Control Method, Device, Storage Medium and Washing Machine for Detergent Dispensing
By obtaining power consumption values and identifying clothing materials in the washing machine, and calculating the detergent dose using mapping relationships, the problem of inaccurate detergent delivery is solved, and the automatic delivery of reasonable doses is achieved, which improves the washing effect and clothing protection.
Patent Information
- Application Number
- CN202211532702.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-01
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2042-12-01
AI Technical Summary
During the detergent delivery process, it is difficult for existing washing machines to accurately control the dose, resulting in poor washing effect or excessive foam, affecting the cleaning effect and clothing protection.
By obtaining the power consumption value of the washing machine from the first speed to the second speed, identifying the clothing material, and calculating the target washing weight and detergent dose according to the preset mapping relationship, ensuring that the detergent concentration is within the appropriate range.
It realizes the automatic delivery of a reasonable dose of detergent according to the material and weight of the clothing, which improves the washing effect, reduces detergent residues, protects the clothing and improves the cleaning ratio.
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Figure CN115748182B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of electronic technologies, and in particular, to a control method, device, storage medium, and washing machine for detergent dispensing. Background Art
[0002] With the improvement of washing machine R & D technology, the automatic detergent dispensing technology is very popular because of its convenience and intelligence. However, there is also a problem that the detergent dispensing dose is inaccurate. If the detergent dispensing dose is too small, it will affect the washing effect. If the detergent dispensing dose is too large, there will be more foam and it will not be rinsed clean. Therefore, when the washing machine washes clothes, how to automatically dispense a reasonable and accurate dose of detergent has become a difficult problem. Summary of the Invention
[0003] Embodiments of the present application provide a control method, device, storage medium, and washing machine for detergent dispensing, which can control the washing machine to automatically dispense a reasonable and accurate dose of detergent, thereby improving the washing effect of the washing machine.
[0004] Embodiments of the present application provide a control method for detergent dispensing, including:
[0005] Obtaining a first power consumption value when the washing machine runs from a first rotation speed to a second rotation speed;
[0006] Obtaining the material of the clothes to be washed;
[0007] Determining a target mapping relationship from multiple mapping relationships according to the material, where the mapping relationship is a mapping relationship between the power consumption value and the washing weight;
[0008] Obtaining a target washing weight from the target mapping relationship according to the first power consumption value;
[0009] Determining a target dose of detergent according to the target washing weight, and using the detergent with the target dose to wash the clothes to be washed.
[0010] Optionally, obtaining the material of the clothes to be washed includes:
[0011] Obtaining a program instruction selected by the user;
[0012] Obtaining the material of the clothes to be washed according to the program instruction.
[0013] Optionally, the determining the target dose of detergent according to the target washing weight includes:
[0014] Calculating the target dose of detergent according to the formula S = S1*(W / W1), where S is the target dose, W1 is 1 kg, W is the target washing weight, and S1 is the dose of detergent required for 1 kg of clothes to be washed.
[0015] Optionally, before obtaining the first power consumption value of the washing machine running from the first rotation speed to the second rotation speed, it further includes:
[0016] Controlling the washing machine to rotate at the first rotation speed to obtain an eccentricity value;
[0017] If the eccentricity value is less than a preset threshold, then obtain the first power consumption value of the washing machine running from the first rotation speed to the second rotation speed.
[0018] Optionally, using the detergent with the target dose to clean the laundry to be washed includes:
[0019] Controlling the detergent with the target dose to be put into the detergent box;
[0020] Controlling the water inlet to pass through the detergent box to flush the detergent into the laundry tub of the washing machine to clean the laundry to be washed.
[0021] Optionally, after obtaining the target washing weight from the target mapping relationship according to the first power consumption value, the method further includes:
[0022] If the target washing weight of the laundry to be washed is not obtained, then jump to obtaining the first power consumption value of the washing machine running from the first rotation speed to the second rotation speed.
[0023] Optionally, before using the detergent with the target dose to clean the laundry to be washed, the method further includes:
[0024] If a change in the program instruction selected by the user is obtained, then jump to obtaining the first power consumption value of the washing machine running from the first rotation speed to the second rotation speed.
[0025] In a second aspect, an embodiment of the present application provides a control device for detergent dispensing, which is applied to a washing machine and includes:
[0026] A first acquisition module, configured to acquire a first power consumption value of the washing machine running from a first rotation speed to a second rotation speed;
[0027] A second acquisition module, configured to acquire the material of the laundry to be washed;
[0028] A first determination module, configured to determine a target mapping relationship from multiple mapping relationships according to the material, where the mapping relationship is a corresponding relationship between a power consumption value and a washing weight;
[0029] A second determination module, configured to obtain a target washing weight from the target mapping relationship according to the first power consumption value;
[0030] A third determination module, configured to determine a target dosage of the detergent according to the target washing weight, and use the detergent with the target dosage to wash the laundry to be washed.
[0031] In a third aspect, an embodiment of the present application further provides a computer-readable storage medium, on which a computer program is stored. When the computer program runs on a computer, the computer is enabled to execute the control method for detergent dispensing described in any one of the above.
[0032] In a fourth aspect, an embodiment of the present application further provides a washing machine, including a washing tub, a motor, a memory, and a processor. The processor is configured to execute the control method for detergent dispensing described in any one of the above by calling the computer program stored in the memory.
[0033] The embodiment of the present application takes into account that when the washing machine washes clothes of the same weight but different materials, the water inlet volume required by the washing machine is different. Therefore, the actual washing weights corresponding to clothes of the same weight but different materials are different. In this embodiment, different mapping relationships are preset for different materials. In different mapping relationships, the corresponding relationship between the power consumption value and the washing weight is different. Even if the first power consumption value when the washing machine runs from the first rotation speed to the second rotation speed is the same, but due to different materials corresponding to different mapping relationships, the target washing weights corresponding to the laundry to be washed of different materials are also different. For example, the target washing weight corresponding to clothes with high water absorption is relatively heavy, and the target washing weight corresponding to clothes with low water absorption is relatively light. The target washing weight not only considers the weight of the laundry to be washed itself, but also considers the water inlet volume required by the material of the laundry to be washed. Therefore, determining the target dosage of the detergent according to the target washing weight of the laundry to be washed can make the target dosage of the detergent more accurate and reasonable. No matter what material the clothes are washed by the washing machine, the washing machine can be controlled to automatically dispense a reasonable and accurate dosage of the detergent, so that the concentration of the detergent is within a suitable range, thereby improving the washing effect of the washing machine, increasing the washing ratio, reducing the detergent residue, and better protecting the clothes. Description of the Drawings
[0034] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the drawings in the following description are only some embodiments of the present application. For those skilled in the art, without creative efforts, other drawings can be obtained according to these drawings.
[0035] Figure 1 It is the first flow chart of the control method for detergent dispensing provided by the embodiment of the present application;
[0036] Figure 2It is the second flow schematic diagram of the control method for detergent dispensing provided by the embodiments of the present application;
[0037] Figure 3 It is the structural schematic diagram of the control device for detergent dispensing provided by the embodiments of the present application;
[0038] Figure 4 It is the structural schematic diagram of the washing machine provided by the embodiments of the present application. Detailed implementation manners
[0039] Please refer to the drawings, where the same component symbols represent the same components. The principle of the present application is illustrated by being implemented in a suitable computing environment. The following description is based on the specific embodiments of the present application illustrated, and it should not be regarded as limiting other specific embodiments of the present application not detailed herein.
[0040] Please refer to Figure 1 , Figure 1 It is the first flow schematic diagram of the control method for detergent dispensing provided by the embodiments of the present application. The control method for detergent dispensing in this embodiment is applied to a washing machine. The washing machine can be divided into, for example, a drum washing machine, a pulsator washing machine, a agitator washing machine, a flow-jet washing machine, a spray-jet washing machine or a vibration washing machine. This embodiment does not limit the type of the washing machine. The control method for detergent dispensing includes:
[0041] In 101, obtain the first power consumption value when the washing machine runs from the first speed to the second speed.
[0042] When using the washing machine, the user can put a certain weight of clothes to be washed into the washing machine, and then start the washing machine. This embodiment will obtain the first power consumption value when the washing machine runs from the first speed to the second speed. Exemplarily, the first speed can be, for example, 90 revolutions, and the second speed can be, for example, 150 revolutions. It should be noted that this embodiment does not limit the first speed and the second speed, and they can be set according to the performance of the washing machine itself.
[0043] It can be understood that different weights of clothes to be washed in the washing machine will result in different first power consumption values required for the motor of the washing machine to run from the first speed to the second speed. Therefore, there is a corresponding relationship between the first power consumption value consumed by the motor and the weight of the clothes to be washed.
[0044] In 102, obtain the material of the clothes to be washed.
[0045] There are various materials for clothes in the market, such as cotton, chemical fiber, silk, denim, wool, down, etc. In this embodiment, the washing machine can automatically identify the material of the clothes to be washed. Exemplarily, the washing machine can identify the material information of the clothes label through a camera device. In another example, the washing machine can obtain the washing program selected by the user to judge the material information of the clothes. For example, if the washing program selected by the user is wool wash, it can be considered that the clothes are made of wool; if the washing program selected by the user is cotton and linen wash, it can be considered that the clothes are made of cotton and linen; if the washing program selected by the user is chemical fiber wash, it can be considered that the clothes are made of chemical fiber.
[0046] In 103, a target mapping relationship is determined from multiple mapping relationships according to the material, and the mapping relationship is the corresponding relationship between the power consumption value and the washing weight.
[0047] In 104, the target washing weight is obtained from the target mapping relationship according to the first power consumption value.
[0048] In this embodiment, it is considered that different materials of clothes require different water inflows provided by the washing machine during washing. For example, different materials have different water absorption properties. The water absorption of cotton and linen clothes is higher than that of chemical fiber clothes. Therefore, even if the weight of the clothes before the washing machine fills with water is the same, after filling with water, due to the strong water absorption of cotton and linen clothes, compared with chemical fiber clothes, the washing machine needs to inject more water to make the water level of the washing machine reach the preset rinsing water level. Therefore, for clothes of different materials, when the washing machine washes clothes of the same weight but different materials, the actual washing weight of the washing machine is different. The washing weight can be understood as the sum of the weight of the clothes and the weight of the inlet water. It should be noted that in addition to different water absorption properties, different materials of clothes can also have other different properties. For example, some materials are easy to wash, and some materials are difficult to wash. Therefore, different amounts of water need to be provided for washing.
[0049] In this embodiment, a target mapping relationship can be determined from multiple mapping relationships according to the material. Different materials correspond to different mapping relationships, and in different mapping relationships, the corresponding relationship between the power consumption value and the washing weight is different. Therefore, even if the first power consumption value consumed when the washing machine runs from the first speed to the second speed is the same, but due to different materials of the clothes and different mapping relationships, the corresponding washing weights are also different.
[0050] In 105, the target dose of the detergent is determined according to the target washing weight, and the clothes to be washed are washed with the target dose of the detergent.
[0051] In this embodiment, it is considered that when the washing machine washes laundry items of the same weight but different materials, different water intake amounts are required. For example, laundry items made of materials with high water absorption require more water intake from the washing machine than those made of materials with low water absorption. Therefore, the washing weight corresponding to laundry items made of materials with high water absorption is greater than that corresponding to laundry items made of materials with low water absorption. For another example, laundry items that are difficult to clean require more water intake from the washing machine than those that are easy to clean. Therefore, the washing weight corresponding to laundry items that are difficult to clean is greater than that corresponding to laundry items that are easy to clean.
[0052] If the dosage of the detergent is the same, then when the washing machine washes laundry items of the same weight but different materials, different water intake amounts will result in different detergent concentrations. However, only when the detergent concentration is within an appropriate range can the best decontamination effect of the detergent be achieved. Therefore, if the same dosage of detergent is put into laundry items of the same weight but different materials, the dosage of the detergent will be unreasonably placed. For example, for laundry items that are not easy to clean, due to the large water intake of the washing machine, the dosage of the detergent may be insufficient, resulting in poor washing effect. For laundry items that are easy to clean, due to the small water intake of the washing machine, the dosage of the detergent may be excessive, resulting in too much foam and incomplete rinsing.
[0053] In this embodiment, different mapping relationships are preset for different materials. The target mapping relationship is determined from multiple mapping relationships according to the material, the target washing weight is obtained from the target mapping relationship according to the first power consumption value, and then the target dosage of the detergent is determined according to the target washing weight. The heavier the target washing weight, the greater the target dosage of the detergent.
[0054] Even if the first power consumption value when the washing machine runs from the first speed to the second speed is the same, but due to different mapping relationships corresponding to different materials, according to the mapping relationship corresponding to the material, the actual target washing weights of laundry items of different materials can be obtained, and then the target dosage of the detergent is determined according to the target washing weight of the laundry items. Therefore, the target dosage of the detergent not only considers the weight of the laundry items, but also takes into account that the material of the laundry items will cause different water intake amounts of the washing machine, so that the target dosage of the detergent is more accurate and reasonable. No matter what material the laundry items are, when the washing machine washes the laundry, the concentration of the detergent is within a suitable range, so that the best washing effect can be achieved for the laundry items.
[0055] After determining the target dose, the washing machine controls the valve to put the detergent of the target dose into the detergent box, and controls the water inlet to flush the detergent into the washing drum of the washing machine through the detergent box. The detergent of the target dose is fully mixed with the water in the washing machine to clean the clothes to be washed. Since the target dose of the detergent is determined by the target washing weight in this embodiment, the obtained target dose of the detergent is more accurate and reasonable, so that the concentration of the detergent is within a suitable range, thereby improving the washing ratio, reducing the detergent residue, and better protecting the clothes.
[0056] Please refer to Figure 2 , Figure 2 It is the first flow schematic diagram of the control method for detergent dispensing provided by the embodiment of the present application.
[0057] In 201, obtain the first power consumption value when the washing machine runs from the first speed to the second speed.
[0058] When using the washing machine, the user can put a certain weight of clothes to be washed into the washing machine, and then start the washing machine. In this embodiment, the first power consumption value when the washing machine runs from the first speed to the second speed will be obtained. For example, the first speed can be 90 revolutions, and the second speed can be 150 revolutions.
[0059] It can be understood that the weight of the clothes to be washed in the washing machine is different, which will cause the first power consumption value required for the motor in the washing machine to run from the first speed to the second speed to be different. Therefore, there is a corresponding relationship between the first power consumption value consumed by the motor and the weight of the clothes to be washed.
[0060] In an example, this embodiment controls the washing machine to rotate at the first speed to obtain the eccentricity value. If the eccentricity value is less than the preset threshold, then obtain the first power consumption value when the washing machine runs from the first speed to the second speed. If the eccentricity value obtained when the washing machine rotates at the first speed is greater than the preset threshold, then when the washing machine speeds up, problems such as vibration, excessive noise, displacement, and impact on the outer shell are likely to occur, which affects the normal operation of the washing machine from the first speed to the second speed, and the obtained first power consumption value from the first speed to the second speed is also inaccurate. Therefore, when the eccentricity value is less than the preset threshold and the washing machine is in a normal working state, the first power consumption value from the first speed to the second speed will be obtained. If the obtained eccentricity value is greater than the preset threshold, the motor can be controlled to shake the clothes first to make the eccentricity value less than the preset threshold.
[0061] In 202, obtain the program instruction selected by the user.
[0062] In 203, obtain the material of the clothes to be washed according to the program instruction.
[0063] There are various materials for clothes on the market, such as cotton, chemical fiber, silk, denim, wool, down, etc. The washing machine can obtain the material information of the clothes to be washed by judging the washing program selected by the user. For example, if the washing program selected by the user is wool wash, it can be considered that the clothes are made of wool; if the washing program selected by the user is cotton and linen wash, it can be considered that the clothes are made of cotton and linen; if the washing program selected by the user is chemical fiber wash, it can be considered that the clothes are made of chemical fiber; if the washing program selected by the user is standard wash, it is considered that the clothes are of mixed material.
[0064] In 204, a target mapping relationship is determined from multiple mapping relationships according to the material. The mapping relationship is the corresponding relationship between the power consumption value and the washing weight.
[0065] In 205, the target washing weight is obtained from the target mapping relationship according to the first power consumption value.
[0066] In this embodiment, it is considered that different materials of clothes require different water inflows provided by the washing machine during cleaning. For example, different materials have different water absorption properties. Therefore, even if the weight of the clothes to be washed before water injection is the same, after water injection, due to the strong water absorption of cotton and linen clothes, compared with chemical fiber clothes, more water needs to be injected to make the water level of the washing machine reach the preset water level. Therefore, when the washing machine washes clothes of the same weight but different materials, the amount of water to be injected is different, and the corresponding target washing weight of the clothes to be washed is different. The actual washing weight of the washing machine is different. The washing weight can be understood as the sum of the weight of the clothes and the weight of the injected water. It should be noted that in addition to different water absorption properties, different materials of clothes can also have other different properties. For example, some materials are easy to wash, while some materials are very difficult to wash. Therefore, different amounts of water need to be provided for washing.
[0067] In this embodiment, the target mapping relationship can be determined from multiple mapping relationships according to the material. Different materials correspond to different mapping relationships, and in different mapping relationships, the mapping relationship between the power consumption value and the washing weight is different. Therefore, in the embodiment of the present application, even if the first power consumption value consumed when the washing machine runs from the first rotation speed to the second rotation speed is the same, but due to the different materials of the clothes, the mapping relationships are different, and the corresponding washing weights obtained are also different. For example, for the same first power consumption value, the washing weight corresponding to the clothes with high water absorption is relatively heavy, and the washing weight corresponding to the clothes with low water absorption is relatively light. It can be understood that when the washing machine cleans the clothes to be washed with the same weight but different materials, the water intake required by the washing machine is different. For example, the water intake required by the washing machine for the clothes with high water absorption is more than that for the clothes with low water absorption. Therefore, the washing weight corresponding to the clothes with high water absorption is greater than the washing weight corresponding to the clothes with low water absorption. Another example is that the water intake required by the washing machine for the clothes that are difficult to clean is more than that for the clothes that are easy to clean. Therefore, the washing weight corresponding to the clothes that are difficult to clean is greater than the washing weight corresponding to the clothes that are easy to clean.
[0068] Exemplarily, the time or current required for the washing machine to run from the first rotation speed to the second rotation speed can also be obtained. Different mapping relationships can also be the corresponding relationships between different time or current for speed increase and the washing weight. Then, the target washing weight can be obtained from the target mapping relationship according to the time or current for speed increase.
[0069] In 206, the target dose of the detergent is calculated according to the formula S = S1*(W / W1), and the clothes to be washed are cleaned with the detergent of the target dose.
[0070] If the same dose of detergent is put when the washing machine cleans the clothes to be washed with the same weight but different materials, then due to the different water intakes, the concentration of the detergent will be different. And the detergent can exert the best decontamination effect only when the concentration of the detergent is stable within a certain suitable range. Therefore, if the same dose of detergent is put into the clothes to be washed with the same weight but different materials, it will cause the detergent not to be in the appropriate concentration range, making the dosing amount of the detergent unreasonable. For example, for the clothes with high water absorption, the dosing amount of the detergent may be insufficient, resulting in poor washing effect. For the clothes with low water absorption, the dosing amount of the detergent may be excessive, resulting in too much foam and incomplete rinsing.
[0071] Therefore, in this embodiment, different mapping relationships are preset for different materials. The target mapping relationship is determined from multiple mapping relationships according to the material, and the target washing weight is obtained from the target mapping relationship according to the first power consumption value. Then, the target dose of the detergent is determined according to the target washing weight. Exemplarily, after obtaining the target washing weight, the target dose of the detergent can be calculated according to the formula S = S1 * (W / W1), where S is the target dose, W1 is 1 kg, W is the target washing weight, and S1 is the dose of the detergent required for 1 kg of laundry. For example, if the target washing weight W is 1 kg, then the target dose of the detergent S = S1; if the target washing weight W is 8 kg, then the target dose of the detergent S = 8S1. That is, the target washing weight is proportional to the target dose of the detergent. The heavier the target washing weight, the larger the target dose of the detergent. In this embodiment, the target dose of the detergent that meets the laundry of different materials is calculated according to the target washing weight. Therefore, regardless of the material of the laundry, S1 can be a fixed value, and the calculation method is simple and accurate.
[0072] Even if the first power consumption value of the washing machine running from the first speed to the second speed is the same, due to different mapping relationships corresponding to different materials, according to the mapping relationship corresponding to the material, the actual target washing weight of the laundry of different materials can be obtained, and then the target dose of the detergent is determined according to the target washing weight of the laundry. Therefore, the target dose of the detergent put in not only considers the weight of the laundry itself, but also considers the material of the laundry, so that the target dose of the detergent put in is more accurate and reasonable. No matter what material the laundry is, when the washing machine is cleaning the laundry, the concentration of the detergent is within a suitable range, so that the laundry can achieve the best decontamination effect.
[0073] After determining the target dose, the washing machine controls the valve to put the target dose of the detergent into the detergent box, and controls the water inlet to flush the detergent into the washing tub of the washing machine through the detergent box. The target dose of the detergent is fully mixed with the water in the washing machine to clean the laundry to be washed.
[0074] Exemplarily, if the target washing weight of the laundry to be washed is not obtained, it jumps to the step of obtaining the first power consumption value of the washing machine running from the first speed to the second speed. If the target washing weight of the laundry to be washed is not obtained, it means that the weighing fails. Then, the running speed of the washing machine is controlled to be the first speed again, and then it runs from the first speed to the second speed to obtain the first power consumption value of the washing machine running from the first speed to the second speed, and recalculate the target washing weight of the laundry to be washed.
[0075] Exemplarily, before cleaning the laundry to be washed with a target dose of detergent, that is, before the washing machine fills with water for cleaning, if a change in the program instruction selected by the user is obtained, the process jumps to the step of obtaining the first power consumption value when the washing machine runs from the first rotation speed to the second rotation speed. If the program instruction selected by the user changes, it indicates that the material of the laundry to be washed in the washing machine may have changed. Therefore, the rotation speed of the washing machine is re-controlled to the first rotation speed, and then runs from the first rotation speed to the second rotation speed to obtain the first power consumption value when the washing machine runs from the first rotation speed to the second rotation speed, and the target washing weight of the laundry to be washed is recalculated.
[0076] Please refer to Figure 3 , Figure 3 FIG. is a schematic structural diagram of a control device for detergent dispensing provided by an embodiment of the present application. The control device 300 for detergent dispensing is applied to a washing machine. The control device 300 for detergent dispensing may include: a first acquisition module 301, a second acquisition module 302, a first determination module 303, a second determination module 304, and a third determination module 305.
[0077] The first acquisition module 301 is configured to: acquire the first power consumption value when the washing machine runs from the first rotation speed to the second rotation speed;
[0078] The second acquisition module 302 is configured to: acquire the material of the laundry to be washed;
[0079] The first determination module 303 is configured to: determine a target mapping relationship from multiple mapping relationships according to the material, where the mapping relationship is the corresponding relationship between the power consumption value and the washing weight;
[0080] The second determination module 304 is configured to: obtain the target washing weight from the target mapping relationship according to the first power consumption value;
[0081] The third determination module 305 is configured to: determine the target dose of detergent according to the target washing weight, and clean the laundry to be washed with the target dose of detergent.
[0082] In one implementation manner, the second acquisition module 302 may be configured to: acquire the program instruction selected by the user; acquire the material of the laundry to be washed according to the program instruction.
[0083] In one implementation manner, the third determination module 305 may be configured to: calculate the target dose of detergent according to the formula S = S1*(W / W1), where S is the target dose, W1 is 1 kg, W is the target washing weight, and S1 is the dose of detergent required for 1 kg of laundry to be washed.
[0084] In one implementation manner, the first acquisition module 301 may be configured to: control the washing machine to rotate at the first rotation speed to obtain an eccentricity value;
[0085] When the eccentricity value is less than a preset threshold, the first power consumption value of the washing machine running from the first rotation speed to the second rotation speed is obtained.
[0086] In one embodiment, the third determination module 305 may be configured to: control a target dose of detergent to be placed in the detergent box;
[0087] Control the incoming water to pass through the detergent box to flush the detergent into the laundry tub of the washing machine to wash the laundry to be washed.
[0088] In one embodiment, the third determination module 305 may be configured to: if the target washing weight of the laundry to be washed is not obtained, jump to obtain the first power consumption value of the washing machine running from the first rotation speed to the second rotation speed.
[0089] In one embodiment, the first acquisition module 301 may be configured to: if a change in the program instruction selected by the user is obtained, jump to obtain the first power consumption value of the washing machine running from the first rotation speed to the second rotation speed.
[0090] The application embodiment provides a computer-readable storage medium, on which a computer program is stored. When the computer program is executed on a computer, the computer is caused to execute the processes in the management method of the application program provided in this embodiment.
[0091] Please refer to Figure 4 , Figure 4 FIG. is a schematic structural diagram of a washing machine provided in an embodiment of the present application. The washing machine 400 includes a laundry tub 401, a motor 402, a processor 403, and a memory 404.
[0092] The laundry tub 401 is used to hold the laundry to be washed.
[0093] The motor 402 is used to drive the laundry tub 401 to rotate to wash the laundry.
[0094] The memory 403 can be used to store application programs and data. The application programs stored in the memory 402 include executable codes, and the application programs can form various functional modules.
[0095] The processor 404 executes various functional applications and data processing by running the application programs stored in the memory 403, so as to perform overall monitoring of the washing machine 400.
[0096] In this embodiment, the processor 404 in the washing machine 400 will, according to the following instructions, load the executable codes corresponding to the processes of one or more application programs into the memory 403, and the processor 404 will run the application programs stored in the memory 403 to execute:
[0097] Obtain the first power consumption value of the washing machine running from the first rotation speed to the second rotation speed;
[0098] Obtain the material of the laundry to be washed;
[0099] Determine a target mapping relationship from multiple mapping relationships according to the material, where the mapping relationship is the corresponding relationship between the power consumption value and the washing weight;
[0100] Obtain the target washing weight from the target mapping relationship according to the first power consumption value;
[0101] Determine the target dose of the detergent according to the target washing weight, and use the detergent with the target dose to wash the laundry to be washed.
[0102] In one implementation, in obtaining the material of the laundry to be washed, the processor 404 also executes: obtaining the program instruction selected by the user;
[0103] Obtain the material of the laundry to be washed according to the program instruction.
[0104] In one implementation, in determining the target dose of the detergent according to the target washing weight, the processor 404 also executes: calculating the target dose of the detergent according to the formula S = S1*(W / W1), where S is the target dose, W1 is 1 kg, W is the target washing weight, and S1 is the dose of the detergent required for 1 kg of the laundry to be washed.
[0105] In one implementation, before obtaining the first power consumption value when the washing machine runs from the first rotation speed to the second rotation speed, the processor 404 also executes: controlling the washing machine to rotate at the first rotation speed to obtain an eccentricity value;
[0106] If the eccentricity value is less than the preset threshold, then obtain the first power consumption value when the washing machine runs from the first rotation speed to the second rotation speed.
[0107] In one implementation, in washing the laundry to be washed with the detergent with the target dose, the processor 404 also executes: controlling the detergent with the target dose to be put into the detergent box;
[0108] Control the incoming water to pass through the detergent box to flush the detergent into the washing tub of the washing machine to wash the laundry to be washed.
[0109] In one implementation, after obtaining the target washing weight from the target mapping relationship according to the first power consumption value, the processor 404 also executes: if the target washing weight of the laundry to be washed is not obtained, then jump to obtaining the first power consumption value when the washing machine runs from the first rotation speed to the second rotation speed.
[0110] In one implementation, before washing the laundry to be washed with the detergent with the target dose, the processor 404 also executes: if the program instruction selected by the user is obtained to change, then jump to obtaining the first power consumption value when the washing machine runs from the first rotation speed to the second rotation speed.
[0111] If the pressing duration reaches a second preset duration, a restart identifier for displaying a thumbnail of the corresponding target interface is shown.
[0112] In the above embodiments, the descriptions of the respective embodiments have their own emphases. For parts not elaborated in a certain embodiment, reference may be made to the detailed description of the detergent dispensing control method above, which will not be repeated here.
[0113] In the description of the present application, the terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more features.
[0114] The detergent dispensing control device provided by the embodiments of the present application and the management method of the application program in the above embodiments belong to the same concept. Any method provided in the embodiments of the detergent dispensing control method can be run on the detergent dispensing control device. The specific implementation process is detailed in the embodiments of the detergent dispensing control method, which will not be repeated here.
[0115] It should be noted that for the detergent dispensing control method of the embodiments of the present application, those of ordinary skill in the art can understand that all or part of the process of implementing the detergent dispensing control method of the embodiments of the present application can be completed by controlling relevant hardware through a computer program. The computer program can be stored in a computer-readable storage medium, such as stored in a memory and executed by at least one processor. During the execution process, it may include the process of the embodiments of the detergent dispensing control method. Among them, the storage medium can be a magnetic disk, an optical disk, a read-only memory (ROM, Read Only Memory), a random access memory (RAM, Random Access Memory), etc.
[0116] The above has introduced in detail the detergent dispensing control method, device, storage medium, and washing machine provided by the embodiments of the present application. Specific examples are used in this article to elaborate on the principle and implementation manner of the present application. The description of the above embodiments is only used to help understand the method and its core idea of the present application; at the same time, for those skilled in the art, based on the idea of the present application, there will be changes in the specific implementation manner and application scope. In summary, the content of this specification should not be construed as a limitation to the present application.
Claims
1. A control method for detergent dispensing, characterized in that Including: Obtaining a first power consumption value when the washing machine operates from a first rotation speed to a second rotation speed; Obtaining the material of the laundry to be washed; Determining a target mapping relationship from multiple mapping relationships according to the material, where the mapping relationship is the corresponding relationship between the power consumption value and the washing weight; Obtaining a target washing weight from the target mapping relationship according to the first power consumption value; The target washing weight includes the weight of the laundry to be washed and the weight of the inlet water; Determining a target dosage of the detergent according to the target washing weight, and using the detergent with the target dosage to wash the laundry to be washed.
2. The control method for detergent dispensing according to claim 1, characterized in that, Obtaining the material of the laundry to be washed includes: Obtaining a program instruction selected by the user; Obtaining the material of the laundry to be washed according to the program instruction.
3. The control method for detergent dispensing according to claim 1, wherein The determining the target dosage of the detergent according to the target washing weight includes: Calculating the target dosage of the detergent according to the formula S = S1*(W / W1), where S is the target dosage, W1 is 1 kg, W is the target washing weight, and S1 is the dosage of the detergent required for 1 kg of the laundry to be washed.
4. The control method for detergent dispensing according to claim 1, wherein Before obtaining the first power consumption value when the washing machine operates from the first rotation speed to the second rotation speed, it further includes: Controlling the washing machine to rotate at the first rotation speed to obtain an eccentricity value; If the eccentricity value is less than a preset threshold, then obtaining the first power consumption value when the washing machine operates from the first rotation speed to the second rotation speed.
5. The control method for detergent dispensing according to claim 1, characterized in that The using the detergent with the target dosage to wash the laundry to be washed includes: Controlling the detergent with the target dosage to be put into the detergent box; Controlling the inlet water to pass through the detergent box to flush the detergent into the washing tub of the washing machine to wash the laundry to be washed.
6. The control method for detergent dispensing according to claim 1, characterized in that, After obtaining the target washing weight from the target mapping relationship according to the first power consumption value, the method further includes: If the target washing weight of the laundry to be washed is not obtained, then jumping to obtaining the first power consumption value when the washing machine operates from the first rotation speed to the second rotation speed.
7. The control method for detergent dispensing according to claim 1, characterized in that, Before using the detergent with the target dosage to wash the laundry to be washed, the method further includes: If it is obtained that the program instruction selected by the user changes, then jumping to obtaining the first power consumption value when the washing machine operates from the first rotation speed to the second rotation speed.
8. A control device for detergent dispensing, applied to a washing machine, characterized in that, Including: A first obtaining module, configured to obtain a first power consumption value when the washing machine operates from a first rotation speed to a second rotation speed; A second obtaining module, configured to obtain the material of the laundry to be washed; A first determining module, configured to determine a target mapping relationship from multiple mapping relationships according to the material, where the mapping relationship is the corresponding relationship between the power consumption value and the washing weight; A second determining module, configured to obtain a target washing weight from the target mapping relationship according to the first power consumption value; The target washing weight includes the weight of the laundry to be washed and the weight of the inlet water; A third determining module, configured to determine a target dosage of the detergent according to the target washing weight, and use the detergent with the target dosage to wash the laundry to be washed.
9. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program runs on a computer, it causes the computer to execute the control method for detergent dispensing according to any one of claims 1 to 7.
10. A washing machine, characterized in that, It includes a washing tub, a motor, a memory, and a processor. The processor is configured to execute the control method for detergent dispensing as described in any one of claims 1 to 7 by invoking a computer program stored in the memory.
Citation Information
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