Clothes dryer control method and device, medium and clothes dryer

By setting up a rotatable drying bracket and sensor control in the dryer, the speed and time are adjusted according to real-time environmental data, the problems of clothing damage and low drying efficiency are solved, and the safe and efficient drying of clothes is achieved.

CN120273164APending Publication Date: 2025-07-08CHONGQING HAIER ROLLER WASHING MASCH CO LTD +1
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202410021201.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-01-05
Publication Date
2025-07-08

AI Technical Summary

Technical Problem

When using drying brackets in existing clothes dryers, they can easily cause damage to clothes and low drying efficiency, especially high-end clothes cannot be effectively dried.

Method used

A dryer control method is designed. By setting a rotatable drying bracket in the drying cylinder, real-time environmental data is obtained using temperature and humidity sensors, the rotation speed and time of the drying bracket are controlled according to the data, ensuring that the clothes are dried in the storage space, and hot air contact is accelerated through the holes.

Benefits of technology

Avoid contact damage to the tube wall during drying, improve drying efficiency and intelligence level, and ensure that the clothes are fully dry.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120273164A_ABST
    Figure CN120273164A_ABST
Patent Text Reader

Abstract

The invention relates to the technical field of control of clothes dryers, particularly provides a control method and device of a clothes dryer, a medium and the clothes dryer, and aims to solve the problem of how to improve the drying efficiency of the clothes dryer on the premise of ensuring that clothes are not damaged. The clothes dryer comprises a drying cylinder, wherein a clothes drying bracket and a rotating shaft are arranged in the drying cylinder; the clothes drying support is rotatably arranged in the drying cylinder through a rotating shaft, and the edge of the clothes drying support is not in contact with the inner wall of the drying cylinder; the clothes drying support comprises a plurality of sub-supports arranged in parallel, each sub-support is provided with a plurality of holes penetrating through the sub-supports, a storage space used for containing clothes exists between every two adjacent sub-supports, and the control method of the clothes dryer comprises the steps that in response to an opening instruction of a drying mode, real-time environment data in a drying cylinder are obtained, based on the real-time environment data, rotation control is conducted on the clothes drying support. Through the configuration mode, the drying efficiency of the clothes dryer can be improved on the premise of ensuring that clothes are not damaged.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of dryer control, and specifically provides a control method, device, medium and dryer for a dryer. Background Art

[0002] Current high-end household dryers are equipped with drying racks for supporting high-end clothes that are not suitable for tumble drying. When using the drying rack in an existing dryer, the drum will rotate normally. If a user forgets to remove the rack after putting in ordinary clothes, the clothes will knock over the rack and roll in the drum, causing damage to the clothes and the dryer. At the same time, in the existing rack drying, the clothes are stacked on the rack, and the contact area between the clothes and the hot air is small, resulting in poor drying effect.

[0003] Correspondingly, there is a need in the art for a new control solution for dryers to solve the above problems. Summary of the Invention

[0004] In order to overcome the above defects, the present invention is proposed to provide a technical solution to solve or at least partially solve the problem of how to improve the drying efficiency of the dryer on the premise of ensuring that the clothes are not damaged.

[0005] In a first aspect, the present invention provides a control method for a dryer, the dryer including a drying drum, a drying rack and a rotating shaft are arranged in the drying drum; the drying rack is rotatably arranged in the drying drum through the rotating shaft, and the edge of the drying rack does not contact the inner wall of the drying drum; the drying rack includes a plurality of parallel sub-racks, each sub-rack has a plurality of holes penetrating through the sub-rack, and there is a storage space for placing clothes between every two adjacent sub-racks; the method includes:

[0006] In response to an opening instruction of the drying mode, obtain real-time environmental data in the drying drum;

[0007] Based on the real-time environmental data, perform rotation control on the drying rack to dry the clothes placed in the storage space.

[0008] In a technical solution of the above control method for a dryer, a temperature sensor and a humidity sensor are further arranged in the drying drum; the real-time environmental data includes real-time temperature data and real-time humidity data;

[0009] The obtaining of the real-time environmental data in the drying drum includes:

[0010] Obtain the real-time temperature data through the temperature sensor;

[0011] Obtain the real-time humidity data through the humidity sensor.

[0012] In one technical solution of the above control method for a clothes dryer, controlling the clothes drying bracket based on the real-time environmental data includes:

[0013] When the real-time humidity data is greater than a first preset threshold, if the real-time temperature data is less than a second preset threshold, control the clothes drying bracket to rotate at a first preset speed and run for a first preset duration;

[0014] If the real-time temperature data is greater than or equal to the second preset threshold and less than a third preset threshold, control the clothes drying bracket to rotate at a second preset speed and run for a second preset duration;

[0015] If the real-time temperature data is greater than or equal to the third preset threshold, control the clothes drying bracket to rotate at a third preset speed and run for a third preset duration;

[0016] Wherein, the first preset speed is greater than the second preset speed which is greater than the third preset speed; the first preset duration is greater than the second preset duration which is greater than the third running duration.

[0017] In one technical solution of the above control method for a clothes dryer, controlling the clothes drying bracket based on the real-time environmental data includes:

[0018] When the real-time humidity data is less than or equal to the first preset threshold and greater than a fourth preset threshold, if the real-time temperature data is less than the second preset threshold, control the clothes drying bracket to rotate at a fourth preset speed and run for a fourth preset duration;

[0019] If the real-time temperature data is greater than or equal to the second preset threshold and less than the third preset threshold, control the clothes drying bracket to rotate at a fifth preset speed and run for a fifth preset duration;

[0020] If the real-time temperature data is greater than or equal to the third preset threshold, control the clothes drying bracket to rotate at a sixth preset speed and run for a sixth preset duration;

[0021] Wherein, the fourth preset speed is greater than the fifth preset speed which is greater than the sixth preset speed; the fourth preset duration is greater than the fifth preset duration which is greater than the sixth running duration.

[0022] In one technical solution of the above control method for a clothes dryer, controlling the clothes drying bracket based on the real-time environmental data includes:

[0023] When the real-time humidity data is less than the fourth preset threshold, if the real-time temperature data is less than the second preset threshold, control the clothes drying bracket to rotate at a seventh preset speed and run for a seventh preset duration;

[0024] If the real-time temperature data is greater than or equal to the second preset threshold and less than the third preset threshold, control the drying rack to rotate at an eighth preset speed and run for an eighth preset duration;

[0025] If the temperature of the real-time temperature data is greater than or equal to the third preset threshold, control the drying rack to rotate at a ninth preset speed and run for a ninth preset duration;

[0026] Wherein, the seventh preset speed is greater than the eighth preset speed which is greater than the ninth preset speed; the seventh preset duration is greater than the eighth preset duration which is greater than the ninth running duration.

[0027] In a technical solution of the above control method of a dryer, the rotating shaft is disposed through the bottom of the drying cylinder and is perpendicular to the bottom of the cylinder. One end of the rotating shaft inside the drying cylinder is connected to the drying rack, and one end of the rotating shaft outside the drying cylinder is connected to the motor.

[0028] In a technical solution of the above control method of a dryer, based on key input, obtain the start instruction of the drying mode; and / or, based on voice input, obtain the start instruction of the drying mode.

[0029] In a second aspect, a control device is provided. The control device includes at least one processor and at least one storage device. The storage device is adapted to store multiple program codes, and the program codes are adapted to be loaded and run by the processor to execute the control method of the dryer according to any one of the technical solutions in the above technical solutions of the control method of the dryer.

[0030] In a third aspect, a computer-readable storage medium is provided. The computer-readable storage medium stores multiple program codes, and the program codes are adapted to be loaded and run by a processor to execute the control method of the dryer according to any one of the technical solutions in the above technical solutions of the control method of the dryer.

[0031] In a fourth aspect, a dryer is provided. The dryer includes a drying cylinder, and a drying rack and a rotating shaft are disposed inside the drying cylinder; the drying rack is rotatably disposed inside the drying cylinder through the rotating shaft, and the edge of the drying rack does not contact the inner wall of the drying cylinder; the drying rack includes a plurality of sub-racks arranged in parallel, and each sub-rack has a plurality of holes penetrating through the sub-rack, and there is a storage space for placing clothes between every two adjacent sub-racks.

[0032] One or more of the above technical solutions of the present invention have at least one or more of the following Beneficial effects:

[0033] In implementing the technical solution of the present invention, the dryer of the present invention includes a drying cylinder, and a drying rack and a rotating shaft are arranged in the drying cylinder; the drying rack is rotatably arranged in the drying cylinder through the rotating shaft, and the edge of the drying rack does not contact the inner wall of the drying cylinder; the drying rack includes a plurality of sub-racks arranged in parallel, and each sub-rack has a plurality of holes penetrating through the sub-rack, and there is a storage space for placing clothes between every two adjacent sub-racks. The control method of the dryer includes: in response to an opening instruction of the drying mode, obtaining real-time environmental data in the drying cylinder, and based on the real-time environmental data, performing rotation control on the drying rack to realize drying of the clothes placed in the storage space. Through the above configuration method, when the present invention dries clothes, the clothes can be placed in the storage space for drying, and the two sub-racks in contact with the clothes can support the clothes to ensure that the clothes will not roll onto the inner wall of the drying cylinder during the drying process, avoiding damage to the clothes. At the same time, placing the clothes in the storage space can also avoid the situation of clothes being stacked. Further, according to the real-time environmental data in the drying cylinder, corresponding rotation control is performed on the drying rack to improve the intelligent level of the dryer for drying clothes. Each sub-rack of the drying rack has a plurality of holes penetrating through the sub-rack. During the process of controlling the rotation of the drying rack, the holes can allow the clothes in the storage space to fully contact the hot air in the drying cylinder, accelerating the drying of the clothes and improving the drying efficiency of the dryer. BRIEF DESCRIPTION OF THE DRAWINGS

[0034] Referring to the accompanying drawings, the disclosure of the present invention will become more understandable. It is easy for those skilled in the art to understand that: these drawings are only for illustrative purposes and are not intended to limit the protection scope of the present invention, where:

[0035] Figure 1 is a schematic flowchart of the main steps of the control method of the dryer according to an embodiment of the present invention;

[0036] Figure 2 is a schematic diagram of the relative position relationship between the drying cylinder and the drying rack according to an embodiment of the present invention;

[0037] Figure 3 is a side view schematic diagram of the relative position relationship between the drying cylinder and the rotating shaft according to an embodiment of the present invention;

[0038] Figure 4 is a top view schematic diagram of the relative position relationship between the drying cylinder and the rotating shaft according to an embodiment of the present invention;

[0039] List of Reference Numerals :

[0040] 1: drying cylinder; 2: drying rack; 3: rotating shaft. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0041] Some embodiments of the present invention will be described below with reference to the accompanying drawings. Those skilled in the art should understand that these embodiments are only used to explain the technical principles of the present invention and are not intended to limit the protection scope of the present invention.

[0042] In the description of the present invention, "module" and "processor" may include hardware, software, or a combination of both. A module may include a hardware circuit, various suitable sensors, communication ports, memory, and may also include a software part, such as program code, or a combination of software and hardware. The processor may be a central processing unit, a microprocessor, an image processor, a digital signal processor, or any other suitable processor. The processor has data and / or signal processing functions. The processor may be implemented in software, in hardware, or in a combination of both. The non-transitory computer-readable storage medium includes any suitable medium for storing program code, such as magnetic disks, hard disks, optical discs, flash memories, read-only memories, random access memories, and so on. The term "A and / or B" represents all possible combinations of A and B, such as only A, only B, or A and B. The term "at least one A or B" or "at least one of A and B" has a meaning similar to "A and / or B" and may include only A, only B, or A and B. The singular terms "a" and "the" may also include the plural form.

[0043] The control method of the dryer of the present invention is applied to a dryer. In this embodiment, the dryer includes a drying cylinder, and a drying rack and a rotating shaft are arranged in the drying cylinder; the drying rack is rotatably arranged in the drying cylinder through the rotating shaft, and the edge of the drying rack does not contact the inner wall of the drying cylinder; the drying rack includes a plurality of parallel sub-racks, and each sub-rack has a plurality of holes penetrating the sub-rack, and there is a storage space for placing clothes between every two adjacent sub-racks.

[0044] In one embodiment, refer to the attached Figure 2 , Figure 2 is a schematic diagram of the relative position relationship between the drying cylinder and the drying rack according to an embodiment of the present invention. As Figure 2 shown, the edge of the drying rack 2 does not contact the inner wall of the drying cylinder 1, and the drying rack 2 includes two parallel sub-racks, and there is a storage space for placing clothes between the two sub-racks.

[0045] Refer to the attached Figure 1 , Figure 1 is a schematic diagram of the main step flow of the control method of the dryer according to an embodiment of the present invention. As Figure 1 shown, the control method of the dryer in the embodiment of the present invention mainly includes the following steps S101-step S102.

[0046] Step S101: In response to the start command of the drying mode, obtain the real-time environmental data inside the drying drum.

[0047] In this embodiment, when the dryer receives the start command of the drying mode, obtain the real-time environmental data inside the drying drum.

[0048] In one embodiment, the start command of the drying mode can be based on button input.

[0049] In one embodiment, the start command of the drying mode can be based on voice input.

[0050] Step S102: Based on the real-time environmental data, perform rotational control on the clothes drying rack to dry the clothes placed in the storage space.

[0051] In this embodiment, according to the real-time environmental data, perform corresponding rotational control on the clothes drying rack to dry the clothes placed in the storage space.

[0052] In one embodiment, a temperature sensor and a humidity sensor are further provided inside the drying drum; the real-time environmental data includes real-time temperature data and real-time humidity data. The real-time temperature data is obtained through the temperature sensor; the real-time humidity data is obtained through the humidity sensor. Step S102 may include steps S1021 to S1023:

[0053] Step S1021: When the real-time humidity data is greater than the first preset threshold, if the real-time temperature data is less than the second preset threshold, control the clothes drying rack to rotate at the first preset speed and run for the first preset duration.

[0054] In this embodiment, when the real-time humidity data is greater than the first preset threshold, if the real-time temperature data is less than the second preset threshold, control the clothes drying rack to rotate at the first preset speed and run for the first preset duration, and then exit the drying mode. Those skilled in the art can customize the first preset threshold, the second preset threshold, the first preset rotation speed, and the first preset duration according to the actual situation. Among them, by using the real-time humidity data and the real-time temperature data to accurately determine the rotation speed and running duration of the clothes drying rack of the dryer, the power consumption of the dryer can be reduced on the premise that the clothes are dried.

[0055] Step S1022: If the real-time temperature data is greater than or equal to the second preset threshold and less than the third preset threshold, control the clothes drying rack to rotate at the second preset speed and run for the second preset duration.

[0056] In this embodiment, if the real-time temperature data is greater than or equal to the second preset threshold and less than the third preset threshold, control the drying rack to rotate at the second preset speed, and after running for the second preset duration, exit the drying mode. Those skilled in the art can customize the setting of the third preset threshold according to the actual situation; on the premise that the first preset speed is greater than the second preset speed and the first preset duration is greater than the second preset duration, those skilled in the art can customize the rotation at the second preset speed and the second preset duration according to the actual situation.

[0057] Step S1023: If the real-time temperature data is greater than or equal to the third preset threshold, control the drying rack to rotate at the third preset speed and run for the third preset duration.

[0058] In this embodiment, if the real-time temperature data is greater than or equal to the third preset threshold, control the drying rack to rotate at the third preset speed, and after running for the third preset duration, exit the drying mode. On the premise that the second preset speed is greater than the third preset speed and the second preset duration is greater than the third preset duration, those skilled in the art can customize the rotation at the third preset speed and the third preset duration according to the actual situation.

[0059] In one embodiment, step S102 may further include steps S1024 to S1026:

[0060] Step S1024: When the real-time humidity data is less than or equal to the first preset threshold and greater than the fourth preset threshold, if the real-time temperature data is less than the second preset threshold, control the drying rack to rotate at the fourth preset speed and run for the fourth preset duration.

[0061] In this embodiment, when the real-time humidity data is less than or equal to the first preset threshold and greater than the fourth preset threshold, if the real-time temperature data is less than the second preset threshold, control the drying rack to rotate at the fourth preset speed, and after running for the fourth preset duration, exit the drying mode. Those skilled in the art can customize the settings of the fourth preset threshold, the rotation at the fourth preset speed, and the fourth preset duration according to the actual situation.

[0062] Step S1025: If the real-time temperature data is greater than or equal to the second preset threshold and less than the third preset threshold, control the drying rack to rotate at the fifth preset speed and run for the fifth preset duration.

[0063] In this embodiment, if the real-time temperature data is greater than or equal to the second preset threshold and less than the third preset threshold, control the drying rack to rotate at the fifth preset speed, and after running for the fifth preset duration, exit the drying mode. On the premise that the fourth preset speed is greater than the fifth preset speed and the fourth preset duration is greater than the fifth preset duration, those skilled in the art can customize the rotation at the fifth preset speed and the fifth preset duration according to the actual situation.

[0064] Step S1026: If the real-time temperature data is greater than or equal to the third preset threshold, control the drying rack to rotate at the sixth preset speed and operate for the sixth preset duration.

[0065] In this embodiment, if the real-time temperature data is greater than or equal to the third preset threshold, control the drying rack to rotate at the sixth preset speed and operate for the sixth preset duration, and then exit the drying mode. On the premise that the fifth preset speed is greater than the sixth preset speed and the fifth preset duration is greater than the sixth preset duration, those skilled in the art can customize the sixth preset speed rotation and the sixth preset duration according to the actual situation.

[0066] In one embodiment, step S102 may further include steps S1027 to S1029:

[0067] Step S1027: When the real-time humidity data is less than the fourth preset threshold, if the real-time temperature data is less than the second preset threshold, control the drying rack to rotate at the seventh preset speed and operate for the seventh preset duration.

[0068] In this embodiment, when the real-time humidity data is less than the fourth preset threshold, if the real-time temperature data is less than the second preset threshold, control the drying rack to rotate at the seventh preset speed and operate for the seventh preset duration, and then exit the drying mode. Those skilled in the art can customize the seventh preset speed rotation and the seventh preset duration according to the actual situation.

[0069] Step S1028: If the real-time temperature data is greater than or equal to the second preset threshold and less than the third preset threshold, control the drying rack to rotate at the eighth preset speed and operate for the eighth preset duration.

[0070] In this embodiment, if the real-time temperature data is greater than or equal to the second preset threshold and less than the third preset threshold, control the drying rack to rotate at the eighth preset speed and operate for the eighth preset duration, and then exit the drying mode. On the premise that the seventh preset speed is greater than the eighth preset speed and the seventh preset duration is greater than the eighth preset duration, those skilled in the art can customize the eighth preset speed rotation and the eighth preset duration according to the actual situation.

[0071] Step S1029: If the real-time temperature data is greater than or equal to the third preset threshold, control the drying rack to rotate at the ninth preset speed and operate for the ninth preset duration.

[0072] In this embodiment, if the real-time temperature data is greater than or equal to the third preset threshold, control the drying rack to rotate at the ninth preset speed, and after running for the ninth preset duration, exit the drying mode. On the premise that the eighth preset speed is greater than the ninth preset speed and the eighth preset duration is greater than the ninth preset duration, those skilled in the art can customize the ninth preset speed rotation and the ninth preset duration according to the actual situation.

[0073] In one embodiment, the rotating shaft is disposed through the bottom of the drying cylinder and is perpendicular to the bottom. One end of the rotating shaft located inside the drying cylinder is connected to the drying rack, and the end of the rotating shaft located outside the drying cylinder is connected to the motor. Among them, the rotation of the rotating shaft can be controlled by the motor, so as to realize the rotation of the drying rack.

[0074] In one embodiment, refer to the appendix Figure 3 , Figure 3 is a side view schematic diagram of the relative position relationship between the drying cylinder and the rotating shaft according to an embodiment of the present invention. As Figure 3 shown, the rotating shaft 3 is disposed through the bottom of the drying cylinder 1 and is perpendicular to the bottom.

[0075] In one embodiment, refer to the appendix Figure 4 , Figure 4 is a top view schematic diagram of the relative position relationship between the drying cylinder and the rotating shaft according to an embodiment of the present invention. As Figure 4 shown, the rotating shaft 3 is disposed at the center position of the bottom of the drying cylinder 1 and is perpendicular to the bottom.

[0076] Based on the above steps S101 - S102, the dryer of the present invention includes a drying cylinder, and a clothes drying bracket and a rotating shaft are arranged inside the drying cylinder; the clothes drying bracket is rotatably arranged inside the drying cylinder through the rotating shaft, and the edge of the clothes drying bracket does not contact the inner wall of the drying cylinder; the clothes drying bracket includes a plurality of sub - brackets arranged in parallel, and each sub - bracket has a plurality of holes penetrating through the sub - bracket. There is a storage space for placing clothes between every two adjacent sub - brackets. The control method of the dryer includes: in response to an opening instruction of the drying mode, obtaining real - time environmental data inside the drying cylinder, and based on the real - time environmental data, performing rotation control on the clothes drying bracket to dry the clothes placed in the storage space. Through the above configuration method, when the present invention dries clothes, the clothes can be placed in the storage space for drying. The two sub - brackets in contact with the clothes can support the clothes to ensure that the clothes will not roll onto the inner wall of the drying cylinder during the drying process, avoiding damage to the clothes. At the same time, placing the clothes in the storage space can also avoid the situation of clothes being stacked. Further, according to the real - time environmental data inside the drying cylinder, corresponding rotation control is performed on the clothes drying bracket to improve the intelligent level of the dryer for drying clothes. Each sub - bracket of the clothes drying bracket has a plurality of holes penetrating through the sub - bracket. During the process of controlling the rotation of the clothes drying bracket, the holes can allow the clothes in the storage space to fully contact the hot air inside the drying cylinder, accelerating the drying of the clothes and improving the drying efficiency of the dryer.

[0077] It should be noted that although the above - mentioned embodiments describe each step in a specific order, those skilled in the art can understand that in order to achieve the effects of the present invention, different steps do not necessarily have to be executed in such an order. They can be executed simultaneously (in parallel) or in other orders, and these changes are all within the protection scope of the present invention.

[0078] Those skilled in the art can understand that all or part of the processes in the methods of the above-mentioned embodiments of the present invention can also be completed by instructing relevant hardware through a computer program. The computer program can be stored in a computer-readable storage medium. When the computer program is executed by a processor, the steps of the above-mentioned method embodiments can be implemented. Among them, the computer program includes computer program code, and the computer program code can be in the form of source code, object code, executable file or some intermediate form, etc. The computer-readable storage medium can include: any entity or device, medium, USB flash drive, mobile hard disk, magnetic disk, optical disk, computer memory, read-only memory, random access memory, electrical carrier signal, telecommunication signal, and software distribution medium that can carry the computer program code. It should be noted that the content included in the computer-readable storage medium can be appropriately increased or decreased according to the requirements of legislation and patent practice in the jurisdiction. For example, in some jurisdictions, according to legislation and patent practice, the computer-readable storage medium does not include electrical carrier signals and telecommunication signals.

[0079] Furthermore, the present invention also provides a control device. In an embodiment of the control device according to the present invention, the control device includes a processor and a storage device. The storage device can be configured to store a program for executing the control method of the clothes dryer in the above-mentioned method embodiment. The processor can be configured to execute the program in the storage device, and the program includes, but is not limited to, the program for executing the control method of the clothes dryer in the above-mentioned method embodiment. For the sake of convenience of description, only the parts related to the embodiments of the present invention are shown. For the specific technical details not disclosed, please refer to the method part of the embodiments of the present invention. The control device can be a control device formed by various electronic devices.

[0080] In the embodiments of the present invention, the control device can be a control device formed by various electronic devices. In some possible implementation manners, the control device can include multiple storage devices and multiple processors. The program for executing the control method of the clothes dryer in the above-mentioned method embodiment can be divided into multiple sub-programs, and each sub-program can be loaded and run by a processor to execute different steps of the control method of the clothes dryer in the above-mentioned method embodiment. Specifically, each sub-program can be stored in a different storage device respectively, and each processor can be configured to execute the program in one or more storage devices to jointly implement the control method of the clothes dryer in the above-mentioned method embodiment, that is, each processor executes different steps of the control method of the clothes dryer in the above-mentioned method embodiment to jointly implement the control method of the clothes dryer in the above-mentioned method embodiment.

[0081] The above-mentioned multiple processors may be processors deployed on the same device. For example, the above-mentioned control device may be a high-performance device composed of multiple processors, and the above-mentioned multiple processors may be the processors configured on the high-performance device. In addition, the above-mentioned multiple processors may also be processors deployed on different devices. For example, the above-mentioned control device may be a server cluster, and the above-mentioned multiple processors may be the processors on different servers in the server cluster.

[0082] Furthermore, the present invention also provides a computer-readable storage medium. In an embodiment of the computer-readable storage medium according to the present invention, the computer-readable storage medium may be configured to store a program for executing the control method of the dryer in the above method embodiment. This program can be loaded and run by a processor to implement the control method of the dryer. For the sake of convenience of description, only the parts related to the embodiments of the present invention are shown. For the specific technical details not disclosed, please refer to the method part of the embodiments of the present invention. The computer-readable storage medium may be a storage device formed by various electronic devices. Optionally, the computer-readable storage medium in the embodiments of the present invention is a non-transitory computer-readable storage medium.

[0083] Furthermore, the present invention also provides a dryer. The dryer includes a drying cylinder, and a drying rack and a rotating shaft are arranged in the drying cylinder. The drying rack is rotatably arranged in the drying cylinder through the rotating shaft, and the edge of the drying rack does not contact the inner wall of the drying cylinder. The drying rack includes a plurality of parallel sub-racks, and each sub-rack has a plurality of holes penetrating through the sub-rack, and there is a storage space for placing clothes between every two adjacent sub-racks.

[0084] Furthermore, it should be understood that since the setting of each module is only for explaining the functional units of the device of the present invention, the physical devices corresponding to these modules may be the processor itself, or a part of the software in the processor, a part of the hardware, or a part of the combination of software and hardware. Therefore, the number of each module in the figure is only illustrative.

[0085] Those skilled in the art can understand that the various modules in the device can be adaptively split or combined. Such splitting or combining of specific modules will not cause the technical solution to deviate from the principle of the present invention. Therefore, the technical solutions after splitting or combining will all fall within the protection scope of the present invention.

[0086] So far, the technical solutions of the present invention have been described in conjunction with the preferred embodiments shown in the drawings. However, it is easy for those skilled in the art to understand that the protection scope of the present invention is obviously not limited to these specific embodiments. Without departing from the principle of the present invention, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will all fall within the protection scope of the present invention.

Claims

1. A control method for a dryer, characterized in that, The dryer includes a drying cylinder, and a clothes drying bracket and a rotating shaft are arranged in the drying cylinder; the clothes drying bracket is rotatably arranged in the drying cylinder through the rotating shaft, and the edge of the clothes drying bracket does not contact the inner wall of the drying cylinder; the clothes drying bracket includes a plurality of sub-brackets arranged in parallel, and each sub-bracket has a plurality of holes penetrating through the sub-bracket, and a storage space for placing clothes exists between every two adjacent sub-brackets; the method includes: In response to an opening instruction of the drying mode, obtain the real-time environmental data in the drying cylinder; Based on the real-time environmental data, perform rotation control on the clothes drying bracket to dry the clothes placed in the storage space.

2. The control method of the clothes dryer according to claim 1, characterized in that, A temperature sensor and a humidity sensor are also arranged in the drying cylinder; the real-time environmental data includes real-time temperature data and real-time humidity data; The obtaining of the real-time environmental data in the drying cylinder includes: Obtain the real-time temperature data through the temperature sensor; Obtain the real-time humidity data through the humidity sensor.

3. The control method of the dryer according to claim 2, wherein The controlling of the clothes drying bracket based on the real-time environmental data includes: When the real-time humidity data is greater than a first preset threshold, if the real-time temperature data is less than a second preset threshold, control the clothes drying bracket to rotate at a first preset speed and operate for a first preset duration; If the real-time temperature data is greater than or equal to the second preset threshold and less than a third preset threshold, control the clothes drying bracket to rotate at a second preset speed and operate for a second preset duration; If the real-time temperature data is greater than or equal to the third preset threshold, control the clothes drying bracket to rotate at a third preset speed and operate for a third preset duration; Wherein, the first preset speed is greater than the second preset speed which is greater than the third preset speed; the first preset duration is greater than the second preset duration which is greater than the third operation duration.

4. The control method of the dryer according to claim 2, wherein The controlling of the clothes drying bracket based on the real-time environmental data includes: When the real-time humidity data is less than or equal to the first preset threshold and greater than a fourth preset threshold, if the real-time temperature data is less than the second preset threshold, control the clothes drying bracket to rotate at a fourth preset speed and operate for a fourth preset duration; If the real-time temperature data is greater than or equal to the second preset threshold and less than the third preset threshold, control the clothes drying bracket to rotate at a fifth preset speed and operate for a fifth preset duration; If the real-time temperature data is greater than or equal to the third preset threshold, control the clothes drying bracket to rotate at a sixth preset speed and operate for a sixth preset duration; Wherein, the fourth preset speed is greater than the fifth preset speed which is greater than the sixth preset speed; the fourth preset duration is greater than the fifth preset duration which is greater than the sixth operation duration.

5. The control method of the dryer according to claim 2, wherein The controlling of the clothes drying bracket based on the real-time environmental data includes: When the real-time humidity data is less than the fourth preset threshold, if the real-time temperature data is less than the second preset threshold, control the drying rack to rotate at a seventh preset speed and run for a seventh preset duration; If the real-time temperature data is greater than or equal to the second preset threshold and less than the third preset threshold, control the drying rack to rotate at an eighth preset speed and run for an eighth preset duration; If the real-time temperature data is greater than or equal to the third preset threshold, control the drying rack to rotate at a ninth preset speed and run for a ninth preset duration; Wherein, the seventh preset speed is greater than the eighth preset speed which is greater than the ninth preset speed; the seventh preset duration is greater than the eighth preset duration which is greater than the ninth running duration.

6. The control method of the clothes dryer according to claim 1, wherein The rotating shaft is disposed through the bottom of the drying cylinder, perpendicular to the bottom of the cylinder. One end of the rotating shaft located inside the drying cylinder is connected to the drying rack, and the end of the rotating shaft located outside the drying cylinder is connected to the motor.

7. The control method of the clothes dryer according to claim 1, wherein It further includes: Based on the key input, obtain the start instruction of the drying mode; and / or, Based on the voice input, obtain the start instruction of the drying mode.

8. A control device, comprising at least one processor and at least one storage device, the storage device being adapted to store a plurality of program codes, characterized in that, The program code is adapted to be loaded and run by the processor to execute the control method of the dryer according to any one of claims 1 to 7.

9. A computer-readable storage medium storing multiple program codes, characterized in that, The program code is adapted to be loaded and run by the processor to execute the control method of the dryer according to any one of claims 1 to 7.

10. A dryer, characterized in that, The dryer includes a drying cylinder, and a drying rack and a rotating shaft are arranged inside the drying cylinder; the drying rack is rotatably arranged in the drying cylinder through the rotating shaft, and the edge of the drying rack does not contact the inner wall of the drying cylinder; the drying rack includes a plurality of sub-racks arranged in parallel, each sub-rack has a plurality of holes penetrating through the sub-rack, and there is a storage space for placing clothes between every two adjacent sub-racks. The dryer further includes the control device according to claim 8.