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The Study of Tactical Missile's Airframe Digital Optimization Design

The Study of Tactical Missile's Airframe Digital Optimization Design
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摘要 Digital design and optimal are very important in modern design.The traditional design methods and procedure are not fit for the modern missile weapons research and development.Digital design methods and optimal ideas were employed to deal with this problem.The disadvantages of the traditional missile’s airframe design procedure and the advantages of the digital design methods were discussed.A new concept of design process reengineering(DPR)was put forward.An integrated missile air- frame digital design platform and the digital design procedure,which integrated the optimization ideas and methods,were devel- oped.Case study showed that the design platform and the design procedure could improve the efficiency and quality of missile’s airframe design,and get the more reasonable and optimal results. Digital design and optimal are very important in modern design.The traditional design methods and procedure are not fit for the modern missile weapons research and development.Digital design methods and optimal ideas were employed to deal with this problem.The disadvantages of the traditional missile's airframe design procedure and the advantages of the digital design methods were discussed.A new concept of design process reengineering(DPR)was put forward.An integrated missile air- frame digital design platform and the digital design procedure,which integrated the optimization ideas and methods,were devel- oped.Case study showed that the design platform and the design procedure could improve the efficiency and quality of missile's airframe design,and get the more reasonable and optimal results.
出处 《武汉理工大学学报》 CAS CSCD 北大核心 2006年第S3期974-977,共4页 Journal of Wuhan University of Technology
关键词 DIGITAL DESIGN OPTIMAL DESIGN DESIGN PROCESS reengineering(DPR) digital design optimal design design process reengineering(DPR)
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参考文献2

  • 1Giovanni Lombardi,Giovanni Mengali,Francois Beux.A hybrid genetic based optimization procedure for aircraft conceptual analysis[J].Optimization and Engineering.2006(2)
  • 2Alexandra Sch?nning,Jamal Nayfeh,Richard Zarda.An integrated design and optimization environment for industrial large scaled systems[J].Research in Engineering Design (-).2005(1-2)

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