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MuSCoWERT: multi-scale consistence of weighted edge Radon transform for horizon detection in maritime images

机译:MuSCoWERT:加权边缘Radon变换的多尺度一致性,可用于海事图像中的地平线检测

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This paper addresses the problem of horizon detection, a fundamental process in numerous object detection algorithms, in a maritime environment. The maritime environment is characterized by the absence of fixed features, the presence of numerous linear features in dynamically changing objects and background and constantly varying illumination, rendering the typically simple problem of detecting the horizon a challenging one. We present a novel method called multi-scale consistence of weighted edge Radon transform, abbreviated as MuSCoWERT. It detects the long linear features consistent over multiple scales using multi-scale median filtering of the image followed by Radon transform on a weighted edge map and computing the histogram of the detected linear features. We show that MuSCoWERT has excellent performance, better than seven other contemporary methods, for 84 challenging maritime videos, containing over 33,000 frames, and captured using visible range and near-infrared range sensors mounted onboard, onshore, or on floating buoys. It has a median error of about 2 pixels (less than 0.2%) from the center of the actual horizon and a median angular error of less than 0.4 deg. We are also sharing a new challenging horizon detection dataset of 65 videos of visible, infrared cameras for onshore and onboard ship camera placement. (C) 2016 Optical Society of America
机译:本文解决了海上环境中地平线检测的问题,这是众多物体检测算法中的基本过程。海洋环境的特点是不存在固定特征,在动态变化的物体和背景以及不断变化的照明条件下存在大量线性特征,这使得检测地平线这一通常简单的问题成为一个具有挑战性的问题。我们提出了一种称为加权边缘Radon变换的多尺度一致性的新方法,简称为MuSCoWERT。它使用图像的多尺度中值滤波,然后在加权边缘图上进行Radon变换,并计算检测到的线性特征的直方图,来检测多个尺度上一致的长线性特征。我们显示,MuSCoWERT具有出色的性能,优于84种具有挑战性的海上视频,性能优于其他七种现代方法,包含超过33,000帧,并且使用安装在船上,陆上或浮标上的可见距离和近红外距离传感器捕获。它与实际地平线中心的中值误差约为2个像素(小于0.2%),中值角误差小于0.4度。我们还将共享一个新的具有挑战性的水平检测数据集,该数据集包含65个可见,红外摄像机的视频,用于陆上和船上摄像机的放置。 (C)2016美国眼镜学会

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