WO2020107924A1 - 冰箱生产线和生产线上冰箱软件升级的方法、介质 - Google Patents

冰箱生产线和生产线上冰箱软件升级的方法、介质 Download PDF

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Publication number
WO2020107924A1
WO2020107924A1 PCT/CN2019/098443 CN2019098443W WO2020107924A1 WO 2020107924 A1 WO2020107924 A1 WO 2020107924A1 CN 2019098443 W CN2019098443 W CN 2019098443W WO 2020107924 A1 WO2020107924 A1 WO 2020107924A1
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WIPO (PCT)
Prior art keywords
refrigerator
assembled
production line
identification code
communication module
Prior art date
Application number
PCT/CN2019/098443
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English (en)
French (fr)
Inventor
吴宗科
李震
武继荣
李志�
程奚兵
刘知光
高跃进
李振伟
Original Assignee
合肥华凌股份有限公司
合肥美的电冰箱有限公司
美的集团股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 合肥华凌股份有限公司, 合肥美的电冰箱有限公司, 美的集团股份有限公司 filed Critical 合肥华凌股份有限公司
Priority to EP19890335.3A priority Critical patent/EP3889765B1/en
Priority to US17/298,458 priority patent/US11816467B2/en
Priority to BR112021010390-2A priority patent/BR112021010390A2/pt
Publication of WO2020107924A1 publication Critical patent/WO2020107924A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F8/00Arrangements for software engineering
    • G06F8/60Software deployment
    • G06F8/65Updates
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F25REFRIGERATION OR COOLING; COMBINED HEATING AND REFRIGERATION SYSTEMS; HEAT PUMP SYSTEMS; MANUFACTURE OR STORAGE OF ICE; LIQUEFACTION SOLIDIFICATION OF GASES
    • F25DREFRIGERATORS; COLD ROOMS; ICE-BOXES; COOLING OR FREEZING APPARATUS NOT OTHERWISE PROVIDED FOR
    • F25D29/00Arrangement or mounting of control or safety devices
    • F25D29/003Arrangement or mounting of control or safety devices for movable devices
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B19/00Programme-control systems
    • G05B19/02Programme-control systems electric
    • G05B19/04Programme control other than numerical control, i.e. in sequence controllers or logic controllers
    • G05B19/042Programme control other than numerical control, i.e. in sequence controllers or logic controllers using digital processors
    • G05B19/0426Programming the control sequence
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F8/00Arrangements for software engineering
    • G06F8/70Software maintenance or management
    • G06F8/71Version control; Configuration management
    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05BCONTROL OR REGULATING SYSTEMS IN GENERAL; FUNCTIONAL ELEMENTS OF SUCH SYSTEMS; MONITORING OR TESTING ARRANGEMENTS FOR SUCH SYSTEMS OR ELEMENTS
    • G05B2219/00Program-control systems
    • G05B2219/20Pc systems
    • G05B2219/26Pc applications
    • G05B2219/2654Fridge, refrigerator

Definitions

  • This application relates to the technical field of electrical appliance manufacturing, in particular to a refrigerator production line and a method and medium for upgrading refrigerator software on the production line.
  • WiFi smart refrigerators implement various functions by burning controllers with different programs.
  • the corresponding program is usually written into the refrigerator controller of each model in advance, and then the controller is assembled into the refrigerator.
  • the controllers of refrigerators of different models have little difference in appearance, so they are writing to each controller that performs different functions. After completing the corresponding procedures, the controller may be installed in the refrigerator that does not match the model and function during the installation of the controller, thereby reducing the qualification rate and production efficiency of the product.
  • This application aims to solve one of the technical problems in the related art at least to a certain extent.
  • the first purpose of this application is to propose a refrigerator production line.
  • the firmware upgrade package is sent to the control module of the assembled refrigerator according to the identification code of each assembled refrigerator, so that the control module with the public version of the software program pre-stored is upgraded, thereby avoiding the control module due to installation errors.
  • the problem that the software program does not match the model and function of the assembled refrigerator improves the qualification rate and production efficiency of the assembled refrigerator.
  • the second purpose of this application is to propose a method for upgrading refrigerator software on a production line.
  • the third purpose of this application is to propose a non-transitory computer-readable storage medium.
  • an embodiment of the first aspect of the present application provides a refrigerator production line, including:
  • the delivery device is configured to deliver the assembled refrigerator,
  • the assembled refrigerator is assembled with a communication module and a control module, and the control module stores a public version software program;
  • a scanning device configured to scan and confirm the identification code of the assembled refrigerator and the address code of the communication module
  • the scanning device is triggered when the assembled refrigerator is transferred to the scanning area;
  • a local server configured to store the identification code of the assembled refrigerator and the address code of the communication module
  • the local server is further configured to obtain a firmware upgrade package of the assembled refrigerator corresponding to the identification code in response to a firmware upgrade request;
  • the communication module receives the firmware upgrade package, and the control module upgrades the public version software program according to the firmware upgrade package.
  • the firmware upgrade package is sent to the control module of the assembled refrigerator according to the identification code of each assembled refrigerator, so that the control module pre-stored with the public version software program is upgraded, thereby avoiding
  • the installation error leads to the problem that the software program of the control module does not match the model and function of the assembled refrigerator, which improves the pass rate and production efficiency of the assembled refrigerator.
  • refrigerator production line according to the above embodiments of the present application may also have the following additional technical features:
  • the communication module reports its own address code to the local server, and the local server determines the corresponding identification code of the assembled refrigerator according to the address code of the communication module, and Code is sent to the communication module, the communication module provides the identification code to the control module, the control module parses the identification code to obtain the assembled refrigerator model, and according to the The complete machine model sends the firmware upgrade request.
  • the refrigerator production line further includes a firmware server configured to push the latest firmware upgrade package of the assembled refrigerator to the local server.
  • the refrigerator production line further includes a commodity inspection device configured to detect the refrigeration performance and power of the assembled refrigerator, wherein the assembled refrigerator is triggered when it is transferred to the commodity inspection area The commodity inspection device.
  • the transmission mode of the transmission device is one or a combination of plate type, chain type, and roller type.
  • the power supply module is installed on the transmission device and moves synchronously with the transmission device.
  • another embodiment of the present application provides a method for upgrading refrigerator software on a production line, including the following steps:
  • a firmware upgrade package is sent to the control module of the assembled refrigerator according to the identification code of each assembled refrigerator, so that the control module with the public version of the software program pre-stored
  • the upgrade is carried out to avoid the problem that the software program of the control module does not match the model and function of the assembled refrigerator due to installation errors, and the pass rate and production efficiency of the assembled refrigerator are improved.
  • the method for upgrading refrigerator software on a production line further includes the following additional technical features:
  • the method for upgrading refrigerator software on a production line further includes: the communication module reports its own address code, and receives the identification code of the assembled refrigerator corresponding to the address code, and provides the identification code to The control module; the control module parses the identification code to obtain the complete model of the assembled refrigerator, and sends the firmware upgrade request according to the complete model.
  • the method of upgrading refrigerator software on a production line further includes: confirming that the assembled refrigerator is transferred to the commodity inspection area, and testing the cooling performance and power of the assembled refrigerator.
  • another embodiment of the present application proposes a non-transitory computer-readable storage medium on which a computer program is stored, which when executed by a processor implements a refrigerator on a production line as described in the above embodiment Software upgrade method.
  • FIG. 1 is a schematic structural diagram of a refrigerator production line provided by an embodiment of the present application.
  • FIG. 2 is a schematic structural diagram of a specific refrigerator production line provided by an embodiment of the present application.
  • FIG. 3 is a schematic flowchart of a method for upgrading refrigerator software on a production line according to an embodiment of the present application.
  • the embodiments of the present application are mainly aimed at related technologies.
  • the controllers of refrigerators of different models have a small difference in appearance, the corresponding programs are burned into the controllers performing different functions. Later, during the installation of the controller, the controller may be installed in a refrigerator that does not match the model and function, thereby reducing the technical problems of product qualification rate and production efficiency.
  • the refrigerator production line of the embodiment of the present application transmits the assembled refrigerator, and sends a firmware upgrade package to the control module of the assembled refrigerator according to the identification code of each assembled refrigerator, so that the control module pre-stored with the public version software program is upgraded, thereby avoiding Due to the installation error, the software program of the control module does not match the model and function of the assembled refrigerator, which improves the qualification rate and production efficiency of the assembled refrigerator.
  • FIG. 1 is a schematic structural diagram of a refrigerator production line provided by an embodiment of the present application.
  • the refrigerator production line includes: a transmission device 1, a scanning device 2, a local server 3, and a power supply device 4.
  • each device can be installed on the refrigerator production line in the order shown.
  • the scanning device 2 can be connected to the local server 3 in a wired or wireless manner to send data to the local server 3, and the power supply device 4 can be installed on the transmission device 1, for example, the power supply socket of the power supply device 4 is provided on the carrying surface of the transmission device 1 to move synchronously with the transmission device 1.
  • the assembled refrigerator in the embodiment of the present application includes a communication module and a control module.
  • the communication module can establish a connection with the local server 3 through a wireless connection such as WiFi to interact with the local server 3. It is applicable to the public version software program of various models.
  • the public version software program can be upgraded with firmware, and perform the corresponding functions of different types of assembled refrigerators according to the upgraded software program.
  • the transmission device 1 is configured to transmit the assembled refrigerator in the embodiment of the present application.
  • the conveying device 1 is a continuous conveying machine that uses chain plates or belts as the carrier and traction member of the assembled refrigerator.
  • the conveying method of the conveying device 1 may be any one or more of plate type, chain type or roller type
  • the bearing surface of the transmission device 1 cyclically moves in the direction shown by the arrow in FIG. 1 to carry and continuously drive the assembled refrigerator to move forward.
  • the conveying device 1 can also convey and assemble the refrigerator to be assembled.
  • the door, box and various parts of the refrigerator to be assembled can be assembled on the conveyor 1, for example, the communication module and control module of the refrigerator to be assembled can be installed to the refrigerator to be assembled through equipment such as a robot arm on the conveyor 1 In the corresponding position. Furthermore, when the refrigerator to be assembled is assembled, it is transferred to the location of the scanning device 2.
  • the scanning device 2 is configured to scan and confirm the identification code of the assembled refrigerator and the address code of the communication module, wherein the scanning device is triggered when the assembled refrigerator is transmitted to the scanning area.
  • the scanning device 2 can confirm that the assembled refrigerator moves with the conveyor 1 to the scanning area of the scanning device 2 by determining whether the emitted detection signal is reflected back by the assembled refrigerator, etc., and then, as a possible implementation ,
  • the scanning device 2 can emit an infrared light source in the scanning area to scan the preset identification code (Serial Number, abbreviated as SN code) and the address code of the communication module (Media Access Access Control Address, abbreviated as MAC code) on the assembled refrigerator box ).
  • the identification code of the assembled refrigerator can be set as a barcode and/or a two-dimensional code according to actual needs, so as to be scanned and identified by the scanning device 2 to distinguish the assembled refrigerators.
  • the scanning area of the scanning device 2 can be based on the position and identification code of the identification code and address code on the assembled refrigerator Set the area of the address code and the distance between the assembled refrigerators.
  • the identification code is a combination of barcode and two-dimensional code
  • the area of the scanning area is larger than that when the identification code is only a barcode, thus avoiding the problem of scanning area. If the setting is too small, the identification code and address code of the assembled refrigerator cannot be scanned completely, or if the scanning area is set too large, when two adjacent assembled refrigerators are close to each other, the two adjacent assembled refrigerators are scanned at the same time. Problems with identification codes and address codes.
  • the scanning device 2 recognizes the identification code of each assembled refrigerator and the address code of the communication module according to the result of the infrared code reflected by the identification code and address code of the assembled refrigerator, and sends the decoded data to the local server 3 .
  • the local server 3 is configured to save the identification code of the assembled refrigerator and the address code of the communication module, wherein the local server is further configured to obtain the firmware upgrade package of the assembled refrigerator corresponding to the identification code in response to the firmware upgrade request.
  • the local server 3 first receives the identification code of the assembled refrigerator and the address code of the communication module sent by the scanning device 2, then generates a mapping relationship between the identification code of the assembled refrigerator and the address code of the communication module, and stores the mapping relationship, It is convenient to receive the firmware upgrade request sent by the assembled refrigerator, and obtain the firmware upgrade package of the assembled refrigerator corresponding to the identification code according to the mapping relationship.
  • the assembled refrigerator passes through the scanning area and is first moved to the power supply device 4 by the drive of the transmission device 1.
  • the power supply device 4 can be connected to the assembled refrigerator through a power supply socket and the like. Power supply to the assembled refrigerator. As described in the above example, the power supply device 4 moves synchronously with the transfer device 1 during the transfer of the assembled refrigerator to continuously supply power to the assembled refrigerator.
  • the assembled refrigerator is powered on, the control module runs the pre-stored public version of the software, and at the same time, the communication module sends its own address code to the local server 3 through the wireless network.
  • the mapping relationship between the identification code and the address code of the communication module obtains the identification code of the assembled refrigerator corresponding to the address code of the communication module, and sends the identification code to the communication module.
  • the communication module provides the received identification code to the control module, and after receiving the identification code, the control module stores the identification code in the storage unit of the control module, whereby the control module writes the currently assembled refrigerator through the communication module
  • the identification code avoids manual wiring, which improves the production efficiency of the assembled refrigerator and the accuracy of the controller to obtain the identification code.
  • control module parses the stored identification code, obtains the complete model of the refrigerator currently assembled according to the information corresponding to the identification code, and then generates an over-the-Air (OTA for short) command according to the determined complete model ), remotely upgrade the pre-stored public version software program to the latest version of the software program corresponding to the assembled refrigerator of the current model, and finally send the OTA command containing the currently assembled refrigerator model to the communication module, and the communication module receives To the instruction and send a firmware update request based on the current machine model to the local server 3.
  • OTA over-the-Air
  • the local server 3 receives the firmware upgrade request, and obtains the complete machine model in the firmware upgrade request, and then queries the mapping relationship between the pre-stored complete machine model of the assembled refrigerator and the executable function in the database, and then determines the public version Upgrade content of the software program, and obtain a firmware upgrade package containing the latest version of the upgrade content, and then send the firmware upgrade package to the communication module.
  • the communication module After receiving the firmware upgrade package, the communication module sends the firmware upgrade package to the control module, so that the control module can upgrade the public version software program according to the firmware upgrade package to perform the preset function of the assembled refrigerator of the model.
  • the firmware upgrade package is obtained according to the current model of the refrigerator that has been assembled, and the control module in which the public version software program is pre-stored is upgraded.
  • the local server 3 queries the preset mapping relationship to determine that the assembled refrigerator of model A can perform the functions of remote control and automatic temperature adjustment, and the upgrade content is the firmware upgrade package for remote control and automatic temperature adjustment
  • the control module may perform the functions of remote control and automatic temperature adjustment according to the upgraded software program.
  • the local server 3 may obtain firmware upgrade packages matching each machine model in different ways.
  • the local server 3 may pre-store the firmware upgrade packages corresponding to the assembled refrigerators of all models in the database, determine the models of the currently assembled refrigerators, and according to the correspondence between the pre-stored models and the firmware upgrade package types, Obtain and obtain the firmware upgrade package matching the current model locally.
  • the local server 3 determines the model and executable function of the currently assembled refrigerator, and sends information such as the model and executable function of the assembled refrigerator to the background cloud server, and obtains the current status through the background cloud server The firmware upgrade package of the assembled refrigerator.
  • FIG. 2 is a specific example provided by an embodiment of this application. Schematic diagram of the refrigerator production line.
  • the refrigerator production line further includes: a firmware server 5 and a commodity inspection device 6.
  • the firmware server 5 is connected to the local server 3, the local server 3 determines the currently assembled refrigerator models and the upgrade content of the public version software program, and uploads the currently assembled refrigerator models and the content to be upgraded to the firmware server 5,
  • the firmware server 5 matches the firmware upgrade package suitable for the current model through cloud computing according to the received information, obtains the latest version of the firmware upgrade package, and then sends the version of the firmware upgrade package to the local server 3.
  • the firmware server 5 sends a firmware upgrade package suitable for the currently assembled refrigerator to the local server 3 to avoid occupying the storage space of the local server 3 and reduce the workload of the local server 3, which is beneficial to the assembled refrigerator to obtain the latest version Firmware upgrade package to upgrade.
  • the refrigerator has been assembled to complete the firmware upgrade, and moves to the commodity inspection device 6 along with the transmission device 1.
  • the commodity inspection device 6 is used to detect the cooling performance and power of the assembled refrigerator when the assembled refrigerator is transferred to the commodity inspection area.
  • the commodity inspection device 6 may include a wireless temperature probe, a wired temperature probe, and a power detection device. During the specific inspection, the commodity inspection device 6 detects the temperature of each compartment of the assembled refrigerator in the cooling state through each temperature probe to determine the assembled refrigerator And the output power of the assembled refrigerator in the cooling state is detected by the power detection device to determine whether the output power of the assembled refrigerator in actual application is within a preset power range.
  • the commodity inspection device 6 may also send a control instruction to the control module to detect whether the control module can execute the upgraded software program.
  • the commodity inspection device 6 first checks the refrigeration performance and power of the assembled refrigerator, confirms that the assembled refrigerator has a remote control function, and then the commodity inspection device 6 can also send a remote command to control the power off of the assembled refrigerator to the control module, and then pass the power detection device Detect whether the output power of the assembled refrigerator is reduced to zero to detect whether the control module successfully upgrades the software program.
  • the firmware upgrade package is sent to the control module of the assembled refrigerator according to the identification code of each assembled refrigerator, so that the control module with the public version of the software program pre-stored Upgrade, so as to avoid the problem that the software program of the control module does not match the model and function of the assembled refrigerator due to installation errors, and improve the pass rate and production efficiency of the assembled refrigerator.
  • FIG. 3 is a flowchart of a method for upgrading refrigerator software on a production line according to an embodiment of the present application. As shown in FIG. 3, the method for upgrading refrigerator software on the production line includes:
  • Step 101 Transmit the assembled refrigerator, wherein the assembled refrigerator is assembled with a communication module and a control module, and the control module stores a public version software program.
  • the assembled refrigerator may be conveyed through a continuous conveying device such as a conveyor belt to continuously drive the assembled refrigerator to move forward.
  • a continuous conveying device such as a conveyor belt to continuously drive the assembled refrigerator to move forward.
  • Step 102 confirm that the assembled refrigerator is transferred to the scanning area, and scan the identification code of the assembled refrigerator and the address code of the communication module.
  • a scanning device is installed on the production line in advance to confirm that the assembled refrigerator moves with the conveyor to the scanning area of the scanning device, and scans the identification code of the assembled refrigerator and the address code of the communication module.
  • the scanning device can refer to the relevant description at the scanning device 2 in the refrigerator production line, which will not be repeated here.
  • Step 103 Correspondingly save the identification code of the assembled refrigerator and the address code of the communication module, and in response to the firmware upgrade request, obtain the firmware upgrade package of the refrigerator corresponding to the identification code, so that the assembled refrigerator is upgraded according to the firmware after power-on
  • the package upgrades public version software programs.
  • the scanning device scans and obtains the identification code and address code of the assembled refrigerator, and sends the identification code and address code of the assembled refrigerator to the local server, and the local server corresponds the identification code of the assembled refrigerator and the address code of the communication module save.
  • the assembled refrigerator can be powered on by the power supply device on the transmission device, or can be powered on by the built-in power supply device, and then the communication module of the assembled refrigerator reports its own address code to the local server, And receive the identification code of the assembled refrigerator corresponding to the address code, and then provide the identification code to the control module, the control module parses the received identification code to obtain the assembled refrigerator model and sends it according to the model Firmware upgrade request.
  • the local server obtains the firmware upgrade package of the assembled refrigerator corresponding to the identification code according to the complete machine model in the firmware upgrade request, so that the assembled refrigerator upgrades the public version software program according to the firmware upgrade package.
  • the refrigeration performance and power of the assembled refrigerator are tested.
  • the specific implementation process of detecting the refrigeration performance and power of the assembled refrigerator reference may be made to the related description in the foregoing refrigerator production line embodiment, and no more details are provided here.
  • a firmware upgrade package is sent to the control module of the assembled refrigerator according to the identification code of each assembled refrigerator, so that the public version of the software is pre-stored
  • the control module of the program is upgraded, thereby avoiding the problem that the software program of the control module does not match the model and function of the assembled refrigerator due to installation errors, and improves the pass rate and production efficiency of the assembled refrigerator.
  • An embodiment of the present application also proposes a non-transitory computer-readable storage medium on which a computer program is stored, and when the program is executed by a processor, a method for upgrading refrigerator software on a production line as described in the above embodiment is implemented.
  • first and second are used for descriptive purposes only, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features.
  • the features defined with “first” and “second” may include at least one of the features either explicitly or implicitly.
  • the meaning of “plurality” is at least two, such as two, three, etc., unless otherwise specifically limited.
  • Any process or method description in a flowchart or otherwise described herein may be understood as representing a module, segment, or portion of code that includes one or more executable instructions for implementing custom logic functions or steps of a process , And the scope of the preferred embodiment of the present application includes additional implementations, in which the functions may not be performed in the order shown or discussed, including performing functions in a substantially simultaneous manner or in reverse order according to the functions involved, which shall It is understood by those skilled in the art to which the embodiments of the present application belong.
  • a "computer-readable medium” may be any device that can contain, store, communicate, propagate, or transmit a program for use by or in connection with an instruction execution system, apparatus, or device.
  • computer-readable media include the following: electrical connections (electronic devices) with one or more wires, portable computer cartridges (magnetic devices), random access memory (RAM), Read only memory (ROM), erasable and editable read only memory (EPROM or flash memory), fiber optic devices, and portable compact disk read only memory (CDROM).
  • the computer-readable medium may even be paper or other suitable medium on which the program can be printed, because, for example, by optically scanning the paper or other medium, followed by editing, interpretation, or other appropriate if necessary Process to obtain the program electronically and then store it in computer memory.
  • each part of the present application may be implemented by hardware, software, firmware, or a combination thereof.
  • multiple steps or methods may be implemented with software or firmware stored in memory and executed by a suitable instruction execution system.
  • a suitable instruction execution system For example, if it is implemented by hardware as in another embodiment, it can be implemented by any one or a combination of the following techniques known in the art: Discrete with logic gates for implementing logic functions on data signals Logic circuits, dedicated integrated circuits with appropriate combinational logic gates, programmable gate arrays (PGA), field programmable gate arrays (FPGA), etc.
  • a person of ordinary skill in the art can understand that all or part of the steps carried in the method of the above embodiments can be completed by instructing relevant hardware through a program.
  • the program can be stored in a computer-readable storage medium. When executed, it includes one of the steps of the method embodiment or a combination thereof.
  • each functional unit in each embodiment of the present application may be integrated into one processing module, or each unit may exist alone physically, or two or more units are integrated into one module.
  • the above integrated modules may be implemented in the form of hardware or software function modules. If the integrated module is implemented in the form of a software functional module and sold or used as an independent product, it may also be stored in a computer-readable storage medium.
  • the storage medium mentioned above may be a read-only memory, a magnetic disk or an optical disk.

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Abstract

本申请提出一种冰箱生产线和生产线上冰箱软件升级的方法、介质,其中冰箱生产线包括:传送装置,被配置为传送已组装冰箱;扫描装置,被配置为扫描并确认已组装冰箱的识别码和通信模块的地址码;本地服务器,被配置为保存组装冰箱的识别码和通信模块的地址码,并进一步响应于固件升级请求,获取对应识别码的已组装冰箱的固件升级包;已组装冰箱上电后,通信模块接收固件升级包,控制模块根据固件升级包对公共版软件程序进行升级。由此,该冰箱生产线在组装完成冰箱后再向各控制模块烧写程序,避免了控制模块的软件程序与组装冰箱的型号和功能不匹配的问题,提高了组装冰箱的合格率和生产效率。

Description

冰箱生产线和生产线上冰箱软件升级的方法、介质
相关申请的交叉引用
本申请基于申请号为201811435515.9,申请日为2018年11月28申请的中国专利申请提出,并要求该中国专利申请的优先权,该中国专利申请的全部内容在此引入本申请作为参考。
技术领域
本申请涉及电器制造技术领域,尤其涉及一种冰箱生产线和生产线上冰箱软件升级的方法、介质。
背景技术
目前,具有WiFi功能的智能冰箱的普及率越来越高,WiFi智能冰箱通过烧写了不同程序的控制器来实现各种功能。相关技术中,在生产线上组装冰箱时,通常是预先向各个机型的冰箱控制器烧写完相应的程序后,再将控制器装配进冰箱内。
然而,申请人发现,由于冰箱控制器的印制电路板等硬件设施是通用的,不同机型的冰箱的控制器在外观上差别较小,因此,在向执行不同功能的各控制器烧写完相应的程序后,在安装控制器过程中可能会将控制器安装到机型和功能不匹配的冰箱中,从而降低了产品的合格率和生产效率。
申请内容
本申请旨在至少在一定程度上解决相关技术中的技术问题之一。
为此,本申请的第一个目的在于提出一种冰箱生产线。该冰箱生产线组装完成冰箱后,根据各已组装冰箱的识别码向组装冰箱的控制模块发送固件升级包,使预存了公共版软件程序的控制模块进行升级,从而避免了由于安装错误导致控制模块的软件程序与已组装冰箱的型号和功能不匹配的问题,提高了已组装冰箱的合格率和生产效率。
本申请的第二个目的在于提出一种生产线上冰箱软件升级的方法。
本申请的第三个目的在于提出一种非临时性计算机可读存储介质。
为达上述目的,本申请第一方面实施例提出了一种冰箱生产线,包括:
传送装置,被配置为传送已组装冰箱,
其中,所述已组装冰箱组装有通信模块和控制模块,所述控制模块保存有公共版软件程序;
扫描装置,被配置为扫描并确认所述已组装冰箱的识别码和所述通信模块的地址码,
其中,所述已组装冰箱被传送至扫描区域时触发所述扫描装置;
本地服务器,被配置为保存所述已组装冰箱的识别码和所述通信模块的地址码,
其中,所述本地服务器进一步被配置为响应固件升级请求,获取对应所述识别码的已组装冰箱的固件升级包;
其中,所述已组装冰箱上电后,所述通信模块接收所述固件升级包,所述控制模块根据所述固件升级包对所述公共版软件程序进行升级。
本申请实施例的冰箱生产线,组装完成冰箱后,根据各已组装冰箱的识别码向已组装冰箱的控制模块发送固件升级包,使预存了公共版软件程序的控制模块进行升级,从而避免了由于安装错误导致控制模块的软件程序与已组装冰箱的型号和功能不匹配的问题,提高了已组装冰箱的合格率和生产效率。
另外,根据本申请上述实施例的冰箱生产线,还可以具有如下附加的技术特征:
在本申请一个实施例中,通信模块上报自身的地址码至所述本地服务器,所述本地服务器根据所述通信模块的地址码确定对应的所述已组装冰箱的识别码,并将所述识别码发送给所述通信模块,所述通信模块将所述识别码提供给所述控制模块,所述控制模块解析所述识别码以获得所述已组装冰箱的整机机型,并根据所述整机机型发送所述固件升级请求。
在本申请一个实施例中,冰箱生产线还包括固件服务器,所述固件服务器被配置为将所述已组装冰箱的最新固件升级包推送至所述本地服务器。
在本申请一个实施例中,冰箱生产线还包括商检装置,所述商检装置被配置为对所述已组装冰箱的制冷性能和功率进行检测,其中,所述已组装冰箱被传送至商检区域时触发所述商检装置。
在本申请一个实施例中,传送装置的传送方式为板式、链式、滚筒式中的一种或多种的组合。
在本申请一个实施例中,供电模块安装在所述传送装置上,并随所述传送装置同步移动。
为达上述目的,本申请另一方面实施例提出了一种生产线上冰箱软件升级的方法,包括以下步骤:
传送已组装冰箱,其中,已组装冰箱组装有通信模块和控制模块,控制模块保存有公共版软件程序;
确认已组装冰箱被传送至扫描区域,并扫描已组装冰箱的识别码和通信模块的地址码;
将已组装冰箱的识别码和通信模块的地址码进行对应保存,并响应于固件升级请求, 获取对应识别码的已组装冰箱的固件升级包,以使已组装冰箱在上电后根据固件升级包对所述公共版软件程序进行升级。
本申请实施例的生产线上冰箱软件升级的方法,在组装完成冰箱后,再根据各已组装冰箱的识别码向已组装冰箱的控制模块发送固件升级包,使预存了公共版软件程序的控制模块进行升级,从而避免了由于安装错误导致控制模块的软件程序与已组装冰箱的型号和功能不匹配的问题,提高了已组装冰箱的合格率和生产效率。
另外,本申请实施例的生产线上冰箱软件升级的方法还包括如下附加的技术特征:
在本申请一个实施例中,生产线上冰箱软件升级的方法还包括:通信模块上报自身的地址码,并接收对应所述地址码的所述已组装冰箱的识别码,将所述识别码提供给所述控制模块;所述控制模块解析所述识别码以获得所述已组装冰箱的整机机型,并根据所述整机机型发送所述固件升级请求。
在本申请一个实施例中,生产线上冰箱软件升级的方法还包括:确认所述已组装冰箱被传送至商检区域,并对所述已组装冰箱的制冷性能和功率进行检测。
为达上述目的,本申请另一方面实施例提出了一种非临时性计算机可读存储介质,其上存储有计算机程序,该程序被处理器执行时实现如上述实施例所述的生产线上冰箱软件升级的方法。
本申请附加的方面和优点将在下面的描述中部分给出,部分将从下面的描述中变得明显,或通过本申请的实践了解到。
附图说明
本申请上述的和/或附加的方面和优点从下面结合附图对实施例的描述中将变得明显和容易理解,其中:
图1为本申请实施例提供的一种冰箱生产线的结构示意图;
图2为本申请实施例提供的一种具体的冰箱生产线的结构示意图;以及
图3为本申请实施例提供的一种生产线上冰箱软件升级的方法的流程示意图。
具体实施方式
下面详细描述本申请的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图描述的实施例是示例性的,旨在用于解释本申请,而不能理解为对本申请的限制。
本申请实施例主要针对相关技术中,在生产线上组装冰箱时,由于不同机型的冰箱的控制器在外观上差别较小,因此,在向执行不同功能的各控制器烧写完相应的程序后,在 安装控制器过程中可能会将控制器安装到机型和功能不匹配的冰箱中,从而降低了产品的合格率和生产效率的技术问题。
本申请实施例的冰箱生产线,传送已组装冰箱,并根据各已组装冰箱的识别码向已组装冰箱的控制模块发送固件升级包,使预存了公共版软件程序的控制模块进行升级,从而避免了由于安装错误导致控制模块的软件程序与已组装冰箱的型号和功能不匹配的问题,提高了已组装冰箱的合格率和生产效率。
下面参考附图描述本申请实施例的冰箱生产线以及生产线上冰箱软件升级的方法。
图1为本申请实施例提供的一种冰箱生产线的结构示意图。如图1所示,该冰箱生产线包括:传送装置1、扫描装置2、本地服务器3和供电装置4。其中,各装置可按照图示顺序安装在冰箱生产线上,具体的,扫描装置2可以通过有线或无线的方式与本地服务器3连接,以向本地服务器3发送数据,供电装置4可以安装在传送装置1上,比如,供电装置4的供电插座设置在传送装置1的承载面上,以随传输装置1同步移动。
需要说明的是,本申请实施例中的已组装冰箱包含通信模块和控制模块,通信模块可以通过WiFi等无线连接方式与本地服务器3建立连接,以与本地服务器3产生交互,控制模块预设有适用于各种机型的公共版软件程序,该公共版软件程序可以进行固件升级,并根据升级后的软件程序执行不同机型的组装冰箱相应的功能。
下面继续参照图1,对本申请实施例提出的冰箱生产线进行详细说明:
其中,传送装置1,被配置为传送本申请实施例中的已组装冰箱。
具体的,传送装置1是以链板或皮带作为已组装冰箱的承载体和牵引构件的连续式输送机械,传送装置1的传送方式可以为板式、链式或滚筒式中的任一种或者多种方式的组合,在传送冰箱过程中,传输装置1的承载面按照图1中箭头所示的方向循环移动,以承载并持续驱动已组装冰箱向前移动。
进一步的,在本申请一个实施例中,传送装置1还可以传送并组装待组装的冰箱。待组装冰箱的门体、箱体和各零部件可以在传送装置1上进行组装,比如,待组装冰箱的通信模块和控制模块可以通过传送装置1上的机械臂等设备被安装到待组装冰箱内的相应位置上。进而,当待组装冰箱组装完成后被传送至扫描装置2位置处。
扫描装置2,被配置为扫描并确认已组装冰箱的识别码和通信模块的地址码,其中,已组装冰箱被传送至扫描区域时触发扫描装置。
具体的,扫描装置2可以通过判断发射出的检测信号是否被已组装冰箱反射回来等方式确认已组装冰箱随传送装置1移动至扫描装置2的扫描区域内,然后,作为一种可能的实现方式,扫描装置2可以在扫描区域内发射红外线光源,以扫描该已组装冰箱箱体上预设的识别码(Serial Number,简称SN码)和通信模块的地址码(Media Access Control  Address,简称MAC码)。其中,已组装冰箱的识别码根据实际需要,可以设置为条形码和/或二维码,便于被扫描装置2扫描识别以区分各组装冰箱。
需要说明的是,为了提高扫描装置2扫描已组装冰箱的识别码和地址码的效率和成功率,扫描装置2的扫描区域可以根据识别码和地址码的在已组装冰箱上的位置、识别码和地址码的面积以及各组装冰箱的间距进行设置,比如,当识别码为条形码和二维码组合时扫描区域的面积大于当识别码仅为条形码时扫描区域的面积,从而避免了由于扫描区域设置过小导致无法完整的扫描出已组装冰箱的识别码和地址码,或者扫描区域设置过大导致当相邻两个已组装冰箱距离较近时,同时扫描出相邻两个已组装冰箱的识别码和地址码的问题。
进一步的,扫描装置2根据已组装冰箱的识别码和地址码对红外线反射的结果,识别出各已组装冰箱的识别码和通信模块的地址码,并将译码后的数据发送给本地服务器3。
本地服务器3被配置为保存已组装冰箱的识别码和通信模块的地址码,其中,本地服务器进一步被配置为响应固件升级请求,获取对应识别码的已组装冰箱的固件升级包。
具体的,本地服务器3首先接收扫描装置2发送的已组装冰箱的识别码和通信模块地址码,然后生成该已组装冰箱的识别码和通信模块的地址码的映射关系,并存储该映射关系,便于接收已组装冰箱发送的固件升级请求,并根据该映射关系获取对应识别码的已组装冰箱的固件升级包。
具体实施时,作为一种发送固件升级请求的实现方式,已组装冰箱经过扫描区域,首先在传送装置1的驱动下移动至供电装置4处,供电装置4可以通过供电插座等方式连接组装冰箱并向组装冰箱供电,如上述示例所述,供电装置4在已组装冰箱传送过程中随传送装置1同步移动,以持续向已组装冰箱供电。
然后,已组装冰箱上电,控制模块运行预存的公共版软件,同时,通信模块通过无线网络向本地服务器3发送自身的地址码,本地服务器3接收到该地址码,根据存储的已组装冰箱的识别码和通信模块的地址码的映射关系,获取该通信模块的地址码对应的已组装冰箱的识别码,并将该识别码发送给通信模块。
进而,通信模块将接收到的识别码提供给控制模块,控制模块接收到该识别码后将该识别码存储到控制模块的存储单元中,由此,控制模块通过通信模块写入当前已组装冰箱的识别码,避免人工接线处理,提高了已组装冰箱的生产效率和控制器获取识别码的准确性。
进一步的,控制模块解析存储的识别码,根据该识别码对应的信息获取当前已组装冰箱的整机机型,然后根据确定的整机机型生成空中下载指令(Over-the-Air,简称OTA),即将预存的公共版软件程序远程升级至当前机型的已组装冰箱对应的最新版本的软件程序 的指令,最后再将包含当前已组装冰箱机型的OTA指令发送给通信模块,通信模块接收到指令并向本地服务器3发送基于当前整机机型的固件升级请求。
进一步的,本地服务器3接收到固件升级请求,并获取固件升级请求中的整机机型,然后查询数据库中预存的已组装冰箱的整机机型与可执行功能的映射关系,进而确定公共版软件程序的升级内容,并获取包含该升级内容的最新版本的固件升级包,然后将该固件升级包发送给通信模块。通信模块接收固件升级包后,将固件升级包发送给控制模块,便于控制模块根据固件升级包对公共版软件程序进行升级,以执行该机型的已组装冰箱预设的功能。由此,根据当前已组装冰箱的整机机型获取固件升级包,使预存了公共版软件程序的控制模块进行升级。
举例而言,本地服务器3查询预设的映射关系确定整机机型为A的已组装冰箱可以执行远程控制和温度自动调整的功能,并将升级内容为远程控制和温度自动调整的固件升级包发送给该已组装冰箱,进而该已组装冰箱安装该固件升级包后,控制模块可以根据升级后的软件程序,执行远程控制和温度自动调整的功能。
需要说明的是,实际应用中,本地服务器3可以通过不同的方式获取与各整机机型相匹配的固件升级包。
作为一种示例,本地服务器3可以在数据库中预先存储全部机型的已组装冰箱对应的固件升级包,确定当前已组装冰箱的机型,根据预存的机型与固件升级包类型的对应关系,在本地获取获取与当前机型相匹配的固件升级包。
作为另一种示例,本地服务器3确定当前已组装冰箱的机型与可执行的功能,并将已组装冰箱的机型与可执行的功能等信息发送给后台云服务器,通过后台云服务器获取当前已组装冰箱的固件升级包。
为了更加清楚的说明通过后台云服务器获取固件升级包的具体过程,以及后续完成冰箱生产的方法,本申请还提出了一种具体的冰箱生产线,图2为本申请实施例提供的一种具体的冰箱生产线的结构示意图。
如图2所示,在如图1所示的基础上,该冰箱生产线还包括:固件服务器5和商检装置6。
其中,固件服务器5与本地服务器3连接,本地服务器3确定当前已组装冰箱的机型与公共版软件程序的升级内容,并将当前已组装冰箱的机型与待升级内容上传至固件服务器5,固件服务器5根据接收到的信息通过云计算匹配出适用于当前机型的固件升级包,并获取该固件升级包的最新版本,然后将该版本的固件升级包发送给本地服务器3。
由此,通过固件服务器5向本地服务器3发送适用于当前已组装冰箱的固件升级包,避免占用本地服务器3的存储空间,降低了本地服务器3的工作负荷,有利于已组装冰箱 获取最新版本的固件升级包以进行升级。
进一步的,已组装冰箱完成固件升级,并随传送装置1移动至商检装置6处。其中,商检装置6用于在已组装冰箱被传送至商检区域时对已组装冰箱的制冷性能和功率进行检测。
具体的,商检装置6可以包括无线温度探头、有线温度探头和功率检测装置,具体检测时,商检装置6通过各温度探头检测已组装冰箱各间室在制冷状态下的温度,以确定已组装冰箱的制冷性能,并且,通过功率检测装置检测已组装冰箱在制冷状态下的输出功率,以确定已组装冰箱在实际应用中的输出功率是否处于预设的功率范围。
可选的,商检装置6还可以向控制模块发送控制指令,以检测控制模块是否可以执行升级后的软件程序。比如,商检装置6先检测完已组装冰箱的制冷性能和功率,确认组装冰箱具有远程控制功能,然后商检装置6还可以向控制模块发送控制已组装冰箱下电的远程指令,进而通过功率检测装置检测已组装冰箱的输出功率是否降低为零,以检测控制模块是否成功升级软件程序。
综上所述,本申请实施例的冰箱生产线,组装完成冰箱后,再根据各已组装冰箱的识别码向已组装冰箱的控制模块发送固件升级包,使预存了公共版软件程序的控制模块进行升级,从而避免了由于安装错误导致控制模块的软件程序与已组装冰箱的型号和功能不匹配的问题,提高了已组装冰箱的合格率和生产效率。
基于以上实施例,为了更加清楚的描述该冰箱生产线的工作过程,下面结合该生产线在具体应用场景中应用时的实施过程进行描述。
具体而言,图3是根据本申请一个实施例的生产线上冰箱软件升级的方法的流程图,如图3所示,该生产线上冰箱软件升级的方法包括:
步骤101,传送已组装冰箱,其中,已组装冰箱组装有通信模块和控制模块,控制模块保存有公共版软件程序。
具体的,在本实施例中,可以通过输送带等连续式输送设备传送已组装冰箱,以持续驱动已组装冰箱向前移动。
步骤102,确认已组装冰箱被传送至扫描区域,扫描已组装冰箱的识别码和通信模块的地址码。
具体的,预先在生产线上设置扫描装置确认已组装冰箱随传送装置移动至扫描装置的扫描区域内,并扫描已组装冰箱的识别码和通信模块的地址码。
其中,扫描装置扫描并获取已组装冰箱的识别码和地址码的具体过程,可以参考上述冰箱生产线中扫描装置2处的相关描述,在此不再赘述。
步骤103,将已组装冰箱的识别码和通信模块的地址码进行对应保存,并响应于固件升级请求,获取对应识别码的冰箱的固件升级包,以使已组装冰箱在上电后根据固件升级包对公共版软件程序进行升级。
具体的,扫描装置扫获取已组装冰箱的识别码和地址码,并将已组装冰箱的识别码和地址码发送给本地服务器,本地服务器将已组装冰箱的识别码和通信模块的地址码进行对应保存。
进一步的,在本申请一个实施例中,已组装冰箱可以通过传送装置上的供电设备上电,也可以通过内置供电装置上电,然后已组装冰箱的通信模块向本地服务器上报自身的地址码,并接收该地址码对应的已组装冰箱的识别码,然后将该识别码提供给控制模块,控制模块解析接收到的识别码以获得已组装冰箱的整机机型,并根据整机机型发送固件升级请求。
进而,本地服务器响应该固件升级请求,根据固件升级请求中的整机机型获取对应识别码的已组装冰箱的固件升级包,以使已组装冰箱根据固件升级包对公共版软件程序进行升级。
其中,本地服务器获取对应的固件升级包以及已组装冰箱根据固件升级包对公共版软件程序进行升级的具体过程可以参照上述实施例中的相关描述,在此不再赘述。
更进一步的,当已组装冰箱被传送至商检区域时对已组装冰箱的制冷性能和功率进行检测。其中,对已组装冰箱的制冷性能和功率进行检测的具体实现过程可参照上述冰箱生产线实施例中的相关描述,在此不再赘述。
综上所述,本申请实施例的生产线上冰箱软件升级的方法,组装完成冰箱后,再根据各已组装冰箱的识别码向已组装冰箱的控制模块发送固件升级包,使预存了公共版软件程序的控制模块进行升级,从而避免了由于安装错误导致控制模块的软件程序与组装冰箱的型号和功能不匹配的问题,提高了已组装冰箱的合格率和生产效率。
本申请实施例还提出一种非临时性计算机可读存储介质,其上存储有计算机程序,该程序被处理器执行时实现如上述实施例所述的生产线上冰箱软件升级的方法。
在本说明书的描述中,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。在本申请的描述中,“多个”的含义是至少两个,例如两个,三个等,除非另有明确具体的限定。
流程图中或在此以其他方式描述的任何过程或方法描述可以被理解为,表示包括一个或更多个用于实现定制逻辑功能或过程的步骤的可执行指令的代码的模块、片段或部分, 并且本申请的优选实施方式的范围包括另外的实现,其中可以不按所示出或讨论的顺序,包括根据所涉及的功能按基本同时的方式或按相反的顺序,来执行功能,这应被本申请的实施例所属技术领域的技术人员所理解。
在流程图中表示或在此以其他方式描述的逻辑和/或步骤,例如,可以被认为是用于实现逻辑功能的可执行指令的定序列表,可以具体实现在任何计算机可读介质中,以供指令执行系统、装置或设备(如基于计算机的系统、包括处理器的系统或其他可以从指令执行系统、装置或设备取指令并执行指令的系统)使用,或结合这些指令执行系统、装置或设备而使用。就本说明书而言,"计算机可读介质"可以是任何可以包含、存储、通信、传播或传输程序以供指令执行系统、装置或设备或结合这些指令执行系统、装置或设备而使用的装置。计算机可读介质的更具体的示例(非穷尽性列表)包括以下:具有一个或多个布线的电连接部(电子装置),便携式计算机盘盒(磁装置),随机存取存储器(RAM),只读存储器(ROM),可擦除可编辑只读存储器(EPROM或闪速存储器),光纤装置,以及便携式光盘只读存储器(CDROM)。另外,计算机可读介质甚至可以是可在其上打印所述程序的纸或其他合适的介质,因为可以例如通过对纸或其他介质进行光学扫描,接着进行编辑、解译或必要时以其他合适方式进行处理来以电子方式获得所述程序,然后将其存储在计算机存储器中。
应当理解,本申请的各部分可以用硬件、软件、固件或它们的组合来实现。在上述实施方式中,多个步骤或方法可以用存储在存储器中且由合适的指令执行系统执行的软件或固件来实现。如,如果用硬件来实现和在另一实施方式中一样,可用本领域公知的下列技术中的任一项或他们的组合来实现:具有用于对数据信号实现逻辑功能的逻辑门电路的离散逻辑电路,具有合适的组合逻辑门电路的专用集成电路,可编程门阵列(PGA),现场可编程门阵列(FPGA)等。
本技术领域的普通技术人员可以理解实现上述实施例方法携带的全部或部分步骤是可以通过程序来指令相关的硬件完成,所述的程序可以存储于一种计算机可读存储介质中,该程序在执行时,包括方法实施例的步骤之一或其组合。
此外,在本申请各个实施例中的各功能单元可以集成在一个处理模块中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个模块中。上述集成的模块既可以采用硬件的形式实现,也可以采用软件功能模块的形式实现。所述集成的模块如果以软件功能模块的形式实现并作为独立的产品销售或使用时,也可以存储在一个计算机可读取存储介质中。
上述提到的存储介质可以是只读存储器,磁盘或光盘等。尽管上面已经示出和描述了本申请的实施例,可以理解的是,上述实施例是示例性的,不能理解为对本申请的限制, 本领域的普通技术人员在本申请的范围内可以对上述实施例进行变化、修改、替换和变型。

Claims (10)

  1. 一种冰箱生产线,其特征在于,所述冰箱生产线包括:
    传送装置,被配置为传送已组装冰箱,
    其中,所述已组装冰箱组装有通信模块和控制模块,所述控制模块保存有公共版软件程序;
    扫描装置,被配置为扫描并确认所述已组装冰箱的识别码和所述通信模块的地址码,
    其中,所述已组装冰箱被传送至扫描区域时触发所述扫描装置;
    本地服务器,被配置为保存所述已组装冰箱的识别码和所述通信模块的地址码,
    其中,所述本地服务器进一步被配置为响应固件升级请求,获取对应所述识别码的已组装冰箱的固件升级包;
    其中,所述已组装冰箱上电后,所述通信模块接收所述固件升级包,所述控制模块根据所述固件升级包对所述公共版软件程序进行升级。
  2. 根据权利要求1所述的冰箱生产线,其特征在于,所述通信模块上报自身的地址码至所述本地服务器,所述本地服务器根据所述通信模块的地址码确定对应的所述已组装冰箱的识别码,并将所述识别码发送给所述通信模块,所述通信模块将所述识别码提供给所述控制模块,所述控制模块解析所述识别码以获得所述已组装冰箱的整机机型,并根据所述整机机型发送所述固件升级请求。
  3. 根据权利要求1所述的1所述的冰箱生产线,其特征在于,所述冰箱生产线还包括固件服务器,所述固件服务器被配置为将所述已组装冰箱的最新固件升级包推送至所述本地服务器。
  4. 根据权利要求1所述的冰箱生产线,其特征在于,所述冰箱生产线还包括商检装置,所述商检装置被配置为对所述已组装冰箱的制冷性能和功率进行检测,其中,所述已组装冰箱被传送至商检区域时触发所述商检装置。
  5. 根据权利要求1所述的冰箱生产线,其特征在于,所述传送装置的传送方式为板式、链式、滚筒式中的一种或多种的组合。
  6. 根据权利要求1所述的冰箱生产线,其特征在于,所述供电装置安装在所述传送装置上,并随所述传送装置同步移动。
  7. 一种生产线上冰箱软件升级的方法,其特征在于,所述方法包括:
    传送已组装冰箱,其中,所述已组装冰箱组装有通信模块和控制模块,所述控制模块保存有公共版软件程序;
    确认所述已组装冰箱被传送至扫描区域,并扫描所述已组装冰箱的识别码和所述通信 模块的地址码;
    将所述已组装冰箱的识别码和所述通信模块的地址码进行对应保存,并响应于固件升级请求,获取对应所述识别码的已组装冰箱的固件升级包,以使所述已组装冰箱在上电后根据所述固件升级包对所述公共版软件程序进行升级。
  8. 根据权利要求7所述的生产线上冰箱软件升级的方法,其特征在于,所述方法还包括:
    所述通信模块上报自身的地址码,并接收对应所述地址码的所述已组装冰箱的识别码,将所述识别码提供给所述控制模块;
    所述控制模块解析所述识别码以获得所述已组装冰箱的整机机型,并根据所述整机机型发送所述固件升级请求。
  9. 根据权利要求7所述的生产线上冰箱软件升级的方法,其特征在于,所述方法还包括:确认所述已组装冰箱被传送至商检区域,并对所述已组装冰箱的制冷性能和功率进行检测。
  10. 一种非临时性计算机可读存储介质,其上存储有计算机程序,其特征在于,所述计算机程序被处理器执行时实现如权利要求中7-9中任一项所述的生产线上冰箱软件升级的方法。
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