Manufacturing resource collaborative management method and system based on model

Through the model-based collaborative manufacturing resource management system, the problem of information barriers in manufacturing resource management is solved, and efficient resource utilization and reduction of enterprise operating costs are achieved.

CN120706774APending Publication Date: 2025-09-26商飞软件有限公司
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Patent Information

Application Number
CN202510805389.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-17
Publication Date
2025-09-26

AI Technical Summary

Technical Problem

Manufacturing resource management lacks unified and standardized management in enterprises, resulting in information barriers and inefficient resource utilization, making it difficult to form targeted management methods.

Method used

A model-based collaborative manufacturing resource management system is adopted, including a central processing module, a personnel management module, a resource model management module, a resource integration management module, a resource scheduling management module, a resource sharing management module, and a resource monitoring management module. Through intelligent algorithms and data analysis technologies, resource allocation and scheduling are optimized to achieve cross-departmental and cross-enterprise resource sharing and collaborative management.

Benefits of technology

Break down information barriers between departments, improve resource utilization efficiency, reduce enterprise operating costs, and achieve maximum resource utilization and collaborative management.

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Abstract

The invention discloses a model-based manufacturing resource collaborative management method and system. The system comprises a central processing module which is used for data processing in a system use process; the personnel management module is used for setting different operation authorities for roles to which the users belong according to the users of different units, departments and posts; the resource model management module is used for creating a state identifier of a corresponding model according to an application scene of the resource; the resource integration management module is used for comprehensively integrating manufacturing resources and establishing a unified resource library; and a resource scheduling management module. According to the model-based manufacturing resource collaborative management method and system, a set of complete manufacturing resource management method is formed aiming at analysis and arrangement of various manufacturing resource management modes, and the manufacturing resource collaborative management system is constructed according to the characteristics and the use process of the manufacturing resources, so that information barriers among departments can be broken through; cooperative management of resources is achieved, the utilization efficiency of the resources is improved, and the operation cost of enterprises is reduced.
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Description

Technical Field

[0001] The present invention belongs to the field of aerospace manufacturing technology, and specifically relates to a model-based collaborative management method and system for manufacturing resources. Background Art

[0002] Manufacturing resource management belongs to the basic business of the enterprise and often does not receive the attention of the top management. These are all unknown workers who have formed work experience based on the long-term work experience of the enterprise. Although they have rich individual work experience, they have little knowledge to summarize management experience and it is difficult to form targeted management methods.

[0003] The management of manufacturing resources within an enterprise may be split across multiple departments. Manufacturing resource data varies in form, management status varies, and statistical calibers differ. Business and management are often disconnected, and information transfer is often poor. As the most fundamental and bottom-level manufacturing resources, these basic units have not been managed in a unified and standardized manner in previous engineering applications, and manufacturing resource management methods have not been aggregated. The ongoing development of enterprise informatization, with various main systems essentially completed and deployed, is also promoting and influencing the development of manufacturing resource management systems. Manufacturing resource operations are closely intertwined with production planning, procurement planning, process design, and manufacturing. Improving resource utilization and availability has become a key component of refined enterprise management, supporting and ensuring the normal operation of core businesses. Summary of the Invention

[0004] This invention aims to provide a model-based collaborative manufacturing resource management method and system. By analyzing and organizing various manufacturing resource management methods, a comprehensive set of manufacturing resource management methods is formed. Furthermore, a collaborative manufacturing resource management system is constructed based on the characteristics and usage of manufacturing resources. This system can break down information barriers between departments, enable collaborative resource management, improve resource utilization efficiency, and reduce enterprise operating costs.

[0005] The technical solution adopted by the present invention is as follows: a model-based collaborative management system for manufacturing resources, comprising:

[0006] Central processing module: used for data processing during system use;

[0007] Personnel management module: according to users in different units, departments, and positions, set different operation permissions for the user's role;

[0008] Resource model management module: creates status identification of corresponding models according to resource application scenarios;

[0009] Resource integration management module: comprehensively integrate manufacturing resources and establish a unified resource library;

[0010] Resource scheduling management module: Based on the production site scheduling plan, it uses intelligent algorithms and data analysis technology to optimize the configuration and scheduling of resource libraries to maximize resource utilization;

[0011] Resource sharing management module: used for cross-departmental and cross-enterprise resource sharing and collaboration, promoting close cooperation and coordinated development of upstream and downstream supply chains;

[0012] Resource monitoring and management module: used to monitor resource utilization and efficiency in real time, issue early warnings and handle abnormal situations, and ensure effective resource utilization and smooth collaborative management;

[0013] The resource sharing management module includes a shared space management module, a resource borrowing / returning management module, an outsourced production management module, an outsourced maintenance management module, and an outsourced scheduled inspection management module. Bidirectional signal connections are established between the resource borrowing / returning management module, the outsourced production management module, the outsourced maintenance management module, the outsourced scheduled inspection management module, and the shared space management module. The resource integration management module includes an application integration module, a ledger management module, and a function integration module. Bidirectional signal connections are established between the ledger management module, the function integration module, and the application integration module.

[0014] The output bidirectional signal of the shared space management module in the resource sharing management module is connected to the input of the central processing module. The output bidirectional signal of the application integration module in the resource integration management module is connected to the input of the central processing module.

[0015] Furthermore, the personnel management module includes a personnel basic information management module and a role and authority setting module, and the personnel basic information management module and the role and authority setting module are bidirectionally signal-connected, and the output end of the personnel basic information management module in the personnel management module is bidirectionally signal-connected to the input end of the central processing module, and the resource model management module includes a model type and model basic information management module, a model attribute management module, a model lifecycle management module and a model relationship management module, and the model type and model basic information management module, the model attribute management module, the model lifecycle management module and the model relationship management module are bidirectionally signal-connected, and the output end of the model relationship management module in the resource model management module is bidirectionally signal-connected to the input end of the central processing module.

[0016] Furthermore, the resource scheduling management module includes a multi-resource planning management module, a resource master planning management module, a resource planning scheduling management module and a resource planning adjustment module. The multi-resource planning management module, the resource master planning management module, the resource planning scheduling management module and the resource planning adjustment module are bidirectionally connected by signals, and the output end bidirectional signal of the resource planning adjustment module in the resource scheduling management module is connected to the input end of the central processing module.

[0017] Furthermore, the resource monitoring and management module includes a resource visualization management module, a production documentary management module, a resource anomaly warning module, a resource data analysis module, a resource decision reporting module and a resource knowledge base management module. The resource visualization management module, the production documentary management module, the resource anomaly warning module, the resource data analysis module, the resource decision reporting module and the resource knowledge base management module are bidirectionally signal-connected, and the output end of the resource visualization management module in the resource monitoring and management module is bidirectionally signal-connected to the input end of the central processing module.

[0018] A model-based collaborative manufacturing resource management method, applied to any one of the above-mentioned model-based collaborative manufacturing resource management systems, comprises the following steps:

[0019] Step 1: Analyze the characteristics of manufacturing resources used in the assembly manufacturing process and establish a manufacturing resource model.

[0020] Step 2: Analyze the production and manufacturing process to form a model-based manufacturing resource management method.

[0021] Furthermore, the specific steps of step one are as follows:

[0022] S101. Analyze the characteristics of manufacturing resources used in the assembly manufacturing process and establish a manufacturing resource model;

[0023] S102: The resource model management module is divided into model categories, model attributes, model life cycles, and model relationships.

[0024] Furthermore, the specific steps of step 2 are as follows:

[0025] S201. Analyze resource utilization scenarios and establish a model-based manufacturing resource management approach based on manufacturing process design, planning and scheduling, production execution, quality inspection, and warehouse management.

[0026] S202, performing multi-faceted management of resource utilization scenarios in the manufacturing process based on the resource integration management module;

[0027] S203. The resource integration management module is used to run through the life cycle of the physical situation, planned use, actual use and inventory changes of the resources.

[0028] A computer program product, when read by a computer, executes any one of the above methods.

[0029] A computer-readable storage medium stores a program executable by a processor, wherein the program executable by the processor is used to perform any of the methods described above when executed by the processor.

[0030] A model-based manufacturing resource collaborative management device includes a processor and a memory, wherein the memory includes a computer-readable storage medium storing a program executable by the processor, and the program executable by the processor is used to execute any of the methods described above when executed by the processor.

[0031] In summary, due to the adoption of the above-mentioned technical solution, the beneficial effects of the present invention are: by analyzing and organizing various types of manufacturing resource management methods, a complete set of manufacturing resource management methods is formed, and a manufacturing resource collaborative management system is constructed according to the characteristics and usage process of manufacturing resources, which can break down the information barriers between departments, realize collaborative management of resources, improve resource utilization efficiency, and reduce the operating costs of enterprises. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] Figure 1 is a system diagram of the present invention;

[0033] Figure 2 This is a schematic diagram of the personnel management module of the present invention;

[0034] Figure 3 This is a schematic diagram of a resource model management module of the present invention;

[0035] Figure 4 This is a schematic diagram of the resource integration management module of the present invention;

[0036] Figure 5 This is a schematic diagram of the resource scheduling management module of the present invention;

[0037] Figure 6 This is a schematic diagram of the resource sharing management module of the present invention;

[0038] Figure 7 Schematic diagram of the resource monitoring and management module of the present invention;

[0039] Figure 8 It is a schematic diagram of the process of the present invention;

[0040] Figure 9 Flowchart of the present invention.

[0041] Markings in the figure: 1. Central processing module; 2. Personnel management module; 3. Resource model management module; 4. Resource integration management module; 5. Resource scheduling management module; 6. Resource sharing management module; 7. Resource monitoring management module. DETAILED DESCRIPTION

[0042] In order to make the purpose, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0043] Example 1

[0044] As the instruction manual Figure 1-9 As shown, it is one of the embodiments of the model-based collaborative management method and system for manufacturing resources and the specific modules contained therein claimed in the present invention, a model-based collaborative management system for manufacturing resources, comprising:

[0045] Central processing module 1: used for data processing during system use;

[0046] Personnel Management Module 2: Set different operation permissions for users in different units, departments, and positions;

[0047] Resource model management module 3: creates the status identifier of the corresponding model according to the application scenario of the resource;

[0048] Resource Integration Management Module 4: Comprehensively integrate manufacturing resources and establish a unified resource library;

[0049] Resource Scheduling Management Module 5: Based on the production site scheduling plan, it uses intelligent algorithms and data analysis technology to optimize the configuration and scheduling of the resource library to maximize resource utilization;

[0050] Resource Sharing Management Module 6: Used to share and collaborate resources across departments and enterprises, promoting close cooperation and coordinated development of upstream and downstream supply chains;

[0051] Resource Monitoring and Management Module 7: used to monitor resource utilization and efficiency in real time, issue early warnings and handle abnormal situations, and ensure effective resource utilization and smooth collaborative management;

[0052] The resource sharing management module 6 includes a shared space management module, a resource borrowing / returning management module, an outsourced production management module, an outsourced maintenance management module, and an outsourced scheduled inspection management module. Bidirectional signal connections are established between the resource borrowing / returning management module, the outsourced production management module, the outsourced maintenance management module, the outsourced scheduled inspection management module, and the shared space management module. The resource integration management module 4 includes an application integration module, a ledger management module, and a function integration module. Bidirectional signal connections are established between the ledger management module, the function integration module, and the application integration module.

[0053] The output bidirectional signal of the shared space management module in the resource sharing management module 6 is connected to the input of the central processing module 1 , and the output bidirectional signal of the application integration module in the resource integration management module 4 is connected to the input of the central processing module 1 .

[0054] Specifically, the personnel management module 2 includes a personnel basic information management module and a role and authority setting module, and a bidirectional signal connection is formed between the personnel basic information management module and the role and authority setting module. The output end bidirectional signal of the personnel basic information management module in the personnel management module 2 is connected to the input end of the central processing module 1. The resource model management module 3 includes a model type and model basic information management module, a model attribute management module, a model life cycle management module and a model relationship management module. The model type and model basic information management module, the model attribute management module, the model life cycle management module and the model relationship management module are bidirectionally connected. The output end bidirectional signal of the model relationship management module in the resource model management module 3 is connected to the input end of the central processing module 1.

[0055] Specifically, the resource scheduling management module 5 includes a multi-resource planning management module, a resource master planning management module, a resource planning scheduling management module and a resource planning adjustment module. There are bidirectional signal connections between the multi-resource planning management module, the resource master planning management module, the resource planning scheduling management module and the resource planning adjustment module. The output end bidirectional signal of the resource planning adjustment module in the resource scheduling management module 5 is connected to the input end of the central processing module 1.

[0056] Specifically, the resource monitoring and management module 7 includes a resource visualization management module, a production documentary management module, a resource anomaly warning module, a resource data analysis module, a resource decision-making report module and a resource knowledge base management module. There is a bidirectional signal connection between the resource visualization management module, the production documentary management module, the resource anomaly warning module, the resource data analysis module, the resource decision-making report module and the resource knowledge base management module. The output end of the resource visualization management module in the resource monitoring and management module 7 is bidirectionally connected to the input end of the central processing module 1.

[0057] At the same time, the present invention also proposes a model-based collaborative management method for manufacturing resources, which is applied to the model-based collaborative management system for manufacturing resources as described above, and includes the following steps:

[0058] Step 1: Analyze the characteristics of manufacturing resources used in the assembly manufacturing process and establish a manufacturing resource model;

[0059] Step 2: Analyze the manufacturing process and develop a model-based manufacturing resource management approach

[0060] Specifically, the specific steps of step one are as follows:

[0061] S101. Analyze the characteristics of manufacturing resources used in the assembly manufacturing process and establish a manufacturing resource model;

[0062] S102, the resource model management module 3 is divided into model categories, model attributes, model life cycles, and model relationships.

[0063] Specifically, the specific steps of step 2 are as follows:

[0064] S201. Analyze resource utilization scenarios and establish a model-based manufacturing resource management approach based on manufacturing process design, planning and scheduling, production execution, quality inspection, and warehouse management.

[0065] S202, performing multi-faceted management of resource utilization scenarios in the manufacturing process based on the resource integration management module 4;

[0066] S203: The resource integration management module 4 runs through the life cycle of the physical situation, planned use, actual use and inventory changes of the resources.

[0067] At the same time, the present invention also provides a computer program product, which executes the above method when read by a computer.

[0068] At the same time, the present invention also proposes a computer-readable storage medium, which stores a program executable by a processor, wherein the program executable by the processor is used to execute the method as described above when executed by the processor.

[0069] At the same time, the present invention also proposes a model-based manufacturing resource collaborative management device, which includes a processor and a memory, wherein the memory includes a computer-readable storage medium, which stores a program executable by the processor, and the program executable by the processor is used to execute the method as described above when executed by the processor.

[0070] A model-based collaborative management system for manufacturing resources:

[0071] Resource model management module 3: Model categories are managed in a tree structure; after adding a new model category, a new resource model is added under the model category, and the basic information of the model is filled in, including numbering rules, basic information, description information, etc. Resource model management supports the addition, modification and deletion of models; new model attributes are added to the resource model, and the model attributes include the resource specification information, inventory information, material information, etc. Resource attribute management supports the addition, modification and deletion of attributes; the model life cycle includes the addition, modification and deletion functions of the life cycle, and the system can create the status identification of the corresponding model according to the application scenario of the resource; model relationship management includes the addition, modification and deletion functions of the relationship. After the model is created, you can select the model to be associated, and the relationship between models can be one-to-one or one-to-many.

[0072] Resource Integration Management Module 4: Application Integration Management supports backend configuration of business applications. Administrators can add, modify, and delete all business applications. Ledger Management primarily provides users with a global business operations management interface, integrating and integrating data from various resources. When users access the Ledger Management function, they can see the ledger data for manufacturing resources. Functional Integration integrates the functions of various manufacturing resource businesses or systems. In the future, as business needs are explored and developed, more manufacturing resource-related systems can be unified and integrated. The resource integration function comprehensively integrates manufacturing resources such as tooling, tools, measuring tools, equipment, and manpower to establish a unified resource library.

[0073] Resource Scheduling Management Module 5: The multi-resource planning function is to collect resource demand plans for process design, production planning, production scheduling and other processes from the resource plans of multiple business scenarios, and summarize the resources under each scenario respectively; the resource master plan function is to organize the overall demand plan for various resources according to types such as tooling, tools, measurement, materials, and equipment; the resource plan scheduling function is to split the detailed scheduling plan of resource requirements according to the resource master plan; the resource plan adjustment function is to modify the resource scheduling plan, support conflict resolution and impact range analysis of resource plans; resource scheduling supports production site scheduling plans, and uses intelligent algorithms and data analysis technologies to optimize the configuration and scheduling of resource libraries to maximize resource utilization.

[0074] Resource Sharing Management Module 6: The shared space management function provides isolation of shared manufacturing resource data and establishes a shared resource library, including the creation of a shared library, data entry, and data exit; the resource borrowing / return management function includes resource borrowing applications and resource return applications; outsourced production management includes the creation and review of outsourced production tasks, the issuance of outsourced tasks, the acceptance of outsourced tasks, and task monitoring; outsourced maintenance includes the creation and review of outsourced maintenance tasks, the issuance of outsourced tasks, the acceptance of outsourced tasks, and task monitoring; outsourced scheduled inspection includes the creation and review of outsourced scheduled inspection tasks, the issuance of outsourced tasks, the acceptance of outsourced tasks, and task monitoring.

[0075] Resource Monitoring and Management Module 7: The resource visualization module includes resource business map management, resource visualization dashboard, and resource data statistics functions; the production record module includes resource usage record and production special process record management; the resource anomaly warning function includes resource warning threshold management, resource monitoring alarm, and alarm impact notification functions; the resource data analysis module includes manufacturing resource data and status displayed in the manufacturing process business map after system data collation; the resource decision-making report module includes integrated analysis of data from resource planning and production records, and uses data analysis methods to automatically generate various resource reports, such as daily production reports, weekly reports, monthly reports, quality analysis reports, and utilization analysis reports; the resource knowledge base module includes a knowledge base of manufacturing resources generated by the system through data accumulation, and supports modification and import of the knowledge base. Resource monitoring supports real-time monitoring of resource utilization and efficiency, early warning and processing of abnormal situations, ensuring the effective utilization of resources and the smooth implementation of collaborative management, helping to improve the efficiency and quality of aerospace manufacturing.

[0076] A model-based collaborative management approach for manufacturing resources:

[0077] Step 1: Analyze the characteristics of the manufacturing resources used in the assembly manufacturing process and establish a manufacturing resource model; S101. Analyze the characteristics of the manufacturing resources used in the assembly manufacturing process and establish a manufacturing resource model; S102. Based on the resource model management module 3, the model is divided into model categories, model attributes, model lifecycles, and model relationships. Model categories refer to the business type of the model, such as tooling, tools, measuring tools, equipment, manpower, and other business categories; model attributes refer to the basic information of the model; the model lifecycle refers to the state changes of the resource during the manufacturing process, and the changes in the manufacturing process application status, such as usable, in use, under maintenance, etc.; model relationships refer to the description of the dependencies between the model and other resource models, such as different symmetrical tooling, tools of the same material, etc.

[0078] Step 2: Analyze the manufacturing process and develop a model-based manufacturing resource management method. S201. Analyze resource utilization scenarios and establish a model-based manufacturing resource management method based on the manufacturing process design, planning and scheduling, production execution, quality inspection, warehouse management, and other processes. S202. Manage resource utilization scenarios in the manufacturing process in multiple aspects based on the resource integration management module 4. S203. Use the resource integration management module 4 to run through the life cycle of the physical situation, planned usage, actual usage, and inventory changes of resources. Ledger management mainly integrates manufacturing resources, comprehensively integrates tooling, tools, measuring tools, equipment, manpower, etc., and establishes a unified resource library. Planning and scheduling are mainly based on production site scheduling plans, using intelligent algorithms and data analysis technology to optimize the configuration and scheduling management of the resource library. Shared management supports cross-departmental and cross-enterprise resource sharing and collaboration. Resource monitoring mainly monitors resource utilization in the manufacturing production execution, quality inspection, and other processes, and issues early warnings and impact management for abnormal situations.

[0079] In all the above embodiments, in order to achieve some special data transmission and read / write function requirements, the above method operation process and its corresponding device can add devices, modules, components, hardware, pin connections or memory, processor differences to expand functions.

[0080] Those skilled in the art will clearly understand that, for the convenience and brevity of description, the specific working processes of the methods, devices and units described above can refer to the corresponding processes in the aforementioned method embodiments and will not be repeated here.

[0081] In the several embodiments provided by the present invention, it should be understood that the disclosed systems, devices and methods can be implemented in other ways. For example, the device embodiments described above are merely schematic. For example, the division of method steps is merely a logical or functional division. There may be other division methods in actual implementation. For example, multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point is that the mutual coupling or direct coupling or communication connection shown or discussed can be an indirect coupling or communication connection through some interfaces, devices or units, which can be electrical, mechanical or other forms.

[0082] The units described as the various steps of the method and the separated components of the device may or may not be logically or physically separated, and may not be physical units, that is, they may be located in one place, or they may be distributed on multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of this embodiment.

[0083] In addition, the various method steps and their implementation and functional units in the various embodiments of the present invention can be integrated into one processing unit, or each unit can exist physically separately, or two or more units can be integrated into one unit. The above-mentioned integrated units can be implemented in the form of hardware or in the form of hardware plus software functional units.

[0084] The above-mentioned method and device can be implemented as an integrated unit in the form of a software functional unit, which can be stored in a computer-readable storage medium. The above-mentioned software functional unit is stored in a storage medium, including a number of instructions for enabling a computer device, which can be a personal computer, a server, or a network device, or a processor, to perform some steps of the methods of various embodiments of the present invention. The aforementioned storage medium includes: U disk, mobile hard disk, read-only memory (ROM), random access memory (RAM), NVRAM, disk or optical disk, and other media that can store program code.

[0085] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. A model-based collaborative management system for manufacturing resources, characterized in that: include: Central processing module (1): used for data processing during system use; Personnel management module (2): according to users in different units, departments, and positions, different operation permissions are set for the roles to which users belong; Resource model management module (3): creates the status identifier of the corresponding model according to the application scenario of the resource; Resource integration management module (4): comprehensively integrate manufacturing resources and establish a unified resource library; Resource Scheduling Management Module (5): Based on the production site scheduling plan, it uses intelligent algorithms and data analysis technology to optimize the configuration and scheduling of resource libraries to maximize resource utilization; Resource Sharing Management Module (6): used for cross-departmental and cross-enterprise resource sharing and collaboration, promoting close cooperation and coordinated development of upstream and downstream supply chains; Resource monitoring and management module (7): used to monitor resource utilization and efficiency in real time, issue early warnings and handle abnormal situations, and ensure effective resource utilization and smooth collaborative management; The resource sharing management module (6) includes a shared space management module, a resource borrowing / returning management module, an outsourced production management module, an outsourced maintenance management module, and an outsourced scheduled inspection management module. The resource borrowing / returning management module, the outsourced production management module, the outsourced maintenance management module, the outsourced scheduled inspection management module, and the shared space management module are bidirectionally connected by signals. The resource integration management module (4) includes an application integration module, a ledger management module, and a function integration module. The ledger management module, the function integration module, and the application integration module are bidirectionally connected by signals. The output bidirectional signal of the shared space management module in the resource sharing management module (6) is connected to the input of the central processing module (1), and the output bidirectional signal of the application integration module in the resource integration management module (4) is connected to the input of the central processing module (1).

2. A model-based manufacturing resource collaborative management system as claimed in claim 1, characterized in that: The personnel management module (2) includes a personnel basic information management module and a role and authority setting module, and the personnel basic information management module and the role and authority setting module are bidirectionally connected by signal. The output end of the personnel basic information management module in the personnel management module (2) is bidirectionally connected to the input end of the central processing module (1). The resource model management module (3) includes a model type and model basic information management module, a model attribute management module, a model life cycle management module and a model relationship management module, and the model type and model basic information management module, the model attribute management module, the model life cycle management module and the model relationship management module are bidirectionally connected by signal. The output end of the model relationship management module in the resource model management module (3) is bidirectionally connected to the input end of the central processing module (1).

3. A model-based manufacturing resource collaborative management system as claimed in claim 1, characterized in that: The resource scheduling management module (5) includes a multi-resource plan management module, a resource master plan management module, a resource plan scheduling management module and a resource plan adjustment module. The multi-resource plan management module, the resource master plan management module, the resource plan scheduling management module and the resource plan adjustment module are bidirectionally connected by signal. The output end of the resource plan adjustment module in the resource scheduling management module (5) is bidirectionally connected to the input end of the central processing module (1).

4. A model-based manufacturing resource collaborative management system as claimed in claim 1, characterized in that: The resource monitoring and management module (7) includes a resource visualization management module, a production record management module, a resource anomaly warning module, a resource data analysis module, a resource decision reporting module and a resource knowledge base management module. Bidirectional signal connections are formed between the resource visualization management module, the production record management module, the resource anomaly warning module, the resource data analysis module, the resource decision reporting module and the resource knowledge base management module. The output end of the resource visualization management module in the resource monitoring and management module (7) is bidirectionally signal-connected to the input end of the central processing module (1).

5. A model-based collaborative management method for manufacturing resources, characterized in that: A model-based collaborative manufacturing resource management system as claimed in any one of claims 1 to 4, comprising the following steps: S1: Analyze the characteristics of manufacturing resources used in the assembly manufacturing process and establish a manufacturing resource model; S2: Analyze the production and manufacturing process to form a model-based manufacturing resource management method.

6. A model-based collaborative management method for manufacturing resources as claimed in claim 5, characterized in that: The specific steps of step S1 are as follows: S101. Analyze the characteristics of manufacturing resources used in the assembly manufacturing process and establish a manufacturing resource model; S102, based on the resource model management module (3), the model is divided into model categories, model attributes, model life cycles, and model relationships.

7. A model-based collaborative management method for manufacturing resources as claimed in claim 5, characterized in that: The specific steps of step S2 are as follows: S201. Analyze resource utilization scenarios and establish a model-based manufacturing resource management approach based on manufacturing process design, planning and scheduling, production execution, quality inspection, and warehouse management. S202, performing multi-faceted management of resource utilization scenarios in the manufacturing process based on the resource integration management module (4); S203, through the resource integration management module (4), the life cycle of the physical situation of the resources, planned use, actual use and inventory changes is carried out.

8. A computer program product, characterized in that When the computer program product is read by a computer, the method according to any one of claims 5 to 7 is executed.

9. A computer-readable storage medium storing a program executable by a processor, characterized in that: The processor-executable program is used to perform the method according to any one of claims 5 to 7 when executed by the processor.

10. A model-based collaborative management device for manufacturing resources, characterized in that: It includes a processor and a memory, wherein the memory includes a computer-readable storage medium in which a program executable by the processor is stored. When the program executable by the processor is executed by the processor, it is used to perform the method according to any one of claims 5 to 7.