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Man-made target detection for imaging infrared terminal guidance missile considering turbulence degraded Wave-fronts features

机译:考虑湍流退化波阵面特征的红外终端制导导弹成像目标检测

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Previous research employed natural background fractal features to detect man-made target for imaging infrared terminal guidance missile. The method is some effective but the optical turbulence is overlooked, which will disturb natural background intrinsic fractal. When the missile flies in atmosphere, there exits turbulent flow over the IR windows which will degrade the optical wave-fronts. In this paper, a new method considering degraded wave-fronts features is proposed for man-made moving target detection in natural background. To pre-process the infrared image and obtain the area in which target may exit, the image is divided into blocks and each block fractal dimension is calculated and compared. Then optical flow of the block is calculated from successive images to determine the moving target. The method is more applicable to actual missile fly environment, simulation results show that it reduces the optical flow calculation complexity and can detect the target availably.
机译:先前的研究利用自然背景分形特征来检测人造目标,以对红外终端制导导弹成像。该方法是有效的,但是忽略了光学湍流,这将干扰自然本底的固有分形。当导弹在大气中飞行时,在红外窗口上方会产生湍流,这会降低光波前。提出了一种考虑波前特征退化的新方法,用于自然背景下的人造目标检测。为了预处理红外图像并获得目标可能离开的区域,将图像分成多个块,然后计算并比较每个块的分形维数。然后,从连续图像计算出块的光流,以确定运动目标。该方法更适合实际的导弹飞行环境,仿真结果表明,该方法降低了光流计算的复杂度,可以有效地检测目标。

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