期刊文献+

战略导弹系统总体设计过程集成支撑环境研究 被引量:2

Integration Environment Supporting Overall Design Process of Strategic Missile System
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摘要 战略导弹系统总体设计过程中的集成支撑环境能够支持实现设计过程中的多学科领域信息的共享与设计参数的共享和优化。在分析实施集成主要方式的基础上,提出了一种支持战略导弹系统总体设计的集成支撑环境的体系结构,研究了集成支撑环境涉及的关键技术,并给出了原型实现。最后阐述了下一步需要解决的问题。 Robust integration environment is a valid approach to share and optimize the design parameters in the strategic missile's overall design process. Based on the analysis of way of process integration, the main architecture of integration environment supporting overall design process of missile system is given, and the key integration technologies are studied, as well as the implementation of an actual system is demonstrated. Finally, the targets of integration in overall design process of missile system are expounded.
出处 《计算机集成制造系统-CIMS》 EI CSCD 北大核心 2003年第7期505-510,共6页
关键词 总体设计 过程集成 异构模型集成 过程模型 集成环境 overall design process integration heterogeneous model integration process model integration environment
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参考文献4

  • 1汪仁官 陈荣昭(译).实验设计与分析[M].北京:中国统计出版社,1998..
  • 2冯绍军,陈禹六.过程集成的设计和实施框架[J].计算机集成制造系统-CIMS,2001,7(5):1-5. 被引量:14
  • 3武欣 王文瑜 罗云峰.Oracle8i Java组件编程-EJB、CORBA和JSP[M].北京:机械工业出版社,2002..
  • 4HENNING M, VINOSKI S. Advanced CORBA programming with C++[M]. Massachusetts: Addison Wesley, 1999.

二级参考文献4

  • 1[1]Framework for managing process improvement [DB/OL]. http://www. dtic. mil. c3i/bprcd/3003. htm. 1994.
  • 2[2]ROBERT M P. Technology and strategic advantage[A]. Reengineering: Systems Integration Success[C]. Boston, Mass:Auerbach, 1998.
  • 3[3]MICHAEL A M. Defining systems integration[A]. Reengineering: Systems Integration Success[C]. Boston, Mass:Auerbach, 1998.
  • 4[4]BIREN P. Concurrent engineering fundamentals[M]. Prentice: Hall PTR, 1997.

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同被引文献15

  • 1龚春林,谷良贤,袁建平.基于全局优化算法的多学科优化计算构架[J].西北工业大学学报,2009,27(1):52-56. 被引量:8
  • 2韩明红,邓家禔.复杂工程系统多学科设计优化集成环境研究[J].机械工程学报,2004,40(9):100-105. 被引量:29
  • 3盛海涛,魏法杰.设计结构矩阵优化算法的研究与比较[J].计算机集成制造系统,2007,13(7):1255-1260. 被引量:10
  • 4SOBIEZCZANSKI-SOBIESKI J, HAFTKA R T. Multidisci plinary aerospace design optimization-survey of recent develop- ments[J]. Structural Optimization, 1997,14(1 ) : 1-23.
  • 5KOCH P N. Interdigitation for effective design space explora tion using iSIGHT[J]. Structural and Multidisciplinary Opti mization, 2001,23(2): 111-126.
  • 6WESTON R P, TOWNSEND J C, EIDSON T M, et al. A distributed computing environment for multidisciplinary design [C]//Proceedings of the 5th AIAA/NASA/ISSMO Symposi- um on Multidiseiplinary and Optimization. Reston, Va.,USA: AIAA, 1994: 1091-1097.
  • 7WU W Y, XU L, CHEN X Q, et al. The MDO environment for hypersonic vehicle system design and optimization[C]// Proceedings of the 42nd AIAA/ASME/SAE/ASEE Joint Pro- pulsion Conference & Exhibit. Reston, Va., USA: AIAA, 2006:1-8.
  • 8LEE H J, LEE J W, LEE J O. Development of web services- based multidiseiplinary design optimization framework[J]. Ad- vances in Engineering Software, 2009,40 (3) : 176-183.
  • 9Hart-Humphrey T.Engineering and tool integration[C]// Proceeding of Computer Future in Engineering Design,Harvey Mudd College,1997.
  • 10A Deshmukh,T Middlekoop,A Krothapalli,et al.Multi-Agent design architecture for integrated design systems[R].AIAA98-0914.

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