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Modeling countermeasures to imaging infrared seekers

机译:模拟对策对红外寻求者的模拟对策

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The threat to aircraft from missiles with imaging infrared seekers has developed more rapidly and in more countries independently than the original infrared missile threat. This is, in part, a consequence of the civil sector's demand for high-resolution infrared imagers and the development of computer processors capable of implementing complex image-processing algorithms im real time. Dstl has developed the Fly-In model to analyse the potential effectiveness of existing countermeasures (CM) to imaging infrared seekers and to test new CM approaches before trialling them against surrogate imaging seekers. The validation of the Fly-In model is extremely important, particularly as the newness of the imaging infrared threat, means that actual examples of the threat are not available for study. Extensive measurements have been carried out on the appearance of flare CM in different infrared wavebands, and on the effects of lasers on the optics and detector of an surrogate imageing seeker. Other parts of the model are derived from other Dstl models, including the NATO Infrared Airborne Target Model (NIRATAM) and HADES (missile dynamics) that are validated against trials' data. Initial studies have shown that existing CM, and those under development, can be very effective against imaging infrared seekers, by defeating the seeker's image-processing algorithms. It is already clear that laser CM will play an increasing role in the defence of aircraft, thereby enhancing aircraft survivability. Moreover, this model will aid the military planner in determining the best mix of CM and the tactics for using them.
机译:对成像红外寻求者的导弹的飞机的威胁已经比原始红外导弹威胁独立地发展得更快地发展。部分是,民事部门对高分辨率红外成像仪的需求以及能够实现复杂的图像处理算法的计算机处理器的发展的后果。 DSTL开发了飞行模型,分析现有对策(CM)对成像红外寻求者的潜在效果,并在试验反对代理成像追求者之前测试新的CM方法。飞行模型的验证极为重要,特别是作为成像红外威胁的新性,意味着威胁的实际示例不可用于学习。在不同红外波带中的光晕CM的外观上进行了广泛的测量,以及激光对代理镜像探测器的光学和检测器的影响。该模型的其他部分来自于其他DSTL模型,包括北约红外机载目标模型(纳拉氨酰胺)和哈夫(导弹动态),用于反对试验数据。初步研究表明,通过击败寻求者的图像处理算法,现有的CM和正在开发的那些对成像红外寻求者来说非常有效。已经清楚,激光CM将在飞机防御方面发挥越来越大的作用,从而提高了飞机生存性。此外,该模型将帮助军队计划确定最佳CM和使用它们的策略。

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