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A Spiking Neural Model of HT3D for Corner Detection

机译:HT3D的尖峰神经模型用于角点检测

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摘要

Obtaining good quality image features is of remarkable importance for most computer vision tasks. It has been demonstrated that the first layers of the human visual cortex are devoted to feature detection. The need for these features has made line, segment, and corner detection one of the most studied topics in computer vision. HT3D is a recent variant of the Hough transform for the combined detection of corners and line segments in images. It uses a 3D parameter space that enables the detection of segments instead of whole lines. This space also encloses canonical configurations of image corners, transforming corner detection into a pattern search problem. Spiking neural networks (SNN) have previously been proposed for multiple image processing tasks, including corner and line detection using the Hough transform. Following these ideas, this paper presents and describes in detail a model to implement HT3D as a Spiking Neural Network for corner detection. The results obtained from a thorough testing of its implementation using real images evince the correctness of the Spiking Neural Network HT3D implementation. Such results are comparable to those obtained with the regular HT3D implementation, which are in turn superior to other corner detection algorithms.
机译:对于大多数计算机视觉任务而言,获得高质量的图像功能至关重要。已经证明,人类视觉皮层的第一层致力于特征检测。对这些功能的需求已使线,段和角点检测成为计算机视觉中研究最多的主题之一。 HT3D是Hough变换的最新变体,用于组合检测图像中的角和线段。它使用3D参数空间,可检测线段而不是整条线。该空间还包含图像角点的规范配置,从而将角点检测转换为模式搜索问题。之前已经提出了尖峰神经网络(SNN)用于多种图像处理任务,包括使用霍夫变换的拐角和直线检测。遵循这些想法,本文介绍并详细描述了将HT3D实现为用于拐角检测的尖刺神经网络的模型。通过使用真实图像对其实现进行全面测试所获得的结果证明了Spiking Neural Network HT3D实现的正确性。这样的结果可与常规HT3D实现所获得的结果相提并论,后者又优于其他角点检测算法。

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