All-in-one control method, device, storage medium and system for clothing equipment
By unifying the interface of the sewing controller, hanging controller and production management software, the operational complexity caused by independent operation is solved, efficient all-in-one control is achieved, and costs and learning difficulty are reduced.
Patent Information
- Application Number
- CN202111328144.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-11-10
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2041-11-10
AI Technical Summary
In the existing technology, sewing equipment, clothing hanging systems and clothing production and manufacturing execution systems operate independently, resulting in complex and error-prone operations, a high learning threshold, and a lack of integrated control solutions.
By obtaining the library files of the controller and production management software, establishing an association table, and uniformly displaying the human-computer interaction interface, all-in-one control is achieved, and the interfaces of the sewing controller, hanging controller, and production management software are integrated on the same terminal using library files.
It realizes the interaction and data integration between systems, reduces the complexity of operation, improves work efficiency, and reduces the cost of hardware configuration and update.
Smart Images

Figure CN116107269B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of sewing machine interaction technology, and in particular to an all-in-one control method, device, storage medium and system for clothing equipment. Background Art
[0002] At present, sewing equipment, garment hanging systems and garment production and manufacturing execution systems are commonly used in garment sewing workshops. The sewing equipment is equipped with an interactive device panel; the garment hanging system is equipped with an operation panel for recording and displaying work conditions such as station and employee information. The operation panel also has functions such as rework and fault reporting; the garment production and manufacturing execution system is equipped with a workstation terminal that displays garment production order information. The workstation terminal can display information such as the current style, color, size, quantity and process requirements of the garment.
[0003] In the prior art, the above three equipment systems are operated independently. This processing method requires the operator to face three different interfaces at the same time during interactive operations, which not only increases the complexity of the operation but also easily leads to negligent operations and errors. In addition, there are many types of sewing equipment themselves, and each sewing equipment has its own human-computer interaction terminal. The interfaces of these interaction terminals vary greatly, which increases the threshold for learning operations and also brings inconvenience to use.
[0004] Therefore, how to achieve the integrated control of sewing equipment, garment hanging system and garment production and manufacturing execution system is an urgent problem to be solved. Summary of the Invention
[0005] In view of the shortcomings of the prior art described above, the purpose of the present invention is to provide an all-in-one control method, device, storage medium and system for clothing equipment, which is used to solve the problem that the prior art cannot achieve integrated control of sewing equipment, clothing hanging systems and clothing production and manufacturing execution systems.
[0006] To achieve the above-mentioned objectives and other related objectives, the present invention provides an all-in-one control method for clothing equipment, comprising the following steps: obtaining an access signal of a first controller and a first library file of production management software, and the first controller stores the corresponding electric control system in an electric control library set based on the library file; determining the first human-computer interaction interface information corresponding to the first controller based on the access signal; determining the second human-computer interaction interface information corresponding to the first library file based on the first library file; calling the corresponding first human-computer interaction interface and second human-computer interaction interface from the human-computer interaction library based on the first human-computer interaction interface information and the second human-computer interaction interface information, and displaying the first human-computer interaction interface and the second human-computer interaction interface on the same terminal at the same time.
[0007] In one embodiment of the present invention, the first controller includes a sewing controller and a hanging controller; before obtaining the access signal of the first controller and the first library file of the production management software, it also includes: developing a docking interface between the electronic control system of the sewing controller and the electronic control system of the hanging controller according to the same rules to form a second library file of the electronic control system of the sewing controller and a third library file of the electronic control system of the hanging controller; and storing the second library file and the third library file in the electronic control library collection.
[0008] In one embodiment of the present invention, before obtaining the access signal of the first controller and the first library file of the production management software, it also includes: developing software interfaces of different production management software according to the same rules to form library files corresponding to the different production management software; the first library file is in the library file; and the library file is stored in a production management software library collection.
[0009] In one embodiment of the present invention, before obtaining the access signal of the first controller and the first library file of the production management software, it also includes: establishing a first association relationship table between the electric control systems of each sewing controller and the electric control systems of each hanging controller in the electric control library set based on the historical information of the clothing equipment; establishing a second association relationship table between each production management software in the production management software library set; establishing a third association relationship table between the electric control library set, the production management software library set and the human-computer interaction library; the human-computer interaction library pre-stores the human-computer interaction interface developed based on the sewing controller, the hanging controller and the production management software; based on the first association relationship table, the second association relationship table and the third association relationship table, creating a data association relationship when calling the electric control library set, the production management software library set and the human-computer interaction library.
[0010] In one embodiment of the present invention, before obtaining the access signal of the first controller and the first library file of the production management software, it also includes: presetting different identification modules, and the different identification modules develop software interfaces according to the same rules to form library files corresponding to the different identification modules; storing the library files corresponding to the different identification modules in a hardware library set; obtaining operation information of the first operation; based on the operation information, determining the input method corresponding to the first operation, and the input method includes: card swiping, fingerprint recognition, and barcode scanning gun; based on the input method, calling the identification module corresponding to the input method to perform security authentication of the first operation; when the security authentication passes, performing the second operation, and the second operation includes: obtaining the access signal of the first controller and the first library file of the production management software.
[0011] Correspondingly, the present invention provides an all-in-one control device for clothing equipment, comprising:
[0012] In one embodiment of the present invention, an acquisition module is used to obtain an access signal of a first controller and a first library file of production management software, and the first controller stores the corresponding electric control system in an electric control library set based on the library file; a first determination module is used to determine the first human-computer interaction interface information corresponding to the first controller based on the access signal; a second determination module is used to determine the second human-computer interaction interface information corresponding to the first library file based on the first library file; a processing module is used to call the corresponding first human-computer interaction interface and second human-computer interaction interface from the human-computer interaction library based on the first human-computer interaction interface information and the second human-computer interaction interface information, and display the first human-computer interaction interface and the second human-computer interaction interface on the same terminal at the same time.
[0013] In one embodiment of the present invention, the acquisition module is also used to: develop software interfaces of different production management software according to the same rules to form library files corresponding to the different production management software; the first library file is in the library file; and the library file is stored in a production management software library collection.
[0014] The present invention provides a storage medium on which a computer program is stored. When the program is executed by a processor, the above-mentioned all-in-one control method for clothing equipment is realized.
[0015] The present invention provides an all-in-one clothing equipment control terminal, comprising a memory for storing a computer program; and a processor for running the computer program to implement the above-mentioned all-in-one clothing equipment control method.
[0016] As described above, the all-in-one control method and device for clothing equipment of the present invention has the following beneficial effects:
[0017] (1) Realize the interaction, control and data integration between systems based on library files, and connect different software services and equipment controls.
[0018] (2) Each library file can be updated individually without affecting the use of other library files.
[0019] (3) Reduce the workload of docking between different systems, avoid inconvenience to operators, and thus improve work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 Shown is a flow chart of an embodiment of the all-in-one clothing equipment control method of the present invention.
[0021] Figure 2It is a schematic diagram of an all-in-one system according to an embodiment of the all-in-one control method for clothing equipment of the present invention.
[0022] Figure 3 Shown is a schematic diagram of an interactive interface of an embodiment of the all-in-one clothing equipment control method of the present invention.
[0023] Figure 4 Shown is a schematic structural diagram of an all-in-one control device for clothing equipment in one embodiment of the present invention.
[0024] Figure 5 The figure shows an all-in-one clothing equipment control terminal in one embodiment of the all-in-one clothing equipment control device of the present invention.
[0025] Component number description
[0026] 41 Get Module
[0027] 42 First determination module
[0028] 43 Second determination module
[0029] 44 Processing Module
[0030] 51 processors
[0031] 52 Memory DETAILED DESCRIPTION
[0032] The following describes the embodiments of the present invention through specific examples. Those skilled in the art can easily understand other advantages and effects of the present invention from the content disclosed in this specification. The present invention can also be implemented or applied through other different specific embodiments. The details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of the present invention. It should be noted that the following embodiments and features in the embodiments can be combined with each other unless they conflict.
[0033] It should be noted that the illustrations provided in the following embodiments are merely schematic illustrations of the basic concept of the present invention. Therefore, the illustrations only show components related to the present invention and are not drawn according to the number, shape, and size of components in actual implementation. In actual implementation, the type, quantity, and proportion of each component may be changed arbitrarily, and the component layout may also be more complex.
[0034] The all-in-one control method, device, storage medium and system for clothing equipment of the present invention can realize the interaction, control and data integration between various systems based on library files, and connect different software services and equipment controls; and each library file can be updated separately without affecting the use of other library files; at the same time, the docking workload between different systems is reduced, avoiding inconvenience to operators, thereby improving work efficiency.
[0035] like Figure 1 As shown, in this embodiment, the all-in-one control method for clothing equipment of the present invention includes the following steps:
[0036] Step S1: obtaining an access signal of a first controller and a first library file of production management software, wherein the first controller stores a corresponding electric control system in an electric control library set based on the library file.
[0037] Specifically, the first controller includes a sewing controller and a hanging controller. The first controller stores the corresponding electric control system in an electric control library set based on a library file; the production management software stores the corresponding production management software library file in a production management software library set based on a library file.
[0038] Further specifically, before obtaining the access signal of the first controller and the first library file of the production management software, it also includes: developing the docking interface of the electronic control system of the sewing controller and the electronic control system of the hanging controller according to the same rules to form the second library file of the electronic control system of the sewing controller and the third library file of the electronic control system of the hanging controller; storing the second library file and the third library file in the electronic control library collection.
[0039] More specifically, before obtaining the access signal from the first controller and the first library file of the production management software, the method further includes: developing software interfaces for different production management software according to the same rules to form library files corresponding to the different production management software; the first library file is included in the library file; the library file is stored in a production management software library set; and the library files corresponding to the different production management software are called to establish corresponding business logic and data flow exchange.
[0040] Further specifically, before obtaining the access signal of the first controller and the first library file of the production management software, it also includes: establishing a first association relationship table between the electric control systems of each sewing controller and the electric control systems of each hanging controller in the electric control library set based on the historical information of the clothing equipment; establishing a second association relationship table between each production management software in the production management software library set; establishing a third association relationship table between the electric control library set, the production management software library set and the human-computer interaction library; the human-computer interaction library pre-stores the human-computer interaction interface developed based on the sewing controller, the hanging controller and the production management software; based on the first association relationship table, the second association relationship table and the third association relationship table, creating a data association relationship when calling the electric control library set, the production management software library set and the human-computer interaction library.
[0041] More specifically, before obtaining the access signal of the first controller and the first library file of the production management software, the method further includes: presetting different identification modules, developing software interfaces for the different identification modules according to the same rules to form library files corresponding to the different identification modules; storing the library files corresponding to the different identification modules in a hardware library set; obtaining operation information of the first operation; determining the input method corresponding to the first operation based on the operation information, the input method including: card swiping, fingerprint recognition, and barcode scanning; based on the input method, calling the identification module corresponding to the input method to perform security authentication of the first operation; when the security authentication passes, performing the second operation, the second operation including: obtaining the access signal of the first controller and the first library file of the production management software. In addition, by storing and calling different identification modules in the form of library files, it is possible to integrate the security authentication operation performed when calling any of the library files of the sewing controller, the hanging controller, and the production management software. For example, traditional security authentication operations are used independently by each device system and cannot be performed universally, thereby increasing the company's digitalization costs. The identification module set up in this solution unifies the security authentication operations of each device system through library files. For example, the card swipe authentication for the hanging controller can also be used as the card swipe authentication for the production management software. Through this processing mode, the overall hardware configuration cost is reduced and the operator's usage steps are simplified.
[0042] More specifically, before obtaining the access signal from the first controller and the first library file of the production management software, the method further includes: presetting different plug-in modules, developing software interfaces for the different plug-in modules according to the same rules to form library files corresponding to the different plug-in modules; and storing the library files corresponding to the different plug-in modules in the edge computing library set. The plug-in modules include a production calculation algorithm plug-in and an efficiency analysis algorithm plug-in, which are used to calculate relevant functional business algorithms when called by different sewing controllers, hanging controllers, or production management software.
[0043] like Figure 2 As shown, in this embodiment, a schematic diagram of the all-in-one system of the present invention. In the figure, the all-in-one system is responsible for the overall core logic and data flow control, and is connected to the electric control library set, the production management software library set, the hardware library set, the human-computer interaction library, and the edge computing library set respectively; wherein the connection with the electric control library set and the hardware library set is connected through the communication line on the hardware, for example, the all-in-one system and the electric control library set are connected through the electric control interface; the all-in-one system and the hardware library set are connected through the peripheral interface. The connection with the production management software library set, the human-computer interaction library, and the edge computing library set is mainly through software.
[0044] Among them, the all-in-one system includes: system kernel, permission control module, data temporary storage and forwarding module, data model module, exception management module and data storage module.
[0045] Specifically, the system kernel is responsible for the operation of the all-in-one system and manages the processes, memory, drivers, file management, etc. of the all-in-one system.
[0046] The permission control module sets security rules or security policies to ensure that only authorized or specified resources in the library file can be accessed when calling the library file, so as to prevent a single library file from occupying too many resources.
[0047] The data temporary storage and forwarding module is set as a data cache area to store temporary data of each library file, where temporary data refers to data to be processed or data to be exchanged between different businesses. For example, the library file corresponding to the electronic control system in the electronic control library set will be sent to the process requirements, parameter instructions and other data of the library file in the production management software library set.
[0048] The data model module sets a data structure for creating a data association relationship when calling the electronic control library set, the production management software library set and the human-computer interaction library.
[0049] The exception management module is used to handle system exceptions or failures in various libraries. When an exception occurs in any library set, the exception code and a brief prompt message can be directly reported.
[0050] The data storage module is responsible for storing system data and preset parameters of different library sets.
[0051] To be more specific, the library files in each library collection are independently developed and connected. When a new library is needed according to actual conditions, it can be connected as long as it meets the library file standards. Therefore, the library files in each library collection can be loaded or not loaded and updated separately without affecting the operation of other businesses.
[0052] Step S2: Determine first human-computer interaction interface information corresponding to the first controller based on the access signal.
[0053] Specifically, the all-in-one system obtains a library file corresponding to the first controller from the electronic control library set, and determines the first human-computer interaction interface information corresponding to the first controller based on the library file.
[0054] Step S3: Based on the first library file, determine the second human-computer interaction interface information corresponding to the first library file.
[0055] Specifically, the all-in-one system obtains a first library file of the production management software from the production management software library set, and determines the second human-computer interaction interface information corresponding to the first library file based on the first library file.
[0056] Step S4: Based on the first human-computer interaction interface information and the second human-computer interaction interface information, call the corresponding first human-computer interaction interface and second human-computer interaction interface from the human-computer interaction library, and display the first human-computer interaction interface and the second human-computer interaction interface simultaneously on the same terminal.
[0057] like Figure 3As shown in the figure, in this embodiment, the interactive interface schematic diagram of the present invention, in actual application, the interactive interface is on the all-in-one terminal of the sewing equipment, and the interactive operation is realized through the collaboration of the all-in-one system and the all-in-one terminal. In the figure, the top row shows the labels of production, hanging and sewing machine, which correspond to the production management software, hanging controller and sewing controller respectively. The area marked 1 on the far left is the sewing machine operation shortcut bar. The all-in-one system calls the library file corresponding to the sewing controller in the electric control library set and runs it to realize the rapid adjustment of the sewing machine parameters; the area marked 2 in the middle is the hanging system display interface. The all-in-one system calls the library file corresponding to the hanging controller in the electric control library set and runs it to display the corresponding hanging information; the area marked 3 on the far right is the production management software display interface. The all-in-one system calls the library file corresponding to the production management software in the production management software library set and runs it to display the corresponding production process information. It can be seen that the interactive interface in the figure breaks down the barriers between traditional clothing equipment, clothing logistics systems, and production management software, and is formed on the same interface of the same terminal, which improves production efficiency while streamlining operations and facilitating use.
[0058] Through the processing of the above steps S1 to S4, various sewing equipment, various hanging control systems and various production management software are unified and integrated in the form of library files and displayed simultaneously on the same terminal interface, thereby realizing the interaction, control and data integration between the systems, opening up different software businesses and equipment controls; and each library file can be updated separately without affecting the use of other library files; at the same time, the workload of docking between different systems is reduced, avoiding inconvenience to operators, thereby improving work efficiency.
[0059] like Figure 4 As shown, in this embodiment, the all-in-one control device for clothing equipment of the present invention includes:
[0060] An acquisition module 41 is configured to acquire an access signal of a first controller and a first library file of production management software, wherein the first controller stores the corresponding electric control system in an electric control library set based on the library file;
[0061] A first determining module 42 is configured to determine first human-computer interaction interface information corresponding to the first controller based on the access signal;
[0062] A second determining module 43 is configured to determine, based on the first library file, second human-computer interaction interface information corresponding to the first library file;
[0063] The processing module 44 is used to call the corresponding first human-computer interaction interface and second human-computer interaction interface from the human-computer interaction library based on the first human-computer interaction interface information and the second human-computer interaction interface information, and display the first human-computer interaction interface and the second human-computer interaction interface on the same terminal at the same time.
[0064] The first controller includes a sewing controller and a hanging controller; the acquisition module 41 is further used to:
[0065] Developing a docking interface between the electric control system of the sewing controller and the electric control system of the hanging controller according to the same rules to form a second library file of the electric control system of the sewing controller and a third library file of the electric control system of the hanging controller;
[0066] The second library file and the third library file are stored in an electronic control library set.
[0067] The acquisition module 41 is further configured to:
[0068] Developing software interfaces for different production management software according to the same rules to form library files corresponding to the different production management software; the first library file is included in the library file;
[0069] The library files are stored in a production management software library collection.
[0070] The technical features specifically implemented by the all-in-one clothing equipment control device of this embodiment are basically the same as the principles of each step in the all-in-one clothing equipment control method in Example 1, and the technical content that is common between the method and the device will not be repeated.
[0071] The storage medium of the present invention stores a computer program, which, when executed by a processor, implements the above-mentioned all-in-one control method for clothing equipment.
[0072] like Figure 5 As shown, in this embodiment, the all-in-one clothing equipment control terminal of the present invention includes: a processor 51 and a memory 52 .
[0073] The memory 52 is used to store computer programs.
[0074] The memory 52 includes various media capable of storing program codes, such as ROM, RAM, magnetic disk, USB flash drive, memory card or optical disk.
[0075] The processor 51 is connected to the memory 52 and is used to execute the computer program stored in the memory 52 so that the electronic device can execute the above-mentioned all-in-one control method for clothing equipment.
[0076] Preferably, the above-mentioned processor 51 can be a general-purpose processor, including a central processing unit (CPU), a network processor (NP), etc.; it can also be a digital signal processor (DSP), an application-specific integrated circuit (ASIC), a field-programmable gate array (FPGA) or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components.
[0077] In summary, the all-in-one control method, device, storage medium, and system for clothing equipment of the present invention can achieve interaction, control, and data integration between various systems based on library files, connecting different software services and equipment control. Furthermore, each library file can be updated independently without affecting the use of other library files. At the same time, the workload of connecting different systems is reduced, avoiding inconvenience for operators, thereby improving work efficiency. Therefore, the present invention effectively overcomes the various shortcomings of the existing technology and has high industrial utilization value.
[0078] The above embodiments are merely illustrative of the principles and effects of the present invention and are not intended to limit the present invention. Anyone skilled in the art may modify or alter the above embodiments without departing from the spirit and scope of the present invention. Therefore, all equivalent modifications or alterations made by one of ordinary skill in the art without departing from the spirit and technical principles disclosed herein are intended to be covered by the claims of the present invention.
Claims
1. A method for controlling all-in-one clothing equipment, characterized in that: The control method comprises the following steps: Different recognition modules are preset, and software interfaces of the different recognition modules are developed according to the same rules to form library files corresponding to the different recognition modules; Storing library files corresponding to the different identification modules in a hardware library set; Obtaining operation information of the first operation; Based on the operation information, determining an input method corresponding to the first operation, the input method including: card swiping, fingerprint recognition, and barcode scanning gun; Based on the input mode, calling an identification module corresponding to the input mode to perform security authentication of the first operation; When the security authentication is passed, a second operation is performed, which includes: obtaining an access signal of the first controller and a first library file of the production management software, and the first controller storing the corresponding electric control system in an electric control library set based on the library file; Determining first human-computer interaction interface information corresponding to the first controller based on the access signal; Based on the first library file, determining second human-computer interaction interface information corresponding to the first library file; Based on the first human-computer interaction interface information and the second human-computer interaction interface information, the corresponding first human-computer interaction interface and the second human-computer interaction interface are called from the human-computer interaction library, and the first human-computer interaction interface and the second human-computer interaction interface are simultaneously displayed on the same terminal.
2. The method according to claim 1, characterized in that The first controller includes a sewing controller and a hanging controller; Before obtaining the access signal of the first controller and the first library file of the production management software, the method further includes: Developing a docking interface between the electric control system of the sewing controller and the electric control system of the hanging controller according to the same rules to form a second library file of the electric control system of the sewing controller and a third library file of the electric control system of the hanging controller; The second library file and the third library file are stored in an electronic control library set.
3. The method according to claim 2, characterized in that Before obtaining the access signal of the first controller and the first library file of the production management software, the method further includes: Developing software interfaces for different production management software according to the same rules to form library files corresponding to the different production management software; the first library file is included in the library file; The library files are stored in a production management software library collection.
4. The method according to claim 3, characterized in that Before obtaining the access signal of the first controller and the first library file of the production management software, the method further includes: Based on historical information of clothing equipment, a first association relationship table is established between the electronic control system of each sewing controller and the electronic control system of each hanging controller in the electronic control library set; Establishing a second association relationship table between the production management software in the production management software library set; Establishing a third association relationship table among the electronic control library set, the production management software library set, and the human-computer interaction library; the human-computer interaction library pre-stores human-computer interaction interfaces developed based on the sewing controller, the hanging controller, and the production management software; Based on the first association relationship table, the second association relationship table and the third association relationship table, a data association relationship is created when calling the electric control library set, the production management software library set and the human-computer interaction library.
5. An all-in-one control device for clothing equipment, characterized in that: include: An acquisition module is used to preset different recognition modules, wherein the different recognition modules develop software interfaces according to the same rules to form library files corresponding to the different recognition modules; Storing library files corresponding to the different identification modules in a hardware library set; Obtaining operation information of the first operation; Based on the operation information, an input method corresponding to a first operation is determined, the input method including: card swiping, fingerprint recognition, and barcode scanning; based on the input method, an identification module corresponding to the input method is called to perform security authentication of the first operation; when the security authentication passes, a second operation is performed, the second operation including: obtaining an access signal of a first controller and a first library file of production management software, the first controller storing the corresponding electric control system in an electric control library set based on the library file; a first determining module, configured to determine first human-computer interaction interface information corresponding to the first controller based on the access signal; A second determining module, configured to determine, based on the first library file, second human-computer interaction interface information corresponding to the first library file; A processing module is used to call the corresponding first human-computer interaction interface and second human-computer interaction interface from the human-computer interaction library based on the first human-computer interaction interface information and the second human-computer interaction interface information, and display the first human-computer interaction interface and the second human-computer interaction interface on the same terminal at the same time.
6. The device according to claim 5, characterized in that The first controller includes a sewing controller and a hanging controller; The acquisition module is further used to: Developing a docking interface between the electric control system of the sewing controller and the electric control system of the hanging controller according to the same rules to form a second library file of the electric control system of the sewing controller and a third library file of the electric control system of the hanging controller; The second library file and the third library file are stored in an electronic control library set.
7. The device according to claim 6, characterized in that The acquisition module is further used to: Developing software interfaces for different production management software according to the same rules to form library files corresponding to the different production management software; the first library file is included in the library file; The library files are stored in a production management software library collection.
8. A storage medium storing program instructions, wherein: When the program instructions are executed, the steps of the all-in-one clothing equipment control method according to any one of claims 1 to 4 are implemented.
9. An all-in-one control terminal for clothing equipment, characterized by: It comprises a memory for storing a computer program; and a processor for running the computer program to implement the steps of the all-in-one clothing equipment control method according to any one of claims 1 to 4.
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