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Target Recognition Study Using Polarimetric Laser Radar

机译:使用极化激光雷达的目标识别研究

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摘要

Imaging laser radar (ladar) systems have been developed for automatic target identification in surveillance systems. A processor in the ladar uses the range value at the target pixels to estimate the target's 3-D shape (angle-angle-range) and, from the 3-D shape, identify the target. For targets in clutter and partially hidden targets, there are ambiguities in determining which pixels are on target, that lead to uncertainties in determining the target's 3-D shape. A method for improving the determination of which pixels are on target is to use the polarization components of the reflected light. Laser light retroreflected from man-made (smoother) surfaces is depolarized less than light from natural (rougher) surfaces. By sensing the depolarization of the reflected light at every pixel, the pixels on target can be distinguished from pixels on clutter and background. We describe the operation of a polarization diverse imaging laser radar and a preliminary evaluation of this ladar. We simulated the laser radar output, which are polarization diverse images. The polarization diverse images are fused into a single image. We then showed that, using the fused image, we are better able to identify and distinguish the target from other objects of the same class.
机译:已经开发了成像激光雷达(拉达)系统,用于监视系统中的自动目标识别。雷达中的处理器使用目标像素处的范围值来估计目标的3D形状(角度-角度范围),并从3D形状中识别目标。对于杂物和部分隐藏的目标中的目标,在确定目标上有哪些像素方面存在歧义,这导致确定目标的3D形状时存在不确定性。一种改进确定哪个像素位于目标上的方法是使用反射光的偏振分量。从人造(较光滑)表面回射的激光的去偏振要比自然(较粗糙)表面的回光少。通过感测每个像素处反射光的去偏振,可以将目标上的像素与杂波和背景上的像素区分开。我们描述了偏振分集成像激光雷达的操作以及该雷达的初步评估。我们模拟了激光雷达输出,该输出是偏振不同的图像。偏振不同的图像融合为单个图像。然后,我们表明,使用融合图像,我们可以更好地识别目标并将其与相同类别的其他对象区分开。

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