Laundry appliance control method, apparatus, laundry machine, and computer readable storage medium

By acquiring the weight of the washing chamber and adjusting the eccentricity value, the washing machine achieves multiple dehydration logic controls, solving the problem of poor dehydration effect in existing technologies and improving dehydration efficiency and adaptability.

CN119640549BActive Publication Date: 2026-01-20TCL HOME APPLIANCES (HEFEI) CO LTD
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Patent Information

Application Number
CN202510121270.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-23
Publication Date
2026-01-20
Estimated Expiration
2045-01-23

AI Technical Summary

Technical Problem

Existing washing machines have a single spin-drying logic, which cannot adapt to different situations and results in poor spin-drying performance.

Method used

By obtaining the current weight of the washing chamber, the corresponding target dehydration logic is determined, and different dehydration times and speeds are set according to different weights. Combined with the eccentricity value, the speed and shaking operation are adjusted to achieve multiple dehydration control logics.

Benefits of technology

It improves the spin-drying effect of the washing machine, avoids the problem of poor spin-drying caused by a single spin-drying logic, and enhances the adaptability and efficiency of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

This application provides a washing machine control method, apparatus, washing machine, and computer-readable storage medium. The method includes: if the current operating mode of the washing machine is spin-drying mode, obtaining the current weight of the washing chamber; determining a corresponding target spin-drying logic based on the current weight; and controlling the washing machine to perform spin-drying according to the target spin-drying logic. The washing machine control method provided by this application, when the washing machine is in spin-drying mode, can first obtain the current weight of the clothes inside the washing chamber. Based on different weights, different target spin-drying logics are determined, thereby enabling control of different spin-drying logics, avoiding a single spin-drying logic, and improving the spin-drying effect.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electrical appliances, in particular to a laundry equipment control method and device, a washing machine and a computer readable storage medium. BACKGROUND

[0002] In the existing washing machine, a general washing program only has one dehydration logic, which cannot perform different dehydration controls under different situations. SUMMARY

[0003] The present application provides a laundry equipment control method, which can perform different dehydration controls according to the weight.

[0004] In a first aspect, the present application provides a laundry equipment control method applied to a laundry equipment, wherein the laundry equipment comprises a washing cavity, and the method comprises:

[0005] If a current operation mode of the laundry equipment is a dehydration mode, obtaining a current weight of the washing cavity;

[0006] According to the current weight, determining a corresponding target dehydration logic;

[0007] According to the target dehydration logic, controlling the laundry equipment to perform dehydration.

[0008] In some embodiments of the present application, the determining of the corresponding target dehydration logic according to the current weight comprises:

[0009] If the current weight is less than a target weight threshold, determining that the corresponding target dehydration logic is a first dehydration logic;

[0010] If the current weight is greater than or equal to the target weight threshold, determining that the corresponding target dehydration logic is a second dehydration logic.

[0011] In some embodiments of the present application, the controlling of the laundry equipment to perform dehydration according to the target dehydration logic comprises:

[0012] If the target dehydration logic is the first dehydration logic, comparing a current dehydration attempt number with a first number threshold;

[0013] If the current dehydration attempt number is less than the first number threshold, comparing a current first eccentricity value of the washing cavity with a first eccentricity threshold;

[0014] If the current first eccentricity value is less than or equal to the first eccentricity threshold, controlling the laundry equipment to perform dehydration at a first rotating speed.

[0015] In some embodiments of the present application, after comparing the current first eccentricity value of the washing cavity with the first eccentricity threshold, the method comprises:

[0016] If the current first eccentricity value is greater than the first eccentricity threshold, a shaking operation is performed on the washing cavity.

[0017] The current number of dehydration attempts is updated, and the step of comparing the current number of dehydration attempts with the first number threshold is continuously performed until the current first eccentricity value is less than or equal to the first eccentricity threshold or the current number of dehydration attempts is greater than or equal to the first number threshold.

[0018] In some embodiments of the present application, the method of controlling the laundry equipment to perform dehydration according to the target dehydration logic comprises:

[0019] If the target dehydration logic is the second dehydration logic, a current number of dehydration attempts is determined.

[0020] If the current number of dehydration attempts is less than a second number threshold, a current second eccentricity value of the washing cavity is obtained.

[0021] If the current second eccentricity value is less than the first eccentricity threshold, the laundry equipment is controlled to perform dehydration at a second rotational speed.

[0022] If the laundry equipment completes dehydration at the second rotational speed, a current third eccentricity value is obtained.

[0023] According to the third eccentricity value, the laundry equipment is controlled to perform re-dehydration.

[0024] In some embodiments of the present application, the method of controlling the laundry equipment to perform re-dehydration according to the third eccentricity value comprises:

[0025] If the third eccentricity value is less than or equal to a second eccentricity threshold, the laundry equipment is controlled to perform dehydration at a third rotational speed.

[0026] If the third eccentricity value is greater than the second eccentricity threshold, it is determined whether the current number of dehydration attempts is less than a third number threshold.

[0027] If the current number of dehydration attempts is less than the third number threshold, a shaking operation is performed on the washing cavity, the current number of dehydration attempts is updated, and it is re-determined whether the current number of dehydration attempts is less than the second number threshold.

[0028] If the current number of dehydration attempts is greater than or equal to the third number threshold and the third eccentricity value is less than or equal to a third eccentricity threshold, the laundry equipment is controlled to perform re-dehydration at a fourth rotational speed.

[0029] In some embodiments of the present application, the method further comprises:

[0030] If the current number of dehydration attempts is greater than or equal to the third number threshold and the third eccentricity value is greater than the first eccentricity threshold, performing a shaking operation on the washing cavity and updating the current number of dehydration attempts, and re-determining whether the current number of dehydration attempts is less than the second number threshold;

[0031] If the current number of dehydration attempts is less than the fourth number threshold, performing a shaking operation on the washing cavity and updating the current number of dehydration attempts, and re-determining whether the current number of dehydration attempts is less than the second number threshold;

[0032] If the current number of dehydration attempts is greater than or equal to the fourth number threshold and the third eccentricity value is greater than the first eccentricity threshold, performing a shaking operation on the washing cavity and updating the current number of dehydration attempts, and re-determining whether the current number of dehydration attempts is less than the second number threshold;

[0033] If the current number of dehydration attempts is greater than or equal to the fourth number threshold and the third eccentricity value is less than or equal to the first eccentricity threshold, controlling the washing device to perform re-dehydration at a first rotational speed.

[0034] In a second aspect, the present application further provides a washing device control apparatus applied to a washing device, the washing device comprising a washing cavity, and the apparatus comprising:

[0035] An acquisition module, configured to, if a current operation mode of the washing device is a dehydration mode, acquire a current weight of the washing cavity;

[0036] A determination module, configured to determine a corresponding target dehydration logic according to the current weight;

[0037] A control module, configured to control the washing device to perform dehydration according to the target dehydration logic.

[0038] In a third aspect, the present application further provides a washing machine, comprising a processor, a memory, and a computer program stored in the memory and executable on the processor, wherein the processor executes the computer program to implement the steps in any of the washing device control methods.

[0039] In a fourth aspect, the present application further provides a computer readable storage medium, wherein the computer readable storage medium stores a computer program, and the computer program is executed by a processor to implement the steps in any of the washing device control methods.

[0040] The laundry equipment control method provided in the application can first acquire the current weight of the laundry in the laundry cavity if the laundry equipment is in the dehydration mode. Different target dehydration logics are determined according to different weights, so that the control of different dehydration logics can be performed, and the single dehydration logic is avoided, and the dehydration effect is improved. BRIEF DESCRIPTION OF DRAWINGS

[0041] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0042] Figure 1 is a scene schematic diagram of the laundry equipment control system provided in the embodiments of the present application;

[0043] Figure 2 is an embodiment flow schematic diagram of the laundry equipment control method in the embodiments of the present application;

[0044] Figure 3 is a functional module schematic diagram of the laundry equipment control device in the embodiments of the present application;

[0045] Figure 4 is a structure schematic diagram of the washing machine in the embodiments of the present application. DETAILED DESCRIPTION

[0046] The technical solutions in the embodiments of the present application will be described clearly and completely in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only some embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the protection scope of the present application.

[0047] In the description of the present application, it should be understood that the terms "first", "second" are used only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "multiple" is two or more, unless otherwise specifically limited.

[0048] In this application, the word "exemplary" is used to mean "serving as an example, instance, or illustration." Any implementation described as "exemplary" in this application is not necessarily to be construed as preferred or advantageous over other implementations. While the application is susceptible to various modifications and alternative forms, specific embodiments thereof are shown by way of example in the drawings and the description below. It should be understood that the drawings and description are not intended to limit the application to the particular

[0049] The following description is presented to enable any person skilled in the art to practice the application as claimed. Details are set forth in the following description for purpose of explanation. It should be appreciated that one of ordinary skill in the art will realize that the application can be practiced without the use of these specific details. In other instances, well-known structures and processes are not elaborated as they would be appreciated reported by those with skill in the art. Thus, the present application is not intended to be limited by the embodiments shown, but is to be accorded with the widest scope consistent with the principles and features presented herein.

[0050] The application provides a laundry equipment control method and device, a washing machine and a storage medium, which are described in detail below.

[0051] Please refer to Figure 1 , Figure 1 The scene diagram of the laundry equipment control system provided by the embodiments of the application can include a washing machine 100. As shown in Figure 1 , the washing machine 100 can obtain the control logic stored in the washing machine 100 to execute the laundry equipment control method in the application.

[0052] In the embodiments of the application, the washing machine 100 can be, but is not limited to, a drum washing machine, an impeller washing machine, etc.

[0053] It should be noted that Figure 1 The scene diagram of the laundry equipment control system shown in the drawings is only an example, and the laundry equipment control system and the scene described in the embodiments of the application are used to more clearly illustrate the technical solutions of the embodiments of the application, and do not constitute a limitation on the technical solutions provided by the embodiments of the application. It can be understood by those skilled in the art that, as the laundry equipment control system evolves and new business scenarios appear, the technical solutions provided by the embodiments of the application are also applicable to similar technical problems.

[0054] As shown in Figure 2 , Figure 2For an embodiment flowchart of the laundry equipment control method in the embodiments of the present application, the laundry equipment control method can be applied to a laundry equipment, which can include a laundry cavity, and specifically includes the following steps 201-203:

[0055] 201. If the current operation mode of the laundry equipment is the dehydration mode, the current weight of the laundry cavity is obtained.

[0056] The laundry equipment in the embodiments of the present application is suitable for the dehydration phase. When the laundry is completed and enters the dehydration mode, the scheme of the present application can be executed. The current weight inside the laundry cavity can be obtained when entering the dehydration phase, for example, the laundry cavity can be weighed, and the weight of the laundry cavity is regarded as the current weight; or the bare weight of the laundry cavity is input in the control module of the laundry equipment, and when the weight of the laundry cavity in the dehydration mode is obtained, the current weight can be obtained by subtracting the two weights. Specifically, the embodiments of the present application are not limited. In addition, a weight sensor can be installed at a corresponding position in the laundry equipment to obtain the current weight. Specifically, any technology can be referred to, and the embodiments of the present application are not limited in this regard.

[0057] 202. The corresponding target dehydration logic is determined according to the current weight.

[0058] Under normal circumstances, the laundry machine usually adopts one dehydration logic. For example, after the laundry machine completes washing and enters the dehydration mode, dehydration is performed according to the set time. However, this dehydration method can cause poor dehydration effect. For example, if the weight of the laundry is large, it can represent that the laundry is more or the water absorption of the laundry is large. If the dehydration is still performed according to the uniform set time, the dehydration effect can be poor.

[0059] Therefore, in order to avoid this situation, after the current weight of the laundry is obtained, different target dehydration logics can be determined according to different weights. For example, different weight gears can be set, such as gear 1, gear 2, gear 3, gear 4, and the like. Different gears correspond to a weight interval and a specific dehydration time. For example, gear 1 corresponds to light gear, gear 2 corresponds to medium gear, gear 3 corresponds to heavy gear, and gear 4 corresponds to very heavy gear. The heavier the current weight of the laundry is, the higher the corresponding gear is, and the longer the corresponding dehydration time is, that is, the corresponding target dehydration logic is determined according to the weight.

[0060] 203. The laundry equipment is controlled to perform dehydration according to the target dehydration logic.

[0061] According to the above steps, after the specific target dehydration logic is determined, the laundry machine can be controlled according to the corresponding control logic, and the embodiments of the present application are not described in detail.

[0062] The laundry equipment control method provided in the application can first acquire the current weight of the laundry in the laundry cavity if the laundry equipment is in the dehydration mode. Different target dehydration logics are determined according to different weights, so that the control of different dehydration logics can be performed, and the single dehydration logic is avoided, and the dehydration effect is improved.

[0063] In order to better realize the embodiments of the application, in an embodiment of the application, the corresponding target dehydration logic is determined according to the current weight, including:

[0064] If the current weight is less than the target weight threshold, the corresponding target dehydration logic is determined as the first dehydration logic; if the current weight is greater than or equal to the target weight threshold, the corresponding target dehydration logic is determined as the second dehydration logic.

[0065] The above embodiment provides a scheme of determining different dehydration logics according to different gears. However, according to the experimental situation, the weight condition can be divided into two conditions, one weight condition is light, and the other weight condition is heavy.

[0066] In the embodiments of the application, the target weight threshold can be set according to the actual situation.

[0067] In addition, the first dehydration logic can include a specific dehydration time and / or a specific dehydration rotating speed. The second dehydration logic can also include a specific dehydration time and / or a specific dehydration rotating speed. The dehydration time and the dehydration rotating speed in the first dehydration logic are different from the dehydration time and the dehydration rotating speed in the second dehydration logic.

[0068] In order to better realize the embodiments of the application, in an embodiment of the application, the target dehydration logic is used to control the laundry equipment to perform dehydration, including:

[0069] If the target dehydration logic is the first dehydration logic, the current dehydration attempt number is compared with the first number threshold; if the current dehydration attempt number is less than the first number threshold, the current first eccentricity value of the laundry cavity is compared with the first eccentricity threshold; if the current first eccentricity value is less than or equal to the first eccentricity threshold, the laundry equipment is controlled to perform dehydration at the first rotating speed.

[0070] In the above embodiment, different dehydration logics are determined by weight. However, in order to improve the dehydration effect, the eccentricity value is also introduced for reference in the embodiments of the application.

[0071] In the embodiments of the present application, the eccentricity value refers to the unbalance caused by the uneven distribution of laundry or the washing drum during the operation of the washing machine. When the laundry in the washing drum is unevenly distributed, it will cause the washing machine to vibrate, make noise and have an unstable operation state. The way to obtain the eccentricity value can be obtained by installing a corresponding sensor in the washing equipment, and the specific can refer to any technology, which is not limited in the embodiments of the present application.

[0072] It should be noted that in the embodiments of the present application, if the first eccentricity value is greater than the first eccentricity threshold value, it proves that the laundry is unevenly distributed in the washing cavity, and at this time, dehydration will cause the laundry that is already tangled together to be more difficult to dehydrate, and at this time the washing machine will irregularly shake the washing cavity to shake the irregularly tangled laundry. However, if the first eccentricity value is still greater than the first eccentricity threshold value after each shaking operation, the shaking operation will continue. It should be noted that the count is performed after each shaking operation is executed.

[0073] After that, if the current first eccentricity value is greater than the first eccentricity threshold value, the shaking operation of the washing cavity is continued; the current dehydration attempt number is updated, and the step of comparing the current dehydration attempt number with the first number threshold value is continued to be executed until the current first eccentricity value is less than or equal to the first eccentricity threshold value or the current dehydration attempt number is greater than or equal to the first number threshold value.

[0074] Therefore, in the embodiments of the present application, the current dehydration attempt number is the count of the shaking operation. In addition, the first rotation speed can be 800 revolutions per minute. It should be further noted that the first target dehydration logic can correspond to the current light weight application scenario.

[0075] In order to better implement the embodiments of the present application, in one embodiment of the present application, according to the target dehydration logic, the washing equipment is controlled to dehydrate, comprising:

[0076] If the target dehydration logic is the second dehydration logic, the current dehydration attempt number is determined; if the current dehydration attempt number is less than the second number threshold value, the current second eccentricity value of the washing cavity is obtained; if the current second eccentricity value is less than the first eccentricity threshold value, the washing equipment is controlled to dehydrate at the second rotation speed; if the washing equipment completes the dehydration at the second rotation speed, the current third eccentricity value is obtained; and according to the third eccentricity value, the washing equipment is controlled to dehydrate again.

[0077] In the embodiments of the present application, the second dehydration logic can correspond to the current heavy weight application scenario. At this time, if it is determined to be the second dehydration logic according to the current weight, it means that the current weight of the laundry is heavy. At this time, if the laundry is eccentric, the eccentricity may be large, so the shaking operation may be performed multiple times. Therefore, in the second dehydration logic, the second number threshold value can be greater than the first number threshold value.

[0078] Further, in the second dewatering logic, the current dewatering attempt number is determined in a similar manner as in the above embodiments, which will not be repeated here. Meanwhile, in the embodiments of the present application, the second rotation speed can be 400 revolutions per minute. The specific reason is that, since the second dewatering logic is entered, the clothes are relatively heavy at this time, and under normal circumstances, a higher rotation speed should be selected to effectively dewater the clothes. However, faster dewatering of the heavy clothes will cause the washing cavity to bear too much force, which is prone to abnormal situations. Therefore, the second dewatering logic can be divided into two dewatering stages, first dewatering at the second rotation speed, and when a certain time has elapsed and the weight is reduced after a part of the water is removed, then dewatering at a high-speed rotation can reduce the force borne by the washing cavity.

[0079] After dewatering at the second rotation speed, the clothes in the washing cavity can be offset, resulting in an excessively large eccentricity value. Therefore, the eccentricity value after the first dewatering is detected, i.e., the third eccentricity value. If the third eccentricity value meets the requirements, then dewatering at a higher rotation speed, such as 1300 revolutions per minute, can be performed.

[0080] In order to better implement the embodiments of the present application, in one embodiment of the present application, the third eccentricity value is used to control the washing device to dewater again, including:

[0081] If the third eccentricity value is less than or equal to the second eccentricity threshold, then the washing device is controlled to dewater at a third rotation speed; if the third eccentricity value is greater than the second eccentricity threshold, then it is determined whether the current dewatering attempt number is less than a third number threshold; if the current dewatering attempt number is less than the third number threshold, then a shaking operation is performed on the washing cavity and the current dewatering attempt number is updated, and it is determined again whether the current dewatering attempt number is less than the second number threshold; if the current dewatering attempt number is greater than or equal to the third number threshold and the third eccentricity value is less than or equal to the third eccentricity threshold, then the washing device is controlled to dewater again at a fourth rotation speed.

[0082] The above embodiments provide a scheme for dewatering again after entering the second dewatering logic. In order to further improve the dewatering effect, the second dewatering stage in the second dewatering logic is further refined in the embodiments of the present application, as described above.

[0083] The third number threshold can be 5, the third rotation speed can be 1200 revolutions per minute, and the fourth rotation speed can be 1000 revolutions per minute. In addition, it should be noted that in the second dewatering stage of the second dewatering logic, the current dewatering attempt number still needs to be determined according to the current dewatering attempt number, and the current dewatering attempt number in the second dewatering stage of the second dewatering logic is accumulated in the first dewatering stage of the second dewatering logic. In other words, after the first dewatering stage of the second dewatering logic is completed, the current dewatering attempt number is not cleared. If the current dewatering attempt number is to be cleared, the first dewatering logic of the laundry device or the second dewatering logic is completed, and then the current dewatering attempt number is cleared, so that the user is not disturbed by the current dewatering attempt number next time when using the washing machine.

[0084] In order to better implement the embodiments of the present application, in an embodiment of the present application, the method further comprises:

[0085] If the current dewatering attempt number is greater than or equal to the third number threshold, and the third eccentricity value is greater than the third eccentricity threshold, it is determined whether the current dewatering attempt number is less than the fourth number threshold; if the current dewatering attempt number is less than the fourth number threshold, the laundry cavity is shaken and the current dewatering attempt number is updated, and it is determined again whether the current dewatering attempt number is less than the second number threshold; if the current dewatering attempt number is greater than or equal to the fourth number threshold, and the third eccentricity value is greater than the first eccentricity threshold, the laundry cavity is shaken and the current dewatering attempt number is updated, and it is determined again whether the current dewatering attempt number is less than the second number threshold; if the current dewatering attempt number is greater than or equal to the fourth number threshold, and the third eccentricity value is less than or equal to the first eccentricity threshold, the laundry device is controlled to dewater again at the first rotation speed.

[0086] Based on the above embodiments, the embodiments of the present application further supplement the case where the third eccentricity value is greater than the third eccentricity threshold. In this case, if the eccentricity value is always large, and with the increase of the current dewatering attempt number, the clothes are still not shaken. At this time, in order to avoid high-speed rotation, the clothes in the laundry cavity are offset by the eccentric clothes, and therefore it is not suitable for high-speed rotation. At this time, the second dewatering stage of the second dewatering logic can use a lower rotation speed, instead of the third rotation speed or the fourth rotation speed.

[0087] In addition, in the embodiments of the present application, the second eccentricity threshold can be less than the third eccentricity threshold, and the third eccentricity threshold can be less than the first eccentricity threshold. The first number threshold can be less than the second number threshold.

[0088] Meanwhile, if the eccentricity value is always greater than the corresponding eccentricity threshold value in any case in the embodiment of the present application, that is, after layer-by-layer determination, the current dehydration attempt number is greater than the number determination, at this time, the laundry equipment needs to be alarmed and stopped from dehydrating, so as to avoid that the offset clothes drive the laundry cavity to offset in rotation, thereby causing damage to the laundry cavity.

[0089] In order to better implement the laundry equipment control method in the embodiment of the present application, on the basis of the laundry equipment control method, the embodiment of the present application further provides a laundry equipment control device, which is applied to a laundry equipment, and the laundry equipment includes a laundry cavity, such as Figure 3 As shown in the figure, the device 300 includes:

[0090] The acquisition module 301 is configured to acquire the current weight of the laundry cavity if the current running mode of the laundry equipment is the dehydration mode.

[0091] The determination module 302 is configured to determine the corresponding target dehydration logic according to the current weight.

[0092] The control module 303 is configured to control the laundry equipment to perform dehydration according to the target dehydration logic.

[0093] The laundry equipment control device provided by the present application can acquire the current weight of the clothes in the laundry cavity through the acquisition module 301 if the laundry equipment is in the dehydration mode. According to different weights, different target dehydration logics are determined through the determination module 302, so that the control module 303 can control different dehydration logics, avoiding a single dehydration logic and improving the dehydration effect.

[0094] In some embodiments of the present application, the determination module 302 is specifically configured to:

[0095] If the current weight is less than the target weight threshold value, the corresponding target dehydration logic is determined as the first dehydration logic.

[0096] If the current weight is greater than or equal to the target weight threshold value, the corresponding target dehydration logic is determined as the second dehydration logic.

[0097] In some embodiments of the present application, the control module 303 is specifically configured to:

[0098] If the target dehydration logic is the first dehydration logic, the current dehydration attempt number is compared with the first number threshold value.

[0099] If the current dehydration attempt number is less than the first number threshold value, the current first eccentricity value of the laundry cavity is compared with the first eccentricity threshold value.

[0100] If the current first eccentricity value is less than or equal to the first eccentricity threshold value, the laundry equipment is controlled to perform dehydration at the first rotation speed.

[0101] In some embodiments of the present application, the determining module 302 is specifically further configured to:

[0102] If the current first eccentricity value is greater than the first eccentricity threshold, a shaking operation is performed on the washing cavity.

[0103] The current number of dehydration attempts is updated, and the step of comparing the current number of dehydration attempts with the first number threshold is continuously performed until the current first eccentricity value is less than or equal to the first eccentricity threshold or the current number of dehydration attempts is greater than or equal to the first number threshold.

[0104] In some embodiments of the present application, the control module 303 is specifically further configured to:

[0105] If the target dehydration logic is the second dehydration logic, the current number of dehydration attempts is determined.

[0106] If the current number of dehydration attempts is less than the second number threshold, a current second eccentricity value of the washing cavity is obtained.

[0107] If the current second eccentricity value is less than the first eccentricity threshold, the washing device is controlled to perform dehydration at the second rotational speed.

[0108] If the washing device completes dehydration at the second rotational speed, a current third eccentricity value is obtained.

[0109] According to the third eccentricity value, the washing device is controlled to perform re-dehydration.

[0110] In some embodiments of the present application, the control module 303 is specifically further configured to:

[0111] If the third eccentricity value is less than or equal to the second eccentricity threshold, the washing device is controlled to perform dehydration at a third rotational speed.

[0112] If the third eccentricity value is greater than the second eccentricity threshold, it is determined whether the current number of dehydration attempts is less than a third number threshold.

[0113] If the current number of dehydration attempts is less than the third number threshold, a shaking operation is performed on the washing cavity, the current number of dehydration attempts is updated, and it is re-determined whether the current number of dehydration attempts is less than the second number threshold.

[0114] If the current number of dehydration attempts is greater than or equal to the third number threshold and the third eccentricity value is less than or equal to the third eccentricity threshold, the washing device is controlled to perform re-dehydration at a fourth rotational speed.

[0115] In some embodiments of the present application, the control module 303 is specifically further configured to:

[0116] If the current number of dehydration attempts is greater than or equal to the third number threshold and the third eccentricity value is greater than the third eccentricity threshold, it is determined whether the current number of dehydration attempts is less than a fourth number threshold;

[0117] If the current number of dehydration attempts is less than the fourth number threshold, a shaking operation is performed on the washing cavity, the current number of dehydration attempts is updated, and it is re-determined whether the current number of dehydration attempts is less than the second number threshold;

[0118] If the current number of dehydration attempts is greater than or equal to the fourth number threshold and the third eccentricity value is greater than the first eccentricity threshold, a shaking operation is performed on the washing cavity, the current number of dehydration attempts is updated, and it is re-determined whether the current number of dehydration attempts is less than the second number threshold;

[0119] If the current number of dehydration attempts is greater than or equal to the fourth number threshold and the third eccentricity value is less than or equal to the first eccentricity threshold, the washing device is controlled to perform re-dehydration at the first rotational speed.

[0120] The embodiments of the present application also provide a washing machine, which includes a processor, a memory, and a computer program stored in the memory and executable on the processor, and the processor executes the computer program to implement the steps in the washing device control method of any of the embodiments of the present application. Wherein, the washing machine integrates any of the washing device control methods provided by the embodiments of the present application, such as shown in the following figure, which shows a structural schematic diagram of the washing machine related to the embodiments of the present application, and specifically: Figure 4

[0121] The washing machine can include a processor 401 with one or more processing cores, a memory 402 with one or more computer readable storage media, a power supply 403, and an input unit 404, and the like. Those skilled in the art can understand that the washing machine structure shown in the figure does not constitute a limitation on the washing machine, and can include more or fewer components than the figure, or combine certain components, or different component arrangements. Figure 4 The washing machine structure shown in the figure does not constitute a limitation on the washing machine, and can include more or fewer components than the figure, or combine certain components, or different component arrangements.

[0122] Wherein:

[0123] ​The processor 401 is the control center of the washing machine, and connects various parts of the washing machine through various interfaces and lines, and performs various functions of the washing machine and processes data by running or executing software programs and / or modules stored in the memory 402 and calling data stored in the memory 402, thereby monitoring the whole washing machine. Optionally, the processor 401 can include one or more processing cores; the processor 401 can be a central processing unit (CPU), and can also be other general-purpose processors, digital signal processors (DSPs), application specific integrated circuits (ASICs), field-programmable gate arrays (FPGAs) or other programmable logic devices, discrete gates or transistor logic devices, discrete hardware components, etc. The general-purpose processor can be a microprocessor or the processor can also be any conventional processor or the like, and preferably, the processor 401 can integrate an application processor and a modem processor, wherein the application processor mainly processes the operating system, the user interface and the application program, and the modem processor mainly processes wireless communication. It can be understood that the above-mentioned modem processor can also not be integrated into the processor 401.

[0124] The memory 402 can be used to store software programs and modules, and the processor 401 executes various functions and data processing by running the software programs and modules stored in the memory 402. The memory 402 can mainly include a program storage area and a data storage area, wherein the program storage area can store an operating system, at least one application program required by a function (such as a sound playing function, an image playing function, etc.), etc.; and the data storage area can store data created according to the use of the washing machine, etc. In addition, the memory 402 can include a high-speed random access memory, and can also include a non-volatile memory, such as at least one magnetic disk storage device, a flash memory device, or other volatile solid-state memory device. Accordingly, the memory 402 can also include a memory controller to provide the processor 401 with access to the memory 402.

[0125] The washing machine further includes a power supply 403 for supplying power to various components, and preferably, the power supply 403 can be logically connected to the processor 401 through a power management system, so as to realize the functions of managing charging, discharging and power consumption management through the power management system. The power supply 403 can also include one or more direct current or alternating current power supplies, a recharging system, a power failure detection circuit, a power converter or inverter, a power state indicator, etc.

[0126] The washing machine can further include an input unit 404 which can be used to receive inputted digital or character information, and to generate keyboard, mouse, joystick, optical or trackball signal inputs related to user settings and function controls.

[0127] Although not shown, the washing machine can further include a display unit, etc., which will not be described here. In particular in the present embodiment, the processor 401 in the washing machine will load executable files corresponding to processes of one or more than one application program into the memory 402, and run the application program stored in the memory 402 by the processor 401, according to the following instructions, so as to realize various functions, such as:

[0128] If the current running mode of the washing device is the dehydration mode, obtaining the current weight of the washing cavity;

[0129] According to the current weight, determining a corresponding target dehydration logic;

[0130] According to the target dehydration logic, controlling the washing device to perform dehydration.

[0131] Those skilled in the art can understand that all or part of the steps in the various methods of the above embodiments can be completed by instructions, or by relevant hardware controlled by the instructions, which can be stored in a computer readable storage medium and loaded and executed by a processor.

[0132] To this end, the embodiments of the present application provide a computer readable storage medium, which can include a read only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, etc. A computer program is stored on the storage medium, and the computer program is loaded by a processor to execute the steps in any of the washing device control methods provided by the embodiments of the present application. For example, the computer program loaded by the processor can execute the following steps:

[0133] If the current running mode of the washing device is the dehydration mode, obtaining the current weight of the washing cavity;

[0134] According to the current weight, determining a corresponding target dehydration logic;

[0135] According to the target dehydration logic, controlling the washing device to perform dehydration.

[0136] In the above embodiments, the description of each embodiment has its own focus, and the parts not described in detail in a certain embodiment can be referred to the detailed description of other embodiments above, which will not be described here.

[0137] In specific implementation, the above various units or structures can be implemented as independent entities, or can be combined as the same or several entities. The specific implementation of the above various units or structures can be referred to the method embodiments above, and will not be described here.

[0138] The specific implementation of the above various operations can be referred to the embodiments above, and will not be described here.

[0139] The laundry equipment control method and device provided by the embodiments of the present application are described in detail above, and the principle and implementation mode of the present application are described by applying specific examples. The above embodiment description is only used to help understand the method and core idea of the present application. Meanwhile, for those skilled in the art, the specific implementation mode and application range can be changed according to the idea of the present application. In summary, the content of the specification should not be understood as a limitation of the present application.

Claims

1. A laundry appliance control method characterized by, Applied to a laundry device, the laundry device comprising a laundry cavity, the method comprising: if the current operation mode of the laundry device is a dehydration mode, obtaining a current weight of the laundry cavity; determining a corresponding target dehydration logic according to the current weight; controlling the laundry device to perform dehydration according to the target dehydration logic; the controlling the laundry device to perform dehydration according to the target dehydration logic comprises: if the target dehydration logic is a second dehydration logic, determining a current dehydration attempt number; if the current dehydration attempt number is less than a second number threshold, obtaining a current second eccentricity value of the laundry cavity; if the current second eccentricity value is less than a first eccentricity threshold, controlling the laundry device to perform dehydration at a second rotating speed; if the laundry device completes dehydration at the second rotating speed, obtaining a current third eccentricity value; controlling the laundry device to perform re-dehydration according to the third eccentricity value; the controlling the laundry device to perform re-dehydration according to the third eccentricity value comprises: if the third eccentricity value is less than or equal to a second eccentricity threshold, controlling the laundry device to perform dehydration at a third rotating speed; if the third eccentricity value is greater than the second eccentricity threshold, determining whether the current dehydration attempt number is less than a third number threshold; if the current dehydration attempt number is less than the third number threshold, performing a shaking operation on the laundry cavity, updating the current dehydration attempt number, and re-determining whether the current dehydration attempt number is less than the second number threshold; if the current dehydration attempt number is greater than or equal to the third number threshold and the third eccentricity value is less than or equal to a third eccentricity threshold, controlling the laundry device to perform re-dehydration at a fourth rotating speed; if the current dehydration attempt number is greater than or equal to the third number threshold and the third eccentricity value is greater than the third eccentricity threshold, determining whether the current dehydration attempt number is less than a fourth number threshold; if the current dehydration attempt number is less than the fourth number threshold, performing a shaking operation on the laundry cavity, updating the current dehydration attempt number, and re-determining whether the current dehydration attempt number is less than the second number threshold; if the current dehydration attempt number is greater than or equal to the fourth number threshold and the third eccentricity value is greater than the first eccentricity threshold, performing a shaking operation on the laundry cavity, updating the current dehydration attempt number, and re-determining whether the current dehydration attempt number is less than the second number threshold; if the current dehydration attempt number is greater than or equal to the fourth number threshold and the third eccentricity value is less than or equal to the first eccentricity threshold, controlling the laundry device to perform re-dehydration at a first rotating speed.

2. The laundry appliance control method of claim 1, wherein, the determining a corresponding target dehydration logic according to the current weight comprises: if the current weight is less than a target weight threshold, determining that the corresponding target dehydration logic is a first dehydration logic; if the current weight is greater than or equal to the target weight threshold, determining that the corresponding target dehydration logic is a second dehydration logic.

3. The laundry appliance control method of claim 1, wherein, The control of the washing equipment according to the target dehydration logic includes: If the target dehydration logic is the first dehydration logic, comparing the current dehydration attempt number with a first number threshold; If the current dehydration attempt number is less than the first number threshold, comparing the current first eccentricity value of the washing cavity with a first eccentricity threshold; If the current first eccentricity value is less than or equal to the first eccentricity threshold, controlling the washing equipment to perform dehydration at a first rotating speed.

4. The laundry appliance control method according to claim 3, characterized in that, The comparison of the current first eccentricity value of the washing cavity with the first eccentricity threshold includes: If the current first eccentricity value is greater than the first eccentricity threshold, performing a shaking operation on the washing cavity; Updating the current dehydration attempt number and continuing to compare the current dehydration attempt number with the first number threshold until the current first eccentricity value is less than or equal to the first eccentricity threshold or the current dehydration attempt number is greater than or equal to the first number threshold.

5. A laundry appliance control apparatus characterized by, The device is applied to a washing equipment including a washing cavity, and includes: An acquisition module configured to acquire a current weight of the washing cavity if a current operation mode of the washing equipment is a dehydration mode; A determination module configured to determine a corresponding target dehydration logic according to the current weight; A control module configured to control the washing equipment to perform dehydration according to the target dehydration logic; The control of the washing equipment according to the target dehydration logic includes: If the target dehydration logic is the second dehydration logic, determining a current dehydration attempt number; If the current dehydration attempt number is less than a second number threshold, acquiring a current second eccentricity value of the washing cavity; If the current second eccentricity value is less than a first eccentricity threshold, controlling the washing equipment to perform dehydration at a second rotating speed; If the washing equipment completes dehydration at the second rotating speed, acquiring a current third eccentricity value; Controlling the washing equipment to perform re-dehydration according to the third eccentricity value; The control of the washing equipment to perform re-dehydration according to the third eccentricity value includes: If the third eccentricity value is less than or equal to a second eccentricity threshold, controlling the washing equipment to perform dehydration at a third rotating speed; If the third eccentricity value is greater than the second eccentricity threshold, determining whether the current dehydration attempt number is less than a third number threshold; If the current dehydration attempt number is less than the third number threshold, performing a shaking operation on the washing cavity, updating the current dehydration attempt number, and re-determining whether the current dehydration attempt number is less than the second number threshold; If the current dehydration attempt number is greater than or equal to the third number threshold and the third eccentricity value is less than or equal to a third eccentricity threshold, controlling the washing equipment to perform re-dehydration at a fourth rotating speed; If the current dehydration attempt number is greater than or equal to the third number threshold and the third eccentricity value is greater than the third eccentricity threshold, determining whether the current dehydration attempt number is less than a fourth number threshold; If the current number of dehydration attempts is less than the fourth number threshold, a fluffing operation is performed on the washing cavity, the current number of dehydration attempts is updated, and it is determined again whether the current number of dehydration attempts is less than the second number threshold; If the current number of dehydration attempts is greater than or equal to the fourth number threshold, and the third eccentricity value is greater than the first eccentricity threshold, a fluffing operation is performed on the washing cavity, the current number of dehydration attempts is updated, and it is determined again whether the current number of dehydration attempts is less than the second number threshold; If the current number of dehydration attempts is greater than or equal to the fourth number threshold, and the third eccentricity value is less than or equal to the first eccentricity threshold, the washing device is controlled to perform re-dehydration at the first rotational speed.

6. A laundry machine characterized by The washing machine comprises a processor, a memory, and a computer program stored in the memory and running on the processor, and the processor executes the computer program to implement the steps in the washing device control method according to any one of claims 1 to 4.

7. A computer-readable storage medium, characterized in that, The computer readable storage medium stores a computer program, and the computer program is executed by a processor to implement the steps in the washing device control method according to any one of claims 1 to 4.

Citation Information

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