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作 者:王华天 张春[1] 曹润清 WANG Huatian;ZHANG Chun;CAO Runqing(Northwest Institute of Mechanical&Electrical Engineering,Xianyang 712099,Shaanxi,China;Aeronautics Computing Technology Research Institute,Xi′an 710065,Shaanxi,China)
机构地区:[1]西北机电工程研究所,陕西咸阳712099 [2]西安航空计算技术研究所,陕西西安710065
出 处:《火炮发射与控制学报》2022年第5期60-65,71,共7页Journal of Gun Launch & Control
摘 要:基于模型的武器系统仿真作为一种新型的武器设计和研发方法,涉及武器系统的设计、研制、生产和评估的全生命周期,是保证防空高炮武器系统设计全过程有效管理的重要基础。目前,国内防空高炮武器系统的设计实现还未形成以总体仿真指导方案论证、以数据模型驱动指标制定,研制周期过长且容错率较低,难以适应新时代装备设计制造需求。在深入研究防空高炮武器各分系统模块原理的基础上,基于模型系统工程设计思想,设计了防空高炮武器总体仿真系统,实现了仿真数据流贯通和仿真数据分析,为防空高炮武器的设计与改进提供了技术支撑。Model-based antiaircraft artillery weapon system simulation, as a new integrated product design and development method, is used throughout the full life cycle of a weapon system, including design, development, manufacturing, and evaluation. It serves as a basis for ensuring effective mana-gement of the whole process of weapon system design. At present, the design and implementation of Chinese artillery weapon systems is yet to be evaluated by system simulation guidelines and based on data model driven indices. The development cycle is too long and the fault tolerance rate is low, which is hard to satisfy the need of equipment design and manufacturing in the new era. With a clear understanding of the subsystem modules of the antiaircraft artillery weapon, an overall simulation system is established on the basis of model system engineering principles. The system can share simulated data flows and analyze the data. This provides important technical support for antiaircraft artillery system design and improvement.
分 类 号:TP391.9[自动化与计算机技术—计算机应用技术]
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