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陈留涛, 丁刚毅. 虚拟靶场体系结构设计[J]. 计算机辅助设计与图形学学报, 2010, 22(9): 1600-1605.
引用本文: 陈留涛, 丁刚毅. 虚拟靶场体系结构设计[J]. 计算机辅助设计与图形学学报, 2010, 22(9): 1600-1605.
Chen Liutao, Ding Gangyi. Design of Virtual Range Architecture[J]. Journal of Computer-Aided Design & Computer Graphics, 2010, 22(9): 1600-1605.
Citation: Chen Liutao, Ding Gangyi. Design of Virtual Range Architecture[J]. Journal of Computer-Aided Design & Computer Graphics, 2010, 22(9): 1600-1605.

虚拟靶场体系结构设计

Design of Virtual Range Architecture

  • 摘要: 为了将各种仿真、试验及高性能计算方法应用到靶场试验中来构建虚拟靶场,提高靶场试验的效率.研究了先进模拟与计算(ASC)计划的层次结构,分析了其代码实现框架SIERRA的体系结构,详细阐述了试验与训练使能体系结构(TENA).将ASC中的模拟试验方法及SIERRA框架中的高性能计算服务与TENA相结合,设计了虚拟靶场体系结构(VRA)及其中间件,其中VRA弥补了TENA在虚拟试验过程中对高性能计算支持不足的缺点.通过导弹攻击战斗机实例的试验结果表明,利用VRA进行虚拟试验可为产品的分析、仿真和试验提供有力支持.

     

    Abstract: To construct the virtual range by using the methods of simulation,test and high performance computing applied to the range test,and improve the efficiency of the range test,we study the hierarchy of the advanced simulation and computing(ASC) plan.We also analyze the architecture of SIERRA framework to realize the codes of ASC and describe in detail the test and training enabling architecture(TENA).By combining the simulation and test methods in the ASC and the high performance computing services in the SIERRA framework with the TENA,the virtual range architecture(VRA) and its middleware are designed.The VRA overcomes the limitation that the TENA lacks the support of the high performance computing.The test results of the example of missile attacking fighter shows that the virtual test with VRA can provide strong support for the product analysis,simulation and test.

     

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