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IR seeker simulator and IR scene generation to evaluate IR decoy effectiveness

机译:IR Seeker模拟器和IR场景生成,以评估IR诱饵效果

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IR decoys can be an effective countermeasure against IR guided anti ship missiles. However, it's not so easy to determine how the decoys should be deployed to get maximum effectiveness. A limitation of trials is that results are obtained for the specific trial condition only. Software tools have been developed to solve these problems. One solution uses recorded IR imagery from a decoy deployment trial, while the other solution generates IR imagery and is thus independent of trials. In the first solution, a combination of hardware and software is used that allows recording of a scene with an infrared camera, and simulating a missile seeker. A pre-processing algorithm corrects the recorded images before they are fed into the seeker algorithm of the simulated missile. To perform this correction the pre-processing uses the speed, distance to the target and field of view of the IR camera as fixed parameters and the speed and starting distance of the simulated missile as variable parameters. Modtran and the Navy Aerosol Model are used to calculate the atmospheric transmission effects in the pre-processing. The second solution generates artificial IR images that are subsequently fed into the seeker algorithm. This solution also allows variation of those parameters that are fixed when recorded IR imagery is used. Examples are among others: the signature of the target ship, the orientation, size and speed of the target ship, the type of decoy, the timing of the decoy sequence, atmospheric conditions etc. With these tools the effectiveness of decoy deployment in various scenarios can be evaluated.
机译:红外诱饵可以是针对IR导向的反船舶导弹的有效对策。但是,确定如何部署诱饵以获得最大效率并不容易。试验的限制是仅针对特定试验条件获得的结果。已经开发出软件工具来解决这些问题。一个解决方案使用诱饵部署试验中录制的IR图像,而另一个解决方案产生IR图像,因此独立于试验。在第一种解决方案中,使用硬件和软件的组合,允许使用红外摄像头记录场景,并模拟导弹潜席。预处理算法在将录制的图像送入模拟导弹的搜索器算法之前校正录制的图像。为了执行该校正,预处理使用速度,到IR相机的目标的距离和视野作为固定参数和模拟导弹作为变量参数的速度和开始距离。 Modtran和海军气溶胶模型用于计算预处理中的大气传输效果。第二解决方案产生人造红外图像,随后送入搜索器算法。该解决方案还允许在使用录制的IR图像时固定的那些参数的变化。例子是其他:目标船的签名,目标船的定向,尺寸和速度,诱饵的类型,诱饵序列的定时,大气条件等,这些工具在各种场景中的诱饵部署的有效性可以评估。

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