低温等离子体设备C-L PLM系统的研究与开发
[Abstract]:With the development of science and technology, the variety and quantity of products are increasing day by day. In order to gain competitive advantage, enterprises have to pay attention to product innovation and service quality. However, the traditional product lifecycle management is limited to the resource management of product design and production stage, and lacks the data support of product logistics, use and maintenance stage. The main contribution of this paper is to improve the quality of product service. The concept of closed-loop product lifecycle management (Closed-Loop Product Lifecycle Management,) is introduced, and the low temperature plasma equipment C-L PLM system is designed. System middleware and some functional components are developed. In this paper, the design and development of the device dynamic data automatic acquisition device (Peid, abbreviated as Product Embedded Infomation Device) is completed, and a data representation format in the form of XML is established. A priority-based data processing strategy is proposed. The main work of this paper is as follows: 1. Equipment data resource analysis, acquisition and expression: first, the data resources and their existing forms are analyzed. A model of information flow between different business stages is established. Then, the origin of product data is analyzed, a data acquisition framework is established for each kind of data source, and an extensible PEID device is developed to complete the acquisition of product dynamic data. Finally, the data exchange format is established. 2. The design of C-L PLM system for plasma equipment. Firstly, the functional requirements of the system are analyzed based on the UML use case diagram. Secondly, the system function modularization design is carried out to determine the system users and their permissions. Then, the architecture of the whole system is designed, and a realization technology system of the system is briefly described. Then, the application layer information exchange interface component (middleware) is designed, and the priority-based data processing strategy is defined to ensure that the important data of the equipment and the data with high real-time requirements can be processed in time. Then, the logic design of the whole system business layer is carried out, and the database model of the whole system is designed and developed by UML class diagram. Finally, the man-machine interface design and development. 3, the development of functional components and the feasibility of the system. Then, the middleware is developed and the function is tested. Finally, the development and test of document management function and remote upgrade function of equipment. The above work has a certain reference value for small and medium enterprises to establish a perfect product life-cycle management system.
【学位授予单位】:中国科学技术大学
【学位级别】:硕士
【学位授予年份】:2015
【分类号】:TP311.52
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