Rapid configuration management system and method for modularization process of satellite structural slab

By providing a modular process rapid configuration management system for satellite structural boards and automatically generating feature modules and process modules, the problems of large-scale process design workload and low efficiency in large-scale satellite production are solved, and rapid configuration and efficient development are achieved.

CN120069362APending Publication Date: 2025-05-30XINGHAN SPACE TIME (SHENZHEN) AEROSPACE INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202411948170.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-05-30

AI Technical Summary

Technical Problem

In the case of large-scale production of satellites, the process design of satellite structural boards is large and the work efficiency is low, resulting in serious constraints in the development cycle of the entire satellite.

Method used

It provides a satellite structural board modular process rapid configuration management system, including infrastructure layer, data model, functional model and user interface layer. Through feature management modules, process management modules and process configuration management modules, feature modules and process modules are automatically generated to reduce manual intervention and improve design speed and resource utilization.

Benefits of technology

It realizes rapid configuration of satellite structural board process design, reduces manual design workload, improves design and development efficiency, ensures consistency and accuracy of process configuration, and shortens the overall development cycle.

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Abstract

The invention provides a satellite structure board modularization process rapid configuration management system and method, and relates to the technical field of digital manufacturing assembly, the system comprises an infrastructure layer, a data model, a function model and a user interface layer; the infrastructure layer provides a running environment for the system, the data model provides process design data for the function model, and the function model receives data input by a user through the user interface layer; a feature management module in the function model receives a three-dimensional model of a satellite structure plate input by a user and generates a feature module based on preset process requirements, a process management module generates a process module based on the feature module, and a process configuration management module generates a process file based on the process module. According to the system, the workload of manual design is reduced under the condition of mass production of satellite structure plates, the design and development efficiency is improved, and a complete design file meeting the user requirement is finally and automatically generated based on the three-dimensional model input by the user and the design requirement.
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Description

Technical Field

[0001] The present invention relates to the technical field of digital manufacturing and assembly, and particularly to a satellite structural plate modular process rapid configuration management system and method. Background Art

[0002] During the development process of satellites, since the process design of satellite products takes a large amount of time, the key to reducing the satellite development cycle lies in how to shorten the process design time of satellite products. The currently commonly used CAPP (Computer Aided Process Planning) system in satellite manufacturing factories can only achieve traditional process design, and some typical processes and process knowledge of satellite products cannot be effectively utilized, resulting in a long process design time and low efficiency for new products, seriously restricting the development cycle of the entire satellite.

[0003] In the actual satellite process design process, the manufacturing processes of many components are highly similar. Taking the satellite structural plate as an example, the technical states of the structural plates designed according to various factors such as the overall satellite configuration, load-bearing capacity, design habits, and structural inheritance of different satellites are different, but the configurations and structures of different satellite structural plates are completely similar, and the development processes are basically the same. The similar structural plates result in a large number of duplicate contents in the process documents. On the current CAPP system, process designers can only search for process documents of similar parts based on experience, copy them item by item and make slight modifications. Therefore, in the case of large-scale satellite production, the workload of process designers has increased significantly, and most of the working time is wasted in the process of searching for and copying process documents. Moreover, some process designers have little experience, and the time for searching for existing process documents is greatly extended.

[0004] Therefore, a system and method capable of rapidly configuring the satellite structural plate process design are urgently needed to be studied. Summary of the Invention

[0005] In view of the above deficiencies in the prior art, the present invention provides a satellite structural plate modular process rapid configuration management system and method, which solves the technical problems of large workload and low work efficiency in the process design of satellite structural plates in the case of large-scale production in the prior art.

[0006] On the one hand, the present invention provides a satellite structural plate modular process rapid configuration management system, including: an infrastructure layer, a data model, a function model, and a user interface layer;

[0007] The infrastructure layer is used to provide an operating environment for the system, the data model is used to provide process design data to the function model, and the function model interacts with users through the user interface layer to receive data input by users;

[0008] The functional model includes a feature management module, a process management module, and a process configuration management module. The feature management module is used to receive the three-dimensional model of the satellite structural panel input by the user, and generate and output a feature module based on preset process requirements and the process design data. The process management module is used to receive the feature module, and generate and output a process module based on the process design data. The process configuration management module is used to receive the process module, and generate and output a process file based on the process design data.

[0009] Optionally, the feature management module includes a design feature extraction unit, a feature module division and expression unit, a feature module retrieval unit, and a feature module library management unit;

[0010] The design feature extraction unit is used to extract key features from the design drawings of the satellite structural panel;

[0011] The feature module division and expression unit is used to classify the key features based on preset rules, and construct a feature module library according to the classification results;

[0012] The feature module retrieval unit is used to search for a target feature module in the feature module library in response to a user's feature module retrieval request;

[0013] The feature module library management unit is used to maintain and update the feature module library.

[0014] Optionally, the process management module includes a process module retrieval unit, a process module expansion unit, a typical process management unit, and a process module library management unit;

[0015] The process module retrieval unit is used to retrieve a target process module that matches the feature module;

[0016] The process module expansion unit is used to expand and customize the process module;

[0017] The typical process management unit is used to standardize the process module;

[0018] The process module library management unit is used to construct a process module library, and store the process module in the process module library.

[0019] Optionally, the process configuration management module includes a configuration rule management unit, a configuration process management unit, and a process template management unit;

[0020] The configuration rule management unit is used to manage the preset process configuration rules;

[0021] The configuration process management unit is used to configure the process module based on a preset process configuration rule, and monitor and manage the configuration process;

[0022] The process template management unit is used to provide a corresponding process template for the process module to generate a corresponding process file.

[0023] Optionally, the system further includes a system management module;

[0024] The system management module includes a special character management unit, a system interface management unit, and a user management unit;

[0025] The special character management unit is used to manage the special characters in the system to ensure the stable operation of the system;

[0026] The system interface management unit is used to manage the system interfaces to achieve data integration and interaction;

[0027] The user management unit is used to manage the user permissions of the system.

[0028] Optionally, the data model includes a part model library, a feature module instance library, a process module instance library, a process template library, and a process knowledge library;

[0029] The part model library and the feature module instance library provide process design data to the feature management module;

[0030] The feature module instance library and the process module instance library provide process design data to the process management module;

[0031] The process module instance library, the process template library, and the process knowledge library provide process design data to the process configuration management module.

[0032] Optionally, the function model is established based on the IDEF0 modeling method, and the data model is established based on the IDEF1X modeling method.

[0033] Optionally, the process file includes an assembly preparation process, a structural plate assembly process, a structural plate curing process, a quality inspection process, and a post-embedded part assembly bonding process.

[0034] Optionally, the infrastructure layer includes a network, an operating system, a data platform, and multiple hardware platforms.

[0035] On the other hand, the present invention provides a satellite structural plate modular process rapid configuration management method, which is applied to the satellite structural plate modular process rapid configuration management system described in any one of the above, and the method includes:

[0036] The user interface layer receives the three-dimensional model of the satellite structural panel sent by the user and sends the three-dimensional model of the satellite structural panel to the feature management module;

[0037] Based on the preset process requirements and the process design data sent by the data model, the feature management module generates and outputs a feature module corresponding to the three-dimensional model of the satellite structural panel;

[0038] Based on the process design data sent by the data model, the process management module generates and outputs a process module corresponding to the feature module;

[0039] Based on the process design data and the process module sent by the data model, the feature management module generates and outputs a process file.

[0040] The modular process rapid configuration management system and method for satellite structural panels provided by the present invention can respond to the three-dimensional model of the satellite structural panel input by the user, automatically generate feature modules and process modules through the feature management module, reduce manual intervention, speed up the design speed and the development process, and improve resource utilization based on the preset process requirements and process design data; all designs and process configurations are based on preset standards and specifications, ensuring the consistency and accuracy of process configurations, and reducing design and process errors caused by human factors; the various functional units in the functional model cooperate closely, further shortening the overall development cycle; the stable operating environment provided by the infrastructure layer ensures that the system can make full use of computing resources, and the data in the data model can be shared and reused among different functional units, reducing redundant work. The technical solution provided by this application reduces the workload of manual design in the case of mass production of satellite structural panels, improves the design and development efficiency, and finally automatically generates a complete design file that meets the user's needs based on the three-dimensional model and design requirements input by the user.

[0041] Other features and advantages of the present invention will be described in the following specification, and in part will be obvious from the specification, or will be understood by practicing the present invention. The objectives and other advantages of the present invention can be realized and obtained by the structures particularly pointed out in the written specification, claims, and drawings.

[0042] The technical solution of the present invention will be further described in detail below through the drawings and embodiments. Description of the Drawings

[0043] The drawings are used to provide a further understanding of the present invention, and constitute a part of the specification. They are used together with the embodiments of the present invention to explain the present invention, and do not constitute a limitation to the present invention. In the drawings:

[0044] Figure 1Schematic diagram of the structure of a satellite structural plate modular process rapid configuration management system provided in an embodiment of the present application;

[0045] Figure 2 Schematic diagram of the structure of the function model in the satellite structural plate modular process rapid configuration management system provided in an embodiment of the present application;

[0046] Figure 3 Schematic diagram of the specific structure of the manufacturing features in the feature module of the satellite structural plate modular process rapid configuration management system provided in an embodiment of the present application;

[0047] Figure 4 Schematic diagram of the working principle of the satellite structural plate modular process rapid configuration management system provided in an embodiment of the present application;

[0048] Figure 5 Flowchart of the specific working files in the satellite structural plate modular process rapid configuration management system provided in an embodiment of the present application;

[0049] Figure 6 Flowchart of the satellite structural plate modular process rapid configuration management method provided in an embodiment of the present application. Detailed implementation manners

[0050] The present invention will be described in detail below with reference to the accompanying drawings and in conjunction with embodiments. It should be noted that, without conflict, the embodiments in the present application and the features in the embodiments can be combined with each other.

[0051] On the one hand, the present invention provides a satellite structural plate modular process rapid configuration management system, as Figure 1 shown, including: an infrastructure layer, a data model, a function model, and a user interface layer; the infrastructure layer is used to provide a running environment for the system, the data model is used to provide process design data to the function model, and the function model interacts with the user through the user interface layer to receive the data input by the user; the function model includes a feature management module, a process management module, and a process configuration management module. The feature management module is used to receive the three-dimensional model of the satellite structural plate input by the user, and generate and output a feature module based on the preset process requirements and process design data. The process management module is used to receive the feature module and generate and output a process module based on the process design data. The process configuration management module is used to receive the process module and generate and output a process file based on the process design data.

[0052] The satellite structural panel modular process rapid configuration management system provided by the present invention can respond to the three-dimensional model of the satellite structural panel input by the user, automatically generate feature modules and process modules through the feature management module, reduce manual intervention, speed up the design speed and development process, and improve resource utilization based on preset process requirements and process design data; all design and process configurations are based on preset standards and specifications, ensuring the consistency and accuracy of process configurations, and reducing design and process errors caused by human factors; each functional unit in the functional model collaborates closely, further shortening the overall development cycle; the stable operating environment provided by the infrastructure layer ensures that the system can make full use of computing resources, and the data in the data model can be shared and reused among different functional units, reducing redundant work. The technical solution provided by this application reduces the workload of manual design in the case of mass production of satellite structural panels, improves the design and development efficiency, and finally automatically generates a complete design document that meets the user's needs based on the three-dimensional model and design requirements input by the user.

[0053] It should be noted that the infrastructure layer provided by this application is the platform foundation for the system to run, including hardware facilities, networks, operating systems and other hardware and software platform supports; the data model provides data storage and management functions; the functional model reflects the various sub-functions that the system needs to complete for rapid process configuration, including the feature management module, the process management module, the process configuration management module and the system management module; the user interface layer is a software tool provided for users to use to implement the functions of the system, provides an operable interface for users, and realizes the communication between users and the system. Specifically, the system can accept the data input by users and accept the changes to the data by users within the scope of permissions.

[0054] Specifically, in the above embodiment, as Figure 2 shown, the feature management module includes a design feature extraction unit, a feature module division and expression unit, a feature module retrieval unit and a feature module library management unit; the design feature extraction unit is used to extract key features from the design drawings of the satellite structural panel; the feature module division and expression unit is used to classify the key features based on preset rules and construct a feature module library according to the classification results; the feature module retrieval unit is used to respond to the user's feature module retrieval request and search for the target feature module in the feature module library; the feature module library management unit is used to maintain and update the feature module library.

[0055] In this embodiment, the feature management module specifically includes four different functional units. Among them, the design feature extraction unit can specifically extract key features automatically from the design drawings of satellite components, that is, from the Solidworks / Creo models of parts, such as dimensions, shapes, materials, etc., and also includes design features and manufacturing-related parameters; the feature module division and expression unit can classify and organize the extracted key features according to certain rules, specifically through a human-computer interaction method, and some unrecognized information related to process design will be added during the process, and finally a standardized feature module library is formed; the feature module retrieval unit can provide a fast retrieval function to help process designers quickly find similar feature modules. The whole process is automatically and quickly retrieved based on data-type, semantic-type, and geometric-type feature information elements, using different similarity calculation methods. If the similarity of all feature modules does not reach the threshold, the system will give corresponding prompts, and process designers are required to design a new process; the feature module library management unit is used to maintain and update the feature module library to ensure the accuracy and integrity of the feature module library.

[0056] The design feature extraction unit provided by this application can automatically extract key features, reducing the time and error rate of manual operations; the feature module division and expression unit classifies the extracted key features and constructs a feature module library, greatly shortening the time for creating feature modules and ensuring the consistency and standardization of feature modules; the feature retrieval unit can accurately find the target feature module in the feature module library to ensure that the most suitable feature configuration can be obtained for each retrieval; the feature module library management unit maintains and updates the feature module library, enabling the existing feature modules to be reused repeatedly, reducing the workload of repeated design, and allowing the feature module library to be updated according to new design requirements and technological progress to maintain the technological advancement of the system and promote the continuous improvement of the design process.

[0057] It should be noted that the feature modules involved in this application specifically include two aspects of content. One is to decompose the part composition units, and the other is to establish the information on the combination relationship between the units. Among them, the geometric shape characteristics can be used as the information carrier during the decomposition and combination of the feature modules. The satellite structural plate part can be decomposed into various feature modules according to its geometric shape characteristics. In addition to the information characterizing the geometric shape characteristics of the part, such as the respective shape types and dimensions of each feature module, it also includes manufacturing information such as material properties, accuracy grades, heat treatment methods, and batch sizes, as well as the combination information required when the feature modules form a specific part. The combination information includes other information such as the combination method, the number of feature modules, the position, and the reference when combined with other feature modules; and the geometric shape characteristics refer to the geometric shape characteristics oriented towards manufacturing, which are related to but not completely one-to-one corresponding to the geometric shape characteristics in the design process. The geometric shape characteristics in the part design process often only consider the final form of the geometric structure from the perspective of structural function; while in the manufacturing process, it is necessary to pay attention to the processing and forming process of the geometric shape, specifically according to the manufacturing geometric shape characteristics, such as Figure 3 As shown, the common feature modules of the part can be divided into eight categories, and each category includes various different features.

[0058] Specifically, in the above embodiment, as Figure 2 shown, the process management module includes a process module retrieval unit, a process module expansion unit, a typical process management unit, and a process module library management unit; the process module retrieval unit is used to retrieve the target process module that matches the feature module; the process module expansion unit is used to expand and customize the process module; the typical process management unit is used to standardize the process module; the process module library management unit is used to construct the process module library and store the process modules in the process module library.

[0059] In this embodiment, the process module retrieval unit retrieves the instance process module corresponding to the most similar instance feature module according to the mapping relationship between the feature module and the process module, wherein the instance process module includes a feature forming process module and an auxiliary process module, and the process module expansion unit performs the replacement, composition, addition, deletion, expansion and contraction of the process module according to the difference between the new part feature module and the instance feature module. The process module retrieval unit provided in the present application can accurately retrieve the matching target process module according to the feature module, ensure the pertinence and accuracy of the process design, reduce unnecessary trials and errors, and save the time and cost of design; the process module expansion unit allows users to make personalized adjustments or expansions to the standard process module to meet the needs of specific projects, thereby enhancing the flexibility of the system; the typical process management unit ensures the consistency and high quality standards of all process flows by standardizing the management of the process modules; and a rich process module library is constructed and maintained by the process module library management unit, so that the existing process modules can be used repeatedly, reducing the workload of repeated development; and the process module library management unit allows the process library to be updated according to new design requirements and technological advances to maintain the advancement and applicability of the system.

[0060] Specifically, in the above embodiment, if Figure 2 As shown, the process configuration management module includes a configuration rule management unit, a configuration process management unit and a process template management unit; the configuration rule management unit is used to manage the preset process configuration rules; the configuration process management unit is used to configure the process module based on the preset process configuration rules, and monitor and manage the configuration process; the process template management unit is used to provide the process module with a corresponding process template to generate a corresponding process file.

[0061] In this embodiment, the process configuration management module is specifically used to configure the process modules, automatically call the process templates in the process template library according to the type of parts, and fill the process modules of the expanded instances into the appropriate positions of the process templates, so as to quickly generate a relatively complete process specification and achieve rapid process preparation; the configuration rule management unit manages the preset process configuration rules, ensuring that all configuration activities follow the established standards and specifications. The configuration rule management unit provided in this application manages the preset process configuration rules, ensuring that all configuration activities follow the established standards and specifications, reducing the probability of human errors, and improving the accuracy and consistency of process documents; the configuration rule management unit allows the rules to be modified or extended according to actual needs, enhancing the flexibility and adaptability of the system; the configuration process management unit automatically configures the process modules based on the preset rules, greatly shortening the configuration time and improving work efficiency, and each step in the configuration process can be monitored and managed in real time, ensuring the transparency and controllability of the configuration process; and all configuration activities are executed based on the preset rules, ensuring the consistency and high-quality standards of process configuration.

[0062] Specifically, in the above embodiment, as Figure 2 shown, the system further includes a system management module; the system management module includes a special character management unit, a system interface management unit, and a user management unit; the feature character management unit is used to manage the special characters in the system to ensure the stable operation of the system; the system interface management unit is used to manage the system interfaces to achieve data integration and interaction; the user management unit is used to manage the user permissions of the system.

[0063] In this embodiment, the user management unit is mainly used to manage the user permissions of the system, ensuring that users with different roles can only access and operate the parts related to their responsibilities; the system interface management unit is used to manage the interfaces with other systems, such as the ERP management system, to ensure seamless data integration and exchange; and the special character management unit specifically manages some special settings, configuration items, or special characters inside the system to ensure the stable operation of the system. The system management module provided in this application, through the permission management and operation records implemented by the user management unit, ensures that all operations comply with the established standards, improving the quality and reliability of the final output process documents. The system interface management unit can record the history of all interface calls, achieving full traceability of data interaction, facilitating the tracking of quality problems and the definition of responsibilities; the system management module, through the collaborative work of the special character management unit, the system interface management unit, and the user management unit, ensures the stable operation of the system, efficient data integration and interaction, and strict user permission management.

[0064] Specifically, in the above embodiment, the data model includes a part model library, a feature module instance library, a process module instance library, a process template library, and a process knowledge library; the part model library and the feature module instance library provide process design data to the feature management module; the feature module instance library and the process module instance library provide process design data to the process management module; the process module instance library, the process template library, and the process knowledge library provide process design data to the process configuration management module.

[0065] In this embodiment, the part model library provides basic part design data for the feature management module to ensure the consistency and accuracy of the design starting point; the feature module instance library provides specific feature module instances to the feature management module and the process management module, supporting quick search and reuse of existing feature modules, improving design efficiency and consistency; the process module instance library provides specific process module instances to the process management module and the process configuration management module, supporting quick search and reuse of existing process modules, ensuring the accuracy and efficiency of process configuration; the process template library provides standardized process templates to the process configuration management module to ensure that the generated process documents meet the established standards, improving the quality and consistency of process documents; the process knowledge library provides process-related knowledge and experience to the process configuration management module, supporting decision-making in process design, providing valuable knowledge references, and enhancing the scientificity and rationality of design.

[0066] Specifically, the coordination and cooperation relationship between the feature management module, the process management module, and the process configuration management module in the function model provided by this application and the data model is as Figure 4 shown. First, the user uploads the three-dimensional model of the satellite structural plate through the user interface layer. The user interface layer sends the received three-dimensional model to the feature management module. After receiving the three-dimensional model from the user interface layer, the feature management module processes it based on the preset process requirements, as well as the preset feature module division rules, feature module expression rules, and feature module retrieval rules in the feature management module. The data source is to obtain relevant data from the feature module instance library, and finally generates and outputs the feature module corresponding to the three-dimensional model; then the process management module receives the feature module from the feature management module and processes it based on the preset process requirements and the guidance of the three-dimensional model, based on the preset process module expression rules and process module retrieval rules. The data sources are the process module instance library and the feature module instance library, and finally generates and outputs the process module corresponding to the feature module; finally, the process configuration management module receives the process module from the process management module and processes it based on the preset configuration rules and process rules in the process configuration management module. Specifically, it needs to obtain relevant data from the process knowledge library, the process module instance library, and the process template library, and finally generates and outputs a complete process document.

[0067] Specifically, in the above embodiments, the function model is established based on the IDEF0 modeling method, and the data model is established based on the IDEF1X modeling method.

[0068] In this embodiment, according to the functional requirements of the system, the function model of the process rapid configuration system is established using the IDEF0 modeling method. Among them, the IDEF0 method is a part of IDEF (ICAM DEFinition method) and is used to establish the function model of the system. In ICAM (Integrated Computer Aided Manufacturing), the structured activity model method of SADT (System Analysis and Design Technology) is used to establish the architecture model for comprehensively describing a system. The system data model is the basis for establishing the database and the foundation for reasonably storing and managing data. In this application, the IDEF1X modeling method in IDEF is used to establish the system data model. The IDEF1X method is an extension of IDEF1. Based on the E-R (entity relationship) principle of IDEF1, rules are added to enrich and enhance the semantic data of the conceptual model and have a concise and consistent structure, making it more convenient for learning, understanding, use, and automation. The function model provided in this application determines the required data content and its associations, thereby giving the data model.

[0069] Specifically, in the above embodiments, the process documents include assembly preparation process, structural plate assembly process, structural plate curing process, quality inspection process, and post-embedded part assembly bonding process.

[0070] In this embodiment, the satellite structural plates are all formed by bonding technology, that is, the panel, inserts, and sandwich honeycomb core are processed separately first. After surface treatment, glue liquid or glue film is applied to the bonding surfaces of the relevant parts, and then they are combined and cured into a sandwich structure. The insert embedding process can be divided into two methods: pre-embedding and post-embedding. For the pre-embedding process, the inserts should be pre-installed in the honeycomb core and cured synchronously with the structural plate. For the post-embedding process, after the structural plate is cured and formed, holes are drilled to bury the inserts into the plate, and the inserts and the structural plate are cured in steps. The process documents generated using the system provided in this application specifically include the process flow of the satellite structural plates, which is mainly divided into 5 stages: pre-assembly preparation, structural plate assembly, structural plate curing, post-embedded part assembly bonding, and structural plate quality inspection, as Figure 5As shown, in the pre-assembly preparation stage, first, material preparation is carried out to prepare the required raw materials, and part processing is performed to initially process the raw materials to form the required parts. Finally, the development of forming tooling is carried out to design and manufacture the tooling for part forming. Then, in the structural plate assembly stage, first, trial assembly and fitting are carried out to trial-assemble the initially processed parts and perform fitting as needed. After that, surface treatment of the bonded parts is carried out, that is, the surfaces of the parts to be bonded are treated to ensure good bonding effect. Then, wire thread inserts are installed at the specified positions, adhesives are applied at the required positions, and finally, trial assembly is carried out again to ensure that all components are correctly installed. In the structural plate curing stage, first, encapsulation and curing are carried out to encapsulate and cure the assembled structural plate. Then, demolding and cleaning are carried out, that is, after curing is completed, demolding is carried out and excess materials or residues are cleaned. Then, quality inspection is carried out, including appearance and dimension inspection, that is, checking whether the appearance and dimensions of the structural plate meet the requirements, adhesive bonding quality inspection, that is, checking the quality of the bonded parts to ensure firm bonding, and performance inspection of the parts in the furnace, that is, performing performance inspection on the parts in the furnace to ensure that they meet the performance requirements. Finally, post-embedded part assembly and bonding are carried out, the post-embedded parts are drilled on the structural plate, the post-embedded parts are assembled onto the structural plate, and bonding is carried out. Finally, the product delivery is completed.

[0071] Specifically, in the above embodiment, the infrastructure layer includes a network, an operating system, a data platform, and multiple hardware platforms.

[0072] In this embodiment, the infrastructure layer is divided into software facilities and hardware facilities. The software facilities include a network, an operating system, and a data platform, which can support the efficient transmission of data, ensure that users can quickly access the required resources, support remote collaboration and distributed computing. The hardware facilities are multiple distributed hardware platforms. The hardware platform is the physical device that supports the entire architecture, such as servers, storage devices, network devices, etc., which can provide the necessary computing power and storage space to run application programs and services, build a stable and reliable physical foundation, and ensure the continuous operation of the system.

[0073] On the other hand, the present invention provides a method for rapid configuration management of satellite structural plate modular processes, which is applied to the satellite structural plate modular process rapid configuration management system of any one of the above, as Figure 6 shown. The method includes that first, the user interface layer receives the three-dimensional model of the satellite structural plate sent by the user and sends the three-dimensional model of the satellite structural plate to the feature management module. Then, based on the preset process requirements and the process design data sent by the data model, the feature management module generates and outputs the feature module corresponding to the three-dimensional model of the satellite structural plate. After that, based on the process design data sent by the data model, the process management module generates and outputs the process module corresponding to the feature module. Finally, based on the process design data and the process module sent by the data model, the feature management module generates and outputs the process file.

[0074] The modular process rapid configuration management method for satellite structural plates provided by this application enables the entire process design to be automatically completed by the system, reducing manual intervention and significantly shortening the design cycle. The feature management module and the process management module generate feature modules and process modules based on preset process requirements and rich data models, ensuring that the design meets the established standards. The automated process reduces potential errors caused by manual operations and improves the design quality. Through the reuse of feature modules and process modules, it avoids the repetitive work of designers and speeds up the design of new projects.

[0075] Those skilled in the art can understand that the drawings are only schematic diagrams of a preferred implementation scenario, and the modules or processes in the drawings are not necessarily essential for implementing this application. Those skilled in the art can understand that the modules in the devices in the implementation scenario can be distributed in the devices in the implementation scenario according to the description of the implementation scenario, or can be correspondingly changed and located in one or more devices different from this implementation scenario. The modules in the above implementation scenario can be combined into one module, or further split into multiple sub-modules.

[0076] The above serial numbers of this application are only for description and do not represent the advantages or disadvantages of the implementation scenarios. The above disclosure is only several specific implementation scenarios of this application. However, this application is not limited thereto, and any changes that can be conceived by those skilled in the art should fall within the protection scope of this application.

Claims

1. A satellite structural plate modular process rapid configuration management system, characterized in that: include: Infrastructure layer, data model, functional model and user interface layer; The infrastructure layer is used to provide an operating environment for the system, the data model is used to provide process design data to the functional model, and the functional model interacts with the user through the user interface layer to receive data input by the user; The functional model includes a feature management module, a process management module and a process configuration management module. The feature management module is used to receive the three-dimensional model of the satellite structure plate input by the user, and generate and output the feature module based on the preset process requirements and the process design data. The process management module is used to receive the feature module, and generate and output the process module based on the process design data. The process configuration management module is used to receive the process module, and generate and output the process file based on the process design data.

2. The satellite structural plate modular process rapid configuration management system according to claim 1, characterized in that: The feature management module includes a design feature extraction unit, a feature module division and expression unit, a feature module retrieval unit and a feature module library management unit; The design feature extraction unit is used to extract key features from the design drawings of the satellite structure plate; The feature module division and expression unit is used to classify the key features based on preset rules and construct a feature module library according to the classification results; The feature module retrieval unit is used to search for a target feature module in the feature module library in response to a feature module retrieval request from a user; The feature module library management unit is used to maintain and update the feature module library.

3. The satellite structural plate modular process rapid configuration management system according to claim 1, characterized in that: The process management module includes a process module retrieval unit, a process module expansion unit, a typical process management unit and a process module library management unit; The process module retrieval unit is used to retrieve a target process module that matches the feature module; The process module expansion unit is used to expand and customize the process module; The typical process management unit is used to perform standardized management on process modules; The process module library management unit is used to construct a process module library and store process modules in the process module library.

4. The satellite structural plate modular process rapid configuration management system according to claim 1, characterized in that: The process configuration management module includes a configuration rule management unit, a configuration process management unit and a process template management unit; The configuration rule management unit is used to manage preset process configuration rules; The configuration process management unit is used to configure the process module based on preset process configuration rules, and monitor and manage the configuration process; The process template management unit is used to provide a corresponding process template for the process module to generate a corresponding process file.

5. The satellite structural plate modular process rapid configuration management system according to claim 1, characterized in that: The system also includes a system management module; The system management module includes a special character management unit, a system interface management unit and a user management unit; The characteristic character management unit is used to manage the special characters in the system to achieve stable operation of the system; The system interface management unit is used to manage the system interface to achieve data integration and interaction; The user management unit is used to manage the user rights of the system.

6. The satellite structural plate modular process rapid configuration management system according to claim 1, characterized in that: The data model includes a part model library, a feature module instance library, a process module instance library, a process template library and a process knowledge library; The part model library and the feature module instance library provide process design data to the feature management module; The feature module instance library and the process module instance library provide process design data to the process management module; The process module instance library, the process template library and the process knowledge base provide process design data to the process configuration management module.

7. The satellite structural plate modular process rapid configuration management system according to claim 1, characterized in that: The functional model is established based on the IDEF0 modeling method, and the data model is established based on the IDEF1X modeling method.

8. The satellite structural plate modular process rapid configuration management system according to claim 1, characterized in that: The process documents include assembly preparation process, structural plate assembly process, structural plate curing process, quality inspection process and post-embedded parts assembly bonding process.

9. The satellite structural plate modular process rapid configuration management system according to claim 1, characterized in that: The infrastructure layer includes a network, an operating system, a data platform, and multiple hardware platforms.

10. A satellite structural plate modular process rapid configuration management method, applied to the satellite structural plate modular process rapid configuration management system according to any one of claims 1 to 9, characterized in that: The method comprises: The user interface layer receives the three-dimensional model of the satellite structure plate sent by the user, and sends the three-dimensional model of the satellite structure plate to the feature management module; The feature management module generates and outputs a feature module corresponding to the three-dimensional model of the satellite structure plate based on preset process requirements and process design data sent by the data model; The process management module generates and outputs a process module corresponding to the feature module based on the process design data sent by the data model; The feature management module generates and outputs a process file based on the process design data sent by the data model and the process module.