure 3 As shown, the method comprises the following steps:

[0096] Step S301, in response to an operation instruction for executing a laundry processing program, determining whether the laundry processing program includes a dyeing processing subroutine.

[0097] When it is determined that the clothing processing program includes a dyeing processing subroutine, it indicates that the user manually selected the anti-dyeing function on the control panel, that is, the user manually pressed the "anti-dyeing" button, or the program selected by the user has the anti-dyeing function selected by default, then enter step S302; when it is determined that the clothing processing program does not include a dyeing processing subroutine, it indicates that the user did not manually press the "anti-dyeing" button, or the program selected by the user does not have the dyeing function by default, then enter step S306, and the washing machine automatically determines whether to call the dyeing processing subroutine.

[0098] In the embodiment of the present application, the implementation method of steps S301 to S305 can refer to the description of the corresponding steps of steps S201 to S205.

[0099] Step S302, obtaining the initial weight of the clothes to be processed in the barrel of the clothes processing equipment.

[0100] Step S303, determining the initial weight as a washing parameter.

[0101] Step S304: determining the start time of the electrolysis device as the time of starting the water inlet device of the clothes processing equipment, and determining the start time of the electrolysis device as the first time.

[0102] Step S305, controlling the clothes processing device to start executing the clothes processing program, and when detecting that the water inlet device is turned on, controlling the electrolysis device to operate for a first time period to generate hydroxyl radicals that can chemically react with dye molecules.

[0103] Step S306, controlling the color recognition device of the clothes processing equipment to recognize the color information of the washing water in the barrel.

[0104] When the user does not select the anti-staining function, it is determined that the clothing treatment program does not include the dyeing treatment subroutine. At this time, the clothing treatment device can determine whether to automatically call the dyeing treatment subroutine according to the current actual situation. In implementation, the color recognition device can be controlled to collect image information of washing water; the color recognition device can be controlled to recognize the color information of washing water according to the image information of washing water and the pre-stored fourth data table, and the fourth data table stores the corresponding relationship between the image information of washing water with different turbidity and the corresponding reference color information. The color recognition device includes a collection module and a recognition module, the collection module (such as a camera) is used to collect the image of washing water, and the recognition module is used to compare the collected image with the reference color information stored in the fourth data table to obtain the reference color corresponding to the washing water of the current turbidity as the color information of the washing water.

[0105] Step S307, determining the color depth of the washing water according to the color information of the washing water and a pre-stored third data table.

[0106] The third data table stores the standard depth information of washing water. The darker the color of the washing water, the greater the possibility of fading of the clothes, and the lighter the color of the washing water, the less likely the clothes are to fade. Based on this, the reference color information of each standard depth can be preset in combination with the standard depth information of washing water. After obtaining the color information of the washing water, the third data table is queried to obtain the color depth of the washing water.

[0107] Step S308, determining the color depth as a washing parameter.

[0108] Step S309, determining the washing parameter as color depth, determining the start time of the electrolysis device as the time when the color depth is greater than a preset depth threshold, and determining the start time of the electrolysis device as a third time.

[0109] This step S309 is when the washing parameter is color depth, Figure 1 In one implementation of step S102 in the illustrated embodiment, the operating parameters of the electrolysis device include a start-up time and a start-up duration. The start-up time is the time when the electrolysis device starts to work, that is, the time when the electrolysis device starts to generate hydroxyl radicals. The start-up duration is the working duration of the electrolysis device, that is, the time between the time when the electrolysis device is turned on and the time when the electrolysis device is turned off.

[0110] The third duration here can be determined based on the color depth. The darker the color, the more dye molecules are in the washing water, and the more hydroxyl radicals are needed, so the electrolysis device is turned on for a longer time. Conversely, the lighter the color, the shorter the electrolysis device is turned on for a shorter time.

[0111] The third duration is determined according to the color depth. In one implementation, a relational expression between the color depth and the activation duration can be pre-constructed. After the color depth of the washing water is obtained, the color depth is input into the pre-constructed relational expression to calculate the activation duration. In another implementation, a corresponding relationship table between the color depth and the activation duration can be pre-stored in the clothing processing device. After the color depth of the washing water is obtained, the corresponding activation duration can be obtained by querying the corresponding relationship table according to the color depth.

[0112] Step S310, controlling the clothing treatment device to start executing the clothing treatment program, and when detecting that the color depth is greater than a preset depth threshold, controlling the electrolysis device to operate for a third time period to generate hydroxyl radicals that can chemically react with dye molecules.

[0113] This step S310 is when the washing parameter is the dyeing probability, Figure 1An implementation of step S103 in the illustrated embodiment. During the execution of the laundry treatment program, during the washing stage and the rinsing stage, if it is detected that the color depth of the washing water is greater than the preset depth threshold, the electrolysis device is turned on at this time to generate hydroxyl radicals. In actual implementation, step S310 can be replaced by: controlling the laundry treatment device to start the laundry treatment program in the washing stage, and when it is detected that the color depth of the washing water is greater than the preset depth threshold, the electrolysis device is controlled to run for a third duration; controlling the laundry treatment device to start the laundry treatment program in the rinsing stage, and when the color depth of the washing water is greater than the preset depth threshold, the electrolysis device is controlled to run for a sixth duration. Here, the sixth duration can be set to a value less than or equal to the third duration and greater than or equal to 0. The third duration is a value less than or equal to the washing duration, and the sixth duration is a value less than or equal to the rinsing duration.

[0114] Step S311, determining whether the laundry processing program is completed.

[0115] When the laundry processing program is not completed, the process proceeds to step S312; when the laundry processing program is not completed, the process continues to step S311 until the end.

[0116] Step S312, end.

[0117] In the control method provided by the embodiment of the present application, the clothing treatment device determines whether the clothing treatment program includes a dyeing treatment subroutine to select different ways to operate the electrolysis device. When the user manually selects the anti-dyeing function or selects the anti-dyeing function by default for clothing treatment, the time and duration of starting the electrolysis device are determined according to the initial weight of the clothing to be treated; when the user does not manually select or select by default, the clothing treatment device can determine the time and duration of starting the electrolysis device according to the color depth of the washing water. In this way, the electrolysis device can not only effectively remove the dye molecules in the washing water and effectively prevent the dye molecules from staining other clothes, but also can realize flexible control in a variety of different ways to improve the user experience.

[0118] The following is an explanation of an exemplary application of the embodiments of the present application in a practical application scenario.

[0119] When washing dark clothes with light clothes, the existing washing machines often stain the light clothes because the dark clothes are easy to fade. Therefore, customers are required to wash dark clothes and light clothes separately. If dark clothes and light clothes are mixed together by mistake, the light clothes will be stained.

[0120] In order to prevent dark-colored clothes from staining light-colored clothes, an embodiment of the present application provides a washing machine with a water electrolysis device. The water electrolysis device electrolyzes water to generate hydroxyl radicals -OH. -OH reacts chemically with dye molecules to generate carbon dioxide and water, thereby preventing the dye molecules from staining light-colored clothes.

[0121] When the color recognition device (such as a camera) of the washing machine can recognize the color of the clothes before washing, the electrolysis device can be automatically set to on or off, or the working time according to the color type, so as to achieve the best anti-color cross-talk effect. Or the color of the washing water can be monitored during the washing process. When the color of the washing water becomes darker, the electrolysis device is turned on to start generating hydroxyl, and the hydroxyl is turned off after the color of the water becomes lighter or does not change.

[0122] The washing machine provided in the embodiment of the present application is equipped with a water electrolysis device, and the installation position of the water electrolysis device is not limited, as long as the electrolysis process can generate hydroxyl radicals. The washing machine provided in the embodiment of the present application provides three different solutions for the control method of the automatic anti-color mixing program.

[0123] Figure 4 A schematic diagram of an implementation flow of a control method for an anti-color cross-talk program provided in an embodiment of the present application is shown in FIG. Figure 4 As shown, the method comprises the following steps:

[0124] Step S401, select the anti-color cross-talk program.

[0125] The washing program has an anti-color transfer washing program, or a washing program with an anti-color transfer function.

[0126] Step S402, weighing.

[0127] When washing mixed-color clothes, users can choose the anti-color mixing program or the washing program with anti-color mixing function. After starting the program, the washing machine will fuzzily weigh the loaded load according to the weighing results.

[0128] Step S403, setting the start time of the electrolyzed water for washing and rinsing according to the weight.

[0129] The time to turn on the electrolyzed water during washing and rinsing is set based on the weighing results. The heavier the clothes, the greater the risk of color mixing, and the longer the time required for electrolyzed water.

[0130] Step S404, running the washing program.

[0131] Step S405, the program ends and the clothes are taken.

[0132] This method estimates the working time of electrolyzed water based on weight, to prevent the electrolyzed water from working too long and causing the color of clothes to become dull, or the working time is insufficient and the faded dye molecules are not consumed, causing light-colored clothes to transfer color.

[0133] Figure 5 Another implementation flow diagram of the control method of the anti-color cross-talk program provided in the embodiment of the present application is as follows: Figure 5 As shown, the method comprises the following steps:

[0134] Step S501, selecting a washing program.

[0135] Step S502: color perception.

[0136] The washing machine is equipped with a clothing color sensing unit, such as a camera in the door glass, which can sense the color and amount of clothing put in the washing machine.

[0137] Step S503, setting the electrolytic water start time for washing and rinsing according to the color of the clothes.

[0138] When the user is washing mixed-color clothes or running any washing program, the color sensing device will record the color distribution of the clothes put in at the beginning of washing, and the ratio of dark and light clothes, so as to automatically set the start time of the electrolyzed water during the washing and rinsing process of the washing program.

[0139] Step S504, running the washing program.

[0140] Step S505, the program ends and the clothes are taken.

[0141] By evaluating the color distribution and the ratio of dark and light colors on clothing, we can roughly estimate the risk of color transfer on clothing, and thus calculate the required working time of electrolyzed water. Figure 4 The method shown is smarter, more reliable, and basically comparable to human judgment.

[0142] Figure 6 A schematic diagram of another implementation flow of the control method of the anti-color mixing program provided in the embodiment of the present application is shown in FIG. Figure 6 As shown, the method comprises the following steps:

[0143] Step S601, washing is in progress.

[0144] Step S602, detecting the color of washing water.

[0145] The washing machine is equipped with a washing water color sensing unit.

[0146] Step S603, determining whether the color is greater than a threshold.

[0147] When the color of the washing water is greater than the threshold, the process proceeds to step S604; when the color of the washing water is less than or equal to the threshold, the process proceeds to step S605.

[0148] Step S604, the water electrolysis function is turned on.

[0149] When the user is washing mixed-color clothes or running any washing program, the color sensing unit inside the washing machine will monitor the color of the washing water. When the color of the washing water begins to gradually darken (higher than the set minimum threshold, which must be set at the critical value of ordinary dirty colors and color fading), the electrolyzed water starts to work.

[0150] Step S605, turning off the electrolysis of water.

[0151] When the color becomes lighter than the critical value or the color remains unchanged for a period of time, the electrolysis water device is controlled to stop working. If the color does not change for a period of time and the electrolysis water does not consume the color for a period of time, it means that there may be a misjudgment or it may not be a dye molecule, and the hydroxyl group does not work on it, so the electrolysis water function can be directly turned off. This process is not only applicable to washing, but also to rinsing.

[0152] This method monitors the color of the washing water during the washing process. When the color of the washing water becomes darker, electrolysis of water is turned on to produce hydroxyl groups. The electrolysis of water is turned off until it becomes lighter or does not change, thereby achieving the best anti-color cross-talk effect.

[0153] The electrolytic water is turned on or off according to the clothing identification device, the clothing color or the water color, so as to control the -OH produced by electrolysis to react chemically with the dye molecules to generate carbon dioxide and water, thereby preventing the dye molecules from dyeing light-colored clothing, thereby achieving the best anti-color transfer effect.

[0154] The following further describes an exemplary structure of a control device provided in an embodiment of the present application implemented as a software module. Figure 7 A schematic diagram of the structure of the control device provided in the embodiment of the present application is shown in FIG. Figure 7 As shown, the software modules in the control device 700 may include:

[0155] An acquisition module 701 is used to acquire washing parameters in response to an operation instruction for executing a laundry processing program;

[0156] A determination module 702, configured to determine the operating parameters of the electrolysis device of the laundry processing equipment according to the washing parameters;

[0157] The control module 703 is used to control the clothing treatment device to start executing the clothing treatment program, and control the operation of the electrolysis device according to the operating parameters to generate hydroxyl radicals that can chemically react with dye molecules.

[0158] In some embodiments, the acquisition module 701 includes:

[0159] a first determining unit, configured to determine, in response to an operation instruction for executing a laundry processing program, whether the laundry processing program includes a dyeing processing subroutine;

[0160] an acquisition unit, configured to determine that the laundry processing program includes a dyeing processing subprogram, and to acquire an initial weight of the laundry to be processed in the barrel of the laundry processing device;

[0161] The second determining unit is used to determine the initial weight as a washing parameter.

[0162] In some embodiments, the acquisition module 701 further includes:

[0163] a first control unit, configured to determine that the laundry processing program does not include a dyeing processing subroutine, and control a color recognition device of the laundry processing device to recognize color information of the laundry to be processed;

[0164] a third determining unit, configured to determine the dyeing probability of the laundry to be processed according to the color information of the laundry to be processed;

[0165] The second determination unit is further configured to determine the staining probability as a washing parameter.

[0166] In some embodiments, the first control unit is further configured to:

[0167] Controlling the color recognition device to collect image information of the clothes to be processed;

[0168] The color recognition device is controlled to recognize the color information of the to-be-processed clothing according to the image information and a pre-stored first data table, wherein the first data table stores the standard depth information of dyeing.

[0169] In some embodiments, the third determining unit is further configured to:

[0170] Determining the color distribution of the clothes to be processed according to the color information of the clothes to be processed, wherein the color distribution includes a proportion of dark colors and a proportion of light colors;

[0171] The dyeing probability of the laundry to be processed is determined according to the dark color proportion, the light color proportion and a pre-stored second data table, wherein the second data table stores a correspondence between the dark and light color proportions and the dyeing probability.

[0172] In some embodiments, the acquisition module 701 further includes:

[0173] a second control unit, configured to determine that the laundry processing program does not include a dyeing processing subroutine, and control a color recognition device of the laundry processing device to recognize color information of the washing water in the barrel;

[0174] a fourth determining unit, configured to determine the color depth of the washing water according to the color information of the washing water and a pre-stored third data table, wherein the third data table stores standard depth information of the washing water;

[0175] The second determination unit is further configured to determine the color depth as a washing parameter.

[0176] In some embodiments, the operating parameters include a start time and a start duration, and the determining module 702 includes:

[0177] a fifth determining unit, configured to determine that the washing parameter is an initial weight, determine the start time of the electrolysis device as a time of starting the water inlet device of the clothes processing device, and determine the start time of the electrolysis device as a first time, wherein the first time is determined based on the initial weight;

[0178] a sixth determining unit, configured to determine that the washing parameter is a staining probability, determine the start time of the electrolysis device as a time of opening the water inlet device of the clothes processing device, and determine the start time of the electrolysis device as a second time, wherein the second time is determined based on the staining probability;

[0179] The seventh determination unit is used to determine that the washing parameter is color depth, determine the start time of the electrolysis device as the time when the color depth is greater than a preset depth threshold, and determine the start time of the electrolysis device as a third time, wherein the third time is determined based on the color depth.

[0180] It should be noted that the description of the above control device embodiment is similar to the above method description and has the same beneficial effects as the method embodiment. For technical details not disclosed in the control device embodiment of this application, those skilled in the art should refer to the description of the method embodiment of this application for understanding.

[0181] The present application embodiment further provides a control device, Figure 8 A schematic diagram of the structure of the control device provided in the embodiment of the present application, according to Figure 8 The exemplary structure of the control device 800 shown can foresee other exemplary structures of the control device 800, so the structure described here should not be regarded as limiting. For example, some components described below can be omitted, or components not described below can be added to meet the special needs of certain applications.

[0182] Figure 8The control device 800 shown includes: a processor 801, at least one communication bus 802, a user interface 803, at least one external communication interface 804 and a memory 805. The communication bus 802 is configured to realize the connection and communication between these components. The user interface 803 may include a display panel, and the external communication interface 804 may include a standard wired interface and a wireless interface. The processor 801 is configured to execute the program of the control method stored in the memory to implement the steps in the control method provided in the above embodiment.

[0183] The embodiment of the present application further provides a computer-readable storage medium. In the embodiment of the present application, if the above-mentioned control method is implemented in the form of a software function module and sold or used as an independent product, it can also be stored in a computer-readable storage medium. Based on such an understanding, the technical solution of the embodiment of the present application is essentially or the part that contributes to the prior art can be embodied in the form of a software product, which is stored in a storage medium, including several instructions to enable a computer device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the methods described in each embodiment of the present application. The aforementioned storage medium includes: various media that can store program codes, such as a U disk, a mobile hard disk, a read-only memory (ROM, Read Only Memory), a disk or an optical disk. In this way, the embodiment of the present application is not limited to any specific combination of hardware and software.

[0184] Accordingly, an embodiment of the present application provides a computer-readable storage medium on which a computer program is stored. When the computer program is executed by a processor, the steps in the control method provided in the above embodiment are implemented.

[0185] The description of the above laundry processing device and storage medium embodiments is similar to the description of the above method embodiments, and has similar beneficial effects as the method embodiments. For technical details not disclosed in the laundry processing device and storage medium embodiments of the present application, please refer to the description of the method embodiments of the present application for understanding.

[0186] It should be understood that "one embodiment" or "an embodiment" mentioned throughout the specification means that specific features, structures or characteristics related to the embodiment are included in at least one embodiment of the present application. Therefore, "in one embodiment" or "in an embodiment" appearing throughout the specification does not necessarily refer to the same embodiment. In addition, these specific features, structures or characteristics can be combined in one or more embodiments in any suitable manner. It should be understood that in various embodiments of the present application, the size of the sequence number of the above-mentioned processes does not mean the order of execution, and the execution order of each process should be determined by its function and internal logic, and should not constitute any limitation on the implementation process of the embodiments of the present application. The above-mentioned sequence numbers of the embodiments of the present application are only for description and do not represent the advantages and disadvantages of the embodiments.

[0187] It should be noted that, in this article, the terms "include", "comprises" or any other variations thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device. In the absence of further restrictions, an element defined by the sentence "comprises a ..." does not exclude the existence of other identical elements in the process, method, article or device including the element.

[0188] In the several embodiments provided in the present application, it should be understood that the disclosed devices and methods can be implemented in other ways. The device embodiments described above are only schematic. For example, the division of the units is only a logical function division. There may be other division methods in actual implementation, such as: multiple units or components can be combined, or can be integrated into another system, or some features can be ignored or not executed. In addition, the coupling, direct coupling, or communication connection between the components shown or discussed can be through some interfaces, and the indirect coupling or communication connection of the devices or units can be electrical, mechanical or other forms.

[0189] The units described above as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units; they may be located in one place or distributed on multiple network units; some or all of the units may be selected according to actual needs to achieve the purpose of the present embodiment.

[0190] In addition, all functional units in the embodiments of the present application may be integrated into one processing unit, or each unit may be a separate unit, or two or more units may be integrated into one unit; the above-mentioned integrated units may be implemented in the form of hardware or in the form of hardware plus software functional units.

[0191] A person of ordinary skill in the art can understand that all or part of the steps of implementing the above-mentioned method embodiment can be completed by hardware related to program instructions, and the aforementioned program can be stored in a computer-readable storage medium. When the program is executed, it executes the steps of the above-mentioned method embodiment; and the aforementioned storage medium includes: various media that can store program codes, such as mobile storage devices, ROMs, magnetic disks or optical disks.

[0192] Alternatively, if the above-mentioned integrated unit of the present application is implemented in the form of a software function module and sold or used as an independent product, it can also be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the embodiment of the present application can essentially or in other words, the part that contributes to the prior art can be embodied in the form of a software product, which is stored in a storage medium and includes several instructions for a product to execute all or part of the methods described in each embodiment of the present application. The aforementioned storage medium includes: various media that can store program codes, such as mobile storage devices, ROMs, magnetic disks or optical disks.

[0193] The above is only an implementation method of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art who is familiar with the present technical field can easily think of changes or substitutions within the technical scope disclosed in the present application, which should be included in the protection scope of the present application. Therefore, the protection scope of the present application should be based on the protection scope of the claims.

Claims

1. A control method, applied to a clothes processing device, characterized in that: The method comprises: In response to an operation instruction for executing a laundry treatment program, obtaining washing parameters; determining operating parameters of the electrolysis device of the laundry processing equipment according to the washing parameters; Controlling the clothes treatment device to start executing the clothes treatment program, and controlling the electrolysis device to operate according to the operating parameters to generate hydroxyl radicals that can chemically react with dye molecules; Wherein, in response to the operation instruction of executing the laundry processing program, obtaining the washing parameters includes: In response to an operation instruction for executing the laundry processing program, determining whether the laundry processing program includes a dyeing processing subroutine; Determining that the laundry processing program includes the dyeing processing subprogram, and obtaining the initial weight of the laundry to be processed in the barrel of the laundry processing device; determining the initial weight as the washing parameter; Determining that the laundry processing program does not include the dyeing processing subroutine, and controlling a color recognition device of the laundry processing device to recognize color information of the laundry to be processed; determining the dyeing probability of the clothes to be processed according to the color information of the clothes to be processed; The staining probability is determined as the washing parameter.

2. The method according to claim 1, characterized in that: The color recognition device controlling the clothes processing equipment to recognize the color information of the clothes to be processed includes: Controlling the color recognition device to collect image information of the clothes to be processed; The color recognition device is controlled to recognize the color information of the to-be-processed clothing according to the image information and a pre-stored first data table, wherein the first data table stores the standard depth information of dyeing.

3. The method according to claim 2, characterized in that The step of determining the dyeing probability of the clothes to be processed according to the color information of the clothes to be processed comprises: Determining the color distribution of the clothes to be processed according to the color information of the clothes to be processed, wherein the color distribution includes a proportion of dark colors and a proportion of light colors; The dyeing probability of the laundry to be processed is determined according to the dark color proportion, the light color proportion and a pre-stored second data table, wherein the second data table stores a correspondence between the dark and light color proportions and the dyeing probability.

4. The method according to claim 1, characterized in that: The step of obtaining washing parameters in response to the operation instruction of executing the laundry processing program further includes: Determining that the laundry processing program does not include the dyeing processing subroutine, and controlling a color recognition device of the laundry processing device to recognize color information of the washing water in the barrel; Determining the color depth of the washing water according to the color information of the washing water and a pre-stored third data table, wherein the third data table stores standard depth information of the washing water; The depth of color is determined as the wash parameter.

5. The method according to claim 4, characterized in that The operating parameters include a start time and a start duration, and determining the operating parameters of the electrolysis device of the laundry processing equipment according to the washing parameters includes: Determining the washing parameter as the initial weight, determining the start time of the electrolysis device as the time of starting the water inlet device of the clothes processing device, and determining the start time of the electrolysis device as a first time, wherein the first time is determined based on the initial weight; Determining the washing parameter as the staining probability, determining the start time of the electrolysis device as the time of opening the water inlet device of the clothes processing device, and determining the start time of the electrolysis device as a second time, wherein the second time is determined based on the staining probability; The washing parameter is determined to be the color depth, the start time of the electrolysis device is determined to be the time when the color depth is greater than a preset depth threshold, and the start time of the electrolysis device is determined to be a third time, and the third time is determined based on the color depth.

6. A control device, applied to a clothes processing device, characterized in that: The device comprises: An acquisition module, configured to acquire washing parameters in response to an operation instruction for executing a laundry processing program; a determination module, configured to determine operating parameters of the electrolysis device of the laundry processing equipment according to the washing parameters; A control module, used for controlling the clothes processing device to start executing the clothes processing program, and controlling the electrolysis device to operate according to the operating parameters to generate hydroxyl radicals capable of chemically reacting with dye molecules; Wherein, the acquisition module includes: a first determining unit, configured to determine whether the laundry processing program includes a dyeing processing subroutine in response to an operation instruction for executing the laundry processing program; an acquisition unit, configured to determine that the laundry processing program includes the dyeing processing subprogram, and to acquire an initial weight of the laundry to be processed in the barrel of the laundry processing device; a second determining unit, configured to determine the initial weight as the washing parameter; a first control unit, configured to determine that the laundry processing program does not include the dyeing processing subprogram, and control a color recognition device of the laundry processing device to recognize color information of the laundry to be processed; a third determining unit, configured to determine the dyeing probability of the laundry to be processed according to the color information of the laundry to be processed; The second determination unit is further configured to determine the staining probability as the washing parameter.

7. A clothes processing device, characterized in that: The device comprises: A memory for storing executable instructions; A processor, configured to implement the control method according to any one of claims 1 to 5 when executing the executable instructions stored in the memory.

8. A computer-readable storage medium, characterized in that: Executable instructions are stored, which are used to cause the processor to execute and implement the control method described in any one of claims 1 to 5.

Citation Information

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