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武装直升机红外成像仿真
引用本文:黄志理,崔颢,张平.武装直升机红外成像仿真[J].航空计算技术,2012,42(5):106-110.
作者姓名:黄志理  崔颢  张平
作者单位:1. 中国空空导弹研究院,河南洛阳471009;航空制导武器航空科技重点实验室,河南洛阳471009
2. 中国空空导弹研究院,河南洛阳,471009
基金项目:"十二五"总装装备预先研究基金项目资助
摘    要:虚拟仿真以其低成本、短周期、高质量的特点,逐渐成为复杂环境下红外成像制导武器设计分析、验证和评估的主要手段之一。以某武装直升机目标为对象,首先利用基于航空发动机物理模型的方法,通过全尺寸几何建模、计算蒙皮、尾喷和羽烟等主要红外辐射源的流场和温度场,利用灰度等级描述红外辐射信息,生成不同视向角下的近场红外辐射亮度显示,并存储形成数据库。然后根据具体使用时的条件从数据库中调用,按照距离进行大气衰减,最终形成视点处的红外辐射亮度显示。实验结果证明,算法生成的武装直升机红外图像真实感强,实时性好,可用于红外成像制导导弹仿真和夜航模拟训练系统的红外视景显示,具有一定的军事参考价值。

关 键 词:红外成像  武装直升机  全尺寸几何建模  大气衰减

Infrared Imaging Simulation for Armed Helicopter
HUANG Zhi-li , CUI Hao , ZHANG Ping.Infrared Imaging Simulation for Armed Helicopter[J].Aeronautical Computer Technique,2012,42(5):106-110.
Authors:HUANG Zhi-li  CUI Hao  ZHANG Ping
Institution:1(1.China Airborne Missile Academy,Luoyang 471009,China; 2.Aviation Key Laboratory of Science and Technology on Airborne Guided Weapons,Luoyang 471009,China)
Abstract:As virtual simulation has the characteristics of low cost, short cycle and high quality, it has been one of the main means for design, measurement and evaluation of infrared imaging guided weapon system in complex environment. Aimed at an armed helicopter and based on physical model of aero engine, the paper begins with the overall geometry modeling for helicopter, and calculates the fluid field and temperature distribution of skin, nozzle and plume. By converting the infrared radiance to gray value, the radiation luminance images in close depth and different directions can be generated, and the database is founded. Finally, the image in view point is built after database transfer and atmospheric attenuation with the current distance. The simulation result shows that the method proposed here can generate the armed helicopter's infrared images with high fidelity and excellent real-time property ,and it has higher military value in infrared imaging guided missiles simulation and night aviation training simulation systems tor armed helicopter
Keywords:infrared imaging  armed helicopter  overall geometry modeling  atmospheric attenuation
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