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Edge linking by a directional potential function (DPF)

机译:通过方向势函数(DPF)进行边缘链接

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Low level edge detection operators do not usually guarantee the generation of contiguous boundaries of objects in images. This, coupled with other inherent signal noises, makes many image analysis tasks difficult. We present a new algorithm that is theoretically inspired by a potential function method originated in physics. In this algorithm an edge image is modelled as a potential field with energy depositions at the detected edge positions. Pixels at the edge broken points are charged by the potential forces of the energy in proportion to the relative distances and directions of the surrounding edge pixels. A directional potential function (DPF) is applied to measure the energy charges, which in turn direct the edge connections at these points. Heuristic techniques are utilized in the algorithm to assist the search of charged pixels and improve the effectiveness of the DPF evaluations.
机译:低级边缘检测算子通常不能保证图像中对象连续边界的生成。这加上其他固有的信号噪声,使许多图像分析任务变得困难。我们提出了一种新算法,该算法在理论上受到了起源于物理学的势函数方法的启发。在该算法中,将边缘图像建模为势场,在检测到的边缘位置处沉积了能量。边缘断点处的像素由与周围边缘像素的相对距离和方向成比例的能量势力充电。应用方向电势函数(DPF)来测量能量电荷,然后将边缘连接引导到这些点。该算法中采用了启发式技术,以协助搜索带电像素并提高DPF评估的有效性。

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