Control method of laundry treating apparatus, control device, storage medium, and apparatus

CN122610334APending Publication Date: 2026-08-21WUXI LITTLE SWAN ELECTRIC CO LTD
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Patent Information

Application Number
CN202510186953.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-19
Publication Date
2026-08-21

AI Technical Summary

Technical Problem

但是上述数据通信存在失效的情况,当通信失效时,会影响衣物处理设备的正常运行

Benefits of technology

[0031]本申请提供的衣物处理设备的控制方法,在获取第一传感器的检测数据后,可以基于第一传感器的检测数据的校验位和/或字节数的校验结果确定衣物处理设备的无线供电接收模块是否通信异常,及时发现设置在衣物处理筒的无线供电接收模块是否出现通信异常,避免衣物处理设备在无线供电接收模块通信异常时引起的衣物处理失控的情况。

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Abstract

The application relates to a control method and device of a clothes treatment equipment, a storage medium and equipment. The control method of the clothes treatment equipment comprises the following steps: acquiring detection data of a first sensor; determining whether a wireless power supply receiving module of the clothes treatment equipment is abnormal in communication based on a check result of a check bit and / or a byte number of the detection data of the first sensor; wherein the wireless power supply receiving module and the first sensor are arranged in a clothes treatment drum; the wireless power supply receiving module is used for supplying power to the first sensor, and the wireless power supply receiving module is wirelessly communicated with a main control board of the clothes treatment equipment. The application can timely find whether the wireless power supply receiving module arranged in the clothes treatment drum is abnormal in communication, and avoid the clothes treatment out of control caused by the abnormal communication of the wireless power supply receiving module of the clothes treatment equipment.
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Description

Technical Field

[0001] This application relates to the field of household appliance technology, and in particular to control methods, control devices, storage media and equipment for clothing handling equipment. Background Technology

[0002] In related technologies, sensors in garment processing equipment are generally mounted on fixed components of the equipment to facilitate the installation of wiring harnesses that power the sensors. To improve the accuracy of sensor detection data, existing technologies propose placing the sensors inside the inner drum and wirelessly powering them via transmitting and receiving coils.

[0003] For current garment processing equipment with wireless power transmission capabilities, the detection data from the sensors in the inner drum is transmitted to the main control board of the garment processing equipment via carrier communication using a receiving coil. The garment processing equipment then uses this communication data to determine the garment processing status, such as whether the garments are dry, and thus controls the garment processing process. However, this data communication is susceptible to failure, which can affect the normal operation of the garment processing equipment. Summary of the Invention

[0004] To address the aforementioned technical problems, this application provides a control method, control device, storage medium, and equipment for garment processing equipment.

[0005] In a first aspect, this application provides a control method for a garment processing device, comprising:

[0006] Acquire detection data from the first sensor;

[0007] The verification results of the verification bits and / or number of bytes of the detection data from the first sensor are used to determine whether the wireless power supply receiving module of the clothing processing device is experiencing communication abnormalities.

[0008] The wireless power supply receiving module and the first sensor are disposed in the clothing processing drum; the wireless power supply receiving module is used to supply power to the first sensor, and the wireless power supply receiving module communicates wirelessly with the main control board of the clothing processing equipment.

[0009] In some embodiments, after determining that the wireless power supply receiving module of the clothing processing device is experiencing a communication anomaly based on the verification result of the verification bits and / or byte count of the detection data from the first sensor, the method further includes:

[0010] The operation of the garment processing equipment is controlled based on the detection data from the second sensor;

[0011] The second sensor is mounted on a fixed component of the garment processing equipment; the second sensor communicates with the main control board of the garment processing equipment via a wired connection.

[0012] In some embodiments, the method further includes: controlling the operation of the clothing processing equipment based on the detection data from the first sensor, based on the fact that the wireless power supply receiving module is communicating normally.

[0013] In some embodiments, the method further includes: controlling the operation of the clothing processing equipment based on the detection data of the first sensor and the detection data of the second sensor, based on the fact that the wireless power supply receiving module is communicating normally.

[0014] In some embodiments, determining whether the wireless power supply receiving module of the clothing processing device has a communication abnormality based on the check bits and / or number of bytes of the detection data from the first sensor includes:

[0015] If the received detection data from the first sensor is determined to be erroneous based on the verification results of the verification bits and / or the number of bytes of the detection data from the first sensor N times consecutively, then a communication anomaly is determined.

[0016] Where N is a positive integer greater than 1.

[0017] In some embodiments, after determining that the wireless power supply receiver module is experiencing a communication malfunction, at least one of the following is also included:

[0018] Generate communication error message;

[0019] Report communication error information to the server;

[0020] Report communication anomaly information to smart mobile terminals.

[0021] In some embodiments, the second sensor includes a first sub-sensor located on the front support of the garment processing device and a second sub-sensor located in the drying air duct;

[0022] The step of controlling the operation of the clothing processing equipment based on the detection data from the second sensor includes:

[0023] The operation of the garment processing equipment is controlled based on the detection data from the first sub-sensor and / or the second sub-sensor.

[0024] Secondly, this application provides a control device for a garment processing equipment, comprising:

[0025] The acquisition module is used to acquire the detection data from the first sensor;

[0026] The communication detection module is used to determine whether the wireless power supply receiving module of the clothing processing device is experiencing communication abnormalities based on the verification results of the verification bits and / or the number of bytes of the detection data from the first sensor.

[0027] The wireless power supply receiving module and the first sensor are disposed in the clothing processing drum; the wireless power supply receiving module is used to supply power to the first sensor, and the wireless power supply receiving module communicates wirelessly with the main control board of the clothing processing equipment.

[0028] Thirdly, this application provides a storage medium storing a computer program, which, when executed by a processor, implements the control method for the clothing processing equipment as described in the first aspect.

[0029] Fourthly, this application provides a garment processing device, which includes a processor and a memory. The processor executes the steps of the method described in the first aspect by calling a program or instruction stored in the memory.

[0030] The technical solution provided in this application has the following advantages compared with the prior art:

[0031] The control method for the clothing processing equipment provided in this application, after acquiring the detection data of the first sensor, can determine whether the wireless power supply receiving module of the clothing processing equipment is abnormal based on the verification result of the verification bit and / or number of bytes of the detection data of the first sensor. It can promptly detect whether the wireless power supply receiving module set in the clothing processing tube is abnormal, and avoid the clothing processing equipment from going out of control when the wireless power supply receiving module is abnormal. Attached Figure Description

[0032] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.

[0033] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, for those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0034] Figure 1 A schematic flowchart illustrating a control method for a garment processing device provided in an embodiment of this application;

[0035] Figure 2 This is a schematic diagram of the physical structure of a garment processing device provided in an embodiment of this application;

[0036] Figure 3 This application provides a schematic diagram of the signal interaction of a garment processing device.

[0037] Figure 4A flowchart illustrating a specific example of a control method for a garment processing device provided in this application embodiment;

[0038] Figure 5 This is a schematic diagram of the structure of a control device for a garment processing equipment provided in an embodiment of this application;

[0039] Figure 6 This is a schematic diagram of the structure of a garment processing device provided in an embodiment of this application. Detailed Implementation

[0040] To better understand the above-mentioned objectives, features, and advantages of this application, the solution of this application will be further described below. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0041] Many specific details are set forth in the following description in order to provide a full understanding of this application, but this application may also be implemented in other ways different from those described herein; obviously, the embodiments in the specification are only some embodiments of this application, and not all embodiments.

[0042] Figure 1 This is a flowchart illustrating a control method for a garment processing device provided in an embodiment of this application. This control method is applicable to application scenarios requiring control of garment processing equipment. This method can be executed by a control device for the garment processing equipment provided in this embodiment, which can be implemented using software and / or hardware. The specific form of the garment processing equipment can be a dryer, washing machine, washer-dryer combo, etc., and this application does not limit the specific product form of the garment processing equipment. Figure 1 As shown, the control method for the garment processing equipment includes:

[0043] S110. Acquire the detection data from the first sensor.

[0044] S120. Based on the verification result of the verification bits and / or number of bytes of the detection data from the first sensor, determine whether the wireless power supply receiving module of the clothing processing equipment is experiencing communication abnormalities.

[0045] The wireless power supply receiving module and the first sensor are located in the garment processing drum; the wireless power supply receiving module is used to supply power to the first sensor, and the wireless power supply receiving module communicates wirelessly with the main control board of the garment processing equipment.

[0046] To ensure the accuracy of sensor data in garment processing equipment, a first sensor is installed on the garment processing drum, for example, on the lifting ribs of the drum. This first sensor can be, for example, a conductivity sensor.

[0047] For example, Figure 2 This is a schematic diagram of the physical structure of a garment processing device provided in an embodiment of this application. Figure 2 As shown, the clothing processing device may include, for example, a wireless power supply component, which may include a wireless power supply receiver module 3 and a wireless power supply transmitter module 2. The wireless power supply transmitter module 2 is disposed outside the clothing processing drum 1 of the clothing processing device, for example, on the housing 5 or the base of a dryer. The wireless power supply receiver module 3 is disposed on or inside the clothing processing drum 1 of the clothing processing device. Specifically, it may be disposed on the inner or outer surface of the clothing processing drum 1, or inside the clothing processing drum 1, for example, through a lifting rib structure of the clothing processing drum 1, or through a door, front support, or other structure of the clothing processing device extending into the interior of the clothing processing drum 1 and supporting the wireless power supply receiver module 3. The wireless power supply receiver module 3 is used to supply power to the first sensor 4 on the clothing processing device. The wireless power supply transmitter module 2 and the wireless power supply receiver module 3 transmit power without contact, that is, they can transmit power without wires. For example, the clothing processing device may also include a support shaft 6 for connecting the housing 5 and the clothing processing drum 1. The wireless power supply transmitting module 2 includes a transmitting coil and a first control board, and the wireless power supply receiving module 3 may include, for example, a receiving coil and a second control board. Preferably, both the transmitting and receiving coils are arranged around the support shaft 6. Energy can be transferred between the transmitting and receiving coils via a magnetic field.

[0048] The second control board in the wireless power supply receiver module 3 modulates the current generated by the receiving coil to obtain parameters such as amplitude, phase, frequency, or quality factor (Q value) corresponding to the current information, which will not be listed here. In addition, the wireless power supply receiver module 3 and the wireless power supply transmitter module 2 can also achieve bidirectional data transmission via carrier communication. The transmitted signal of the wireless power supply transmitter module 2 is modulated onto a high-frequency carrier signal and sent to the wireless power supply receiver module 3. The wireless power supply receiver module 3 demodulates the high-frequency carrier signal to restore the original information, thereby obtaining the transmitted signal parameter information. The received signal of the wireless power supply receiver module 3 is modulated onto a high-frequency carrier signal and sent to the wireless power supply transmitter module 2. The wireless power supply transmitter module 2 demodulates the high-frequency carrier signal to restore the original information, thereby obtaining the received signal parameter information.

[0049] The main control board of the garment processing equipment can be electrically connected to the first control board of the wireless power transmission module 2. The first sensor 4 is electrically connected to the second control board of the wireless power receiving module 3.

[0050] The second control board of the wireless power supply receiving module 3 can transmit the detection data from the first sensor 4 wirelessly (e.g., via carrier communication) to the first control board of the wireless power supply transmitting module 2, which then transmits the data to the main control board of the garment processing equipment. The main control board receives the data and determines whether the wireless power supply receiving module is experiencing a communication malfunction.

[0051] Figure 3 This is a schematic diagram of the signal interaction of a garment processing device provided in an embodiment of this application. For example... Figure 3 As shown, for example, the first control board 21 includes a power supply module 211 and a transmitting rectification and communication module 212. The power supply module 211 is used to convert 220V AC power into 24V and 5V DC power (the exemplary setting in this embodiment is 24V and 5V, which is not a limitation on the scope of protection of this application, and can be adjusted according to the actual voltage requirements of the module). The transmitting rectification and communication module 212 is used to rectify the DC power into the AC power required by the transmitting coil and supply power to the transmitting coil 22. After the transmitting coil 22 is energized, it generates a changing magnetic field. The receiving coil 32 can generate current through electromagnetic induction, thereby realizing the transfer of energy. The second control board 31 includes a receiving rectification and communication module 311, which is used to rectify the current obtained by the receiving coil 32 and supply power to the first sensor, so that when the clothes processing drum is in a rotating state, the wireless power supply receiving module and the wireless power supply transmitting module can still supply power to the first sensor. In addition, the receiving rectifier and communication module 311 can also wirelessly transmit the detection data of the first sensor to the transmitting rectifier and communication module 212, which in turn transmits the detection data of the first sensor 4 to the main control board 8 of the clothing processing equipment. Figure 3 In the example, solid arrows represent power supply, and dashed arrows represent data transmission.

[0052] by Figure 2 Taking the structure of the garment processing equipment as an example, the second control board of the wireless power supply receiving module 3 can add a check bit to the detection data of the first sensor that needs to be transmitted. The main control board verifies the correctness of the data by checking the transmitted check bit, thereby determining whether there is a communication abnormality. In some embodiments, the main control board can also verify the number of bytes of the transmitted detection data from the first sensor to determine whether there is a communication abnormality. If the verification result determines that the communication is normal, the data is retained; if the verification result determines that the communication is abnormal, the data can be discarded.

[0053] The control method for the garment processing equipment provided in this application, after acquiring the detection data from the first sensor, can determine whether the wireless power supply receiving module is experiencing communication abnormalities based on the verification results of the check bits and / or byte count of the detection data from the first sensor. This allows for timely detection of communication abnormalities in the wireless power supply receiving module of the garment processing equipment, preventing uncontrolled garment processing caused by communication abnormalities in the wireless power supply receiving module.

[0054] In some other embodiments, the garment handling device may further include a second sensor, which is mounted on a fixed component of the garment handling device; the second sensor communicates with the main control board of the garment handling device via a wired connection. Correspondingly, after determining that the wireless power supply receiving module of the garment handling device is experiencing a communication anomaly based on the verification result of the verification bits and / or byte count of the detection data from the first sensor, the control method for the garment handling device provided in this application may further include:

[0055] The operation of the clothing processing equipment is controlled based on the detection data from the second sensor.

[0056] If the wireless power supply receiver module experiences a communication malfunction, the detection data acquired by the first sensor may be inaccurate. If the garment processing equipment uses the detection data from the first sensor obtained based on the communication malfunction for subsequent garment processing operations, it can easily disrupt the normal operation of the garment processing system. Therefore, in this embodiment, the detection data from a second sensor using wired communication can be used to control the operation of the garment processing equipment.

[0057] It should be noted that the second sensor can be the same type of sensor as the first sensor, detecting the same parameter data; the second sensor can also be a different type of sensor than the first sensor, using other parameter data detected by the second sensor to replace the detection data of the first sensor for judgment.

[0058] For example, if the first sensor and the second sensor are of the same type, and both the first sensor and the second sensor detect the same parameter data (such as both being sensors that detect the conductivity of clothes inside the drum), if the wireless power supply receiving module has a communication failure, the first sensor may obtain incorrect data. Therefore, the same parameter data detected by the second sensor, which is of the same type as the first sensor, can be used to control the operation of the clothes processing equipment.

[0059] For example, the first sensor and the second sensor are different types of sensors. The first sensor, located on the lifting ribs of the garment processing drum, is used to detect the electrical conductivity of the clothes inside the drum to determine the degree of drying. The second sensor, located in the drying duct, is used to detect the humidity of the air inside the duct. Since there is a certain correlation between the humidity of the air inside the drying duct and the humidity of the clothes inside the drum, the degree of drying can also be indirectly determined through the data detected by the second sensor.

[0060] The first and second sensors can also have different structural types, such as resistive, capacitive, and optical types. This application does not limit the structural types of the first and second sensors; they can be the same or different.

[0061] In some implementations, the method further includes: controlling the operation of the clothing processing equipment based on the detection data from the first sensor, assuming that the wireless power supply receiving module is communicating normally.

[0062] If, based on the methods described in the above embodiments, it is determined that the wireless power supply receiving module is communicating normally, it indicates that the data received by the main control board is correct. Then, the operation of the clothing processing equipment can be controlled according to the detection data received from the first sensor.

[0063] In some implementations, the method further includes: controlling the operation of the clothing processing equipment based on the detection data from the first sensor and the detection data from the second sensor, based on the normal communication of the wireless power supply receiving module.

[0064] If the wireless power supply receiving module is found to be communicating normally based on the methods described in the above embodiments, it indicates that the data received by the main control board is correct. Since the garment processing equipment also includes a second sensor, the operation of the garment processing equipment can be controlled by comprehensively considering the detection data from both the first and second sensors.

[0065] For example, the first sensor can be set as the main sensor and the second sensor as the auxiliary sensor, and the weights of the main sensor and the auxiliary sensor can be set according to the range, detection accuracy, etc. of the two sensors.

[0066] In some implementations, determining whether the wireless power supply receiver module of the clothing processing device has a communication abnormality based on the checksum and / or number of bytes of the detection data from the wireless power supply receiver module includes:

[0067] If the received detection data from the first sensor is determined to be erroneous based on the verification results of the verification bits and / or the number of bytes of the detection data from the first sensor N times consecutively, then a communication anomaly is determined.

[0068] Where N is a positive integer greater than 1.

[0069] To avoid misjudgment, this embodiment of the application determines a communication anomaly when the received detection data from the first sensor is identified as erroneous data N times consecutively based on the verification results of the check bits and / or byte count of the first sensor's detection data. This avoids misjudgment issues caused by data fluctuations. For example, if N=10, the main control board considers the communication anomaly if it determines the received data as erroneous data 10 times consecutively.

[0070] Furthermore, the detection data from the first sensor can be abandoned for clothing processing control, and instead the detection data from the backup second sensor can be used for clothing processing control.

[0071] In some implementations, after determining that the wireless power supply receiver module is experiencing a communication malfunction, at least one of the following is also included:

[0072] Generate communication error message;

[0073] Report communication error information to the server;

[0074] Report communication anomaly information to smart mobile terminals.

[0075] After determining that the wireless power supply receiving module is experiencing a communication malfunction, this embodiment of the application can generate a communication malfunction prompt message. This prompt message can be in the form of voice and / or text, etc., to achieve the purpose of prompting the user.

[0076] To avoid situations where users are not near the clothing processing equipment and therefore cannot receive communication error messages, this embodiment of the application can also report communication error information to a smart mobile terminal, thereby informing the user that the wireless power supply receiving module is experiencing communication problems.

[0077] After determining that the wireless power supply receiving module has a communication abnormality, this embodiment of the application reports the communication abnormality information to the server. This allows the communication abnormality information to be stored on the server so that maintenance personnel can directly obtain it from the server when they come to repair the device, and quickly find the cause of the communication abnormality for repair.

[0078] In some embodiments, the second sensor includes a first sub-sensor located on the front support of the garment handling device and a second sub-sensor located in the drying duct.

[0079] Controlling the operation of the garment processing equipment based on the detection data from the second sensor includes:

[0080] The operation of the garment processing equipment is controlled based on the detection data from the first sub-sensor and / or the second sub-sensor.

[0081] The embodiments of this application do not limit the number of the first sensor and the second sensor. For example Figure 2As shown, a first sensor 4 and two second sensors 7 are configured. The two second sensors 7 are a first sub-sensor 71 and a second sub-sensor 72, respectively. The first sub-sensor 71 is located on the front support of the garment handling device, and the second sensor 72 is located in the drying air duct. The first sensor 4 and the first sub-sensors 71 and 72 are all used to detect the degree of drying of the garments. If the main control board determines that the wireless power supply receiving module has a communication abnormality, and the detection data obtained by the first sensor 4 may be incorrect, then the detection data of at least one of the first sub-sensors 71 and 72 can be used to determine whether the garments are dry, and to control the subsequent operation of the drying program to ensure the normal operation of the drying program.

[0082] Figure 4 A flowchart illustrating a specific example of a control method for a garment processing device provided in this application embodiment. Figure 4 As shown, the control method for the garment processing equipment provided in this application includes:

[0083] S210, Start.

[0084] S220: Control the wireless power supply component to start, supply power to the first sensor, so that the first sensor can detect data.

[0085] S230. Determine whether the received detection data from the first sensor is correct based on the verification result of the check bits and / or the number of bytes of the detection data from the first sensor.

[0086] If the data is correct, proceed to S240; otherwise, proceed to S250.

[0087] S240. Control the operation of the clothing processing equipment based on the detection data of the first sensor.

[0088] S250. Determine whether the number of times the received detection data from the first sensor is erroneous, based on the verification result of the verification bits and / or the number of bytes of the detection data from the first sensor, has reached N times.

[0089] If the number of iterations reaches N, proceed to step S260; otherwise, return to step S230.

[0090] S260, Communication error detected.

[0091] S270. Control the operation of the clothing processing equipment based on the detection data of the second sensor.

[0092] This application also provides a control device for a garment processing equipment. Figure 5 This is a schematic diagram of the structure of a control device for a garment processing equipment provided in an embodiment of this application, as shown below. Figure 5 As shown, the control device for the garment processing equipment includes:

[0093] The acquisition module 301 is used to determine whether the first sensor has a communication abnormality;

[0094] The control module 302 is used to determine whether the wireless power supply receiving module of the clothing processing device is experiencing communication abnormalities based on the verification result of the verification bits and / or byte count of the detection data from the first sensor.

[0095] The wireless power supply receiving module and the first sensor are located in the garment processing drum; the wireless power supply receiving module is used to supply power to the first sensor, and the wireless power supply receiving module communicates wirelessly with the main control board of the garment processing equipment.

[0096] The apparatus provided in the above embodiments of this application and the method provided in the embodiments of this application are based on the same inventive concept and have the same beneficial effects, and will not be described in detail here.

[0097] In some embodiments, the garment processing device may further include a second sensor, which is disposed on a fixed component of the garment processing device; the second sensor communicates with the main control board of the garment processing device via a wired connection.

[0098] The second sensor is mounted on a fixed component of the garment processing equipment; the second sensor communicates with the main control board of the garment processing equipment via a wired connection; both the first and second sensors are used to sense the processing status data of the same type of garment. Correspondingly, the control module can also control the operation of the garment processing equipment based on the detection data from the second sensor after determining that the wireless power supply receiving module of the garment processing equipment is experiencing a communication abnormality based on the verification result of the verification bits and / or byte count of the detection data from the first sensor.

[0099] In some implementations, the control module can also control the operation of the clothing processing equipment based on the detection data from the first sensor, provided that the wireless power supply receiving module is communicating normally.

[0100] In some implementations, the control module can also control the operation of the clothing processing equipment based on the detection data from the first sensor and the detection data from the second sensor, provided that the wireless power supply receiving module is communicating normally.

[0101] In some implementations, the control module can specifically determine that the received detection data from the first sensor is erroneous based on the verification results of the check bits and / or the number of bytes of the detection data from the first sensor N times consecutively, thus identifying a communication anomaly. Here, N is a positive integer greater than 1.

[0102] In some implementations, the control module may further include performing at least one of the following after determining that the wireless power supply receiver module is experiencing a communication malfunction:

[0103] Generate communication error message;

[0104] Report communication error information to the server;

[0105] Report communication anomaly information to smart mobile terminals.

[0106] In some embodiments, the second sensor includes a first sub-sensor located on the front support of the garment processing equipment and a second sub-sensor located in the drying duct, and the corresponding control module controls the operation of the garment processing equipment based on the detection data of the first sub-sensor and / or the second sub-sensor.

[0107] This application also provides a storage medium storing a computer program. When the computer program is executed by a processor, it implements the control method of the clothing processing device described in any of the above embodiments and has corresponding beneficial effects. To avoid repetition, it will not be described again here.

[0108] The aforementioned storage medium may be included in the aforementioned electronic device; or it may exist independently and not be assembled into the electronic device.

[0109] The storage medium may be any combination of one or more readable media. A readable medium may be a readable signal medium or a readable storage medium. A readable storage medium may be, for example, an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, apparatus, or device, or any combination thereof. More specific examples (a non-exhaustive list) of readable storage media include: electrical connections having one or more wires, portable disks, hard disks, random access memory (RAM), read-only memory (ROM), erasable programmable read-only memory (EPROM or flash memory), optical fiber, portable compact disk read-only memory (CD-ROM), optical storage devices, magnetic storage devices, or any suitable combination thereof.

[0110] Based on the same inventive concept, this application also provides a garment processing device. Figure 6 This is a schematic diagram of the structure of a garment processing device provided in an embodiment of this application. The garment processing device may include a processor 401 and a memory 402. The processor 402 executes the steps of the control method of the garment processing device as described in any of the above embodiments by calling the program or instructions stored in the memory 401, which has corresponding beneficial effects. To avoid repetition, these will not be repeated here.

[0111] The processor 401 may be a central processing unit (CPU) or other form of processing unit with data processing and / or instruction execution capabilities, and may control other components in the computer to perform desired functions.

[0112] The memory 402 may include one or more computer program products, which may include various forms of computer-readable storage media, such as volatile memory and / or non-volatile memory. Volatile memory may include, for example, random access memory (RAM) and / or cache memory. Non-volatile memory may include, for example, read-only memory (ROM), hard disk, flash memory, etc. One or more computer program instructions may be stored on the computer-readable storage medium, and the processor 401 may execute the program instructions to implement the method steps of the various embodiments of this application described above and / or other desired functions.

[0113] In addition to the methods and apparatus described above, embodiments of this application may also be computer program products, which include computer program instructions that, when executed by a processor, cause the processor to perform the method steps of various embodiments of this application.

[0114] The computer program product can be written in any combination of one or more programming languages ​​to perform the operations of the embodiments of the present invention. These programming languages ​​include object-oriented programming languages ​​such as Java and C++, as well as conventional procedural programming languages ​​such as C or similar languages. The program code can be executed entirely on the user's computing device, partially on the user's computing device, as a standalone software package, partially on the user's computing device and partially on a remote computing device, or entirely on a remote computing device or server.

[0115] In other embodiments, the garment processing device may also include other structural or functional components known to those skilled in the art, which are not described in detail or limited herein.

[0116] It should be noted that, in this document, relational terms such as "first" and "second" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0117] The above description is merely a specific embodiment of this application, enabling those skilled in the art to understand or implement this application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of this application. Therefore, this application is not to be limited to the embodiments described herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A control method for a garment processing device, characterized in that, include: Acquire detection data from the first sensor; The verification results of the verification bits and / or number of bytes of the detection data from the first sensor are used to determine whether the wireless power supply receiving module of the clothing processing device is experiencing communication abnormalities. The wireless power supply receiving module and the first sensor are disposed in the clothing processing drum; the wireless power supply receiving module is used to supply power to the first sensor, and the wireless power supply receiving module communicates wirelessly with the main control board of the clothing processing equipment.

2. The control method for the garment processing equipment according to claim 1, characterized in that, After determining that the wireless power supply receiver module of the clothing processing device is experiencing a communication anomaly based on the verification result of the verification bits and / or byte count of the detection data from the first sensor, the method further includes: The operation of the garment processing equipment is controlled based on the detection data from the second sensor; The second sensor is mounted on a fixed component of the garment processing equipment; the second sensor communicates with the main control board of the garment processing equipment via a wired connection.

3. The control method for the garment processing equipment according to claim 2, characterized in that, Also includes: Based on the normal communication of the wireless power supply receiving module, the operation of the clothing processing equipment is controlled according to the detection data of the first sensor.

4. The control method for the garment processing equipment according to claim 2, characterized in that, Also includes: Based on the normal communication of the wireless power supply receiving module, the operation of the clothing processing equipment is controlled according to the detection data of the first sensor and the detection data of the second sensor.

5. The control method for the garment processing equipment according to claim 1, characterized in that, Determining whether the wireless power supply receiver module of the clothing processing device has a communication abnormality based on the check bits and / or number of bytes of the detection data from the first sensor includes: If the received detection data from the first sensor is determined to be erroneous based on the verification results of the verification bits and / or the number of bytes of the detection data from the first sensor N times consecutively, then a communication anomaly is determined. Where N is a positive integer greater than 1.

6. The control method for the garment processing equipment according to claim 1, characterized in that, After determining that the wireless power supply receiver module is experiencing a communication malfunction, at least one of the following is also included: Generate communication error message; Report communication error information to the server; Report communication anomaly information to smart mobile terminals.

7. The control method for the garment processing equipment according to claim 2, characterized in that, The second sensor includes a first sub-sensor located on the front support of the garment processing device and a second sub-sensor located in the drying air duct; The step of controlling the operation of the clothing processing equipment based on the detection data from the second sensor includes: The operation of the garment processing equipment is controlled based on the detection data from the first sub-sensor and / or the second sub-sensor.

8. A control device for a garment processing equipment, characterized in that, include: The acquisition module is used to acquire the detection data from the first sensor; The communication detection module is used to determine whether the wireless power supply receiving module of the clothing processing device is experiencing communication abnormalities based on the verification results of the verification bits and / or the number of bytes of the detection data from the first sensor. The wireless power supply receiving module and the first sensor are disposed in the clothing processing drum; the wireless power supply receiving module is used to supply power to the first sensor, and the wireless power supply receiving module communicates wirelessly with the main control board of the clothing processing equipment.

9. A storage medium, characterized in that, The storage medium stores a computer program that, when executed by a processor, implements the steps of the method according to any one of claims 1 to 7.

10. A garment processing device, characterized in that, It includes a processor and a memory, wherein the processor executes the steps of the method as described in any one of claims 1 to 7 by invoking a program or instruction stored in the memory.