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Automatic detection of sea-sky horizon line and small targets in maritime infrared imagery

机译:在海上红外图像中自动检测海天地平线和小目标

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It is usually difficult but important to extract distant targets from sea clutters and clouds since the targets are small compared to the pixel field of view. In this paper, an algorithm based on pavelet transformation is proposed for automatic detection of small targets under the maritime background. We recognize that the distant small targets generally appear near the sea-sky horizon line and noises lie along the direction of sea-sky horizon line. So the sea-sky horizon is located firstly by examining the approximate image of a Haar wavelet decomposition of the original image. And the equation of the sea-sky horizon is set up, no matter whether the sea-sky horizon is horizontal or not. Since the sea-sky horizon is located, not only the potential area but also the strip direction of noise is got. Then the modified mutual wavelet energy combination algorithm is applied to extract targets with targets being marked by red windows. Computer simulations are shown to validate the great adaptability of the sea-sky horizon line detection and the accuracy of the small targets detection. The algorithm should be useful to engineers and scientists to design precise guidance or maritime monitoring system. (C) 2016 Elsevier B.V. All rights reserved.
机译:从海杂波和云层中提取远距离目标通常很困难,但很重要,因为与像素视场相比,目标很小。提出了一种基于小波变换的海洋背景下小目标自动检测算法。我们认识到,遥远的小目标通常出现在海天地平线附近,并且噪音沿海天地平线的方向分布。因此,首先通过检查原始图像的Haar小波分解的近似图像来定位海天地平线。无论海平面是否水平,都建立了海平面的方程。由于定位了海天地平线,因此不仅获得了潜在区域,而且获得了噪声的条带方向。然后应用改进的互小波能量组合算法提取目标,并用红色窗口标记目标。通过计算机仿真可以验证海天视线检测的巨大适应性以及小目标检测的准确性。该算法对于工程师和科学家设计精确的制导或海上监视系统应该是有用的。 (C)2016 Elsevier B.V.保留所有权利。

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