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Rapid Line-Extraction Method for SAR Images Based on Edge-Field Features

机译:基于边缘场特征的SAR图像快速线提取方法

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This letter proposes a rapid line-extraction (RLE) method for synthetic aperture radar (SAR) images. RLE first transforms an image in the space domain into an image in the frequency domain. Then, using the central-slice theorem, RLE skilfully maps the image in the frequency domain into a parameter space, which effectively accelerates the straight-line extraction process. Unlike the traditional Hough transform, RLE is performed directly on an edge-field image rather than on a binary edge map. Theoretical analysis proves the advantages of using the edge-field map. Notably, the computational complexity can be greatly reduced relative to the complexity of obtaining a binary edge map, and the method can efficiently avoid the negative influence of false edges in the binary edge map. More importantly, because speckle, clutter, and blurred edges in real-world images decrease the sharpness of peaks, edge-field images that include the strength and direction information of SAR images are adopted to reduce the diffusion of peaks and improve the detection accuracy. Experimental studies show that RLE works independently, is robust to noise, has low computational complexity, achieves high true-positive detection rates, and yields satisfactory detection precision.
机译:这封信提出了一种用于合成孔径雷达(SAR)图像的快速线提取(RLE)方法。 RLE首先将空间域中的图像转换为频域中的图像。然后,使用中心切片定理,RLE巧妙地将频域中的图像映射到参数空间中,从而有效地加速了直线提取过程。与传统的Hough变换不同,RLE直接在边缘场图像上执行,而不是在二进制边缘图上执行。理论分析证明了使用边缘场图的优势。值得注意的是,相对于获得二进制边缘图的复杂度,可以大大降低计算复杂度,并且该方法可以有效地避免伪边缘在二进制边缘图中的负面影响。更重要的是,由于现实图像中的斑点,混乱和模糊边缘会降低峰的清晰度,因此采用包含SAR图像的强度和方向信息的边缘场图像来减少峰的扩散并提高检测精度。实验研究表明,RLE独立工作,对噪声具有鲁棒性,计算复杂度低,达到了很高的真阳性检出率,并且产生了令人满意的检测精度。

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