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FPGA Based Design and Implementation of Improved Edge Detection Algorithm using LOG Operator

机译:基于FPGA的LOG算子改进边缘检测算法的设计与实现。

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Detection speed and precision are key indicators of the edge detection systems. To increase the precision of edge detection and enhance its engineering practicability, an improved edge detection algorithm based on Laplace of Gaussian (LOG) operator is proposed in this paper. In this algorithm, the first order partial derivative in different direction is calculated to judge the direction of the gradient. Then, the position of zero crossing point is positioned according to the value of LOG operator in the gradient direction. Furthermore, according to the number of zero crossing points of the adjacent points in the direction of the gradient normal vector, the image is filtered and breakpoints are connected. For convenience in engineering application of digital image processing, this proposed edge detection algorithm is implemented on Field-Programmable Gate Array (FPGA) chip. The experiment results show that this proposed algorithm is easy to be implemented on hardware and has much higher accuracy in edge detection performance. Due to the parallel processing capability of FPGA chip, the designed edge detection system is suitable for real-time image processing applications.
机译:检测速度和精度是边缘检测系统的关键指标。为了提高边缘检测的精度并提高其工程实用性,本文提出了一种基于高斯算子的拉普拉斯(LOG)算子的改进的边缘检测算法。在该算法中,计算不同方向的一阶偏导数以判断梯度的方向。然后,根据LOG运算符的值在梯度方向上定位零交叉点的位置。此外,根据在梯度法向矢量方向上相邻点的零交叉点的数量,对图像进行滤波并连接断点。为了方便在数字图像处理的工程应用中,本文提出的边缘检测算法是在现场可编程门阵列(FPGA)芯片上实现的。实验结果表明,该算法易于在硬件上实现,并且边缘检测性能具有更高的精度。由于FPGA芯片具有并行处理能力,因此设计的边缘检测系统适用于实时图像处理应用。

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