WO2022143032A1 - 缝纫设备的设备参数管理系统、方法及计算机存储介质 - Google Patents

缝纫设备的设备参数管理系统、方法及计算机存储介质 Download PDF

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Publication number
WO2022143032A1
WO2022143032A1 PCT/CN2021/135973 CN2021135973W WO2022143032A1 WO 2022143032 A1 WO2022143032 A1 WO 2022143032A1 CN 2021135973 W CN2021135973 W CN 2021135973W WO 2022143032 A1 WO2022143032 A1 WO 2022143032A1
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WIPO (PCT)
Prior art keywords
parameter
sewing
user
equipment
controller
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PCT/CN2021/135973
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English (en)
French (fr)
Inventor
卢明安
王昊旭
潘建国
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杰克科技股份有限公司
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Publication of WO2022143032A1 publication Critical patent/WO2022143032A1/zh

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    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05BSEWING
    • D05B19/00Programme-controlled sewing machines
    • D05B19/02Sewing machines having electronic memory or microprocessor control unit
    • D05B19/12Sewing machines having electronic memory or microprocessor control unit characterised by control of operation of machine
    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05BSEWING
    • D05B19/00Programme-controlled sewing machines
    • D05B19/02Sewing machines having electronic memory or microprocessor control unit
    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05BSEWING
    • D05B19/00Programme-controlled sewing machines
    • D05B19/02Sewing machines having electronic memory or microprocessor control unit
    • D05B19/04Sewing machines having electronic memory or microprocessor control unit characterised by memory aspects
    • D05B19/10Arrangements for selecting combinations of stitch or pattern data from memory ; Handling data in order to control stitch format, e.g. size, direction, mirror image
    • DTEXTILES; PAPER
    • D05SEWING; EMBROIDERING; TUFTING
    • D05BSEWING
    • D05B83/00Guards or like devices for preventing injury to operator
    • 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
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07CTIME OR ATTENDANCE REGISTERS; REGISTERING OR INDICATING THE WORKING OF MACHINES; GENERATING RANDOM NUMBERS; VOTING OR LOTTERY APPARATUS; ARRANGEMENTS, SYSTEMS OR APPARATUS FOR CHECKING NOT PROVIDED FOR ELSEWHERE
    • G07C3/00Registering or indicating the condition or the working of machines or other apparatus, other than vehicles
    • G07C3/02Registering or indicating working or idle time only
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection

Definitions

  • the invention belongs to the technical field of management of sewing equipment, and relates to a management system and method, in particular to a device parameter management system, method and computer storage medium of sewing equipment.
  • the parameter modification of traditional sewing equipment needs to be manually realized by the operator. Every time a model is changed, it needs to be set manually one by one, which undoubtedly brings greater labor intensity to the equipment maintenance personnel.
  • the Internet of Things sewing machine has been launched in the industry, which can form batch modification of equipment parameters by networking the equipment. This function improves the efficiency of management and does not require repeated settings for each device.
  • strict locking and authority management are also required when batch modification is performed.
  • the parameters of the controller of industrial sewing equipment mainly play the role of configuring the equipment.
  • the purpose of the present invention is to provide a device parameter management system, method and computer storage medium for sewing equipment, which are used to solve the problem that the prior art cannot change the device parameters at will, and bring about the management of the device. risks and poses dangerous problems for operators.
  • one aspect of the present invention provides a device parameter management system for sewing equipment, including: a visual terminal for generating and sending the user's login information when a user enters a parameter modification page; a server, It is used to receive the login information, and according to the login information, find the user rights configuration that matches the user; after receiving the operation instruction configured by the visual terminal for the user authorization, call the user authorization according to the operation instruction.
  • the corresponding interface of the sewing device is used, and the authority management operation corresponding to the operation instruction is remotely performed through the corresponding interface of the sewing device.
  • the corresponding interface of the sewing device includes a controller parameter configuration interface and a configuration interface for locking the identification bit.
  • the operation instruction for the user authorization configuration includes a controller parameter configuration instruction and a lock instruction/unlock instruction for a lock identification bit associated with each controller parameter;
  • the authorization management operation corresponding to the operation instruction includes A configuration operation of a controller parameter, a lock operation of a controller parameter, and/or an unlock operation of a controller parameter.
  • the server includes: a permission module for finding the role of the user according to the login information, assigning a user permission configuration matching the role, and managing the user permission configuration; After the login information, according to the login information, look up the user rights configuration that matches the user; the setting module is used to call the controller parameter configuration interface according to the controller parameter configuration instruction, and configure the controller parameters through the controller parameter configuration
  • the interface performs the configuration operation of the controller parameters; the locking module is used to call the configuration interface of the locked identification bit according to the locking instruction of the locked identification bit associated with each controller parameter, and trigger the configuration interface through the locked identification bit
  • the lock of the lock flag associated with each controller parameter is used to perform the lock operation of the controller parameter.
  • the locking module is further configured to perform the unlocking operation of the controller parameter by modifying the lock identification bit of the locked controller parameter according to the user's unlocking instruction.
  • the equipment parameter management system of the sewing equipment further comprises a network device respectively connected to the server and the sewing equipment in communication.
  • it also includes
  • the style sample database which stores the standard sample models of different styles of clothing at each sewing stage
  • the sensor is used to obtain the pictures of the garments in each sewing stage and the actual parameters of the sewing equipment according to the configured equipment parameters, and transmit them to the server;
  • the server compares the clothing pictures at each sewing stage with the corresponding standard sample models, and obtains the link errors; and generates new parameter configuration instructions according to the link errors, and sends them to the corresponding sewing equipment and users to modify the unlocked controller parameters. .
  • the parameters in the standard sample model include: cost/semi-finished shape, pattern position, sewing position and stitch spacing.
  • the link error includes position error and precision error
  • the boundary stitch image is pixelated by the least dichotomy method to obtain boundary pixels
  • Accuracy error is obtained by comparing the number of pixels between the border pixels corresponding to the two border pins and the blank threshold.
  • the corresponding parameters are compared to determine whether the difference exceeds the modification threshold of the corresponding controller parameters, and if so, the corresponding user is provided with an alarm; if No, the locked controller parameters are kept.
  • Another aspect of the present invention provides a device parameter management method for sewing equipment, including: receiving a login information; the login information is information generated after a user enters a parameter modification page through a visual terminal; User authority configuration matching the user; after receiving the operation instruction configured by the visual terminal for the user authority, call the corresponding interface of the sewing equipment according to the operation instruction, and pass the corresponding interface of the sewing equipment Remotely execute the permission management operation corresponding to the operation instruction.
  • the operation instruction configured for the user authority includes a controller parameter configuration instruction and a lock instruction/unlock instruction for a lock identification bit associated with each controller parameter;
  • the steps of calling the corresponding interface of the sewing equipment according to the operation instruction after the operation instruction configured by the user authority, and remotely performing the authorization management operation corresponding to the operation instruction through the corresponding interface of the sewing equipment includes: according to the operation instruction.
  • controller parameter configuration instruction call the controller parameter configuration interface, and execute the configuration operation of the controller parameter through the controller parameter configuration interface; and/or according to the locking instruction of the locking identification bit associated with each controller parameter , call the configuration interface of the lock identification bit, and trigger the locking of the lock identification bit associated with each controller parameter through the configuration interface of the lock identification bit, so as to execute the locking operation of the controller parameter.
  • the device parameter management method for the sewing device further comprises, according to the user unlocking instruction, modifying the lock flag of the locked controller parameters to execute the controller Unlock operation for parameters.
  • a final aspect of the present invention provides a computer-readable storage medium on which a computer program is stored, and when the program is executed by a processor, implements a device parameter management method for the sewing device.
  • the equipment parameter management system, method and computer storage medium of sewing equipment according to the present invention have the following beneficial effects:
  • the present invention realizes remote batch locking of important parameters of sewing equipment, etc., to ensure that preset parameters are not modified by operators, and to improve management efficiency.
  • the present invention adds a lock identification bit to the controller parameters, and the remote adjustment function of the Internet of Things device is more subdivided, thereby ensuring the strictness of subsequent authority management.
  • the present invention divides the parameters of the controller of the sewing equipment, and carries out strict authority management, so as to avoid the operation safety risks caused by the Internet of Things equipment that can remotely modify the parameters, and the instability caused by the wrong modification of the underlying parameters of the equipment controller. .
  • FIG. 1 is a schematic diagram showing the principle structure of an equipment parameter management system of a sewing equipment according to an embodiment of the present invention.
  • FIG. 2 is a schematic diagram showing the principle structure of the server of the present invention in an embodiment.
  • FIG. 3 is a schematic flowchart of a device parameter management method of a sewing device according to an embodiment of the present invention.
  • Equipment parameter management system for sewing equipment 10 sewing equipment 11 Visual terminal 12 Server 13 Network equipment 101 Controller parameter configuration interface 102 Configuration interface for locking flags 121 permission module 122 set module 123 lock module S31 ⁇ S32 step
  • This embodiment provides an equipment parameter management system for sewing equipment, including:
  • the visual terminal is used to generate and send the login information of the user after the user enters the parameter modification page;
  • the server is used to receive the login information, and according to the login information, find the user rights configuration that matches the user; after receiving the operation instruction of the visual terminal for the user rights configuration, according to the operation
  • the instruction calls the corresponding interface of the sewing device, and remotely executes the authority management operation corresponding to the operation instruction through the corresponding interface of the sewing device.
  • FIG. 1 is a schematic diagram showing the principle structure of an equipment parameter management system for sewing equipment in an embodiment.
  • the device parameter management system 1 of the sewing device includes a sewing device 10 , a visualization terminal 11 , a server 12 and a network device 13 .
  • the sewing equipment 10 includes, but is not limited to, pre-sewing equipment such as a cutting bed, a cloth spreading machine, a lockstitch machine, an overlock sewing machine, an interlock sewing machine, a thick material machine, a template machine, a pattern machine, a lockstitch machine, and a lockstitch machine.
  • Sewing equipment such as eye machine, bar tacking machine, automatic sewing unit, and post-sewing equipment such as ironing.
  • the sewing equipment 10 in order to accurately manage the sewing equipment, is provided with a corresponding interface of the sewing equipment.
  • the corresponding interfaces of the sewing equipment include a controller parameter configuration interface 101 and a configuration interface 102 for locking the identification bit.
  • the equipment parameters of the sewing equipment 10 include parameters such as process parameters, safety parameters, general control parameters, and underlying parameters.
  • the visualization terminal 11 may adopt an electronic device with a touch display screen, including a smart phone, a tablet computer, a notebook computer, and the like.
  • the touch display screen simultaneously provides an output interface and an input interface between the device and the user.
  • the touch display controller receives/sends electrical signals from/to the touch display.
  • the touchscreen display then displays visual output to the user.
  • This visual output can include text, graphics, video, and any combination thereof. Some or all of the visual output may correspond to user interface objects, more details of which will be described below.
  • the touch display also accepts user input based on tactile and/or tactile contact.
  • the touchscreen display forms a touch-sensitive surface that accepts user input.
  • the touch display and touch display controller (along with any associated modules and/or instruction sets in memory) detect contacts on the touch display (and any movement or interruption of the touch), and will Contacts translate into interactions with user interface objects, such as one or more soft keys, displayed on the touch display screen.
  • the point of contact between the touch display and the user corresponds to one or more fingers of the user.
  • the touch display may use LCD (Liquid Crystal Display) technology or LPD (Light Emitting Polymer Display) technology, although other display technologies may be used in other embodiments.
  • Touch displays and touch display controllers can detect contact and its movement or interruption using any of a variety of touch-sensitive technologies, including but not limited to capacitive, resistive, infrared, and surface acoustic wave technologies, and Other proximity sensor arrays, or other techniques for determining the point or points of contact with the touch display.
  • touch-sensitive technologies including but not limited to capacitive, resistive, infrared, and surface acoustic wave technologies, and Other proximity sensor arrays, or other techniques for determining the point or points of contact with the touch display.
  • the user may use any suitable object or accessory, such as a stylus, finger, etc., to contact the touch display.
  • the contact/motion module works with the touch screen controller to detect contact with the touch screen.
  • the contact/motion module includes various software components for performing various operations associated with detection of contact with the touch display, such as determining whether a contact has occurred, determining whether the contact has moved, and tracking movement on the touch display , and determine whether the contact is interrupted (ie, whether the contact is stopped). Determining movement of the contact point may include determining the velocity (magnitude), velocity (magnitude and direction), and/or acceleration (including magnitude and/or direction) of the contact point.
  • the contact/motion module and touch display controller also detect contact on the touchpad.
  • the visualization terminal 11 is used to generate the login information of the user when the user enters the parameter modification page, and send the login information of the user to the server 12 .
  • the parameter modification page includes a user role and a user rights configuration matching the user role.
  • the user rights configuration includes device parameters configurable by the user.
  • the login information is the account information of the user's login parameter modification page.
  • user A is a technical engineer, who has the configuration authority of the underlying parameters and security parameters;
  • user B is an operator who has the configuration authority of general control parameters and process parameters.
  • the server 12 connected to the visualization terminal 11 is configured to receive the login information, and search for a user rights configuration matching the user according to the login information.
  • the user rights configuration matching the user is displayed through the visualization terminal 11 .
  • an operation instruction for the user rights configuration is generated and fed back to the server 12 .
  • the server 12 After receiving the operation instruction configured by the visual terminal for the user authority, the server 12 calls the corresponding interface of the sewing device according to the operation instruction, and remotely executes the corresponding interface with the sewing device through the corresponding interface of the sewing device.
  • the operation instruction configured for the user authority includes a controller parameter configuration instruction and a lock instruction/unlock instruction of a lock identification bit associated with each controller parameter.
  • the authority management operation corresponding to the operation instruction includes the configuration operation of the controller parameter, the locking operation of the controller parameter and/or the unlocking operation of the controller parameter.
  • FIG. 2 is a schematic diagram of the principle structure of the server in one embodiment.
  • the server 12 includes a permission module 121 , a setting module 122 and a locking module 123 .
  • the authority module 121 is used to find the role of the user according to the login information, assign a user authority configuration matching the role, and manage the user authority configuration; and after receiving the login information, according to the user authority configuration.
  • the above login information is used to find the user rights configuration that matches the user. Strict authority management of sewing equipment is carried out through the authority module to avoid operational security risks caused by IoT devices that can remotely modify parameters, as well as instability caused by incorrect modification of the underlying parameters of the equipment controller.
  • the role of user A is a technical engineer, and user A is assigned a user rights configuration including configuration rights with process parameters and security parameters.
  • the setting module 122 is configured to call the controller parameter configuration interface according to the controller parameter configuration instruction, and perform the configuration operation of the controller parameters through the controller parameter configuration interface.
  • the controller parameter configuration instruction includes the parameter number, parameter name and configuration data of the specific parameter of the controller parameter, and the controller parameter configuration instruction is shown in Table 1.
  • the locking module 123 is used to call the configuration interface of the locking identification bit according to the locking instruction of the locking identification bit associated with each controller parameter, and trigger the connection with each controller parameter through the configuration interface of the locking identification bit.
  • the lock of the associated lock flag to perform the lock operation of this controller parameter.
  • the controller parameter configuration instructions include parameter numbers, parameter names, configuration data of specific parameters, and lock identification bits associated with several parameters of the device parameters. The lock instructions are shown in Table 2.
  • the locking module 123 adds corresponding locking flags to several parameters in advance, such as process parameters, security parameters, general control parameters, and bottom-level parameters, according to preset rules.
  • the preset rule may be 0 unlocked, 1 locked; or 0 locked, or 1 unlocked; or 0 unlocked, 100 locked, and so on.
  • the remote adjustment function of the IoT device is further subdivided, thereby ensuring the strictness of subsequent rights management.
  • the lock module 123 calls the configuration interface 102 of the lock identification bit. , when it is detected that the lock flag of the highest speed is not the lock value of 1, the lock flag of the highest speed is set to 1 (assuming 0 is unlocked and 1 is locked) to trigger the locking of the lock flag associated with the highest speed of the overlock sewing machine.
  • the locking module 123 is further configured to perform the unlocking operation of the controller parameter by modifying the lock identification bit of the locked controller parameter according to the user's unlocking instruction.
  • the lock module 123 calls the configuration interface 102 of the lock flag, and when it is detected that the lock flag of the highest speed is not the lock value 0, the lock flag of the highest speed is set to 0 (assuming 0 is unlocked and 1 is locked) to trigger the packet Unlock the lock flag associated with the highest speed of the sewing machine.
  • the network device 13 connected to the sewing device 10 and the server 12 respectively is used to send the calling instruction of the server 12 to the controller parameter configuration interface 101 and the configuration interface 102 for locking the identification bit to the sewing device. device, and transmits the operation result of the authority management operation of the server 12 to the sewing device 10 to the sewing device 10 .
  • the configuration result of a controller parameter and the locking result of a controller parameter are transmitted to the sewing equipment.
  • each module of the server is only a division of logical functions, and may be fully or partially integrated into a physical entity in actual implementation, or may be physically separated.
  • these modules can all be implemented in the form of software calling through processing elements, or all can be implemented in hardware, and some modules can be implemented in the form of calling software through processing elements, and some modules can be implemented in hardware.
  • the x module may be a separately established processing element, or may be integrated in a certain chip of the above-mentioned server.
  • the x module can also be stored in the memory of the above-mentioned server in the form of program code, and the function of the above x module can be called and executed by a certain processing element of the above-mentioned server.
  • the implementation of other modules is similar. All or part of these modules can be integrated together or implemented independently.
  • the processing element described here may be an integrated circuit with signal processing capability.
  • each step of the above-mentioned method or each of the above-mentioned modules can be completed by an integrated logic circuit of hardware in the processor element or an instruction in the form of software.
  • the above modules may be one or more integrated circuits configured to implement the above methods, such as: one or more specific integrated circuits (Application Specific Integrated Circuit, ASIC for short), one or more microprocessors (Digital Singnal Processor, DSP for short), one or more Field Programmable Gate Arrays (FPGA for short), etc.
  • ASIC Application Specific Integrated Circuit
  • DSP Digital Singnal Processor
  • FPGA Field Programmable Gate Arrays
  • the processing element may be a general-purpose processor, such as a central processing unit (Central Processing Unit, CPU for short) or other processors that can call program codes.
  • CPU Central Processing Unit
  • These modules can be integrated together and implemented in the form of a System-on-a-chip (SOC for short).
  • SOC System-on-a-chip
  • this embodiment realizes remote batch locking of important parameters of the sewing equipment, etc., to ensure that preset parameters are not modified by operators, and to improve management efficiency.
  • a lock flag is added to the parameters of the controller, and the remote adjustment function of the IoT device is further subdivided, thereby ensuring the strictness of subsequent rights management.
  • this embodiment divides the parameters of the controller of the sewing equipment, and implements strict authority management, so as to avoid the operational security risks caused by the Internet of Things equipment that can remotely modify parameters, and the instability caused by the wrong modification of the underlying parameters of the equipment controller. sex.
  • This embodiment provides a device parameter management method for sewing equipment, including:
  • the login information is the information generated after the user enters the parameter modification page through a visual terminal; according to the login information, find the user rights configuration matching the user;
  • FIG. 3 is a schematic flowchart of an embodiment of a method for managing equipment parameters of a sewing equipment.
  • the equipment parameter management method of the sewing equipment specifically includes the following steps:
  • S31 Receive a login information; the login information is information generated after the user enters the parameter modification page through a visual terminal.
  • the parameter modification page includes a user role and a user rights configuration matching the user role.
  • the user rights configuration includes device parameters configurable by the user.
  • the login information is the account information of the user's login parameter modification page.
  • an operation instruction configured for the user's rights is generated and fed back to the server.
  • the operation instruction configured for the user authority includes a controller parameter configuration instruction and a lock instruction/unlock instruction of a lock identification bit associated with each controller parameter.
  • the authority management operation corresponding to the operation instruction includes the configuration operation of the controller parameter, the locking operation of the controller parameter and/or the unlocking operation of the controller parameter.
  • the S32 includes:
  • the login information look up the role of the user, assign the user rights configuration matching the role, and manage the user rights configuration; and after receiving the login information, search for the user rights configuration according to the login information User-matched user rights configuration.
  • the configuration interface of the lock flag is called, and the locking of the lock flag associated with each controller parameter is triggered through the configuration interface of the lock flag. , to perform a lock operation for that controller parameter.
  • the unlocking operation of the controller parameter is performed by modifying the lock flag of the locked controller parameter.
  • This embodiment also provides a computer-readable storage medium on which a computer program is stored, and when the program is executed by a processor, implements the device parameter management method of the sewing device described above.
  • the computer-readable storage medium means that all or part of the steps of implementing the above method embodiments can be completed by hardware related to computer programs.
  • the aforementioned computer program may be stored in a computer-readable storage medium.
  • the steps including the above method embodiments are executed; and the foregoing storage medium includes: ROM, RAM, magnetic disk or optical disk and other media that can store program codes.
  • the protection scope of the equipment parameter management method of the sewing equipment according to the present invention is not limited to the execution sequence of the steps listed in this embodiment, and any solutions implemented by adding and subtracting steps and replacing steps in the prior art based on the principles of the present invention are all applicable. Included in the protection scope of the present invention.
  • the present invention also provides an equipment parameter management system for sewing equipment, the equipment parameter management system for sewing equipment can implement the equipment parameter management method for sewing equipment according to the present invention, but the equipment parameter management method for sewing equipment according to the present invention
  • the implementation device of the method includes but is not limited to the structure of the equipment parameter management system of the sewing equipment listed in this embodiment. Any structural deformation and replacement of the prior art made according to the principle of the present invention are included in the protection scope of the present invention. .
  • the equipment parameter management of the sewing equipment further includes a style sample database and sensors.
  • the style sample database stores standard sample models of different styles of clothing at each sewing stage.
  • Parameters in the standard sample model include: cost/semi-finished shape, pattern location, sewing location and stitch spacing.
  • the sensor is used to acquire pictures of the garments at each sewing stage and the actual parameters of the sewing equipment according to the configured equipment parameters, and transmit them to the server.
  • the sensor is a camera.
  • the server compares the garment pictures at each sewing stage with the corresponding standard sample models, and obtains the link errors; and generates new parameter configuration instructions according to the link errors, and sends them to the corresponding sewing equipment and users to modify the unlocked controller parameters. .
  • the link error includes position error and precision error.
  • the position error is obtained by comparing the pattern position/sewing position on the garment picture with the corresponding standard sample model.
  • the boundary stitch image is pixelated by the least dichotomy method to obtain boundary pixels
  • Accuracy error is obtained by comparing the number of pixels between the border pixels corresponding to the two border pins and the blank threshold.
  • the corresponding parameters will be compared to determine whether the difference exceeds the modification threshold of the corresponding controller parameters. If so, an alarm will be provided to the corresponding user; Holds locked controller parameters.
  • the negative feedback correction content of the product is added, and the others are the same as those in the first embodiment.
  • feedback correction it is possible to fine-tune and adapt to the inherent characteristics of different sewing equipment, such as service life, mechanical error, etc., while batch modification, to ensure uniform product quality and targeted personalized parameter adjustment.
  • the equipment parameter management system, method and computer storage medium of the sewing equipment of the present invention have the following beneficial effects:
  • the present invention realizes remote batch locking of important parameters of sewing equipment, etc., to ensure that preset parameters are not modified by operators, and to improve management efficiency.
  • the present invention adds a lock identification bit to the controller parameters, and the remote adjustment function of the Internet of Things device is more subdivided, thereby ensuring the strictness of subsequent authority management.
  • the present invention divides the parameters of the controller of the sewing equipment, and carries out strict authority management, so as to avoid the operation safety risks caused by the Internet of Things equipment that can remotely modify the parameters, and the instability caused by the wrong modification of the underlying parameters of the equipment controller. .
  • the invention effectively overcomes various shortcomings in the prior art and has high industrial utilization value.

Abstract

本发明提供一种缝纫设备的设备参数管理系统、方法及计算机存储介质,设备参数管理系统包括:可视化终端,用于待用户进入参数修改页面,产生并发送该用户的登录信息;服务端,用于接收所述登录信息,并根据所述登录信息,查找与该用户匹配的用户权限配置;待接收到所述可视化终端针对所述用户权限配置的操作指令后,根据所述操作指令调用所述缝纫设备的对应接口,并通过所述缝纫设备的对应接口远程执行与该操作指令对应的权限管理操作。本发明实现对缝纫设备的重要参数等进行远程批量锁定,保证预设的参数不被操作人员修改,提升管理效率;通过对控制器参数增加锁定标识位,物联网设备的远程调节功能更加细分,保证后续的权限管理的严格性。

Description

缝纫设备的设备参数管理系统、方法及计算机存储介质 技术领域
本发明属于缝纫设备的管理技术领域,涉及一种管理系统及方法,特别是涉及一种缝纫设备的设备参数管理系统、方法及计算机存储介质。
背景技术
传统的缝纫设备的参数修改需要操作人员手动实现,每次换款的时候,需要人工一台台进行设置,无疑给设备维护人员带来了较大的劳动强度。近些年,行业里推出了物联网缝纫机,可以通过将设备进行组网,形成设备参数的批量修改。这个功能提升管理的效率,不需要每台设备进行重复的设置。然而对于重要的工艺类参数(针码、压脚压力等),在批量修改的同时,也需要进行严格的锁定和权限管理,工业缝纫设备的控制器的参数主要起到对设备的配置功能。
由于机器本身在使用,如果参数被远程随意更改,会给操作人员带来一定的危险性,尤其是一些安全开关类的控制参数,例如,包缝机的针杆护罩安全开关,如果安全开关被远程关闭,那当针杆护罩未及时关闭的情况下,设备也会进行运转,这给操作工带来的风险是极大的。物联网实现了参数远程批量修改,给工厂的管理带来了便利的同时也带来了风险,设备控制器的稳定运行和操作工的使用安全需要得到保障。所以,参数锁定、接口权限严格管理是必须的。
因此,如何提供一种缝纫设备的设备参数管理系统、方法及计算机存储介质,以解决现有技术无法随意更改设备参数,给设备的管理带来了风险,给操作人员带来了危险等缺陷,实已成为本领域技术人员亟待解决的技术问题。
发明内容
鉴于以上所述现有技术的缺点,本发明的目的在于提供一种缝纫设备的设备参数管理系统、方法及计算机存储介质,用于解决现有技术无法随意更改设备参数,给设备的管理带来了风险,给操作人员带来了危险的问题。
为实现上述目的及其他相关目的,本发明一方面提供一种缝纫设备的设备参数管理系统,包括:可视化终端,用于待用户进入参数修改页面,产生并发送该用户的登录信息;服务端,用于接收所述登录信息,并根据所述登录信息,查找与该用户匹配的用户权限配置;待接收到所述可视化终端针对所述用户权限配置的操作指令后,根据所述操作指令调用所述缝纫设备的对应接口,并通过所述缝纫设备的对应接口远程执行与该操作指令对应的权限管理操作。
作为优选,所述缝纫设备的对应接口包括控制器参数配置接口和锁定标识位的配置接口。
作为优选,所述针对所述用户权限配置的操作指令包括控制器参数配置指令及与每一位控制器参数关联的锁定标识位的锁定指令/解锁指令;与该操作指令对应的权限管理操作包括控制器参数的配置操作、控制器参数的锁定操作和/或控制器参数的解锁操作。
作为优选,所述服务端包括:权限模块,用于根据所述登录信息,查找用户的角色,分配与该角色匹配的用户权限配置,并对所述用户权限配置进行管理;且在接收到所述登录信息后,根据所述登录信息,查找与该用户匹配的用户权限配置;设置模块,用于根据所述控制器参数配置指令,调用控制器参数配置接口,并通过所述控制器参数配置接口执行控制器参数的配置操作;锁定模块,用于根据与每一位控制器参数关联的锁定标识位的锁定指令,调用锁定标识位的配置接口,并通过所述锁定标识位的配置接口触发与每一位控制器参数关联的锁定标识位的锁定,以执行该控制器参数的锁定操作。
作为优选,所述锁定模块还用于根据用户解锁指令,通过修改已锁定的控制器参数的锁定标识位,以执行该控制器参数的解锁操作。
作为优选,所述缝纫设备的设备参数管理系统还包括分别与所述服务端和缝纫设备通信连接的网络设备。
作为优选,还包括
款式样本数据库,存储有不同款式服装的各缝制阶段的标准样本模型;
传感器,用于获取根据配置后的设备参数进行缝制的各缝制阶段的服装图片以及缝制设备的实际参数,并传输给服务器;
服务器分别将各缝制阶段的服装图片与对应的标准样本模型进行比较,获取环节误差;并根据环节误差生成新的参数配置指令,发送给对应缝制设备与用户,修改未锁定的控制器参数。
作为优选,标准样本模型中的参数包括:成本/半成品形状、图案位置、缝制位置和针脚间距。
作为优选,所述的环节误差包括位置误差与精度误差;
通过服装图片上的图案位置/缝制位置与对应的标准样本模型比较,获得位置误差;
精度误差的获取过程为:
边缘提取,获得图案边界针脚图像;
以固定的分辨率,采用最小二分法进行边界针脚图像像素化,获得边界像素;
通过两边界针脚对应的边界像素之间的像素与数量与空白阈值相比较,获得精度误差。
作为优选,若生成新的参数配置指令中包含锁定的控制器参数,则将对应的参数作差,判断差值是否超过对应控制器参数的修改阈值,若是,则对相应的用户提供警报;若否,则保持锁定的控制器参数。
本发明另一方面提供一种缝纫设备的设备参数管理方法,包括:接收一登录信息;所述登录信息为用户通过一可视化终端进入参数修改页面后,产生的信息;根据所述登录信息,查找与该用户匹配的用户权限配置;待接收到所述可视化终端针对所述用户权限配置的操作指令后,根据所述操作指令调用所述缝纫设备的对应接口,并通过所述缝纫设备的对应接口远程执行与该操作指令对应的权限管理操作。
作为优选,所述针对所述用户权限配置的操作指令包括控制器参数配置指令及与每一位控制器参数关联的锁定标识位的锁定指令/解锁指令;所述待接收到所述可视化终端针对所述用户权限配置的操作指令后,根据所述操作指令调用所述缝纫设备的对应接口,并通过所述缝纫设备的对应接口远程执行与该操作指令对应的权限管理操作的步骤包括:根据所述控制器参数配置指令,调用控制器参数配置接口,并通过所述控制器参数配置接口执行控制器参数的配置操作;和/或根据与每一位控制器参数关联的锁定标识位的锁定指令,调用锁定标识位的配置接口,并通过所述锁定标识位的配置接口触发与每一位控制器参数关联的锁定标识位的锁定,以执行该控制器参数的锁定操作。
作为优选,在执行该控制器参数的锁定操作的步骤后,所述缝纫设备的设备参数管理方法还包括根据用户解锁指令,通过修改已锁定的控制器参数的锁定标识位,以执行该控制器参数的解锁操作。
本发明最后一方面提供一种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所述缝纫设备的设备参数管理方法。
如上所述,本发明所述的缝纫设备的设备参数管理系统、方法及计算机存储介质,具有以下有益效果:
第一,本发明实现对缝纫设备的重要参数等进行远程批量锁定,保证预设的参数不被操作人员修改,提升管理效率。
第二,本发明对控制器参数增加锁定标识位,物联网设备的远程调节功能更加细分,保证后续的权限管理的严格性。
第三,本发明对缝纫设备的控制器参数进行划分,进行严格的权限管理,避免由于物联网设备可以远程修改参数带来的操作安全风险,以及设备控制器底层参数误修改造成的不稳定性。
附图说明
图1显示为本发明的缝纫设备的设备参数管理系统于一实施例中的原理结构示意图。
图2显示为本发明的服务端于一实施例中的原理结构示意图。
图3显示为本发明的缝纫设备的设备参数管理方法于一实施例中的流程示意图。
元件标号说明
1 缝纫设备的设备参数管理系统
10 缝纫设备
11 可视化终端
12 服务端
13 网络设备
101 控制器参数配置接口
102 锁定标识位的配置接口
121 权限模块
122 设置模块
123 锁定模块
S31~S32 步骤
具体实施方式
以下通过特定的具体实例说明本发明的实施方式,本领域技术人员可由本说明书所揭露的内容轻易地了解本发明的其他优点与功效。本发明还可以通过另外不同的具体实施方式加以实施或应用,本说明书中的各项细节也可以基于不同观点与应用,在没有背离本发明的精神下进行各种修饰或改变。需说明的是,在不冲突的情况下,以下实施例及实施例中的特征可以相互组合。
需要说明的是,以下实施例中所提供的图示仅以示意方式说明本发明的基本构想,遂图式中仅显示与本发明中有关的组件而非按照实际实施时的组件数目、形状及尺寸绘制,其实际实施时各组件的型态、数量及比例可为一种随意的改变,且其组件布局型态也可能更为复杂。
实施例一
本实施例提供一种缝纫设备的设备参数管理系统,包括:
可视化终端,用于待用户进入参数修改页面,产生并发送该用户的登录信息;
服务端,用于接收所述登录信息,并根据所述登录信息,查找与该用户匹配的用户权限配置;待接收到所述可视化终端针对所述用户权限配置的操作指令后,根据所述操作指令调用所述缝纫设备的对应接口,并通过所述缝纫设备的对应接口远程执行与该操作指令对应的权限管理操作。
以下将结合图示对本实施例所提供的缝纫设备的设备参数管理系统进行详细描述。请参阅图1,显示为缝纫设备的设备参数管理系统于一实施例中的原理结构示意图。如图1所示,所述缝纫设备的设备参数管理系统1包括缝纫设备10、可视化终端11、服务端12及网络设备13。
在本实施例中,所述缝纫设备10含但不限于指裁床、铺布机等缝前设备,平缝机、包缝机、绷缝机、厚料机、模板机、花样机、锁眼机、套结机、自动缝纫单元等缝中设备,及熨烫等缝后设备。
在本实施例中,为了精准管理缝纫设备,缝纫设备10上设置缝纫设备的对应接口。所述缝纫设备的对应接口包括控制器参数配置接口101和锁定标识位的配置接口102。
所述缝纫设备10的设备参数包括工艺参数、安全参数、一般控制参数、底层参数等等参数。
在本实施例中,所述可视化终端11可采用包括智能手机、平板电脑、笔记本电脑等具有触摸显示屏的电子设备。
其中,所述触摸显示屏在设备与用户之间同时提供输出接口和输入接口。触摸显示屏控制器接收/发送来自/去往触摸显示屏的电信号。该触摸显示屏则向用户显示可视输出。这个可视输出可以包括文本、图形、视频及其任意组合。某些或所有可视输出可与用户接口对象相对应,在下文中将对它的更多细节进行描述。
触摸显示屏还基于触觉和/或触知接触来接受用户的输入。该触摸显示屏形成一个接受用户输入的触摸敏感表面。该触摸显示屏和触摸显示屏控制器(连同存储器中任何相关联的模块和/或指令集一起)检测触摸显示屏上的接触(以及所述触摸的任何移动或中断),并且将检测到的接触变换成与显示在触摸显示屏上的诸如一个或多个软按键之类的用户界面对象的交互。在一个示例性实施例中,触摸显示屏与用户之间的接触点对应于用户的一个或多个手指。该触摸显示屏可以使用LCD(液晶显示器)技术或LPD(发光聚合物显示器)技术,但在其他实施例中可使用其他显示技术。触摸显示屏和触摸显示屏控制器可以使用多种触敏技术中的任何一种来检测接触及其移动或中断,这些触敏技术包括但不限于电容、电阻、红外和声表面波技术,以及其他接近传感器阵列,或用于确定与触摸显示屏相接触的一个或多个点的其他技术。用户可以使用任何适当物体或配件,例如指示笔、手指等等,来接触触摸显示屏。
所述的接触/运动模块与触摸显示屏控制器一道来检测与触摸显示屏的接触。该接触/运动模块包括用于执行与跟触摸显示屏的接触检测相关联的各种操作的各种软件组件,所述操作例如确定是否发生接触,确定该接触是否移动,以及追踪触摸显示屏上的移动,并且确 定该接触是否中断(即是否停止接触)。确定接触点移动的操作可以包括确定接触点的速率(幅度)、速度(幅度和方向)和/或加速度(包括幅度和/或方向)。在某些实施例中,接触/运动模块和触摸显示屏控制器还检测触摸板上的接触。
所述可视化终端11用于待用户进入参数修改页面,产生该用户的登录信息,并予以发送该用户的登录信息至所述服务端12。在本实施例中,所述参数修改页面包括用户角色、与用户角色匹配的用户权限配置。所述用户权限配置包括该用户可配置的设备参数。所述登录信息于本实施例中为用户的登录所述参数修改页面的账号信息。
例如,用户A为技术工程师,其具有底层参数和安全参数的配置权限;
例如,用户B为操作人员,其具有一般控制参数和工艺参数的配置权限。
与所述可视化终端11连接的服务端12用于接收所述登录信息,并根据所述登录信息,查找与该用户匹配的用户权限配置。与该用户匹配的用户权限配置通过可视化终端11显示。
待用户在所述可视化终端11进行权限管理操作时,生成针对所述用户权限配置的操作指令,并反馈至所述服务端12。
所述服务端12待接收到所述可视化终端针对所述用户权限配置的操作指令后,根据所述操作指令调用所述缝纫设备的对应接口,并通过所述缝纫设备的对应接口远程执行与该操作指令对应的权限管理操作。具体地,所述针对所述用户权限配置的操作指令包括控制器参数配置指令及与每一位控制器参数关联的锁定标识位的锁定指令/解锁指令。与该操作指令对应的权限管理操作包括控制器参数的配置操作、控制器参数的锁定操作和/或控制器参数的解锁操作。
请参阅图2,显示为服务端于一实施例中的原理结构示意图。如图2所示,所述服务端12包括权限模块121、设置模块122及锁定模块123。
所述权限模块121用于根据所述登录信息,查找用户的角色,分配与该角色匹配的用户权限配置,并对所述用户权限配置进行管理;且在接收到所述登录信息后,根据所述登录信息,查找与该用户匹配的用户权限配置。通过权限模块对缝纫设备进行严格的权限管理,避免由于物联网设备可以远程修改参数带来的操作安全风险,以及设备控制器底层参数误修改造成的不稳定性。
例如,根据所述登录信息,查找到用户A的角色为技术工程师,为用户A分配包括具有工艺参数和安全参数的配置权限的用户权限配置。
所述设置模块122用于根据所述控制器参数配置指令,调用控制器参数配置接口,并通过所述控制器参数配置接口执行控制器参数的配置操作。所述控制器参数配置指令包括控 制器参数的参数编号、参数名及具体参数的配置数据,控制器参数配置指令如表1所示。
表1:控制器参数配置指令
Figure PCTCN2021135973-appb-000001
所述锁定模块123用于根据与每一位控制器参数关联的锁定标识位的锁定指令,调用锁定标识位的配置接口,并通过所述锁定标识位的配置接口触发与每一位控制器参数关联的锁定标识位的锁定,以执行该控制器参数的锁定操作。所述控制器参数配置指令包括设备参数的参数编号、参数名、具体参数的配置数据及与若干参数的关联的锁定标识位,锁定指令如表2所示。
表2:控制器参数配置指令
Figure PCTCN2021135973-appb-000002
在本实施例中,所述锁定模块123预先对工艺参数、安全参数、一般控制参数、底层参数等等参数中若干参数按照预设规则增加相应的锁定标识位。所述预设规则可以为0不锁定、1锁定;或者0锁定,或者1不锁定;或者0不锁定,100锁定,等等规则。本实施例通过对控制器参数增加锁定标识位,物联网设备的远程调节功能更加细分,保证后续的权限管理的严格性。
例如,用户A在可视化终端上需锁定包缝机的最高转速不能超过一转速阈值,那么服务端12在通过权限模块121校验用户A的权限后,锁定模块123调用锁定标识位的配置接口102,在检测到最高转速的锁定标识位不为锁定值1时,对最高转速的锁定标识位置1(假设0解锁,1锁定),以触发包缝机的最高转速关联的锁定标识位的锁定。
所述锁定模块123还用于根据用户解锁指令,通过修改已锁定的控制器参数的锁定标 识位,以执行该控制器参数的解锁操作。
例如,锁定模块123调用锁定标识位的配置接口102,在检测到最高转速的锁定标识位不为锁定值0时,对最高转速的锁定标识位置0(假设0解锁,1锁定),以触发包缝机的最高转速关联的锁定标识位的解锁。
分别与所述和缝纫设备10和所述服务端12连接的网络设备13用于将所述服务端12调用控制器参数配置接口101和锁定标识位的配置接口102的调用指令发送至所述缝纫设备,并将所述服务端12对所述缝纫设备10的权限管理操作结果传输至所述缝纫设备10。
例如,将控制器参数的配置结果,将一控制器参数的锁定结果传输至缝纫设备。
需要说明的是,应理解以上服务端的各个模块的划分仅仅是一种逻辑功能的划分,实际实现时可以全部或部分集成到一个物理实体上,也可以物理上分开。且这些模块可以全部以软件通过处理元件调用的形式实现,也可以全部以硬件的形式实现,还可以部分模块通过处理元件调用软件的形式实现,部分模块通过硬件的形式实现。例如:x模块可以为单独设立的处理元件,也可以集成在上述服务端的某一个芯片中实现。此外,x模块也可以以程序代码的形式存储于上述服务端的存储器中,由上述服务端的某一个处理元件调用并执行以上x模块的功能。其它模块的实现与之类似。这些模块全部或部分可以集成在一起,也可以独立实现。这里所述的处理元件可以是一种集成电路,具有信号的处理能力。在实现过程中,上述方法的各步骤或以上各个模块可以通过处理器元件中的硬件的集成逻辑电路或者软件形式的指令完成。以上这些模块可以是被配置成实施以上方法的一个或多个集成电路,例如:一个或多个特定集成电路(Application Specific Integrated Circuit,简称ASIC),一个或多个微处理器(Digital Singnal Processor,简称DSP),一个或者多个现场可编程门阵列(Field Programmable Gate Array,简称FPGA)等。当以上某个模块通过处理元件调度程序代码的形式实现时,该处理元件可以是通用处理器,如中央处理器(Central Processing Unit,简称CPU)或其它可以调用程序代码的处理器。这些模块可以集成在一起,以片上系统(System-on-a-chip,简称SOC)的形式实现。
本实施例所述缝纫设备的设备参数管理系统具有以下有益效果:
第一,本实施例实现对缝纫设备的重要参数等进行远程批量锁定,保证预设的参数不被操作人员修改,提升管理效率。
第二,本实施例对控制器参数增加锁定标识位,物联网设备的远程调节功能更加细分,保证后续的权限管理的严格性。
第三,本实施例对缝纫设备的控制器参数进行划分,进行严格的权限管理,避免由于 物联网设备可以远程修改参数带来的操作安全风险,以及设备控制器底层参数误修改造成的不稳定性。
实施例二
本实施例提供一种缝纫设备的设备参数管理方法,包括:
接收一登录信息;所述登录信息为用户通过一可视化终端进入参数修改页面后,产生的信息;根据所述登录信息,查找与该用户匹配的用户权限配置;
待接收到所述可视化终端针对所述用户权限配置的操作指令后,根据所述操作指令调用所述缝纫设备的对应接口,并通过所述缝纫设备的对应接口远程执行与该操作指令对应的权限管理操作。
请参阅图3,显示为缝纫设备的设备参数管理方法于一实施例中的流程示意图。如图3所示,所述缝纫设备的设备参数管理方法具体包括以下步骤:
S31,接收一登录信息;所述登录信息为用户通过一可视化终端进入参数修改页面后,产生的信息。
在本实施例中,所述参数修改页面包括用户角色、与用户角色匹配的用户权限配置。所述用户权限配置包括该用户可配置的设备参数。所述登录信息于本实施例中为用户的登录所述参数修改页面的账号信息。
S32,根据所述登录信息,查找与该用户匹配的用户权限配置。与该用户匹配的用户权限配置通过可视化终端显示。
待用户在所述可视化终端进行权限管理操作时,生成针对所述用户权限配置的操作指令,并反馈至所述服务端。
S33,待接收到所述可视化终端针对所述用户权限配置的操作指令后,根据所述操作指令,调用所述缝纫设备的对应接口,并通过所述缝纫设备的对应接口远程执行与该操作指令对应的权限管理操作。
在本实施例中,所述针对所述用户权限配置的操作指令包括控制器参数配置指令及与每一位控制器参数关联的锁定标识位的锁定指令/解锁指令。与该操作指令对应的权限管理操作包括控制器参数的配置操作、控制器参数的锁定操作和/或控制器参数的解锁操作。
具体地,所述S32包括:
根据所述登录信息,查找用户的角色,分配与该角色匹配的用户权限配置,并对所述用户权限配置进行管理;且在接收到所述登录信息后,根据所述登录信息,查找与该用户匹配的用户权限配置。
根据所述控制器参数配置指令,调用控制器参数配置接口,并通过所述控制器参数配置接口执行控制器参数的配置操作;和/或
根据与每一位控制器参数关联的锁定标识位的锁定指令,调用锁定标识位的配置接口,并通过所述锁定标识位的配置接口触发与每一位控制器参数关联的锁定标识位的锁定,以执行该控制器参数的锁定操作。
根据用户解锁指令,通过修改已锁定的控制器参数的锁定标识位,以执行该控制器参数的解锁操作。
本实施例还提供一种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上述缝纫设备的设备参数管理方法。
本领域普通技术人员可以理解计算机可读存储介质为:实现上述各方法实施例的全部或部分步骤可以通过计算机程序相关的硬件来完成。前述的计算机程序可以存储于一计算机可读存储介质中。该程序在执行时,执行包括上述各方法实施例的步骤;而前述的存储介质包括:ROM、RAM、磁碟或者光盘等各种可以存储程序代码的介质。
本发明所述的缝纫设备的设备参数管理方法的保护范围不限于本实施例列举的步骤执行顺序,凡是根据本发明的原理所做的现有技术的步骤增减、步骤替换所实现的方案都包括在本发明的保护范围内。
本发明还提供一种缝纫设备的设备参数管理系统,所述缝纫设备的设备参数管理系统可以实现本发明所述的缝纫设备的设备参数管理方法,但本发明所述的缝纫设备的设备参数管理方法的实现装置包括但不限于本实施例列举的缝纫设备的设备参数管理系统的结构,凡是根据本发明的原理所做的现有技术的结构变形和替换,都包括在本发明的保护范围内。
实施例三
在本实施例中,缝纫设备的设备参数管理还包括款式样本数据库和传感器。
款式样本数据库,存储有不同款式服装的各缝制阶段的标准样本模型。
标准样本模型中的参数包括:成本/半成品形状、图案位置、缝制位置和针脚间距。
传感器,用于获取根据配置后的设备参数进行缝制的各缝制阶段的服装图片以及缝制设备的实际参数,并传输给服务器。在本实施例中,传感器为摄像头。
服务器分别将各缝制阶段的服装图片与对应的标准样本模型进行比较,获取环节误差;并根据环节误差生成新的参数配置指令,发送给对应缝制设备与用户,修改未锁定的控制器参数。
环节误差包括位置误差与精度误差。
通过服装图片上的图案位置/缝制位置与对应的标准样本模型比较,获得位置误差。
精度误差的获取过程为:
边缘提取,获得图案边界针脚图像;
以固定的分辨率,采用最小二分法进行边界针脚图像像素化,获得边界像素;
通过两边界针脚对应的边界像素之间的像素与数量与空白阈值相比较,获得精度误差。
若生成新的参数配置指令中包含锁定的控制器参数,则将对应的参数作差,判断差值是否超过对应控制器参数的修改阈值,若是,则对相应的用户提供警报;若否,则保持锁定的控制器参数。
在本实施例中,增加了产品的负反馈修正内容,其他同实施例一。通过反馈修正,能够在批量修改的同时,针对不同缝纫设备的固有特征,例如使用年限、机械误差等进行微调适配,保证产品质量统一,有针对性地个性化参数调节。
综上所述,本发明所述缝纫设备的设备参数管理系统、方法及计算机存储介质具有以下有益效果:
第一,本发明实现对缝纫设备的重要参数等进行远程批量锁定,保证预设的参数不被操作人员修改,提升管理效率。
第二,本发明对控制器参数增加锁定标识位,物联网设备的远程调节功能更加细分,保证后续的权限管理的严格性。
第三,本发明对缝纫设备的控制器参数进行划分,进行严格的权限管理,避免由于物联网设备可以远程修改参数带来的操作安全风险,以及设备控制器底层参数误修改造成的不稳定性。本发明有效克服了现有技术中的种种缺点而具高度产业利用价值。
上述实施例仅例示性说明本发明的原理及其功效,而非用于限制本发明。任何熟悉此技术的人士皆可在不违背本发明的精神及范畴下,对上述实施例进行修饰或改变。因此,举凡所属技术领域中具有通常知识者在未脱离本发明所揭示的精神与技术思想下所完成的一切等效修饰或改变,仍应由本发明的权利要求所涵盖。

Claims (14)

  1. 一种缝纫设备的设备参数管理系统,其特征在于,包括:
    可视化终端,用于产生并发送用户的登录信息;发送对应用户权限配置的操作指令;
    服务端,用于接收登录信息,并根据所述登录信息,查找与该用户匹配的用户权限配置;根据接收到的操作指令调用缝纫设备的对应接口,并通过缝纫设备的对应接口远程执行与该操作指令对应的权限管理操作。
  2. 根据权利要求1所述的缝纫设备的设备参数管理系统,其特征在于,所述缝纫设备的对应接口包括控制器参数配置接口和锁定标识位的配置接口。
  3. 根据权利要求2所述的缝纫设备的设备参数管理系统,其特征在于,
    所述针对所述用户权限配置的操作指令包括控制器参数配置指令及与每一位控制器参数关联的锁定标识位的锁定指令/解锁指令;
    与该操作指令对应的权限管理操作包括控制器参数的配置操作、控制器参数的锁定操作和/或控制器参数的解锁操作。
  4. 根据权利要求1或2或3所述的缝纫设备的设备参数管理系统,其特征在于,所述服务端包括:
    权限模块,用于根据登录信息,查找用户的角色,分配与该角色匹配的用户权限配置,并对所述用户权限配置进行管理;且在接收到所述登录信息后,根据所述登录信息,查找与该用户匹配的用户权限配置;
    设置模块,用于根据控制器参数配置指令,调用控制器参数配置接口,并通过所述控制器参数配置接口执行控制器参数的配置操作;
    锁定模块,用于根据与每一位控制器参数关联的锁定标识位的锁定指令,调用锁定标识位的配置接口,并通过锁定标识位的配置接口触发与每一位控制器参数关联的锁定标识位的锁定,以执行该控制器参数的锁定操作。
  5. 根据权利要求4所述的缝纫设备的设备参数管理系统,其特征在于,所述锁定模块还用于根据用户解锁指令,通过修改已锁定的控制器参数的锁定标识位,以执行该控制器参数的解锁操作。
  6. 根据权利要求1或2或3或5所述的缝纫设备的设备参数管理系统,其特征在于,所述缝纫设备的设备参数管理系统还包括分别与所述服务端和缝纫设备通信连接的网络设备。
  7. 根据权利要求1所述的缝纫设备的设备参数管理系统,其特征在于,还包括
    款式样本数据库,存储有不同款式服装的各缝制阶段的标准样本模型;
    传感器,用于获取根据配置后的设备参数进行缝制的各缝制阶段的服装图片以及缝制设备的 实际参数,并传输给服务器;
    服务器分别将各缝制阶段的服装图片与对应的标准样本模型进行比较,获取环节误差;并根据环节误差生成新的参数配置指令,发送给对应缝制设备与用户,修改未锁定的控制器参数。
  8. 根据权利要求7所述的缝纫设备的设备参数管理系统,其特征在于,标准样本模型中的参数包括:成本/半成品形状、图案位置、缝制位置和针脚间距。
  9. 根据权利要求8所述的缝纫设备的设备参数管理系统,其特征在于,所述的环节误差包括位置误差与精度误差;
    通过服装图片上的图案位置/缝制位置与对应的标准样本模型比较,获得位置误差;
    精度误差的获取过程为:
    边缘提取,获得图案边界针脚图像;
    以固定的分辨率,采用最小二分法进行边界针脚图像像素化,获得边界像素;
    通过两边界针脚对应的边界像素之间的像素与数量与空白阈值相比较,获得精度误差。
  10. 根据权利要求8所述的缝纫设备的设备参数管理系统,其特征在于,若生成新的参数配置指令中包含锁定的控制器参数,则将对应的参数作差,判断差值是否超过对应控制器参数的修改阈值,若是,则对相应的用户提供警报;若否,则保持锁定的控制器参数。
  11. 一种缝纫设备的设备参数管理方法,采用如权利要求1~10中任意一项所述的一种缝纫设备的设备参数管理系统,其特征在于,包括:
    接收一登录信息;所述登录信息为用户通过一可视化终端进入参数修改页面后,产生的信息;根据所述登录信息,查找与该用户匹配的用户权限配置;
    待接收到所述可视化终端针对所述用户权限配置的操作指令后,根据所述操作指令调用所述缝纫设备的对应接口,并通过所述缝纫设备的对应接口远程执行与该操作指令对应的权限管理操作。
  12. 根据权利要求11所述的缝纫设备的设备参数管理方法,其特征在于,所述针对所述用户权限配置的操作指令包括控制器参数配置指令及与每一位控制器参数关联的锁定标识位的锁定指令/解锁指令;
    接口远程执行与该操作指令对应的权限管理操作的步骤包括:
    根据所述控制器参数配置指令,调用控制器参数配置接口,并通过所述控制器参数配置接口执行控制器参数的配置操作;和/或
    根据与每一位控制器参数关联的锁定标识位的锁定指令,调用锁定标识位的配置接口,并通过所述锁定标识位的配置接口触发与每一位控制器参数关联的锁定标识位的锁定,以执行该 控制器参数的锁定操作。
  13. 根据权利要求11所述的缝纫设备的设备参数管理方法,其特征在于,在执行该控制器参数的锁定操作的步骤后,所述缝纫设备的设备参数管理方法还包括根据用户解锁指令,通过修改已锁定的控制器参数的锁定标识位,以执行该控制器参数的解锁操作。
  14. 一种计算机存储介质,其上存储有计算机程序,其特征在于,该程序被处理器执行时实现权利要求11至13中任一项所述缝纫设备的设备参数管理方法。
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Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3540126A1 (de) * 1985-11-13 1987-02-19 Baeckmann Reinhard Verfahren und einrichtung zur integrierten ueberwachung des ober- und unterfadens in naehmaschinen und -automaten und des naehprozesses
CN101675687A (zh) * 2007-04-30 2010-03-17 交互数字技术公司 具有新功能的家庭节点-b
CN104778292A (zh) * 2014-01-14 2015-07-15 香港纺织及成衣研发中心有限公司 一种服装功能设计计算机辅助系统及方法
CN106681202A (zh) * 2016-11-29 2017-05-17 浙江众邦机电科技有限公司 用于缝纫设备的身份管理系统、身份管理控制方法及装置
CN106790566A (zh) * 2016-12-27 2017-05-31 杰克缝纫机股份有限公司 基于无线网络的缝纫设备远程监控系统
CN107218894A (zh) * 2017-04-28 2017-09-29 合肥雅视智能科技有限公司 一种快速稳定的亚像素级精度器件厚度检测方法
CN107454187A (zh) * 2017-08-24 2017-12-08 杰克缝纫机股份有限公司 缝纫机参数配置方法、系统、存储器、电子设备及服务器
CN109767443A (zh) * 2019-01-17 2019-05-17 深圳码隆科技有限公司 一种布料瑕疵数据收集方法及装置
CN110806893A (zh) * 2019-09-27 2020-02-18 云深互联(北京)科技有限公司 浏览器参数配置的控制方法、装置及设备

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3540126A1 (de) * 1985-11-13 1987-02-19 Baeckmann Reinhard Verfahren und einrichtung zur integrierten ueberwachung des ober- und unterfadens in naehmaschinen und -automaten und des naehprozesses
CN101675687A (zh) * 2007-04-30 2010-03-17 交互数字技术公司 具有新功能的家庭节点-b
CN104778292A (zh) * 2014-01-14 2015-07-15 香港纺织及成衣研发中心有限公司 一种服装功能设计计算机辅助系统及方法
CN106681202A (zh) * 2016-11-29 2017-05-17 浙江众邦机电科技有限公司 用于缝纫设备的身份管理系统、身份管理控制方法及装置
CN106790566A (zh) * 2016-12-27 2017-05-31 杰克缝纫机股份有限公司 基于无线网络的缝纫设备远程监控系统
CN107218894A (zh) * 2017-04-28 2017-09-29 合肥雅视智能科技有限公司 一种快速稳定的亚像素级精度器件厚度检测方法
CN107454187A (zh) * 2017-08-24 2017-12-08 杰克缝纫机股份有限公司 缝纫机参数配置方法、系统、存储器、电子设备及服务器
CN109767443A (zh) * 2019-01-17 2019-05-17 深圳码隆科技有限公司 一种布料瑕疵数据收集方法及装置
CN110806893A (zh) * 2019-09-27 2020-02-18 云深互联(北京)科技有限公司 浏览器参数配置的控制方法、装置及设备

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