Exploring Integral Image Word Length Reduction Techniques for SURF Detector

Shoaib Ehsan, K. Mcdonald-Maier
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引用次数: 12

Abstract

Speeded Up Robust Features (SURF) is a state of the art computer vision algorithm that relies on integral image representation for performing fast detection and description of image features that are scale and rotation invariant. Integral image representation, however, has major draw back of large binary word length that leads to substantial increase in memory size. When designing a dedicated hardware to achieve real-time performance for the SURF algorithm, it is imperative to consider the adverse effects of integral image on memory size, bus width and computational resources. With the objective of minimizing hardware resources, this paper presents a novel implementation concept of a reduced word length integral image based SURF detector. It evaluates two existing word length reduction techniques for the particular case of SURF detector and extends one of these to achieve more reduction in word length. This paper also introduces a novel method to achieve integral image word length reduction for SURF detector.
探索SURF检测器的积分图像字长缩减技术
加速鲁棒特征(SURF)是一种先进的计算机视觉算法,它依赖于积分图像表示来执行快速检测和描述图像特征,这些特征是尺度和旋转不变的。然而,积分图像表示的主要缺点是二进制字长大,导致内存大小的大幅增加。为了实现SURF算法的实时性,在设计专用硬件时,必须考虑积分图像对内存大小、总线宽度和计算资源的不利影响。以最小的硬件资源为目标,提出了一种基于减字长积分图像的SURF检测器的新实现概念。它针对SURF检测器的特定情况评估了两种现有的字长缩减技术,并对其中一种技术进行了扩展,以实现更多的字长缩减。本文还介绍了一种实现SURF检测器整体图像字长缩减的新方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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