Clothes dehydration control method and device, medium and equipment

By dynamically adjusting the dehydration speed according to the initial status information, actual weight and current status information in the dehydration equipment, the problems of uneven dehydration of clothes and energy waste in traditional dehydration methods are solved, and efficient and energy-saving dehydration effects are achieved.

CN119932847APending Publication Date: 2025-05-06TCL HOME APPLIANCES (HEFEI) CO LTD
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Patent Information

Application Number
CN202510181057.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-18
Publication Date
2025-05-06

AI Technical Summary

Technical Problem

Traditional dehydration equipment adopts fixed dehydration parameters, which leads to inability to effectively dehydrate clothing or damage caused by excessive dehydration, and excessive energy consumption.

Method used

By effectively controlling the dehydration speed required during the dehydration process, the target dehydration maximum speed is determined using the initial state information, actual weight and current state information to achieve efficient dehydration of clothes.

Benefits of technology

It improves the dehydration efficiency of the dehydration equipment and reduces the possibility of energy consumption and clothing damage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the invention provides a clothes dewatering control method and device, a medium and equipment, and the method comprises the steps: determining the initial state information of clothes to be dewatered in the dewatering equipment in response to the starting of a dewatering program; according to the initial state information, whether the to-be-dewatered clothes meet dewatering conditions or not is judged; when the to-be-dewatered clothes meet the dewatering condition, the currently set initial dewatering highest rotating speed, the actual weight of the to-be-dewatered clothes and the current state information of the to-be-dewatered clothes are obtained; according to the initial dewatering maximum rotation speed, the actual weight and the current state information, determining a target dewatering maximum rotation speed of the to-be-dewatered clothes; and controlling the dewatering program to dewater the to-be-dewatered clothes at the target dewatering highest rotating speed. According to the method and the device, the target dehydration highest rotating speed required by the dehydration equipment is determined by combining the initial dehydration highest rotating speed, the actual weight and the current state information of the to-be-dehydrated clothes, so that the energy consumption and the possibility of clothes damage are reduced while the dehydration efficiency of the dehydration equipment is improved.
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Description

Technical Field

[0001] The present application relates to the field of smart home appliance technology, and in particular to the field of clothing dehydration control technology, and in particular to a clothing dehydration control method, device, medium and equipment. Background Art

[0002] In the traditional household and industrial washing process, dehydration equipment plays a vital role. The dehydration function of the dehydration equipment can significantly reduce the moisture content of clothes, thereby shortening the drying time. The dehydration equipment can be any of the washing machines, dryers, dehydrators and washer-dryers with dehydration function.

[0003] However, traditional dehydration equipment often uses fixed dehydration parameters, such as a fixed maximum dehydration speed, which does not take into account the weight difference of the clothes dehydrated each time. Therefore, when using traditional dehydration methods to dehydrate clothes, the following problems may occur:

[0004] 1. A fixed spin speed may result in the clothes not being effectively dehydrated, or the clothes may be damaged or deformed due to excessive dehydration.

[0005] 2. A fixed dehydration speed may cause unnecessary energy consumption during the dehydration process, increasing electricity bills. Summary of the invention

[0006] The present application provides a method, device, medium and equipment for controlling clothing dehydration. The clothing dehydration control method provided by the present application effectively controls the dehydration speed required during the dehydration process, thereby improving the dehydration efficiency of the dehydration device while reducing energy consumption and the possibility of clothing damage.

[0007] On the one hand, an embodiment of the present application provides a method for controlling dehydration of clothes, which is applied to a dehydration device, and the method includes:

[0008] In response to the start of the dehydration program, determining initial state information of the clothes to be dehydrated in the dehydration device, wherein the initial state information is information that affects the working performance of the dehydration device;

[0009] According to the initial state information, determining whether the clothes to be dehydrated meet the dehydration conditions;

[0010] When the clothes to be dehydrated meet the dehydration condition, obtaining the currently set initial dehydration maximum speed, the actual weight of the clothes to be dehydrated, and the current state information of the clothes to be dehydrated;

[0011] Determining a target maximum spin speed for the clothes to be spin-dried according to the initial maximum spin speed, the actual weight and the current state information;

[0012] The dehydration program is controlled to dehydrate the clothes to be dehydrated at the target maximum dehydration speed.

[0013] Further, in the clothes dehydration control method described in the embodiment of the present application, the initial state information includes the initial eccentricity value of the clothes to be dehydrated in the dehydration device; and judging whether the clothes to be dehydrated meet the dehydration condition according to the initial state information includes:

[0014] Comparing the initial eccentricity value with a preset first eccentricity threshold;

[0015] If the initial eccentricity value is less than or equal to the first eccentricity threshold, it is determined that the laundry to be dehydrated meets the dehydration condition.

[0016] Furthermore, in the laundry dehydration control method described in the embodiment of the present application, after comparing the initial eccentricity value with a preset first threshold, the method further includes:

[0017] If the initial eccentricity value exceeds the first eccentricity threshold, controlling the dehydration device to shake out the clothes to be dehydrated;

[0018] After shaking out, the eccentricity value of the clothes to be dehydrated is reacquired and compared with the first eccentricity threshold value until the eccentricity value is less than or equal to the first eccentricity threshold value within a maximum preset number of retries, and it is determined that the clothes to be dehydrated meet the dehydration conditions.

[0019] Furthermore, in the clothes dehydration control method described in the embodiment of the present application, before obtaining the currently set initial dehydration maximum speed, the actual weight of the clothes to be dehydrated, and the current state information of the clothes to be dehydrated, the method further includes:

[0020] In the process of controlling the dehydration device to drive the clothes to be dehydrated to rotate, obtaining the power of the drum motor of the dehydration device;

[0021] According to the drum motor power, a weight value having a preset corresponding relationship therewith is determined, and the weight value is used as the actual weight of the clothes to be dehydrated.

[0022] Further, in the clothes dehydration control method described in the embodiment of the present application, the current state information includes the current eccentricity value of the clothes to be dehydrated in the dehydration device; and determining the target maximum dehydration speed of the clothes to be dehydrated according to the initial maximum dehydration speed, the actual weight and the current state information includes:

[0023] comparing the actual weight with a preset first weight threshold;

[0024] If the actual weight is less than the first weight threshold, comparing the current eccentricity value with a preset second eccentricity threshold;

[0025] If the initial maximum spin speed is within the preset first value interval and the current eccentricity value is less than the first eccentricity threshold, the maximum spin speed is not adjusted and the initial maximum spin speed is used as the target maximum spin speed;

[0026] If the current eccentricity value is greater than or equal to the first eccentricity threshold, the dehydration device is controlled to shake the clothes to be dehydrated, and after the shaking is completed, the current eccentricity value of the clothes to be dehydrated is re-acquired and compared with the first eccentricity threshold, until the current eccentricity value is less than the first eccentricity threshold within a first preset retry number, the initial dehydration maximum speed is used as the target dehydration maximum speed, and the current retry number is recorded;

[0027] If the initial maximum dehydration speed is in a preset second numerical range and the current eccentricity value is less than the second eccentricity threshold, the initial maximum dehydration speed is reduced, and the reduced initial maximum dehydration speed is used as the target maximum dehydration speed, and the current number of retries is recorded, wherein the second speed threshold is greater than the first speed threshold.

[0028] Furthermore, in the clothing dehydration control method described in the embodiment of the present application, after controlling the dehydration program to dehydrate the clothing to be dehydrated at the target dehydration maximum speed, the method further includes:

[0029] In response to the start of the drying program, determining the initial maximum spin speed, the target maximum spin speed, the moisture content of the clothes, and the number of retries collected after the clothes to be dried complete the spin stage;

[0030] Determining target drying parameters of the clothes to be dried according to the initial maximum spin speed, the target maximum spin speed, the moisture content of the clothes, and the number of retries;

[0031] The drying program is controlled to dry the clothes to be dried according to the target drying parameters.

[0032] Furthermore, in the clothes dehydration control method described in the embodiment of the present application, the target drying parameters of the clothes to be dried are determined according to the initial maximum dehydration speed, the target maximum dehydration speed, the moisture content of the clothes and the number of retries, including:

[0033] Comparing the moisture content of the clothes with a preset first moisture content threshold;

[0034] If the moisture content of the clothes is greater than or equal to the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset first speed threshold interval, and the number of retries is less than the preset first retry threshold, the preset first drying parameter is used as the target drying parameter of the clothes to be dried;

[0035] If the moisture content of the clothes is greater than or equal to the first moisture content threshold, and at the same time, the target maximum spin speed is within a preset first speed threshold interval, and the number of retries is less than a preset second retry threshold, a preset second drying parameter is used as the target drying parameter of the clothes to be dried, wherein the second retry threshold is greater than the first retry threshold, and the value in the first speed threshold interval is greater than the value in the second speed threshold interval;

[0036] If the moisture content of the clothes is greater than or equal to the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset first speed threshold interval, and the number of retries is greater than or equal to the second retry threshold, a preset third drying parameter is used as the target drying parameter of the clothes to be dried;

[0037] If the moisture content of the clothes is less than the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset second speed threshold interval, the initial maximum spin speed is within the preset first value interval, and the number of retries is less than the preset second retry threshold, the preset second drying parameter is used as the target drying parameter of the clothes to be dried;

[0038] If the moisture content of the clothes is less than the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset second speed threshold interval, the initial maximum spin speed is greater than the first numerical interval, and the number of retries is less than the preset second retry threshold, the third drying parameter is used as the target drying parameter of the clothes to be dried;

[0039] If the moisture content of the clothes is less than the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset second speed threshold interval, the initial maximum spin speed is greater than the first numerical interval, and the number of retries is greater than the second retry threshold, a preset third drying parameter is used as the target drying parameter of the clothes to be dried;

[0040] The drying capacities corresponding to the first drying parameter, the second drying parameter and the third drying parameter are enhanced in sequence.

[0041] Correspondingly, another aspect of the embodiment of the present application further provides a clothing dehydration control device, which is applied to a dehydration device, and the clothing dehydration control device comprises:

[0042] An information determination module, for determining initial state information of the clothes to be dehydrated in the dehydration device in response to the start of the dehydration program;

[0043] A condition judgment module, used for judging whether the clothes to be dehydrated meet the dehydration condition according to the initial state information;

[0044] An information acquisition module, used for acquiring the currently set initial maximum dehydration speed, the actual weight of the clothes to be dehydrated, and the current state information of the clothes to be dehydrated when the clothes to be dehydrated meet the dehydration conditions;

[0045] A speed determination module, configured to determine a target maximum spin speed for the clothes to be spin-dried according to the initial maximum spin speed, the actual weight and the current state information;

[0046] The dehydration control module is used to control the dehydration program to dehydrate the clothes to be dehydrated at the target dehydration maximum speed.

[0047] Correspondingly, another aspect of the embodiment of the present application further provides a computer storage medium, wherein the computer storage medium stores a plurality of instructions, and the instructions are suitable for loading by a processor to execute the clothing dehydration control method as described above.

[0048] Correspondingly, another aspect of the embodiment of the present application further provides an electronic device, including a processor and a memory, wherein the memory stores a plurality of instructions, and the processor loads the instructions to execute the clothing dehydration control method as described above.

[0049] The embodiment of the present application provides a method, device, medium and equipment for controlling dehydration of clothes. The method determines the initial state information of the clothes to be dehydrated in the dehydration device in response to the start of the dehydration program; judges whether the clothes to be dehydrated meet the dehydration conditions according to the initial state information; obtains the currently set initial maximum dehydration speed, the actual weight of the clothes to be dehydrated and the current state information of the clothes to be dehydrated when the clothes to be dehydrated meet the dehydration conditions; determines the target maximum dehydration speed of the clothes to be dehydrated according to the initial maximum dehydration speed, the actual weight and the current state information; and controls the dehydration program to dehydrate the clothes to be dehydrated at the target maximum dehydration speed. By using the method for controlling dehydration of clothes provided by the embodiment of the present application, the target maximum dehydration speed required by the dehydration device during the dehydration process is determined by combining the initial maximum dehydration speed, the actual weight and the current state information of the clothes to be dehydrated, so as to improve the dehydration efficiency of the dehydration device while reducing energy consumption and the possibility of damage to clothes. BRIEF DESCRIPTION OF THE DRAWINGS

[0050] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present application, and those skilled in the art can obtain other drawings based on these drawings without creative work.

[0051] Figure 1 A schematic flow chart of a method for controlling the dehydration of clothes provided in an embodiment of the present application.

[0052] Figure 2 Another schematic flow chart of the clothing dehydration control method provided in an embodiment of the present application.

[0053] Figure 3 Another schematic flow chart of the clothing dehydration control method provided in an embodiment of the present application.

[0054] Figure 4 This is a schematic diagram of the structure of a clothing dehydration control device provided in an embodiment of the present application.

[0055] Figure 5 Another structural schematic diagram of the clothing dehydration control device provided in an embodiment of the present application.

[0056] Figure 6 A schematic diagram of the structure of an electronic device provided in an embodiment of the present application. DETAILED DESCRIPTION

[0057] The technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work are within the scope of protection of the present application.

[0058] The embodiment of the present application provides a clothing dehydration control method, which determines the target maximum dehydration speed required by the dehydration device during the dehydration process by combining the initial maximum dehydration speed, actual weight and current state information of the clothing to be dehydrated, thereby improving the dehydration efficiency of the dehydration device while reducing energy consumption and the possibility of clothing damage.

[0059] The term "and / or" in this application can be a description of the association relationship of associated objects, indicating that there can be three relationships. For example, A and / or B can represent: A exists alone, A and B exist at the same time, and B exists alone. In addition, the character " / " in this application generally indicates that the associated objects before and after are in an "or" relationship.

[0060] The terms "first", "second", etc. in the specification and claims of this application and the above-mentioned drawings are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence. It should be understood that the data used in this way can be interchangeable where appropriate, so that the embodiments described here can be implemented in an order other than that illustrated or described here. In addition, the terms "including" and "having" and any of their variations are intended to cover non-exclusive inclusions. For example, a process, method, system, product or electronic device that includes a series of steps or modules is not necessarily limited to the steps or modules clearly listed, but may include other steps or modules that are not clearly listed or inherent to these processes, methods, products or electronic devices. The naming or numbering of steps in this application does not mean that the steps in the method flow must be executed in the time / logical sequence indicated by the naming or numbering. The process steps that have been named or numbered can change the execution order according to the technical purpose to be achieved, as long as the same or similar technical effects can be achieved. The division of modules in this application is a logical division. There may be other division methods when it is implemented in actual applications. For example, multiple modules can be combined or integrated into another system, or some features can be ignored or not executed. In addition, the mutual coupling or direct coupling or communication connection shown or discussed can be through some interfaces, and the indirect coupling or communication connection between modules can be electrical or other similar forms, which are not limited in this application. In addition, the modules or submodules described as separate components may or may not be physically separated, may or may not be physical modules, or may be distributed in multiple circuit modules, and some or all of the modules may be selected according to actual needs to achieve the purpose of the present application.

[0061] The clothing dehydration control method involved in the embodiment of the present application is mainly applied to electronic devices, which may be a washer-dryer, a washer-dryer set (washing machine + dryer), a double-drum washing machine (washing machine + washer-dryer), a washer-dryer integrated machine (washing machine + dryer), a smart phone, a tablet computer, a laptop computer, a desktop computer, and a server, etc., which are not limited here. Optionally, the server may be an independent physical server, or a server cluster or distributed system composed of multiple physical servers, or an IoT cloud (Internet of Things cloud) that provides the ability to store, process and manage data generated by IoT electronic devices, or a cloud server that provides cloud services, cloud databases, cloud computing, cloud functions, cloud storage, network services, cloud communications, middleware services, domain name services, security services, content delivery networks (Content Delivery Network, CDN), and basic cloud computing services such as big data and artificial intelligence platforms, which are not limited here.

[0062] For ease of understanding, the specific process in the embodiments of the present application is described below. Figure 1 , Figure 1 A schematic flow chart of an embodiment of a method for controlling the dehydration of clothes provided in an embodiment of the present application.

[0063] exist Figure 1 In the illustrated embodiment, the method specifically comprises the following steps:

[0064] S101, in response to the start of a dehydration program, determining initial state information of the clothes to be dehydrated in the dehydration device, wherein the initial state information is information that affects the working performance of the dehydration device.

[0065] It should be explained that dehydration equipment includes but is not limited to washing machines, dryers, integrated washing and drying machines, washing and drying sets (washing machine + clothes dryer), double-drum washing machines (washing machine + integrated washing and drying machine), integrated washing and drying machines (washing machine + clothes dryer), etc. The dehydration program is used to control the dehydration equipment to perform conventional dehydration operations on the clothes to be dehydrated, so as to remove the moisture carried by the clothes after washing, so as to improve the drying efficiency when users hang clothes to dry.

[0066] In this embodiment, the user starts the dehydration program through the control panel of the dehydration device, and the dehydration device determines the initial state information of the clothes to be dehydrated in the dehydration device in response to the start of the dehydration program. The initial state information includes information that affects the working performance of the dehydration device, such as the material, humidity, and distribution uniformity of the clothes.

[0067] S102: judging whether the clothes to be dehydrated meet dehydration conditions according to the initial state information.

[0068] It should be explained that the dehydration device determines whether the clothes to be dehydrated meet the dehydration conditions based on the initial state information of the clothes to be dehydrated in the dehydration device. For example, when the clothes are unevenly distributed in the dehydration device, it can be considered that the dehydration conditions are not met at present. If the clothes are dehydrated forcibly, the clothes may not be effectively dehydrated, and even cause the dehydration device to "hit the barrel" during the dehydration process, thereby causing damage to the equipment. In order to solve the above problem, a prompt message can be sent to remind the user to adjust the distribution of clothes, or the distribution of clothes can be actively adjusted to try to solve the problem.

[0069] S103, when the clothes to be dehydrated meet the dehydration condition, obtaining the currently set initial dehydration maximum speed, the actual weight of the clothes to be dehydrated and the current state information of the clothes to be dehydrated.

[0070] In this embodiment, when the clothes to be dehydrated meet the dehydration conditions, the dehydration device obtains the currently set initial dehydration maximum speed, the actual weight of the clothes to be dehydrated, and the current state information of the clothes to be dehydrated (such as humidity, distribution, etc.). It should be noted that the initial dehydration maximum speed can also be represented by the speed gear Tar.

[0071] S104: Determine a target maximum spin speed for the clothes to be spin-dried according to the initial maximum spin speed, the actual weight and the current state information.

[0072] In this embodiment, the dehydration device determines the target maximum dehydration speed of the clothes to be dehydrated by a preset algorithm or table lookup method according to the initial maximum dehydration speed, the actual weight and the current state information. For example, for clothes with a large actual weight or high humidity, the target maximum dehydration speed may be appropriately reduced to avoid overloading the device or damaging the clothes. This will be described in detail below.

[0073] It should be explained that the current status information refers to the status information obtained after the dehydration condition judgment is completed and the dehydration condition is met.

[0074] S105, controlling the dehydration program to dehydrate the clothes to be dehydrated at the target maximum dehydration speed.

[0075] In this embodiment, by combining the initial maximum dehydration speed, actual weight and current state information of the clothes to be dehydrated, the target maximum dehydration speed required by the dehydration device during the dehydration process is determined. Based on the target maximum dehydration speed, the dehydration device controls the dehydration program to dehydrate the clothes to be dehydrated at the target maximum dehydration speed, thereby improving the dehydration efficiency of the dehydration device while reducing energy consumption and the possibility of damage to the clothes. During the dehydration process, the dehydration device can monitor the state of the clothes to be dehydrated and the operation of the dehydration device in real time, and make dynamic adjustments when necessary.

[0076] In some embodiments, the initial state information includes an initial eccentricity value of the clothes to be dehydrated in the dehydration device; and judging whether the clothes to be dehydrated meet the dehydration condition according to the initial state information includes:

[0077] Comparing the initial eccentricity value with a preset first eccentricity threshold;

[0078] If the initial eccentricity value is less than or equal to the first eccentricity threshold, it is determined that the laundry to be dehydrated meets the dehydration condition.

[0079] It should be explained that the eccentricity value refers to the degree of uneven distribution of clothes in the drum of the washing machine during the dehydration process. It is understandable that the initial eccentricity value refers to the eccentricity value measured when the eccentricity value of the clothes to be dehydrated is first detected in the drum. Specifically, the eccentricity value is used to measure the uniformity of the distribution of clothes in the drum. The higher the value, the more uneven the distribution of clothes. When the eccentricity value is high, the uneven distribution of clothes will cause the vibration of the washing machine to increase, the noise to increase, and in severe cases, the machine may be damaged or the dehydration effect may be affected. When a low eccentricity value occurs, the clothes are evenly distributed, the washing machine runs smoothly, and the dehydration effect is better. In summary, the eccentricity value is an indicator to measure the uniformity of the distribution of clothes when the washing machine is dehydrated, and has a direct impact on the operating stability and dehydration effect of the washing machine. Therefore, before officially starting the dehydration program to dehydrate the clothes to be dehydrated, it is necessary to ensure that the clothes to be dehydrated meet the dehydration conditions. Specifically, by comparing the initial eccentricity value with the preset first eccentricity threshold, if the initial eccentricity value is less than or equal to the first eccentricity threshold, it is determined that the clothes to be dehydrated meet the dehydration conditions.

[0080] In some embodiments, Figure 2 As shown, after comparing the initial eccentricity value with a preset first threshold, the method further includes:

[0081] If the initial eccentricity value exceeds the first eccentricity threshold, controlling the dehydration device to shake out the clothes to be dehydrated;

[0082] After shaking out, the eccentricity value of the clothes to be dehydrated is reacquired and compared with the first eccentricity threshold value until the eccentricity value is less than or equal to the first eccentricity threshold value within a maximum preset number of retries, and it is determined that the clothes to be dehydrated meet the dehydration conditions.

[0083] In order to avoid the high eccentricity value affecting the operation of the dehydration device, the user should reasonably distribute the clothes before washing to avoid overweight on one side, but this may increase the workload of the user, and it is difficult to ensure that the manual adjustment method can obtain a reasonable eccentricity value. Therefore, in this embodiment, when it is detected that the initial eccentricity value exceeds the first eccentricity threshold OOB_Wt (for example, 200), the dehydration device is automatically controlled to shake the clothes to be dehydrated, and try to disperse the clothes to avoid overweight on one side. After the shaking is completed, the eccentricity value of the clothes to be dehydrated is obtained again and compared with the first eccentricity threshold until the eccentricity value is less than or equal to the first eccentricity threshold within the maximum preset retry number Ad3, and it is determined that the clothes to be dehydrated meet the dehydration conditions. When the eccentricity value cannot be reduced after exceeding the maximum preset retry number Ad3, it is necessary to issue an alarm in time to prompt the user to manually adjust the clothes.

[0084] In some embodiments, Figure 2As shown, before obtaining the currently set initial maximum spin speed, the actual weight of the clothes to be spinned, and the current state information of the clothes to be spinned, the method further includes:

[0085] In the process of controlling the dehydration device to drive the clothes to be dehydrated to rotate, obtaining the power of the drum motor of the dehydration device;

[0086] According to the drum motor power, a weight value having a preset corresponding relationship therewith is determined, and the weight value is used as the actual weight of the clothes to be dehydrated.

[0087] In this embodiment, the detection method of the actual weight Wt of the clothes to be dehydrated can be obtained based on the estimated power of the drum motor. Specifically, the power of the drum motor of the dehydration device can be obtained during the process of controlling the dehydration device to drive the clothes to be dehydrated to rotate. According to the power of the drum motor, a weight value having a preset corresponding relationship thereto is determined, and the weight value is used as the actual weight Wt of the clothes to be dehydrated.

[0088] In some embodiments, Figure 2 As shown, the current state information includes the current eccentricity value of the clothes to be dehydrated in the dehydration device; the target maximum dehydration speed of the clothes to be dehydrated is determined according to the initial maximum dehydration speed, the actual weight and the current state information, including:

[0089] comparing the actual weight with a preset first weight threshold;

[0090] If the actual weight is less than the first weight threshold, comparing the current eccentricity value with a preset second eccentricity threshold;

[0091] If the initial maximum spin speed is within the preset first value interval and the current eccentricity value is less than the first eccentricity threshold, the maximum spin speed is not adjusted and the initial maximum spin speed is used as the target maximum spin speed;

[0092] If the current eccentricity value is greater than or equal to the first eccentricity threshold, the dehydration device is controlled to shake the clothes to be dehydrated, and after the shaking is completed, the current eccentricity value of the clothes to be dehydrated is re-acquired and compared with the first eccentricity threshold, until the current eccentricity value is less than the first eccentricity threshold within a first preset retry number, the initial dehydration maximum speed is used as the target dehydration maximum speed, and the current retry number is recorded;

[0093] If the initial maximum dehydration speed is in a preset second numerical range and the current eccentricity value is less than the second eccentricity threshold, the initial maximum dehydration speed is reduced, and the reduced initial maximum dehydration speed is used as the target maximum dehydration speed, and the current number of retries is recorded, wherein the second speed threshold is greater than the first speed threshold.

[0094] In this embodiment, when it is detected that the actual weight Wt is less than the first weight threshold Wt1, and at the same time the initial dehydration maximum speed Tar is in the preset first numerical range (when Tar is represented as a speed gear, the first numerical range can be selected to be less than or equal to 1), and the current eccentricity value is less than the first eccentricity threshold OOB1, it means that the initial dehydration maximum speed set at this time is more reasonable and does not need to be adjusted, then the initial dehydration maximum speed is used as the target dehydration maximum speed.

[0095] When it is detected that the current eccentricity value is greater than or equal to the first eccentricity threshold OOB1, the dehydration device is controlled to shake the clothes to be dehydrated to try to actively reduce the eccentricity value. After the shaking is completed, the current eccentricity value of the clothes to be dehydrated is re-obtained and compared with the first eccentricity threshold OOB1, until the current eccentricity value within the first preset retry number Ad1 is less than the first eccentricity threshold OOB1, the initial dehydration maximum speed is used as the target dehydration maximum speed, and the current retry number Ad is recorded.

[0096] When it is detected that the initial maximum dehydration speed is in the preset second numerical range (when Tar is represented as the speed gear, the second numerical range can be selected to be greater than 1 and less than or equal to 2), and the current eccentricity value is less than the second eccentricity threshold OOB2, it means that the initial maximum dehydration speed set at this time is relatively high. If it is forced to proceed according to the currently set speed, it may cause the "barrel collision" phenomenon in the dehydration equipment. Therefore, it is necessary to actively reduce the initial maximum dehydration speed Tar, and use the reduced initial maximum dehydration speed as the target maximum dehydration speed, and record the current number of retries Ad at the same time, where the second numerical range is greater than the first numerical range.

[0097] It should be noted that this solution is not limited to the judgment logic corresponding to the first eccentricity threshold and the second eccentricity threshold, and can be expanded to more levels of eccentricity thresholds according to actual conditions and the complexity of the equipment. However, the processing logic is essentially similar, so it will not be elaborated on.

[0098] In some embodiments, the dehydration process can also be subdivided into pre-dehydration and main dehydration according to the actual situation of the dehydration equipment, and the operation timing of the pre-dehydration is prior to the operation timing of the main dehydration. Since the actual working principles of the pre-dehydration and the main dehydration are similar, they are not described here to save space. The main difference is that the eccentricity threshold corresponding to the pre-dehydration is different from the eccentricity threshold corresponding to the main dehydration, and the main dehydration operation needs to be performed after the pre-dehydration operation is completed.

[0099] In some embodiments, Figure 3 As shown, after controlling the dehydration program to dehydrate the clothes to be dehydrated at the target dehydration maximum speed, the method further includes:

[0100] In response to the start of the drying program, determining the initial maximum spin speed, the target maximum spin speed, the moisture content of the clothes, and the number of retries collected after the clothes to be dried complete the spin stage;

[0101] Determining target drying parameters of the clothes to be dried according to the initial maximum spin speed, the target maximum spin speed, the moisture content of the clothes, and the number of retries;

[0102] The drying program is controlled to dry the clothes to be dried according to the target drying parameters.

[0103] After the dehydration program is finished, if the user needs to further dehydrate the clothes, a drying device can be introduced to dry the dehydrated clothes through the drying device, so as to achieve a quick dehydration effect. In this embodiment, various parameters collected by the dehydration device during the dehydration program, such as the initial dehydration maximum speed, the target dehydration maximum speed, the moisture content of the clothes, and the number of retries, can be used as a guide for the drying program to select appropriate target drying parameters, thereby achieving intelligent control, and the user does not need to pay attention to the type and quantity of the clothes to be dehydrated, and can achieve a good drying effect.

[0104] It should be noted that the dehydration equipment can be a washing and drying machine, a washing and drying set (washing machine + dryer), a double-drum washing machine (washing machine + washing and drying machine), a washing and drying integrated machine (washing machine + dryer), etc., which are capable of running both the dehydration program and the drying program. The equipment capable of running the dehydration program can exist independently of the equipment capable of running the drying program, but data interaction is required between the two equipments. Taking a washing machine with a dehydration function as an example, the washing machine is used as a lower machine of the drying equipment that runs the drying program, and the drying equipment is used as the upper machine of the washing machine. After the clothes to be dried are dehydrated in the washing machine, they are taken out and placed in the drying equipment for drying. At the same time, the washing machine as the lower machine transmits the initial dehydration maximum speed, target dehydration maximum speed, clothes moisture content and number of retries collected when the dehydration stage is completed to the drying equipment as the upper machine, so that the drying equipment determines the target drying parameters of the clothes to be dried based on the initial dehydration maximum speed, target dehydration maximum speed, clothes moisture content and number of retries.

[0105] In other embodiments, the device running the dehydration program can also be integrated in the drying device running the drying program as a functional module of the drying device. Taking a washer-dryer that can run both the dehydration program and the drying program as an example, the clothes to be dried enter the next drying stage after dehydration is completed in the washer-dryer. At the same time, the initial maximum dehydration speed, target maximum dehydration speed, moisture content of the clothes and number of retries collected when the washing stage of the clothes to be dried is completed are transmitted to the drying device as the host computer, so that the drying device determines the target drying parameters of the clothes to be dried based on the initial maximum dehydration speed, target maximum dehydration speed, moisture content of the clothes and number of retries.

[0106] In some embodiments, Figure 3 As shown, the target drying parameters of the clothes to be dried are determined according to the initial maximum spin speed, the target maximum spin speed, the moisture content of the clothes and the number of retries, including:

[0107] Comparing the moisture content of the clothes with a preset first moisture content threshold;

[0108] If the moisture content of the clothes is greater than or equal to the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset first speed threshold interval, and the number of retries is less than the preset first retry threshold, the preset first drying parameter is used as the target drying parameter of the clothes to be dried;

[0109] If the moisture content of the clothes is greater than or equal to the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset first speed threshold interval, and the number of retries is less than a preset second retry threshold, a preset second drying parameter is used as the target drying parameter of the clothes to be dried, wherein the second retry threshold is greater than the first retry threshold;

[0110] If the moisture content of the clothes is greater than or equal to the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset first speed threshold interval, and the number of retries is greater than or equal to the second retry threshold, a preset third drying parameter is used as the target drying parameter of the clothes to be dried;

[0111] If the moisture content of the clothes is less than the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset second speed threshold interval, the initial maximum spin speed is within the preset first value interval, and the number of retries is less than the preset second retry threshold, the preset second drying parameter is used as the target drying parameter of the clothes to be dried;

[0112] If the moisture content of the clothes is less than the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset second speed threshold interval, the initial maximum spin speed is greater than the first numerical interval, and the number of retries is less than the preset second retry threshold, the third drying parameter is used as the target drying parameter of the clothes to be dried;

[0113] If the moisture content of the clothes is less than the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset second speed threshold interval, the initial maximum spin speed is greater than the first numerical interval, and the number of retries is greater than the second retry threshold, a preset third drying parameter is used as the target drying parameter of the clothes to be dried;

[0114] The drying capacities corresponding to the first drying parameter, the second drying parameter and the third drying parameter are enhanced in sequence.

[0115] In this embodiment, the moisture content of the clothes is compared with the preset first moisture content threshold value Wt_D1, and different operations are performed according to the comparison result. It should be noted that the moisture content of the clothes can be calculated by the formula (Wt-Wt_D) / Wt_D. Among them, Wt represents the actual weight of the clothes, that is, the weight of the clothes containing moisture, and Wt_D represents the weight of the clothes when they are put into the drum, that is, the weight of the clothes without moisture.

[0116] When it is detected that the moisture content of the clothes is greater than or equal to the first moisture content threshold Wt_D1, and at the same time, the target maximum spin speed is within the preset first speed threshold interval (for example, 1200-1400 rpm / min), and the number of retries Ad is less than the preset first retry threshold Ad1, the preset first drying parameter is used as the target drying parameter of the clothes to be dried. In some embodiments, the first drying parameter can be expressed as a speed of 4000 rpm / min, a maximum drying temperature Tmax of 55°C, and a minimum drying temperature Tmin of 50°C. At the same time, the shaking intensity takes the lowest gear.

[0117] When it is detected that the moisture content of the clothes is greater than or equal to the first moisture content threshold Wt_D1, and at the same time, the target maximum spin speed is within the preset first speed threshold interval (for example, 1200-1400rpm / min), and the number of retries is less than the preset second retry threshold Ad2, the preset second drying parameter is used as the target drying parameter for the clothes to be dried, wherein the second retry threshold is greater than the first retry threshold. In some embodiments, the first drying parameter can be expressed as a speed of 4250rpm / min, a maximum drying temperature Tmax of 60°C, and a minimum drying temperature Tmin of 55°C. At the same time, the shaking intensity is in the middle gear.

[0118] When it is detected that the moisture content of the clothes is greater than or equal to the first moisture content threshold Wt_D1, and at the same time, the target maximum spin speed is within the preset first speed threshold interval (for example, 1200-1400 rpm / min), and the number of retries is greater than or equal to the second retry threshold Ad2, the preset third drying parameter is used as the target drying parameter of the clothes to be dried. In some embodiments, the first drying parameter can be expressed as a speed of 4500 rpm / min, a maximum drying temperature Tmax of 65°C, and a minimum drying temperature Tmin of 60°C. At the same time, the shaking intensity takes the highest level.

[0119] When it is detected that the moisture content of the clothes is less than the first moisture content threshold value Wt_D1, and at the same time, the target maximum spin speed is within the preset second speed threshold range (for example, 1000-1200 rpm / min), the initial maximum spin speed Tar is within the preset first numerical range (when Tar is represented by a speed gear, the first numerical range can be selected to be less than or equal to 1), and the number of retries Ad is less than the preset second retry threshold value Ad2, the preset second drying parameter is used as the target drying parameter for the clothes to be dried;

[0120] When it is detected that the moisture content of the clothes is less than the first moisture content threshold Wt_D1, and at the same time, the target maximum spin speed is within the preset second speed threshold interval (for example, 1000-1200 rpm / min), the initial maximum spin speed Tar is greater than the first value interval, and the number of retries Ad is less than the preset second retry threshold Ad2, the third drying parameter is used as the target drying parameter for the clothes to be dried;

[0121] When it is detected that the moisture content of the clothes is less than the first moisture content threshold Wt_D1, and at the same time the target maximum dehydration speed is in the preset second speed threshold range (for example, 1000-1200rpm / min), the initial maximum dehydration speed Tar is greater than the first numerical range, and the number of retries Ad is greater than the second retry threshold Ad2, the preset third drying parameter is used as the target drying parameter for the clothes to be dried.

[0122] All the above optional technical solutions can be arbitrarily combined to form optional embodiments of the present application, which will not be described one by one here.

[0123] In specific implementation, the present application is not limited by the execution order of the various steps described. If no conflict occurs, some steps can be performed in other orders or simultaneously.

[0124] As can be seen from the above, the clothing dehydration control method provided in the embodiment of the present application determines the initial state information of the clothing to be dehydrated in the dehydration device in response to the start of the dehydration program; judges whether the clothing to be dehydrated meets the dehydration condition based on the initial state information; obtains the currently set initial dehydration maximum speed, the actual weight of the clothing to be dehydrated, and the current state information of the clothing to be dehydrated when the clothing to be dehydrated meets the dehydration condition; determines the target dehydration maximum speed of the clothing to be dehydrated based on the initial dehydration maximum speed, the actual weight, and the current state information; and controls the dehydration program to dehydrate the clothing to be dehydrated at the target dehydration maximum speed. Using the clothing dehydration control method provided in the embodiment of the present application, by combining the initial dehydration maximum speed, the actual weight, and the current state information of the clothing to be dehydrated, the target dehydration maximum speed required by the dehydration device during the dehydration process is determined, thereby improving the dehydration efficiency of the dehydration device while reducing energy consumption and the possibility of clothing damage.

[0125] An embodiment of the present application also provides a clothing dehydration control device, which can be integrated into an electronic device.

[0126] See also Figure 4 , Figure 4 This is a schematic diagram of the structure of the clothing dehydration control device provided in an embodiment of the present application. The clothing dehydration control device 30 may include:

[0127] An information determination module 31 is used to determine the initial state information of the clothes to be dehydrated in the dehydration device in response to the start of the dehydration program, wherein the initial state information is information that affects the working performance of the dehydration device;

[0128] A condition judgment module 32 is used to judge whether the clothes to be dehydrated meet the dehydration condition according to the initial state information;

[0129] An information acquisition module 33 is used to acquire the currently set initial maximum dehydration speed, the actual weight of the clothes to be dehydrated, and the current state information of the clothes to be dehydrated when the clothes to be dehydrated meet the dehydration conditions;

[0130] A speed determination module 34, configured to determine a target maximum speed for dehydrating the clothes to be dehydrated according to the initial maximum speed for dehydrating, the actual weight and the current state information;

[0131] The dehydration control module 35 is used to control the dehydration program to dehydrate the clothes to be dehydrated at the target maximum dehydration speed.

[0132] In some embodiments, the condition judgment module 32 is used to compare the initial eccentricity value with a preset first eccentricity threshold; if the initial eccentricity value is less than or equal to the first eccentricity threshold, it is determined that the clothes to be dehydrated meet the dehydration condition.

[0133] In some embodiments, the device also includes a retry module, which is used to control the dehydration equipment to shake the clothes to be dehydrated if the initial eccentricity value exceeds the first eccentricity threshold; after the shaking is completed, the eccentricity value of the clothes to be dehydrated is re-acquired and compared with the first eccentricity threshold until the eccentricity value is less than or equal to the first eccentricity threshold within a maximum preset number of retries, and it is determined that the clothes to be dehydrated meet the dehydration conditions.

[0134] In some embodiments, the device also includes a weight determination module, which is used to obtain the drum motor power of the dehydration device while controlling the dehydration device to drive the clothes to be dehydrated to rotate; based on the drum motor power, a weight value that has a preset corresponding relationship thereto is determined, and the weight value is used as the actual weight of the clothes to be dehydrated.

[0135] In some embodiments, the speed determination module 34 is used to compare the actual weight with a preset first weight threshold; if the actual weight is less than the first weight threshold, the current eccentricity value is compared with a preset second eccentricity threshold; if the initial dehydration maximum speed is in a preset first value interval and the current eccentricity value is less than the first eccentricity threshold, the dehydration maximum speed is not adjusted, and the initial dehydration maximum speed is used as the target dehydration maximum speed; if the current eccentricity value is greater than or equal to the first eccentricity threshold, the dehydration device is controlled to shake the clothes to be dehydrated, and after the shaking is completed After the clothes are dried, the current eccentricity value of the clothes to be dried is reacquired and compared with the first eccentricity threshold value, until the current eccentricity value is less than the first eccentricity threshold value within a first preset retry number, the initial spin maximum speed is used as the target spin maximum speed, and the current retry number is recorded; if the initial spin maximum speed is in a preset second numerical range and the current eccentricity value is less than the second eccentricity threshold value, the initial spin maximum speed is reduced, the reduced initial spin maximum speed is used as the target spin maximum speed, and the current retry number is recorded, wherein the second speed threshold value is greater than the first speed threshold value.

[0136] In some embodiments, the device also includes a drying control module, which is used to determine the initial maximum dehydration speed, target maximum dehydration speed, moisture content of clothes and number of retries collected after the clothes to be dried complete the dehydration stage in response to the start of the drying program; determine the target drying parameters of the clothes to be dried according to the initial maximum dehydration speed, target maximum dehydration speed, moisture content of clothes and number of retries; and control the drying program to dry the clothes to be dried with the target drying parameters.

[0137] In some embodiments, the drying control module is used to compare the moisture content of the clothes with a preset first moisture content threshold; if the moisture content of the clothes is greater than or equal to the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset first speed threshold interval, and the number of retries is less than the preset first retry threshold, then the preset first drying parameter is used as the target drying parameter of the clothes to be dried; if the moisture content of the clothes is greater than or equal to the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset first speed threshold interval, and the number of retries is less than the preset second retry threshold, then the preset second drying parameter is used as the target drying parameter of the clothes to be dried, wherein the second retry threshold is greater than the first retry threshold; if the moisture content of the clothes is greater than or equal to the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset first speed threshold interval, and the number of retries is greater than or equal to the second retry threshold, then the preset third drying parameter is used as the target drying parameter of the clothes to be dried; if the moisture content of the clothes is less than the If the target maximum spin speed is within the preset second speed threshold interval, the initial maximum spin speed is within the preset first numerical interval, and the number of retries is less than the preset second retry threshold, the preset second drying parameter is used as the target drying parameter of the clothes to be dried; if the moisture content of the clothes is less than the first moisture content threshold, and the target maximum spin speed is within the preset second speed threshold interval, the initial maximum spin speed is greater than the first numerical interval, and the number of retries is less than the preset second retry threshold, the third drying parameter is used as the target drying parameter of the clothes to be dried; if the moisture content of the clothes is less than the first moisture content threshold, and the target maximum spin speed is within the preset second speed threshold interval, the initial maximum spin speed is greater than the first numerical interval, and the number of retries is greater than the second retry threshold, the preset third drying parameter is used as the target drying parameter of the clothes to be dried; wherein the drying capacities corresponding to the first drying parameter, the second drying parameter, and the third drying parameter are enhanced in sequence.

[0138] In specific implementation, the above modules can be implemented as independent entities, or can be arbitrarily combined to be implemented as the same entity or several entities.

[0139] As can be seen from the above, the clothing dehydration control device 30 provided in the embodiment of the present application, wherein the information determination module 31 is used to determine the initial state information of the clothing to be dehydrated in the dehydration device in response to the start of the dehydration program; the condition judgment module 32 is used to judge whether the clothing to be dehydrated meets the dehydration condition based on the initial state information; the information acquisition module 33 is used to obtain the currently set initial dehydration maximum speed, the actual weight of the clothing to be dehydrated and the current state information of the clothing to be dehydrated when the clothing to be dehydrated meets the dehydration condition; the speed determination module 34 is used to determine the target maximum speed of dehydration of the clothing to be dehydrated based on the initial maximum speed of dehydration, the actual weight and the current state information; the dehydration control module 35 is used to control the dehydration program to dehydrate the clothing to be dehydrated at the target maximum speed of dehydration. The clothing dehydration control device 30 provided in the embodiment of the present application determines the target maximum dehydration speed required by the dehydration device during the dehydration process by combining the initial maximum dehydration speed, actual weight and current state information of the clothing to be dehydrated, thereby improving the dehydration efficiency of the dehydration device while reducing energy consumption and the possibility of clothing damage.

[0140] An embodiment of the present application also provides a clothing dehydration control device, which can be integrated into an electronic device.

[0141] In specific implementation, the above modules can be implemented as independent entities, or can be arbitrarily combined to be implemented as the same entity or several entities.

[0142] See also Figure 5 , Figure 5 Another structural schematic diagram of a clothing dehydration control device provided in an embodiment of the present application, the clothing dehydration control device 30 includes a memory 120, one or more processors 180, and one or more applications, wherein the one or more applications are stored in the memory 120 and configured to be executed by the processor 180; the processor 180 may include an information determination module 31, a condition judgment module 32, an information acquisition module 33, a rotation speed determination module 34, and a dehydration control module 35. For example, the structure and connection relationship of the above components may be as follows:

[0143] The memory 120 can be used to store applications and data. The applications stored in the memory 120 include executable codes. The applications can be composed of various functional modules. The processor 180 executes various functional applications and data processing by running the applications stored in the memory 120. In addition, the memory 120 may include a high-speed random access memory and may also include a non-volatile memory, such as at least one disk storage device, a flash memory device, or other volatile solid-state storage devices. Accordingly, the memory 120 may also include a memory controller to provide the processor 180 with access to the memory 120.

[0144] The processor 180 is the control center of the device, and uses various interfaces and lines to connect various parts of the entire terminal, and executes various functions of the device and processes data by running or executing applications stored in the memory 120, and calling data stored in the memory 120, so as to monitor the device as a whole. Optionally, the processor 180 may include one or more processing cores; preferably, the processor 180 may integrate an application processor and a modem processor, wherein the application processor mainly processes the operating system, user interface, and application programs.

[0145] Specifically in this embodiment, the processor 180 will load the executable code corresponding to the process of one or more applications into the memory 120 according to the following instructions, and the processor 180 will run the application stored in the memory 120 to implement various functions:

[0146] an information determination instruction, for determining, in response to the start of a dehydration program, initial state information of the clothes to be dehydrated in the dehydration device, wherein the initial state information is information that affects the working performance of the dehydration device;

[0147] A condition judgment instruction, used to judge whether the clothes to be dehydrated meet the dehydration condition according to the initial state information;

[0148] An information acquisition instruction, used for acquiring the currently set initial maximum dehydration speed, the actual weight of the clothes to be dehydrated, and the current state information of the clothes to be dehydrated when the clothes to be dehydrated meet the dehydration conditions;

[0149] A speed determination instruction, used to determine a target maximum spin speed of the clothes to be spin-dried according to the initial maximum spin speed, the actual weight and the current state information;

[0150] The dehydration control instruction is used to control the dehydration program to dehydrate the clothes to be dehydrated at the target dehydration maximum speed.

[0151] In some embodiments, the conditional judgment instruction is used to compare the initial eccentricity value with a preset first eccentricity threshold; if the initial eccentricity value is less than or equal to the first eccentricity threshold, it is determined that the clothes to be dehydrated meet the dehydration condition.

[0152] In some embodiments, the program also includes a retry instruction, which is used to control the dehydration equipment to shake the clothes to be dehydrated if the initial eccentricity value exceeds the first eccentricity threshold; after the shaking is completed, the eccentricity value of the clothes to be dehydrated is re-acquired and compared with the first eccentricity threshold until the eccentricity value is less than or equal to the first eccentricity threshold within a maximum preset number of retries, and it is determined that the clothes to be dehydrated meet the dehydration conditions.

[0153] In some embodiments, the program also includes a weight determination instruction, which is used to obtain the drum motor power of the dehydration device while controlling the dehydration device to drive the clothes to be dehydrated to rotate; based on the drum motor power, a weight value that has a preset corresponding relationship thereto is determined, and the weight value is used as the actual weight of the clothes to be dehydrated.

[0154] In some embodiments, the speed determination instruction is used to compare the actual weight with a preset first weight threshold; if the actual weight is less than the first weight threshold, the current eccentricity value is compared with a preset second eccentricity threshold; if the initial dehydration maximum speed is in a preset first numerical range and the current eccentricity value is less than the first eccentricity threshold, the dehydration maximum speed is not adjusted, and the initial dehydration maximum speed is used as the target dehydration maximum speed; if the current eccentricity value is greater than or equal to the first eccentricity threshold, the dehydration device is controlled to shake the clothes to be dehydrated, and after the shaking is completed Then, the current eccentricity value of the clothes to be dehydrated is reacquired and compared with the first eccentricity threshold value, until the current eccentricity value is less than the first eccentricity threshold value within a first preset retry number, the initial dehydration maximum speed is used as the target dehydration maximum speed, and the current retry number is recorded; if it is simultaneously satisfied that the initial dehydration maximum speed is in a preset second numerical range and the current eccentricity value is less than the second eccentricity threshold value, the initial dehydration maximum speed is reduced, the reduced initial dehydration maximum speed is used as the target dehydration maximum speed, and the current retry number is recorded, wherein the second speed threshold value is greater than the first speed threshold value.

[0155] In some embodiments, the program also includes a drying control instruction, which is used to determine, in response to the start of the drying program, an initial maximum dehydration speed, a target maximum dehydration speed, a moisture content of the clothes and a number of retries collected after the clothes to be dried complete the dehydration stage; determine target drying parameters of the clothes to be dried based on the initial maximum dehydration speed, the target maximum dehydration speed, the moisture content of the clothes and the number of retries; and control the drying program to dry the clothes to be dried with the target drying parameters.

[0156] In some embodiments, the drying control instruction is used to compare the moisture content of the clothes with a preset first moisture content threshold; if the moisture content of the clothes is greater than or equal to the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset first speed threshold interval, and the number of retries is less than the preset first retry threshold, then the preset first drying parameter is used as the target drying parameter of the clothes to be dried; if the moisture content of the clothes is greater than or equal to the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset first speed threshold interval, and the number of retries is less than the preset second retry threshold, then the preset second drying parameter is used as the target drying parameter of the clothes to be dried, wherein the second retry threshold is greater than the first retry threshold; if the moisture content of the clothes is greater than or equal to the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset first speed threshold interval, and the number of retries is greater than or equal to the second retry threshold, then the preset third drying parameter is used as the target drying parameter of the clothes to be dried; if the moisture content of the clothes is less than the If the target maximum spin speed is within the preset second speed threshold interval, the initial maximum spin speed is within the preset first numerical interval, and the number of retries is less than the preset second retry threshold, the preset second drying parameter is used as the target drying parameter of the clothes to be dried; if the moisture content of the clothes is less than the first moisture content threshold, and the target maximum spin speed is within the preset second speed threshold interval, the initial maximum spin speed is greater than the first numerical interval, and the number of retries is less than the preset second retry threshold, the third drying parameter is used as the target drying parameter of the clothes to be dried; if the moisture content of the clothes is less than the first moisture content threshold, and the target maximum spin speed is within the preset second speed threshold interval, the initial maximum spin speed is greater than the first numerical interval, and the number of retries is greater than the second retry threshold, the preset third drying parameter is used as the target drying parameter of the clothes to be dried; wherein the drying capacities corresponding to the first drying parameter, the second drying parameter, and the third drying parameter are enhanced in sequence.

[0157] The present application also provides an electronic device. Figure 6 , Figure 6 The electronic device 1200 may be a washer-dryer, a washer-dryer set (washing machine + clothes dryer), a double-drum washing machine (washing machine + washer-dryer), a washer-dryer and a care integrated machine (washing machine + clothes dryer), etc.

[0158] like Figure 6 As shown, the electronic device 1200 may include an RF (Radio Frequency) circuit 110, a memory 120 including one or more (only one is shown in the figure) computer-readable storage media, an input unit 130, a display unit 140, a sensor 150, an audio circuit 160, a transmission module 170, a processor 180 including one or more (only one is shown in the figure) processing cores, and a power supply 190. Those skilled in the art will understand that Figure 6 The structure of the electronic device 1200 shown in the figure does not constitute a limitation on the electronic device 1200, and may include more or fewer components than shown in the figure, or combine certain components, or arrange the components differently.

[0159] The RF circuit 110 is used to receive and send electromagnetic waves, realize the mutual conversion between electromagnetic waves and electrical signals, and thus communicate with a communication network or other electronic devices. The RF circuit 110 may include various existing circuit elements for performing these functions, such as an antenna, a radio frequency transceiver, a digital signal processor, an encryption / decryption chip, a user identity module (SIM) card, a memory, etc. The RF circuit 110 can communicate with various networks such as the Internet, an intranet, a wireless network, or communicate with other electronic devices through a wireless network.

[0160] The memory 120 can be used to store software programs and modules, such as the program instructions / modules corresponding to the clothing dehydration control method in the above embodiment. The processor 180 executes various functional applications and data processing by running the software programs and modules stored in the memory 120. The vibration reminder mode can be automatically selected according to the current scene of the electronic device to control the dehydration of clothing, which can not only ensure that scenes such as meetings are not disturbed, but also ensure that users can sense incoming calls, thereby improving the intelligence of the electronic device. The memory 120 may include a high-speed random access memory, and may also include a non-volatile memory, such as one or more magnetic storage devices, flash memory, or other non-volatile solid-state memory. In some examples, the memory 120 may further include a memory remotely arranged relative to the processor 180, and these remote memories may be connected to the electronic device 1200 via a network. Examples of the above network include, but are not limited to, the Internet, an intranet, a local area network, a mobile communication network, and a combination thereof.

[0161] The input unit 130 can be used to receive input digital or character information, and generate keyboard, mouse, joystick, optical or trackball signal input related to user settings and function control. Specifically, the input unit 130 may include a touch-sensitive surface 131 and other input electronic devices 132. The touch-sensitive surface 131, also known as a touch display screen or touch pad, can collect user touch operations on or near it (such as operations performed by users using fingers, styluses, or any other suitable objects or accessories on or near the touch-sensitive surface 131), and drive corresponding connection devices according to a pre-set program. Optionally, the touch-sensitive surface 131 may include a touch detection device and a touch controller. Among them, the touch detection device detects the user's touch orientation, detects the signal brought by the touch operation, and transmits the signal to the touch controller; the touch controller receives the touch information from the touch detection device, converts it into touch point coordinates, and then sends it to the processor 180, and can receive and execute commands sent by the processor 180. In addition, the touch-sensitive surface 131 may be implemented in various types such as resistive, capacitive, infrared, and surface acoustic wave. In addition to the touch-sensitive surface 131, the input unit 130 may further include other input electronic devices 132. Specifically, the other input electronic devices 132 may include, but are not limited to, one or more of a physical keyboard, a function key (such as a volume control key, a switch key, etc.), a trackball, a mouse, a joystick, and the like.

[0162] The display unit 140 can be used to display information input by the user or information provided to the user and various graphical user interfaces of the electronic device 1200, which can be composed of graphics, text, icons, videos and any combination thereof. The display unit 140 may include a display panel 141. Optionally, the display panel 141 may be configured in the form of LCD (Liquid Crystal Display), OLED (Organic Light-Emitting Diode), etc. Further, the touch-sensitive surface 131 may cover the display panel 141. When the touch-sensitive surface 131 detects a touch operation on or near it, it is transmitted to the processor 180 to determine the type of touch event. Subsequently, the processor 180 provides corresponding visual output on the display panel 141 according to the type of touch event. Although in Figure 6 In the embodiment, the touch-sensitive surface 131 and the display panel 141 are implemented as two independent components to realize the input and output functions. However, in some embodiments, the touch-sensitive surface 131 and the display panel 141 can be integrated to realize the input and output functions.

[0163] The electronic device 1200 may also include at least one sensor 150, such as a light sensor, a motion sensor, and other sensors. Specifically, the light sensor may include an ambient light sensor and a proximity sensor, wherein the ambient light sensor may adjust the brightness of the display panel 141 according to the brightness of the ambient light, and the proximity sensor may turn off the display panel 141 and / or the backlight when the electronic device 1200 is moved to the ear. As a type of motion sensor, the gravity acceleration sensor can detect the magnitude of acceleration in each direction (generally three axes), and can detect the magnitude and direction of gravity when stationary. It can be used for applications that identify the posture of the mobile phone (such as horizontal and vertical screen switching, related games, magnetometer posture calibration), vibration recognition related functions (such as pedometer, tapping), etc.; as for other sensors such as gyroscopes, barometers, hygrometers, thermometers, infrared sensors, etc. that can also be configured in the electronic device 1200, they will not be repeated here.

[0164] The audio circuit 160, the speaker 161, and the microphone 162 can provide an audio interface between the user and the electronic device 1200. The audio circuit 160 can transmit the received audio data to the speaker 161 after converting the received audio data into an electrical signal, which is converted into a sound signal for output by the speaker 161; on the other hand, the microphone 162 converts the collected sound signal into an electrical signal, which is received by the audio circuit 160 and converted into audio data, and then the audio data is processed by the output processor 180, and then sent to another terminal through the RF circuit 110, or the audio data is output to the memory 120 for further processing. The audio circuit 160 may also include an earplug jack to provide communication between an external headset and the electronic device 1200.

[0165] The electronic device 1200 can help users send and receive emails, browse web pages, and access streaming media through the transmission module 170 (such as a Wi-Fi module), which provides users with wireless broadband Internet access. Figure 6 The transmission module 170 is shown, but it is understandable that it is not an essential component of the electronic device 1200 and can be omitted as needed without changing the essence of the invention.

[0166] The processor 180 is the control center of the electronic device 1200. It uses various interfaces and lines to connect various parts of the entire mobile phone. By running or executing software programs and / or modules stored in the memory 120, and calling data stored in the memory 120, it executes various functions of the electronic device 1200 and processes data, thereby monitoring the mobile phone as a whole. Optionally, the processor 180 may include one or more processing cores; in some embodiments, the processor 180 may integrate an application processor and a modem processor, wherein the application processor mainly processes the operating system, user interface, and application programs, etc., and the modem processor mainly processes wireless communications. It is understandable that the above-mentioned modem processor may not be integrated into the processor 180.

[0167] The electronic device 1200 also includes a power supply 190 for supplying power to various components. In some embodiments, the power supply can be logically connected to the processor 180 through a power management system, so that the power management system can realize functions such as managing discharge and power consumption. The power supply 190 can also include any components such as one or more DC or AC power supplies, recharging systems, power failure detection circuits, power converters or inverters, and power status indicators.

[0168] Although not shown, the electronic device 1200 may also include a camera (such as a front camera, a rear camera), a Bluetooth module, etc., which will not be described in detail here. Specifically in this embodiment, the display unit 140 of the electronic device 1200 is a touch screen display, and the electronic device 1200 also includes a memory 120, and one or more programs, wherein one or more programs are stored in the memory 120, and are configured to be executed by one or more processors 180. One or more programs include instructions for performing the following operations:

[0169] an information determination instruction, for determining, in response to the start of a dehydration program, initial state information of the clothes to be dehydrated in the dehydration device, wherein the initial state information is information that affects the working performance of the dehydration device;

[0170] A condition judgment instruction, used to judge whether the clothes to be dehydrated meet the dehydration condition according to the initial state information;

[0171] An information acquisition instruction, used for acquiring the currently set initial maximum dehydration speed, the actual weight of the clothes to be dehydrated, and the current state information of the clothes to be dehydrated when the clothes to be dehydrated meet the dehydration conditions;

[0172] A speed determination instruction, used to determine a target maximum spin speed of the clothes to be spin-dried according to the initial maximum spin speed, the actual weight and the current state information;

[0173] The dehydration control instruction is used to control the dehydration program to dehydrate the clothes to be dehydrated at the target dehydration maximum speed.

[0174] In some embodiments, the conditional judgment instruction is used to compare the initial eccentricity value with a preset first eccentricity threshold; if the initial eccentricity value is less than or equal to the first eccentricity threshold, it is determined that the clothes to be dehydrated meet the dehydration condition.

[0175] In some embodiments, the program also includes a retry instruction, which is used to control the dehydration equipment to shake the clothes to be dehydrated if the initial eccentricity value exceeds the first eccentricity threshold; after the shaking is completed, the eccentricity value of the clothes to be dehydrated is re-acquired and compared with the first eccentricity threshold until the eccentricity value is less than or equal to the first eccentricity threshold within a maximum preset number of retries, and it is determined that the clothes to be dehydrated meet the dehydration conditions.

[0176] In some embodiments, the program also includes a weight determination instruction, which is used to obtain the drum motor power of the dehydration device while controlling the dehydration device to drive the clothes to be dehydrated to rotate; based on the drum motor power, a weight value that has a preset corresponding relationship thereto is determined, and the weight value is used as the actual weight of the clothes to be dehydrated.

[0177] In some embodiments, the speed determination instruction is used to compare the actual weight with a preset first weight threshold; if the actual weight is less than the first weight threshold, the current eccentricity value is compared with a preset second eccentricity threshold; if the initial dehydration maximum speed is in a preset first numerical range and the current eccentricity value is less than the first eccentricity threshold, the dehydration maximum speed is not adjusted, and the initial dehydration maximum speed is used as the target dehydration maximum speed; if the current eccentricity value is greater than or equal to the first eccentricity threshold, the dehydration device is controlled to shake the clothes to be dehydrated, and after the shaking is completed Then, the current eccentricity value of the clothes to be dehydrated is reacquired and compared with the first eccentricity threshold value, until the current eccentricity value is less than the first eccentricity threshold value within a first preset retry number, the initial dehydration maximum speed is used as the target dehydration maximum speed, and the current retry number is recorded; if it is simultaneously satisfied that the initial dehydration maximum speed is in a preset second numerical range and the current eccentricity value is less than the second eccentricity threshold value, the initial dehydration maximum speed is reduced, the reduced initial dehydration maximum speed is used as the target dehydration maximum speed, and the current retry number is recorded, wherein the second speed threshold value is greater than the first speed threshold value.

[0178] In some embodiments, the program also includes a drying control instruction, which is used to determine, in response to the start of the drying program, an initial maximum dehydration speed, a target maximum dehydration speed, a moisture content of the clothes and a number of retries collected after the clothes to be dried complete the dehydration stage; determine target drying parameters of the clothes to be dried based on the initial maximum dehydration speed, the target maximum dehydration speed, the moisture content of the clothes and the number of retries; and control the drying program to dry the clothes to be dried with the target drying parameters.

[0179] In some embodiments, the drying control instruction is used to compare the moisture content of the clothes with a preset first moisture content threshold; if the moisture content of the clothes is greater than or equal to the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset first speed threshold interval, and the number of retries is less than the preset first retry threshold, then the preset first drying parameter is used as the target drying parameter of the clothes to be dried; if the moisture content of the clothes is greater than or equal to the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset first speed threshold interval, and the number of retries is less than the preset second retry threshold, then the preset second drying parameter is used as the target drying parameter of the clothes to be dried, wherein the second retry threshold is greater than the first retry threshold; if the moisture content of the clothes is greater than or equal to the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset first speed threshold interval, and the number of retries is greater than or equal to the second retry threshold, then the preset third drying parameter is used as the target drying parameter of the clothes to be dried; if the moisture content of the clothes is less than the If the target maximum spin speed is within the preset second speed threshold interval, the initial maximum spin speed is within the preset first numerical interval, and the number of retries is less than the preset second retry threshold, the preset second drying parameter is used as the target drying parameter of the clothes to be dried; if the moisture content of the clothes is less than the first moisture content threshold, and the target maximum spin speed is within the preset second speed threshold interval, the initial maximum spin speed is greater than the first numerical interval, and the number of retries is less than the preset second retry threshold, the third drying parameter is used as the target drying parameter of the clothes to be dried; if the moisture content of the clothes is less than the first moisture content threshold, and the target maximum spin speed is within the preset second speed threshold interval, the initial maximum spin speed is greater than the first numerical interval, and the number of retries is greater than the second retry threshold, the preset third drying parameter is used as the target drying parameter of the clothes to be dried; wherein the drying capacities corresponding to the first drying parameter, the second drying parameter, and the third drying parameter are enhanced in sequence.

[0180] The embodiment of the present application also provides an electronic device, which may be a washer-dryer, a washer-dryer set (washing machine + clothes dryer), a double-drum washing machine (washing machine + washer-dryer), a washer-dryer-care integrated machine (washing machine + clothes dryer), or the like.

[0181] As can be seen from the above, the embodiment of the present application provides an electronic device 1200, and the electronic device 1200 performs the following steps:

[0182] In response to the start of the dehydration program, determining initial state information of the clothes to be dehydrated in the dehydration device, wherein the initial state information is information that affects the working performance of the dehydration device;

[0183] According to the initial state information, determining whether the clothes to be dehydrated meet the dehydration conditions;

[0184] When the clothes to be dehydrated meet the dehydration condition, obtaining the currently set initial dehydration maximum speed, the actual weight of the clothes to be dehydrated, and the current state information of the clothes to be dehydrated;

[0185] Determining a target maximum spin speed for the clothes to be spin-dried according to the initial maximum spin speed, the actual weight and the current state information;

[0186] The dehydration program is controlled to dehydrate the clothes to be dehydrated at the target maximum dehydration speed.

[0187] The present application also provides a storage medium, wherein a computer program is stored in the storage medium. When the computer program is executed on a computer, the computer performs the following steps:

[0188] In response to the start of the dehydration program, determining initial state information of the clothes to be dehydrated in the dehydration device, wherein the initial state information is information that affects the working performance of the dehydration device;

[0189] According to the initial state information, determining whether the clothes to be dehydrated meet the dehydration conditions;

[0190] When the clothes to be dehydrated meet the dehydration condition, obtaining the currently set initial dehydration maximum speed, the actual weight of the clothes to be dehydrated, and the current state information of the clothes to be dehydrated;

[0191] Determining a target maximum spin speed for the clothes to be spin-dried according to the initial maximum spin speed, the actual weight and the current state information;

[0192] The dehydration program is controlled to dehydrate the clothes to be dehydrated at the target maximum dehydration speed.

[0193] It should be noted that, for the clothing dehydration control method described in the present application, ordinary testers in the field can understand that the whole or part of the process of implementing the clothing dehydration control method described in the embodiment of the present application can be completed by controlling the relevant hardware through a computer program, and the computer program can be stored in a computer-readable storage medium, such as a memory of an electronic device, and executed by at least one processor in the electronic device, and the execution process may include the process of the embodiment of the clothing dehydration control method. Among them, the storage medium can be a disk, an optical disk, a read-only memory (ROM), a random access memory (RAM), etc.

[0194] For the clothing dehydration control device of the embodiment of the present application, its various functional modules can be integrated into a processing chip, or each module can exist physically separately, or two or more modules can be integrated into one module. The above-mentioned integrated modules can be implemented in the form of hardware or in the form of software functional modules. If the integrated modules are implemented in the form of software functional modules and sold or used as independent products, they can also be stored in a computer-readable storage medium, such as a read-only memory, a disk or an optical disk.

[0195] The above is a detailed introduction to the clothing dehydration control method, device, medium and equipment provided in the embodiments of the present application. Specific examples are used in this article to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only used to help understand the method and core ideas of the present application; at the same time, for those skilled in the art, according to the ideas of the present application, there will be changes in the specific implementation methods and application scopes. In summary, the content of this specification should not be understood as limiting the present application.

Claims

1. A method for controlling the dehydration of clothes, applied to a dehydration device, characterized in that: include: In response to the start of the dehydration program, determining initial state information of the clothes to be dehydrated in the dehydration device, wherein the initial state information is information that affects the working performance of the dehydration device; According to the initial state information, determining whether the clothes to be dehydrated meet the dehydration conditions; When the clothes to be dehydrated meet the dehydration condition, obtaining the currently set initial dehydration maximum speed, the actual weight of the clothes to be dehydrated, and the current state information of the clothes to be dehydrated; Determining a target maximum spin speed for the clothes to be spin-dried according to the initial maximum spin speed, the actual weight and the current state information; The dehydration program is controlled to dehydrate the clothes to be dehydrated at the target maximum dehydration speed.

2. The clothes dehydration control method according to claim 1, characterized in that: The initial state information includes an initial eccentricity value of the clothes to be dehydrated in the dehydration device; and judging whether the clothes to be dehydrated meet the dehydration condition according to the initial state information includes: Comparing the initial eccentricity value with a preset first eccentricity threshold; If the initial eccentricity value is less than or equal to the first eccentricity threshold, it is determined that the laundry to be dehydrated meets the dehydration condition.

3. The clothes dehydration control method according to claim 2, characterized in that: After comparing the initial eccentricity value with a preset first threshold, the method further includes: If the initial eccentricity value exceeds the first eccentricity threshold, controlling the dehydration device to shake out the clothes to be dehydrated; After shaking out, the eccentricity value of the clothes to be dehydrated is reacquired and compared with the first eccentricity threshold value until the eccentricity value is less than or equal to the first eccentricity threshold value within a maximum preset number of retries, and it is determined that the clothes to be dehydrated meet the dehydration conditions.

4. The clothes dehydration control method according to claim 1, characterized in that: Before obtaining the currently set initial maximum spin speed, the actual weight of the clothes to be spinned, and the current state information of the clothes to be spinned, the method further includes: In the process of controlling the dehydration device to drive the clothes to be dehydrated to rotate, obtaining the power of the drum motor of the dehydration device; According to the drum motor power, a weight value having a preset corresponding relationship thereto is determined, and the weight value is used as the actual weight of the clothes to be dehydrated.

5. The clothes dehydration control method according to claim 1, characterized in that: The current state information includes the current eccentricity value of the clothes to be dehydrated in the dehydration device; the target maximum dehydration speed of the clothes to be dehydrated is determined according to the initial maximum dehydration speed, the actual weight and the current state information, including: comparing the actual weight with a preset first weight threshold; If the actual weight is less than the first weight threshold, comparing the current eccentricity value with a preset second eccentricity threshold; If the initial maximum spin speed is within the preset first value interval and the current eccentricity value is less than the first eccentricity threshold, the maximum spin speed is not adjusted and the initial maximum spin speed is used as the target maximum spin speed; If the current eccentricity value is greater than or equal to the first eccentricity threshold, the dehydration device is controlled to shake the clothes to be dehydrated, and after the shaking is completed, the current eccentricity value of the clothes to be dehydrated is re-acquired and compared with the first eccentricity threshold, until the current eccentricity value is less than the first eccentricity threshold within a first preset retry number, the initial dehydration maximum speed is used as the target dehydration maximum speed, and the current retry number is recorded; If the initial maximum dehydration speed is in a preset second numerical interval and the current eccentricity value is less than the second eccentricity threshold, the initial maximum dehydration speed is reduced, and the reduced initial maximum dehydration speed is used as the target maximum dehydration speed, and the current number of retries is recorded, wherein the value in the second numerical interval is greater than the value in the first numerical interval.

6. The clothes dehydration control method according to claim 5, characterized in that: After controlling the dehydration program to dehydrate the clothes to be dehydrated at the target maximum dehydration speed, the method further includes: In response to the start of the drying program, determining the initial maximum spin speed, the target maximum spin speed, the moisture content of the clothes, and the number of retries collected after the clothes to be dried complete the spin stage; Determining target drying parameters of the clothes to be dried according to the initial maximum spin speed, the target maximum spin speed, the moisture content of the clothes, and the number of retries; The drying program is controlled to dry the clothes to be dried according to the target drying parameters.

7. The clothes dehydration control method according to claim 6, characterized in that: The step of determining the target drying parameters of the clothes to be dried according to the initial maximum spin speed, the target maximum spin speed, the moisture content of the clothes and the number of retries includes: Comparing the moisture content of the clothes with a preset first moisture content threshold; If the moisture content of the clothes is greater than or equal to the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset first speed threshold interval, and the number of retries is less than the preset first retry threshold, the preset first drying parameter is used as the target drying parameter of the clothes to be dried; If the moisture content of the clothes is greater than or equal to the first moisture content threshold, and at the same time, the target maximum spin speed is within a preset first speed threshold interval, and the number of retries is less than a preset second retry threshold, a preset second drying parameter is used as the target drying parameter of the clothes to be dried, wherein the second retry threshold is greater than the first retry threshold, and the value in the first speed threshold interval is greater than the value in the second speed threshold interval; If the moisture content of the clothes is greater than or equal to the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset first speed threshold interval, and the number of retries is greater than or equal to the second retry threshold, a preset third drying parameter is used as the target drying parameter of the clothes to be dried; If the moisture content of the clothes is less than the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset second speed threshold interval, the initial maximum spin speed is within the preset first value interval, and the number of retries is less than the preset second retry threshold, the preset second drying parameter is used as the target drying parameter of the clothes to be dried; If the moisture content of the clothes is less than the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset second speed threshold interval, the initial maximum spin speed is greater than the first numerical interval, and the number of retries is less than the preset second retry threshold, the third drying parameter is used as the target drying parameter of the clothes to be dried; If the moisture content of the clothes is less than the first moisture content threshold, and at the same time, the target maximum spin speed is within the preset second speed threshold interval, the initial maximum spin speed is greater than the first numerical interval, and the number of retries is greater than the second retry threshold, a preset third drying parameter is used as the target drying parameter of the clothes to be dried; The drying capacities corresponding to the first drying parameter, the second drying parameter and the third drying parameter are enhanced in sequence.

8. A clothes dehydration control device, applied to a dehydration device, characterized in that: The clothes dehydration control device comprises: an information determination module, for determining, in response to the start of a dehydration program, initial state information of the clothes to be dehydrated in the dehydration device, wherein the initial state information is information that affects the working performance of the dehydration device; A condition judgment module, used for judging whether the clothes to be dehydrated meet the dehydration condition according to the initial state information; An information acquisition module, used for acquiring the currently set initial maximum dehydration speed, the actual weight of the clothes to be dehydrated, and the current state information of the clothes to be dehydrated when the clothes to be dehydrated meet the dehydration conditions; A speed determination module, configured to determine a target maximum speed for dehydrating the clothes to be dehydrated according to the initial maximum speed for dehydrating, the actual weight and the current state information; The dehydration control module is used to control the dehydration program to dehydrate the clothes to be dehydrated at the target dehydration maximum speed.

9. A computer-readable storage medium, characterized in that: The computer-readable storage medium stores a plurality of instructions, and the instructions are suitable for being loaded by a processor to execute the laundry dehydration control method according to any one of claims 1 to 7.

10. An electronic device, characterized in that: The invention comprises a processor and a memory, wherein the memory stores a plurality of instructions, and the processor loads the instructions to execute the clothes dehydration control method according to any one of claims 1 to 7.