Control method and apparatus, laundry treating apparatus, and computer readable storage medium

The electrolysis technology of the garment treatment equipment generates water containing highly active oxidizing substances, which solves the problem of whiteness reduction in white clothes after multiple washes, achieves a bleaching effect on the clothes to be treated, and improves the whiteness of the clothes.

CN115874390BActive Publication Date: 2026-02-17WUXI LITTLE SWAN ELECTRIC CO LTD
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Patent Information

Application Number
CN202111131528.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-09-26
Publication Date
2026-02-17
Estimated Expiration
2041-09-26

AI Technical Summary

Technical Problem

White clothing loses its whiteness after repeated washing due to the shedding of fluorescent whitening agents and the effects of sunlight or stains. Existing technologies are insufficient to effectively maintain the whiteness of clothing.

Method used

The water inside the garment processing equipment undergoes electrolysis to generate electrolyzed water, which is then used to wash the garments. This water, containing highly active oxidizing substances, is used for bleaching and washing.

Benefits of technology

It achieves a bleaching effect on white clothes, improves the control method of clothing treatment equipment, realizes the electrolysis operation of the clothes to be treated, and electrolyzes the water after electrolysis to generate electrolyzed water for washing the clothes to be treated. The bleaching and washing process uses water containing highly active oxidizing substances to improve the whiteness of the clothes.

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Abstract

The application provides a clothes treatment control method and device, clothes treatment equipment and a computer readable storage medium, comprising: in response to a received white washing start instruction, obtaining weight information of clothes to be treated in a barrel of the clothes treatment equipment; determining electrolysis parameters based on the weight information; performing electrolysis operation on water in the barrel of the clothes treatment equipment based on the electrolysis parameters to obtain electrolyzed water; and performing a washing process on the clothes to be treated using the electrolyzed water. In this way, by the weight information of the clothes to be treated, electrolysis parameters matched therewith are determined, electrolysis operation is performed on water in the barrel based on the electrolysis parameters to obtain water containing highly active oxidizing substances, and finally the washing process is performed using the water containing highly active oxidizing substances, thereby increasing the whiteness of the clothes to be treated.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of automation control, and relates to but is not limited to a control method and device, a clothes processing device and a computer readable storage medium. BACKGROUND

[0002] With the continuous improvement of the quality of life, the types of household appliances are more and more, and the functions are more and more powerful. For example, a washing machine can realize automatic washing, dewatering, drying and other functions, thereby bringing great convenience to life.

[0003] In practice, the materials of common white clothes such as white shirts and white T-shirts are usually pure cotton or polyester. In order to cater to the preferences of consumers, manufacturers will bleach and fluorescent whiten the white clothes when producing these white clothes. Among them, bleaching usually uses hydrogen peroxide and other substances to remove part of the yellow pigment on the surface of cotton or polyester, so that the inherent white of cotton or polyester is improved to a certain extent. Fluorescent whitening belongs to optical whitening, which is to apply fluorescent whitening agent to the surface of white clothes to absorb ultraviolet light and emit blue light outward. Then, due to the complementary light between blue light and white light, the whiteness of white clothes is obviously increased after superposition.

[0004] However, after the white clothes are washed for many times, the fluorescent whitening agent will fall off due to washing, and the whiteness of the white clothes will decrease due to the influence of sunlight or stains during use, that is, the whiteness of the white clothes will decrease after washing. SUMMARY

[0005] Therefore, the embodiments of the present application provide a control method and device, a clothes processing device and a computer readable storage medium.

[0006] The technical scheme of the embodiments of the present application is as follows:

[0007] The embodiments of the present application provide a control method of a clothes processing device, which comprises the following steps:

[0008] In response to the received white and clean washing start instruction, the weight information of the clothes to be processed in the barrel of the clothes processing device is obtained;

[0009] The electrolysis parameters are determined based on the weight information;

[0010] The water in the barrel of the clothes processing device is subjected to electrolysis operation based on the electrolysis parameters, and the water after electrolysis is obtained;

[0011] The washing process is performed on the clothes to be processed by using the water after electrolysis.

[0012] The control method of the laundry treatment device provided by the embodiments of the present application can obtain the weight information of the laundry in the barrel of the laundry treatment device through the weighing sensor after the laundry treatment device receives the white laundry washing starting instruction, determine the electrolysis parameter based on the weight information, and of course, the washing parameter can also be determined at the same time; then, the water in the barrel of the laundry treatment device is subjected to electrolysis operation based on the electrolysis parameter, and through the electrolysis operation, water containing high-activity oxidizing substances can be obtained, and water can also be injected into the barrel in advance or at the same time based on the washing parameter; finally, the laundry to be treated is washed by using the water containing high-activity oxidizing substances and the washing parameter, and the water containing high-activity oxidizing substances can realize the bleaching effect on the laundry to be treated, in addition, the electrolysis parameter is determined based on the weight information of the laundry to be treated, so that the electrolysis parameter can accurately match the laundry to be treated, thereby improving the washing and bleaching effect.

[0013] In some embodiments, the determining the electrolysis parameter based on the weight information comprises:

[0014] determining a target weight range corresponding to the weight information;

[0015] determining the electrolysis parameter corresponding to the target weight range based on a preset weight-parameter correspondence relationship, the electrolysis parameter at least including one of electrolysis power, electrolysis duration and high-activity oxidizing substance concentration.

[0016] In some embodiments, the electrolyzing the water in the barrel of the laundry treatment device based on the electrolysis parameter comprises:

[0017] determining that the laundry treatment device performs a water injection process, starting an electrolysis device of the laundry treatment device, and controlling the electrolysis device to electrolyze the water in the barrel at the electrolysis power; or

[0018] determining that the laundry treatment device performs a water injection process, starting a timer, and obtaining a first timing duration; determining that the first timing duration reaches a first duration threshold, starting an electrolysis device of the laundry treatment device, and controlling the electrolysis device to electrolyze the water in the barrel at the electrolysis power; or

[0019] determining that the water amount in the barrel reaches a washing water amount, starting an electrolysis device of the laundry treatment device, and controlling the electrolysis device to electrolyze the water in the barrel at the electrolysis power.

[0020] In some embodiments, the method further comprises: determining a washing water amount based on the weight information;

[0021] determining that the current water amount in the barrel reaches the first preset water amount, wherein the first preset water amount is the minimum water amount at which the electrolysis device can be started.

[0022] controlling the electrolysis device to start electrolyzing water.

[0023] In some embodiments, the method further comprises: determining that an electrolysis end condition is not reached, continuing the electrolysis operation until the electrolysis end condition is reached, and controlling the laundry treatment apparatus to perform a water intake operation based on the amount of washing water.

[0024] In some embodiments, the method further comprises:

[0025] determining that the current amount of water reaches the amount of washing water, determining that the electrolysis operation reaches the electrolysis end condition, and ending the electrolysis operation;

[0026] controlling the laundry treatment apparatus to perform a washing operation.

[0027] In some embodiments, the method further comprises:

[0028] determining that the electrolysis device performs an electrolysis operation on water in the tub, starting a timer, obtaining a second timing duration, determining that the second timing duration reaches the electrolysis duration, and determining that the electrolysis operation reaches the electrolysis end condition; or

[0029] determining that the current amount of water reaches the amount of washing water, obtaining a current concentration of highly active oxidizing substances in the tub, determining that the current concentration reaches a concentration threshold, and determining that the electrolysis operation reaches the electrolysis end condition.

[0030] In some embodiments, before the response to the received white washing start instruction, the method further comprises:

[0031] acquiring, by an image acquisition device in the laundry treatment apparatus, an image of the laundry to be treated in the tub;

[0032] segmenting the image into a plurality of sub-images according to a preset size, and determining respective gray scale values of the sub-images;

[0033] determining that there is a target gray scale value lower than a gray scale value threshold in the respective gray scale values, and outputting a prompt message, the prompt message being used to prompt that there is laundry unsuitable for white washing in the laundry to be treated.

[0034] Embodiments of the present application provide a laundry treatment device, comprising:

[0035] a response module configured to, in response to a received white washing start instruction, acquire weight information of laundry to be treated in a tub of the laundry treatment apparatus;

[0036] a determination module configured to determine electrolysis parameters based on the weight information;

[0037] an electrolysis module configured to perform an electrolysis operation on water in a tub of the laundry treatment apparatus based on the electrolysis parameter, to obtain electrolyzed water;

[0038] a washing module configured to perform a washing process on the laundry to be treated using the electrolyzed water.

[0039] Embodiments of the present application provide a laundry treatment apparatus, comprising:

[0040] a memory configured to store executable instructions;

[0041] a processor configured to execute the executable instructions stored in the memory, to implement the control method of the laundry treatment apparatus.

[0042] Embodiments of the present application provide a computer readable storage medium, wherein the computer readable storage medium stores computer executable instructions, and the computer executable instructions are configured to implement the control method of the laundry treatment apparatus. BRIEF DESCRIPTION OF DRAWINGS

[0043] Figure 1 a flowchart of an implementation of the control method of the laundry treatment apparatus provided by embodiments of the present application;

[0044] Figure 2 a flowchart of an implementation of determining the washing parameter and the electrolysis parameter provided by embodiments of the present application;

[0045] Figure 3 a flowchart of an implementation of performing the electrolysis operation provided by embodiments of the present application;

[0046] Figure 4 a flowchart of another implementation of the control method of the laundry treatment apparatus provided by embodiments of the present application;

[0047] Figure 5A a flowchart of an implementation of determining the electrolysis end condition provided by embodiments of the present application;

[0048] Figure 5B a flowchart of another implementation of determining the electrolysis end condition provided by embodiments of the present application;

[0049] Figure 6 a flowchart of an implementation of determining the prompt message provided by embodiments of the present application;

[0050] Figure 7 a flowchart of another implementation of the control method of the laundry treatment apparatus provided by embodiments of the present application;

[0051] Figure 8A relationship structure diagram of concentration and washing effect provided by the embodiment of the present application is provided.

[0052] Figure 9 A comparison diagram of effects in three different cases provided by the embodiment of the present application is provided.

[0053] Figure 10 A component structure diagram of the laundry treatment device provided by the embodiment of the present application is provided.

[0054] Figure 11 A component structure diagram of the laundry treatment device provided by the embodiment of the present application is provided. DETAILED DESCRIPTION

[0055] In order to make the purpose, technical solutions and advantages of the present application clearer, the following will further describe the present application with reference to the drawings, and the described embodiments should not be regarded as limiting the present application, and all other embodiments obtained by those skilled in the art without creative labor shall fall within the scope of protection of the present application.

[0056] In the following description, "some embodiments" are related to a subset of all possible embodiments, but it can be understood that "some embodiments" can be the same subset or different subsets of all possible embodiments, and can be combined with each other without conflict.

[0057] In the following description, the terms "first\second\third" are only to distinguish similar objects, and do not represent a specific order of the objects, and it can be understood that "first\second\third" can be interchanged in a specific order or sequence as allowed, so that the embodiments of the present application described herein can be implemented in an order other than that illustrated or described herein.

[0058] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which the present application belongs. The terms used herein are only for the purpose of describing the embodiments of the present application, and are not intended to limit the present application.

[0059] Based on the laundry treatment device in the related art, such as a washing machine, a dryer, a dishwasher, a dry cleaning machine, a washing-drying integrated machine, a laundry care machine and other household appliances with washing function, stains on the clothes to be treated are removed by washing liquid. When the clothes to be treated are white or light-colored, there is a problem that the clothes to be treated become yellow after washing. The embodiment of the first aspect of the present application provides a control method of a laundry treatment device. Figure 1 An implementation process of the control method of the laundry treatment device provided by the embodiment of the present application is shown in Figure 1 The method comprises Figure 1The steps S101 to S104 are described below in combination with Figure 1 The steps are described below.

[0060] In step S101, in response to the received white washing start instruction, the weight information of the laundry in the barrel of the laundry treatment device is obtained.

[0061] Here, the white washing is a washing function of the laundry treatment device, which can realize washing and bleaching of the laundry. The white washing start instruction can be generated in the following ways: way one, for the touch operation of the "white washing function" on the display panel, the white washing start instruction can be generated by the touch operation; way two, the white washing start instruction can also be triggered by voice, that is, in the case that the laundry treatment device is powered on, the "white washing function" is started by voice; way three, the white washing start instruction can also be triggered based on that the control terminal sends a white washing start signal to the laundry treatment device, the control terminal and the laundry treatment device have a communication connection, and the control terminal has an application program installed for controlling the laundry treatment device, the control terminal can control the laundry treatment device through the application program, and the control terminal can be a smart phone, a computer or a smart wearable device. The above is only an exemplary description of the white washing start instruction, and does not limit the white washing start instruction.

[0062] In the embodiment of the present application, after the laundry treatment device receives the white washing start instruction, the weight information of the laundry in the barrel of the laundry treatment device is obtained. Exemplarily, the laundry treatment device can be a washing machine, and the laundry to be treated can be white or light colored clothes, bed sheets, etc. The laundry treatment device is provided with a weighing sensor, which can obtain the weight information of the laundry in the barrel in real time. Therefore, after the laundry to be treated is put into the laundry treatment device, the weight information of the laundry to be treated can be obtained by the weighing sensor of the laundry treatment device.

[0063] In the embodiment of the present application, the weight information is used to represent the weight of the laundry to be treated, and the weight information can be mass, weight, etc.

[0064] In step S102, the electrolysis parameters are determined based on the weight information.

[0065] Here, the electrolysis parameters at least include one of electrolysis power, electrolysis time and high active oxidizing substance concentration, wherein the electrolysis power refers to the power used by the electrolysis device of the laundry treatment device during electrolysis; the electrolysis time refers to the time used by the electrolysis device during electrolysis; and the high active oxidizing substance concentration represents the proportion of high active oxidizing substance in the washing water. The high active oxidizing substance can be active oxygen, active chlorine, etc.

[0066] In some embodiments, the washing parameter can also be determined according to the weight information, wherein the washing parameter at least includes the washing water amount, and the washing parameter can also include the washing time length, wherein the washing water amount refers to the water amount required for the current washing, and the washing time length refers to the time length required for the current washing.

[0067] In the embodiments of the present application, the target weight range corresponding to the weight information can be determined first, for example, the accuracy of the target weight range is 1 kilogram (kg), then 1.31 kg corresponds to the weight range of 1 kg, and 1.62 kg corresponds to 2 kg; then, the electrolysis parameter corresponding to the target weight range is determined according to the preset weight and parameter washing corresponding relationship, of course, the washing parameter corresponding to the target weight range can also be determined according to the same method.

[0068] Here, the corresponding relationship between the weight and the parameter can include: a first corresponding sub-relationship between the weight and the washing water amount, a second corresponding sub-relationship between the weight and the washing time length, a third corresponding sub-relationship between the weight and the electrolysis power, a fourth corresponding sub-relationship between the weight and the electrolysis time length, and a fifth corresponding sub-relationship between the weight and the high active oxidizing substance concentration. In the first corresponding sub-relationship, the weight and the washing water amount are positively correlated, that is, the heavier the weight, the more washing water amount is required; in the second corresponding sub-relationship, the weight and the washing time length are positively correlated, that is, the heavier the weight, the longer the washing time length; in the third corresponding sub-relationship, the weight and the electrolysis power are positively correlated, that is, the heavier the weight, the greater the electrolysis power used in electrolysis; in the fourth corresponding sub-relationship, the weight and the electrolysis time length are positively correlated, that is, the heavier the weight, the longer the electrolysis time length; and in the fifth corresponding sub-relationship, the weight and the high active oxidizing substance concentration are positively correlated, that is, the heavier the weight, the higher the high active oxidizing substance concentration.

[0069] For example, 1 kg weight corresponds to 10 liters (L) of washing water amount; 1 kg weight corresponds to 25 minutes (min) of washing time; 1 kg weight corresponds to 75 watts (W) of electrolysis power; and 1 kg weight corresponds to 10 min of electrolysis time length.

[0070] In step S103, water in the barrel of the clothes treatment device is subjected to electrolysis operation based on the electrolysis parameter, to obtain the water after electrolysis.

[0071] Here, the clothes treatment device is provided with a water inlet, and the washing parameter includes the washing water amount, so that the washing parameter determined based on step S102 is equivalent to the washing water amount, and then water can be injected into the barrel through the water inlet until the water amount reaches the washing water amount.

[0072] In the embodiments of the present application, the clothes treatment device is provided with an electrolysis device, which can be arranged in the barrel. In actual implementation, the electrolysis device can realize electrolysis operation in the following three ways:

[0073] In the first way, the electrolysis device is started when the water inlet starts to inject water, and the electrolysis device is controlled to perform electrolysis operation at an electrolysis power until an electrolysis time length is reached, to obtain water after electrolysis, which contains active oxygen, active chlorine and other highly active oxidizing substances. In the second way, the electrolysis device is started after a first time threshold of water injection at the water inlet, and the electrolysis device is controlled to perform electrolysis operation at the electrolysis power until the electrolysis time length is reached. The first time threshold can be 3 minutes, 4 minutes, 5 minutes, etc. The first time threshold can be a default value or a custom value. The embodiments of the present application do not limit the first time threshold. That is, after a certain amount of water is injected at the water inlet for a certain time, the electrolysis device is started to control the electrolysis device to electrolyze the water in the barrel for an electrolysis time length, to obtain water after electrolysis containing active oxygen, active chlorine and other highly active oxidizing substances. In the third way, the electrolysis device is started when the water injection at the water inlet is completed, that is, when the water in the barrel reaches the washing water amount, and the electrolysis device is controlled to electrolyze the water in the barrel for an electrolysis time length, to obtain water after electrolysis containing active oxygen, active chlorine and other highly active oxidizing substances. The above is an exemplary description of electrolysis operation of water in the barrel based on electrolysis parameters. The embodiments of the present application do not limit the electrolysis operation.

[0074] In step S104, the water after electrolysis is used to perform a washing process on the clothes to be treated.

[0075] Here, the water after electrolysis contains active oxygen, active chlorine and other highly active oxidizing substances. In the embodiments of the present application, the water containing active oxygen, active chlorine and other highly active oxidizing substances is used to wash clothes. Since the highly active oxidizing substances have high oxidizing properties, they can play a role in bleaching clothes to be treated. Therefore, the water containing active oxygen, active chlorine and other highly active oxidizing substances can achieve the effect of making clothes to be treated whiter and whiter after washing.

[0076] In some embodiments, the washing process can be performed based on washing parameters, which also include washing power, washing speed and other parameters. In actual washing with water after electrolysis, washing is performed according to the washing power and the washing speed until a washing time length is reached.

[0077] The control method of the laundry treatment device provided in the embodiments of the present application can obtain the weight information of the laundry to be treated in the barrel of the laundry treatment device through the weighing sensor after the laundry treatment device receives the white laundry washing starting instruction, determine the electrolysis parameter based on the weight information, and of course, the washing parameter can also be determined at the same time; then, the water in the barrel is subjected to electrolysis operation based on the electrolysis parameter, and through the electrolysis operation, water containing high-activity oxidizing substances can be obtained, and water can also be injected into the barrel in advance or at the same time based on the washing parameter; finally, the laundry to be treated is washed by using the water containing high-activity oxidizing substances and the washing parameter, and the water containing high-activity oxidizing substances can realize the bleaching effect on the laundry to be treated, so as to achieve the effect that the laundry to be treated becomes whiter and whiter after washing. In addition, the washing parameter and the electrolysis parameter are determined based on the weight information of the laundry to be treated, so that the electrolysis parameter can accurately match the laundry to be treated, thereby improving the washing and bleaching effect.

[0078] In some embodiments, with reference to Figure 2 The step S102 "determining the electrolysis parameter based on the weight information" can be implemented through the following step S1021 and step S1022.

[0079] In step S1021, the target weight range corresponding to the weight information is determined.

[0080] Here, the weight information of the laundry to be treated obtained by the weighing sensor is related to the accuracy of the weighing sensor. For example, when the accuracy of the weighing sensor is 0.01 kg, the weight information of the laundry to be treated can be 1.31 kg, 1.53 kg, etc. Considering that the weight information has many values in practice, in the embodiments of the present application, the determination process of the washing parameter and the electrolysis parameter can be simplified by determining the target weight range corresponding to the weight information.

[0081] In actual implementation, the accuracy of the weight range can be 1 kg or 0.1 kg. The accuracy of the weight information is determined as the accuracy of the weight range through rounding or rounding off, so as to obtain the target weight range corresponding to the weight information. For example, when the accuracy of the weight range is 1 kg, based on the rounding method, 1.31 kg corresponds to the weight range of 1 kg, and 1.62 kg corresponds to 2 kg.

[0082] In step S1022, the electrolysis parameter corresponding to the target weight range is determined based on the preset correspondence between the weight and the parameter.

[0083] Here, the electrolysis parameter at least includes one of electrolysis power, electrolysis duration and high active oxidizing substance concentration, wherein the electrolysis power refers to the power used by the electrolysis device of the clothes treatment equipment when performing electrolysis, the electrolysis duration refers to the duration used by the electrolysis device when performing electrolysis, and the high active oxidizing substance concentration refers to the proportion of the high active oxidizing substance in the washing water.

[0084] In some embodiments, the washing parameter can also be determined according to the weight information, and the washing parameter at least includes washing water amount, wherein the washing water amount refers to the water amount required for this washing.

[0085] In actual implementation, there is a corresponding relationship between the weight and the washing water amount, which is equivalent to the first corresponding sub-relationship described above; there is also a corresponding relationship between the weight and the electrolysis power, which is equivalent to the third corresponding sub-relationship described above; there is also a corresponding relationship between the weight and the electrolysis duration, which is equivalent to the fourth corresponding sub-relationship described above; there is also a corresponding relationship between the weight and the high active oxidizing substance concentration, which is equivalent to the fifth corresponding sub-relationship described above; then, the clothes treatment equipment can determine the washing water amount, the electrolysis power, the electrolysis duration and the high active oxidizing substance concentration of the target weight range based on the target weight range and the corresponding sub-relationships.

[0086] In the embodiments of the present application, the target weight range corresponding to the weight information of the clothes to be treated can be determined through data standardization through the steps S1021 and S1022 described above; then, the washing parameter and the electrolysis parameter corresponding to the target weight range are determined based on the preset corresponding relationship between the weight and the parameter, so as to wash and bleach the clothes to be treated.

[0087] In some embodiments, considering that clothes made of different materials have different properties, for example, on the one hand, pure cotton material itself has strong water absorption; on the other hand, silk and wool materials are easily damaged in an environment containing oxidizing substances, therefore, the weight information can also include weight value and material type. Then, when implementing the step of determining the washing parameter and the electrolysis parameter based on the weight information, the washing parameter and the electrolysis parameter can also be determined according to the weight value and the material type of the clothes to be treated.

[0088] For example, the washing parameters include the washing water amount, and the electrolysis parameters include the electrolysis power and the electrolysis duration. When the weight of the clothes to be treated is larger and the material type indicates a higher cotton proportion, a larger amount of washing water is determined. When the weight of the clothes to be treated is smaller and the material type indicates a lower cotton proportion, a smaller amount of washing water is determined. Similarly, whether the clothes to be treated contain materials such as silk and wool can be determined based on the image information of the clothes to be treated. If the clothes to be treated contain materials such as silk and wool, it is indicated that the concentration of oxidizing substances in the water needs to be controlled. At this time, the electrolysis power can be reduced or the electrolysis duration can be shortened, or both the electrolysis power and the electrolysis duration can be reduced, so that the weight and the material type of the clothes to be treated are fully considered when the washing parameters and the electrolysis parameters are determined, and the clothes to be treated can be better protected.

[0089] Based on the above embodiment, in actual implementation, the electrolysis operation can be started by three trigger conditions, that is, the "electrolysis operation on the water in the barrel of the clothes treatment equipment based on the electrolysis parameters" in step S103 can be implemented in the following four ways:

[0090] The first way can be implemented by step S1031A:

[0091] In step S1031A, it is determined that the clothes treatment equipment performs the water injection process, the electrolysis device of the clothes treatment equipment is started, and the electrolysis device is controlled to electrolyze the water in the barrel at the electrolysis power.

[0092] Here, once the water injection port of the clothes treatment equipment performs water injection, the electrolysis device of the clothes treatment equipment is started, that is, as long as there is water in the barrel, the electrolysis device is started. Then, the electrolysis device is controlled to electrolyze the water in the barrel based on the electrolysis power, where the electrolysis power is associated with the weight information of the clothes to be treated in the barrel and changes with the weight information. For example, the heavier the weight represented by the weight information, the greater the electrolysis power, so as to improve the flexibility of the clothes treatment equipment.

[0093] Reference Figure 3 The second way can be implemented by steps S1031B to S1034B:

[0094] In step S1031B, it is determined that the clothes treatment equipment performs the water injection process, a timer is started, and a first timing duration is obtained.

[0095] Here, the clothes treatment equipment is provided with a timing device. When the water injection port of the clothes treatment equipment starts to perform water injection, the timing device starts timing. In the embodiment of the application, the timing result of the timing device is determined as the first timing duration.

[0096] In step S1032B, it is judged whether the first timing duration reaches a first duration threshold.

[0097] Here, the first duration threshold value can be 3 min, 4 min, 5 min, etc., which is less than the total water injection duration of the current washing, and can be a default value or a custom value. In the actual implementation of step S1032B, whether the first timing duration reaches the first duration threshold value can be determined by comparing the size relationship between the first timing duration and the first duration threshold value. In the case where it is determined that the first timing duration reaches the first duration threshold value, step S1033B is entered; and in the case where the first timing duration does not reach the first duration threshold value, step S1034B is executed.

[0098] Step S1033B, determine that the first timing duration reaches the first duration threshold value, start the electrolysis device of the clothes processing equipment, and control the electrolysis device to electrolyze the water in the barrel at the electrolysis power.

[0099] Here, in the case where it is determined that the first timing duration reaches the first duration threshold value, the electrolysis device can be started by a start instruction, and the electrolysis device can be controlled to electrolyze the water in the barrel at the electrolysis power after being started. In this way, the electrolysis device is started only after the water in the barrel reaches a certain amount, thereby improving the working efficiency of the electrolysis device.

[0100] Step S1034B, determine that the first timing duration does not reach the first duration threshold value, and do not start the electrolysis device.

[0101] At this time, the first timing duration for electrolysis does not reach the first duration threshold value, that is, the water in the barrel does not reach the expected amount, so the electrolysis device is not started in this case.

[0102] The third mode can be implemented by step S1031C:

[0103] Step S1031C, determine that the water amount in the barrel reaches the washing water amount, start the electrolysis device of the clothes processing equipment, and control the electrolysis device to electrolyze the water in the barrel at the electrolysis power.

[0104] Here, the electrolysis device of the clothes processing equipment is started when the water injection port of the clothes processing equipment completes water injection, that is, the water amount in the barrel reaches the washing water amount, and then the electrolysis device is started. Then, the electrolysis device is controlled to electrolyze the water in the barrel based on the electrolysis power. In this way, water injection and electrolysis operation are executed separately, so as to control the power required by the clothes processing equipment within a certain value and prolong the service life of the clothes processing equipment.

[0105] The fourth mode can be implemented by step S1031D:

[0106] Step S1031D, determine that the current water amount in the barrel reaches the first preset water amount, and control the electrolysis device to start electrolyzing water.

[0107] Here, the first preset water amount is the lowest water amount that the electrolysis device can be started, and the first preset water amount can be 2L, 2.5L, 3L, etc. The first preset water amount is less than the water amount required for the current washing, and the water is injected to the first preset water amount, and then the electrolysis device is started to electrolyze the water in the tub.

[0108] Based on the above embodiments, after step S102 of determining the electrolysis parameter based on the weight information, refer to Figure 4 The following steps S103' to S112' can also be performed to determine the washing parameter and perform the washing operation and the electrolysis operation:

[0109] In step S103', the washing parameter is determined based on the weight information.

[0110] Here, the washing parameter at least includes the washing water amount, and the washing parameter can also include the washing duration, wherein the washing water amount refers to the water amount required for the current washing, and the washing duration refers to the duration required for the current washing. In the embodiments of the present application, the weight of the clothes to be treated has a corresponding relationship with the washing parameter, and therefore, based on the weight information and the corresponding relationship, the washing parameter can be determined.

[0111] In step S104', the current water amount in the tub is obtained.

[0112] Here, the total weight of the water after injection and the clothes to be treated can be obtained by the weighing sensor, and since the weight information of the clothes to be treated has been obtained in step S101, the weight information can represent the weight of the clothes to be treated. Then, by means of difference calculation, the weight of the water in the tub can be determined, and since the density of the water is known, the volume of the water in the tub, i.e. the water amount, can be determined.

[0113] In step S105', it is determined whether the current water amount reaches the washing water amount.

[0114] Here, by means of size comparison, it can be determined whether the current water amount reaches the washing water amount. If it is determined that the current water amount reaches the washing water amount, step S106' is entered, i.e. it is continuously determined whether the electrolysis end condition is reached. If it is determined that the current water amount does not reach the washing water amount, step S110' is entered to continuously obtain the current water amount.

[0115] In step S106', it is determined that the current water amount reaches the washing water amount, and it is determined whether the electrolysis end condition is reached.

[0116] Here, when step S106' is implemented, the following two ways can be used to determine whether the electrolysis end condition is reached:

[0117] Method one, refer to Figure 5AThe step S106' can be implemented by the following steps S61A' to S64A':

[0118] In step S61A', it is determined that the electrolysis device performs electrolysis operation on the water in the barrel, the timing is started, and the second timing duration is obtained.

[0119] Here, when the electrolysis device starts to perform electrolysis operation on the water in the barrel, the timing device is started, and the timing result of the timing device is determined as the second timing duration.

[0120] In step S62A', it is determined whether the second timing duration reaches the electrolysis duration.

[0121] Here, the second timing duration can be determined by size comparison method whether the second timing duration reaches the electrolysis duration. If it is determined that the second timing duration reaches the electrolysis duration, step S63A' is executed; if it is determined that the second timing duration does not reach the electrolysis duration, step S64A' is executed.

[0122] In step S63A', it is determined that the second timing duration reaches the electrolysis duration, and it is determined that the electrolysis operation reaches the electrolysis end condition.

[0123] At this time, the second timing duration has reached the electrolysis duration, that is, the duration of electrolysis has reached the electrolysis duration corresponding to the clothes to be treated, and the electrolysis operation can be stopped, that is, it is determined that the electrolysis operation has reached the electrolysis end condition.

[0124] In step S64A', it is determined that the second timing duration does not reach the electrolysis duration, and it is determined that the electrolysis operation does not reach the electrolysis end condition.

[0125] At this time, the second timing duration has not reached the electrolysis duration, that is, the duration of electrolysis has not reached the electrolysis duration corresponding to the clothes to be treated, and the electrolysis operation needs to be continued, that is, it is determined that the electrolysis operation does not reach the electrolysis end condition.

[0126] Method two, reference Figure 5B The step S106' can be implemented by the following steps S61B' to S64B':

[0127] In step S61B', the current concentration of the high active oxidizing substance in the barrel is obtained.

[0128] Here, the clothes treatment equipment can also be provided with a concentration meter, which can obtain the concentration of the high active oxidizing substance in real time, wherein the high active oxidizing substance can be active oxygen, active chlorine, etc.

[0129] In the embodiment of the application, the current concentration of the high active oxidizing substance in the barrel can be obtained by the concentration meter.

[0130] In step S62B', it is determined whether the current concentration reaches the concentration threshold.

[0131] Here, the concentration threshold value can be 2 moles per liter, 3 moles per liter, 4 moles per liter, etc., at which the electrolyzed water can achieve a better bleaching effect on the clothes to be treated. Then, whether the current concentration reaches the concentration threshold value can be determined by a size comparison method. If it is determined that the current concentration reaches the concentration threshold value, step S63B' is performed; if it is determined that the current concentration does not reach the concentration threshold value, step S64B' is performed.

[0132] Step S63B', it is determined that the current concentration reaches the concentration threshold value, and it is determined that the electrolysis operation reaches the electrolysis end condition.

[0133] At this time, the current concentration reaches the concentration threshold value, indicating that the electrolyzed water currently formed can achieve a better bleaching effect on the clothes to be treated, and the electrolysis operation can be ended, i.e., it is determined that the electrolysis operation reaches the electrolysis end condition.

[0134] Step S64B', it is determined that the current concentration does not reach the concentration threshold value, and it is determined that the electrolysis operation does not reach the electrolysis end condition.

[0135] At this time, the current concentration has not reached the concentration threshold value, indicating that the electrolyzed water currently formed cannot achieve a better bleaching effect, and the electrolysis operation needs to be continued, i.e., it is determined that the electrolysis operation does not reach the electrolysis end condition.

[0136] The above two methods can be used to determine whether the electrolysis end condition is reached. The embodiments of the present application are exemplary and do not limit the determination of whether the electrolysis end condition is reached.

[0137] Through step S106', if it is determined that the electrolysis end condition is not reached, step S107' is performed; if it is determined that the electrolysis end condition is reached, step S108' is entered.

[0138] Step S107', it is determined that the electrolysis end condition is not reached, and the electrolysis operation is continued until the electrolysis end condition is reached, and the clothes treatment device is controlled to perform the washing operation.

[0139] At this time, the electrolysis end condition is not reached, and the electrolysis operation is continued until the second timing duration reaches the electrolysis duration or the current concentration reaches the concentration threshold value. When the electrolysis operation is continued, the washing operation is also performed based on the washing parameters, i.e., after the water injection is completed, the electrolysis operation and the washing operation are performed at the same time.

[0140] Step S108', it is determined that the current water quantity reaches the washing water quantity, it is determined that the electrolysis operation reaches the electrolysis end condition, and the electrolysis operation is ended.

[0141] At this time, the water injection is completed, and it is determined that the electrolysis end condition is reached, the electrolysis operation is not needed, and the electrolysis operation is ended.

[0142] In step S109', the laundry treating apparatus is controlled to perform the washing operation based on the washing parameters.

[0143] At this time, the water injection is completed, and the electrolysis operation is completed, the water after the electrolysis can be used for the washing operation, and the bleaching effect can be achieved, the laundry treating apparatus is controlled to perform the washing operation based on the washing parameters.

[0144] In step S110', it is determined that the current water amount does not reach the washing water amount, and it is determined whether the electrolysis end condition is reached.

[0145] At this time, the determination method is similar to the determination method in step S106', and the implementation method of step S110' can refer to the method in step S106'.

[0146] If the electrolysis end condition is reached, the electrolysis operation is not needed to be continued, step S111' is performed; if the electrolysis end condition is not reached, it is indicated that the electrolysis operation is needed to be continued, step S112' is performed.

[0147] In step S111', the electrolysis operation is ended, and the laundry treating apparatus is controlled to perform the water injection operation based on the washing water amount.

[0148] At this time, the electrolysis operation reaches the electrolysis end condition, the electrolysis device is controlled to stop the electrolysis operation, but at this time, the current water amount does not reach the washing water amount, and the water injection is needed to be continued, that is, the laundry treating apparatus is controlled to perform the water injection operation until the current water amount reaches the washing water amount.

[0149] In step S112', the electrolysis operation is continued until the electrolysis end condition is reached, and the laundry treating apparatus is controlled to perform the water injection operation based on the washing water amount.

[0150] At this time, the electrolysis operation does not reach the electrolysis end condition, the electrolysis device is continued to be controlled to perform the electrolysis operation until the electrolysis device is controlled to notify the electrolysis operation when the electrolysis end condition is reached; in addition, the current water amount does not reach the washing water amount, and the laundry treating apparatus is also controlled to perform the water injection operation until the current water amount reaches the washing water amount.

[0151] In the embodiment of the present application, through the above steps S103' to S112', whether the water injection is completed is determined through the current water amount and the washing water amount in the barrel; then, in the case of completing the water injection, whether the electrolysis end condition is reached is determined through the second timing duration and the current concentration; then, in the case of determining that the electrolysis end condition is not reached, the electrolysis operation is performed while the washing operation is performed; and in the case of reaching the electrolysis end condition, the washing operation is performed. Based on sufficient water amount and sufficient electrolysis, the better washing effect and bleaching effect can be ensured. In the case of not completing the water injection, whether the electrolysis end condition is reached is still determined through the second timing duration and the current concentration, if it is determined that the electrolysis end condition is reached, the electrolysis operation is ended, and the water filling operation is performed alone until the current water amount reaches the washing water amount; if the electrolysis end condition is not reached, the electrolysis operation and the water filling operation are performed simultaneously, so that the electrolysis requirement and the washing requirement are met simultaneously, thereby improving the washing and bleaching effect.

[0152] In the embodiment of the present application, before the step S101 of "obtaining the weight information of the laundry to be treated in the barrel of the laundry treatment apparatus in response to the received white washing start instruction", the laundry to be treated is identified first, and if the laundry to be treated includes laundry unsuitable for white washing, a prompt message is sent to protect the laundry to be treated, for example, the following steps S001 to S005 can be performed before the step S101. Figure 6

[0153] Step S001, the image acquisition device in the laundry treatment apparatus is used to acquire the image of the laundry to be treated in the barrel.

[0154] Here, the image acquisition device is provided in the laundry treatment apparatus, which can be a color camera or an infrared camera, and the image of the laundry to be treated can be acquired through the image acquisition device.

[0155] Step S002, the image is divided into a plurality of sub-images according to a preset size, and each gray value of each sub-image is determined.

[0156] For example, the preset size can be a circle with a radius of 3 cm, 4 cm or 5 cm, and the preset size can also be a square with a side length of 3 cm, 4 cm or 5 cm.

[0157] ​Here, the image is segmented according to a preset size, and a plurality of sub-images are obtained; then, the gray value of each pixel point of each sub-image is obtained, and the sum of the gray values of each pixel point in the sub-image is determined as the gray value of the sub-image, or the average gray value of all pixels in the sub-image is also determined as the gray value of the sub-image. In this way, the gray values of each sub-image are determined.

[0158] In step S003, it is determined whether there is a target gray value lower than the gray threshold value in the gray values.

[0159] Here, taking the example of "determining the average gray value of all pixels in the sub-image as the gray value of the sub-image", the gray threshold value can be 210, 215, 223, etc., and the size relationship between each gray value and the gray threshold value is compared one by one to determine whether there is a target gray value lower than the gray threshold value in the gray values. If it is determined that there is a target gray value lower than the gray threshold value in the gray values, step S004 is performed; if it is determined that all the gray values are higher than or equal to the gray threshold value, step S005 is performed.

[0160] In step S004, it is determined that there is a target gray value lower than the gray threshold value in the gray values, and a prompt message is output.

[0161] At this time, there is a target gray value lower than the gray threshold value in the gray values, indicating that there is a relatively dark garment in the to-be-processed garment, which is not suitable for bleaching, i.e., is not suitable for white washing, and in order to protect the relatively dark garment, a prompt message is output, which is used to prompt that there is a garment in the to-be-processed garment that is not suitable for white washing.

[0162] In some embodiments, the prompt message can be in the form of a pop-up box, vibration, voice, etc.

[0163] In step S005, it is determined that all the gray values are higher than or equal to the gray threshold value, and step S101 is entered.

[0164] At this time, all the gray values are higher than or equal to the gray threshold value, indicating that there is no relatively dark garment in the to-be-processed garment, i.e., the to-be-processed garment is suitable for white washing, and step S101 is entered to perform white washing.

[0165] In the embodiment of the present application, through the above steps S001 to S005, the method for determining the image gray value is used to determine whether there is a relatively dark garment in the garment to be processed. If the gray value indicates that there is a relatively dark garment in the garment to be processed, a prompt message is output in time to prompt the user to prevent bleaching the relatively dark garment, thereby achieving the purpose of protecting the relatively dark garment. If the gray value indicates that there is no relatively dark garment in the garment to be processed, white garment washing is directly performed. In this way, the intelligent degree of the garment processing equipment is improved.

[0166] Based on the above embodiment, the embodiment of the present application further provides a control method of a garment processing equipment. The control method is applied to a garment processing equipment. In the embodiment of the present application, the garment processing equipment is a washing machine, and the garment to be processed is a white garment. The washing machine is provided with an electrolytic water device (corresponding to the electrolytic device in the above embodiment). On this basis, the white garment is washed by cooperating with a suitable washing program, so that the whiteness of the white garment is maintained or the white garment becomes whiter after washing. Figure 7 An implementation process of the control method of the garment processing equipment provided in the embodiment of the present application is shown in FIG. 7, and the control method of the garment processing equipment can be implemented through steps S701 to S707. Figure 7

[0167] Step S701: power on.

[0168] Here, the power of the washing machine is turned on, and the washing machine is started through the touch operation of the washing machine panel or through the voice or application program of the control terminal.

[0169] Step S702: run the white garment washing program.

[0170] Here, the white garment washing program corresponds to the white and clean washing in the above embodiment. Similarly, when step S702 is implemented, the white garment washing program running instruction can be sent based on the touch operation of the washing machine panel, the voice or the application program of the control terminal, and then the white garment washing program is run based on the white garment washing program.

[0171] Step S703: weighing to obtain a weighing result.

[0172] Here, the washing machine is also provided with a weighing sensor, and the weighing sensor can be used to weigh the white garment in the washing machine barrel to obtain a weighing result representing the weight of the white garment.

[0173] The user selects the white garment washing program, and the washing starts. The washing machine is run to weigh the garment input by the user to obtain the amount of the garment input by the user.

[0174] Step S704: matching the corresponding water level, electrolytic water device power, electrolytic water time and washing time according to the weighing result.​

[0175] The water electrolysis device can generate active oxygen, active chlorine and other highly active oxidizing substances by electrolysis. However, the electrolysis power and electrolysis time of the water electrolysis device are different, and the concentration of active oxygen, active chlorine and other highly active oxidizing substances in the washing water is also different. The concentration of oxidizing substances is the most direct factor affecting the white clothes washing effect, and the relationship between the concentration and the washing effect is as shown in Figure 8 It can be seen from Figure 8 that the higher the concentration of oxidizing substances, the better the effect of washing white clothes.

[0176] In addition, since the preset washing parameters in the washing machine have been researched and optimized by researchers, the effect comparison before and after the optimization of the parameters is as shown in Figure 9 , and in Figure 9 , “before washing” refers to the situation before washing, and “optimization” refers to the situation of washing by using the parameters matched according to the weighing result; “non-optimization” refers to the situation of washing by using fixed parameters. It can be seen from Figure 9 that the optimized parameters can achieve better washing effect, for example, the parameters suitable for 1 kg of white clothes are not suitable for the washing of 2 kg, 3 kg, 4 kg, 5 kg and 6 kg of white clothes. Therefore, it is necessary to determine the water level, water electrolysis device power, water electrolysis time and washing time matched according to the weighing result.

[0177] Compare this amount of clothes with the pre-stored parameters in the washing machine, and match the corresponding water level (i.e. water amount), water electrolysis device power and water electrolysis time, and washing time.

[0178] When the user uses the washing machine to wash white clothes, the amount of white clothes put in by the user may vary greatly. Therefore, the washing machine needs to distinguish the amount of white clothes put in by the user in order to achieve the best washing effect. For the washing machine, the weight of different amounts of white clothes is generally different. For example, 1 kg of white clothes may only need to consume 10 L of water when washing, while 3 kg of white clothes may consume 15 L of water when washing, and 5 kg of white clothes may consume 20 L of water when washing. Therefore, in order to maintain a good white clothes washing effect, the water electrolysis device should have different working power or time under different washing conditions to ensure that the concentration of oxidizing substances in the water is above a certain amount.

[0179] Step S705, water is fed.

[0180] Here, the washing machine is controlled to feed water based on the water amount determined in step S704, so that the amount of water fed reaches the water amount determined in step S704.

[0181] Step S706, washing and water electrolysis device working.

[0182] The water electrolysis device electrolyzes water by using electrodes, and can generate active oxygen, active chlorine and other highly active oxidizing substances. Both active oxygen and active chlorine have stronger oxidizing properties than hydrogen peroxide, an oxidizing agent used by clothing manufacturers. Therefore, they can further bleach white clothes. This not only keeps white clothes white, but also makes white clothes whiter than before under certain conditions.

[0183] Step S707, end.

[0184] At this time, the white clothes cleaning of the white clothes is completed, and the white clothes cleaning program ends.

[0185] In the embodiment of the present application, through the above steps S701 to S707, when the white clothes cleaning program is run after the washing machine is started, the weight of the white clothes is first weighed to obtain the weighing result representing the weight of the white clothes; then, the corresponding water level, electrolytic water electrolysis power, electrolysis time and washing time are matched according to the weighing result; then, the water is controlled to enter based on the corresponding water level until the corresponding water level is reached; finally, the washing work is performed based on the corresponding washing time, and the electrolytic water work is performed based on the electrolytic water electrolysis power and the electrolysis time. Since the water after electrolysis contains highly active oxidizing substances such as active oxygen and active chlorine, the washing and bleaching of the white clothes are realized, and the whiteness of the white clothes is maintained or the effect of getting whiter after washing is achieved.

[0186] Based on the foregoing embodiments, the embodiments of the present application provide a clothes processing device, each module included in the device and each unit included in the modules can be realized by a processor in a computer device; of course, it can also be realized by a specific logic circuit; in the implementation process, the processor can be a central processing unit (CPU), a microprocessor unit (MPU), a digital signal processor (DSP) or a field programmable gate array (FPGA) and the like.

[0187] The embodiments of the present application further provide a clothes processing device, Figure 10 The constituent structure diagram of the clothes processing device provided in the embodiments of the present application is shown in Figure 10 As shown in the figure, the clothes processing device 1000 includes:

[0188] The response module 1001 is configured to acquire the weight information of the clothes to be processed in the barrel of the clothes processing device in response to the received white clothes cleaning start instruction;

[0189] determining, by a determining module 1002, an electrolysis parameter based on the weight information;

[0190] electrolyzing, by an electrolyzing module 1003, water in a tub of the clothes treatment apparatus based on the electrolysis parameter, to obtain electrolyzed water;

[0191] performing, by a washing module 1004, a washing process on the clothes to be treated using the electrolyzed water.

[0192] In some embodiments, the determining module 1002 includes:

[0193] a first determining sub-module configured to determine a target weight range corresponding to the weight information;

[0194] a second determining sub-module configured to determine an electrolysis parameter corresponding to the target weight range based on a preset correspondence between weights and parameters, the electrolysis parameter including at least one of an electrolysis power, an electrolysis duration, and a concentration of a highly active oxidizing substance.

[0195] In some embodiments, the electrolyzing module 1003 includes:

[0196] a first electrolyzing sub-module configured to determine that the clothes treatment apparatus performs a water injection process, start an electrolyzing device of the clothes treatment apparatus, and control the electrolyzing device to electrolyze water in the tub at the electrolysis power; or

[0197] a second electrolyzing sub-module configured to determine that the clothes treatment apparatus performs a water injection process, start a timer, and obtain a first timer duration; determine that the first timer duration reaches a first duration threshold, start the electrolyzing device of the clothes treatment apparatus, and control the electrolyzing device to electrolyze water in the tub at the electrolysis power; or

[0198] a third electrolyzing sub-module configured to determine that an amount of water in the tub reaches a washing water amount, start the electrolyzing device of the clothes treatment apparatus, and control the electrolyzing device to electrolyze water in the tub at the electrolysis power.

[0199] In some embodiments, the determining module 1002 is further configured to determine a washing water amount based on the weight information, and determine that a current amount of water in the tub reaches the first preset water amount, where the first preset water amount is a minimum water amount at which the electrolyzing device can be started; and the clothes treatment apparatus 1000 further includes:

[0200] a first control module configured to control the electrolyzing device to start electrolyzing water.

[0201] In some embodiments, the clothes treatment apparatus 1000 further includes:

[0202] The second control module is configured to determine that the electrolysis end condition is not reached, continue the electrolysis operation until the electrolysis end condition is reached, and control the laundry treatment apparatus to perform a water inlet operation based on the washing water amount.

[0203] In some embodiments, the laundry treatment apparatus 1000 further includes:

[0204] The end module is further configured to determine that the current water amount reaches the washing water amount, determine that the electrolysis operation reaches the electrolysis end condition, and end the electrolysis operation.

[0205] The third control module is configured to control the laundry treatment apparatus to perform a washing operation.

[0206] In some embodiments, the determination module 1002 is further configured to:

[0207] determine that the electrolysis device performs an electrolysis operation on the water in the tub, start a timer, and obtain a second timer duration; determine that the second timer duration reaches the electrolysis duration, and determine that the electrolysis operation reaches the electrolysis end condition; or determine that the current water amount reaches the washing water amount, obtain a current concentration of the high-activity oxidizing substance in the tub, determine that the current concentration reaches a concentration threshold, and determine that the electrolysis operation reaches the electrolysis end condition.

[0208] In some embodiments, the laundry treatment apparatus 1000 further includes:

[0209] The acquisition module is configured to acquire an image of the laundry to be treated in the tub by using an image acquisition device in the laundry treatment apparatus.

[0210] The segmentation module is configured to segment the image into a plurality of sub-images according to a preset size, and determine each gray value of each sub-image.

[0211] The output module is configured to determine that there is a target gray value lower than a gray value threshold in the each gray value, output a prompt message, and the prompt message is used to prompt that there is laundry unsuitable for white washing in the laundry to be treated.

[0212] It should be noted that the description of the laundry treatment apparatus in the embodiments of the present application is similar to that of the method embodiments described above, and has similar beneficial effects as the method embodiments, and thus is not described again. For technical details not disclosed in the present apparatus embodiments, please refer to the description of the method embodiments of the present application for understanding.

[0213] The present application provides a laundry treatment apparatus. Figure 11 A schematic structural diagram of a laundry treatment apparatus provided in the embodiments of the present application is shown in FIG. 1. According to the schematic structural diagram of the laundry treatment apparatus, the laundry treatment apparatus includes a tub 100, a washing device 200, a drying device 300, and a control device 400. Figure 11The illustrated exemplary structure of the laundry treating apparatus 1100 can be foreseen other exemplary structures of the laundry treating apparatus 1100, and thus the structure described herein should not be considered as limiting. For example, some of the components described below can be omitted, or components not described below can be added to meet the special needs of some applications.

[0214] Figure 11 The illustrated laundry treating apparatus 1100 includes a processor 1101, at least one communication bus 1102, a user interface 1103, at least one external communication interface 1104, and a memory 1105. The communication bus 1102 is configured to enable communication between the components. The user interface 1103 can include a display panel, and the external communication interface 1104 can include a standard wired interface and a wireless interface. The processor 1101 is configured to execute a program of a control method of the laundry treating apparatus stored in the memory to implement the control method of the laundry treating apparatus according to the above-described embodiments.

[0215] The computer-readable storage medium according to the embodiments of the present application can be used to store the control method of the laundry treating apparatus described above in the form of a software function module, and sold or used as an independent product. Based on such an understanding, the technical solutions of the embodiments of the present application can be embodied in the form of a software product, and the computer software product is stored in a storage medium, and includes a number of instructions for causing 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 the embodiments of the present application. The aforementioned storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM), a magnetic disk or an optical disk, and various other media capable of storing program codes. Thus, the embodiments of the present application are not limited to any particular hardware and software combination.

[0216] Accordingly, the embodiments of the present application provide a computer-readable storage medium having a computer program stored thereon, and the computer program is executed by a processor to implement the control method of the laundry treating apparatus according to the above-described embodiments.

[0217] The descriptions of the laundry treating apparatus and the storage medium embodiments above are similar to the descriptions of the method embodiments above, and have similar beneficial effects to the method embodiments. For technical details not disclosed in the laundry treating apparatus and the storage medium embodiments of the present application, please refer to the descriptions of the method embodiments of the present application for understanding.

[0218] It should be understood that every feature, structure, or characteristic described herein is within a preferred embodiment of the present application. Thus, it is meant that the features, structures, or characteristics can be combined with each other in any manner within a preferred embodiment of the present application. In addition, it is contemplated that each feature, structure, or characteristic can be implemented in hardware, software, or a combination thereof.

[0219] It should be noted that, as used herein, the articles "a", "an", "the", and "at least one" are intended to mean that there is one or more of the elements in the preceding descriptions. The articles "a" (or "an"), as well as the first article "the" and "at least one" do not denote a limitation of quantity, and are used with their plain, ordinary meaning. Thus, these articles should be interpreted in the manner it is employed by those having ordinary skill in the art to indicate that the accompanying recited elements can be included either singly or in multiple number, that the referenced member or elements can be selected from the group consisting of one or more member or elements.

[0220] In several embodiments provided in the present application, it should be understood that the disclosed devices and methods can be implemented in other ways. The above-described device embodiments are merely illustrative, for example, the division of the units is only a logical function division, and actual implementation can have another division manner, 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 or direct coupling or communication connection between the displayed or discussed components can be through some interfaces, indirect coupling or communication connection of devices or units, which can be electrical, mechanical or other forms.

[0221] The units described above as separate components can or can not be physically separate, and the components displayed as units can or can not be physical units; they can be located in one place or distributed on multiple network units; and part or all of the units can be selected according to actual needs to achieve the purpose of the embodiment.

[0222] In addition, each functional unit in each embodiment of the present application can be integrated into one processing unit, or each unit can be a separate unit, or two or more units can be integrated into one unit; the integrated unit can be realized in the form of hardware or hardware plus software functional unit.

[0223] Those skilled in the art can understand that all or part of the steps of the above-mentioned method embodiments can be completed by program instruction related hardware, and the foregoing program can be stored in a computer readable storage medium, and the program performs the steps of the above-mentioned method embodiments when executed; and the foregoing storage medium includes various storage media that can store program codes, such as mobile storage devices, ROMs, magnetic discs or optical discs.

[0224] Alternatively, the integrated units of the present application can be stored in a computer readable storage medium if they are realized in the form of software function modules and sold or used as independent products. Based on this understanding, the technical solutions of the embodiments of the present application can be embodied in the form of software products, and the computer software products are stored in a storage medium, including a plurality of instructions for causing a product to perform all or part of the methods described in the embodiments of the present application. The foregoing storage medium includes various storage media that can store program codes, such as mobile storage devices, ROMs, magnetic discs or optical discs.

[0225] The above is only an embodiment of the present application, but the protection scope of the present application is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical range disclosed in the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A control method of a laundry treating apparatus, characterized by, The method comprises: in response to the received white washing starting instruction, obtaining weight information of clothes to be treated in a barrel of the clothes treatment device; determining a target weight range corresponding to the weight information; based on a preset correspondence between weight and parameter, determining an electrolysis parameter corresponding to the target weight range, the electrolysis parameter at least including one of electrolysis power, electrolysis duration and high active oxidizing substance concentration; determining a washing water amount based on the weight information; determining that a current water amount in the barrel reaches a first preset water amount, wherein the first preset water amount is the minimum water amount at which the electrolysis device of the clothes treatment device can be started; based on the electrolysis parameter, performing electrolysis operation on the water in the barrel of the clothes treatment device to obtain electrolyzed water; using the electrolyzed water to perform a washing process on the clothes to be treated.

2. The method of claim 1, wherein, The method further comprises: determining that the clothes treatment device performs a water injection process, starting the electrolysis device of the clothes treatment device, and controlling the electrolysis device to electrolyze the water in the barrel at the electrolysis power; or determining that the clothes treatment device performs a water injection process, starting a timer, and obtaining a first timer duration; determining that the first timer duration reaches a first duration threshold, starting the electrolysis device of the clothes treatment device, and controlling the electrolysis device to electrolyze the water in the barrel at the electrolysis power; or determining that the water amount in the barrel reaches the washing water amount, starting the electrolysis device of the clothes treatment device, and controlling the electrolysis device to electrolyze the water in the barrel at the electrolysis power.

3. The method of claim 1, wherein, The method further comprises: determining that an electrolysis end condition is not reached, continuing the electrolysis operation until the electrolysis end condition is reached, and controlling the clothes treatment device to perform a water filling operation based on the washing water amount.

4. The method of claim 1, wherein, The method further comprises: determining that the current water amount reaches the washing water amount, determining that the electrolysis operation reaches the electrolysis end condition, and ending the electrolysis operation; controlling the clothes treatment device to perform a washing operation.

5. The method of claim 3, wherein, The method further comprises: determining that the electrolysis device electrolyzes the water in the barrel, starting a timer, and obtaining a second timer duration; determining that the second timer duration reaches the electrolysis duration, and determining that the electrolysis operation reaches the electrolysis end condition; or determining that the current water amount reaches the washing water amount, obtaining a current concentration of high active oxidizing substance in the barrel; determining that the current concentration reaches a concentration threshold, and determining that the electrolysis operation reaches the electrolysis end condition.

6. The method according to any one of claims 1 to 5, characterized in that, Before the response to the received white washing starting instruction, the method further comprises: using an image acquisition device in the clothes treatment device to acquire an image of the clothes to be treated in the barrel; segmenting the image into a plurality of sub-images according to a preset size, and determining respective gray values of the respective sub-images; determining that there is a target gray value lower than a gray value threshold in the respective gray values, and outputting a prompt message, the prompt message being used to prompt that there is clothes unsuitable for white washing in the clothes to be treated. 7.A laundry treating apparatus, characterized by, The device comprises: A response module is configured to acquire weight information of clothes to be treated in a barrel of the clothes treatment device in response to the received white washing start instruction; A determination module is configured to determine a target weight range corresponding to the weight information, and determine an electrolysis parameter corresponding to the target weight range based on a preset correspondence between weight and parameter, the electrolysis parameter including at least one of electrolysis power, electrolysis duration, and high active oxidizing substance concentration; The determination module is further configured to determine a washing water amount based on the weight information, and determine that a current water amount in the barrel reaches a first preset water amount, wherein the first preset water amount is a minimum water amount at which an electrolysis device of the clothes treatment device can be turned on; An electrolysis module is configured to perform electrolysis operation on water in the barrel of the clothes treatment device based on the electrolysis parameter to obtain electrolyzed water; A washing module is configured to perform a washing process on the clothes to be treated by using the electrolyzed water. 8.A laundry treating apparatus, characterized by, Comprise: A memory is configured to store executable instructions; A processor is configured to execute the executable instructions stored in the memory to implement the control method of the clothes treatment device according to any one of claims 1 to 6.

9. A computer-readable storage medium, characterized in that, The computer readable storage medium stores computer executable instructions, and the computer executable instructions are configured to execute the control method of the clothes treatment device according to any one of claims 1 to 6.

Citation Information

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