复杂技术产品中以网络为中心的按订单设计统一信息空间模型与体系结构

Q3 Mathematics
O. V. Drozd
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引用次数: 0

摘要

本文讨论了信息系统互操作性的一般问题、分析方法和支持方法。提供了确保技术系统互操作性的基本要求。从概念互操作模型和参考互操作模型两个层面分析了信息交互模型的形成途径。结合Design-to-order信息支持,引入了智能工作场所的概念,制定了智能工作场所运行的目标和任务。提出了以网络为中心的设计到订单统一信息空间的广义体系结构,为设计生产链的实现提供了信息支持。提出的统一信息空间体系结构包括考虑不断变化的应用条件的设计数据基础模型和领域特定模型的自动生成和自适应机制。一般来说,建议的以网络为中心的“按订单设计”统一信息空间架构确保了从客户到单独的工作场所和产品生命周期的目标过程的不间断信息交互。使用这些自适应本体论模型似乎比引入静态互操作性概要文件更可取,静态互操作性概要文件的开发可能会受到正在制造的集成技术产品的复杂性的阻碍
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design-to-Order Unified Information Space Network-Centric Model and Architecture in the Complex Technical Products
The paper considers general problems of information systems interoperability, approaches to its analysis and support. Basic requirements for ensuring the technical systems interoperability are provided. Approaches are analyzed to formation of the information interaction models in accordance with the level of conceptual interoperability model and the reference interoperability model. The concept of smart work-place is introduced in relation to the Design-to-order information support, objective and tasks of the smart workplace operation are formulated. Generalized network-centric architecture of the Design-to-order unified information space is presented, which provides information support in implementation of the design and production chain. The proposed unified information space architecture includes mechanisms of automatic generation and adaptation of the design data basic and domain-specific models taking into account the constantly altering application conditions. In general, the proposed network-centric architecture of the Design-to-order unified information space ensures uninterrupted information interaction from the customer to separate workplaces and target processes of the product life cycle. Using these adaptive ontological models appears more preferable than introduction of the static interoperability profile, which development could be hampered by complex nature of the integrated technical product being manufactured
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来源期刊
CiteScore
1.10
自引率
0.00%
发文量
40
期刊介绍: The journal is aimed at publishing most significant results of fundamental and applied studies and developments performed at research and industrial institutions in the following trends (ASJC code): 2600 Mathematics 2200 Engineering 3100 Physics and Astronomy 1600 Chemistry 1700 Computer Science.
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