Design and analysis of efficient reconfigurable wavelet filters

A. Pande, Joseph Zambreno
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引用次数: 21

Abstract

Real-time image and multimedia processing applications such as video surveillance and telemedicine can have dynamic requirements of system latency, throughput, and power consumption. In this paper we discuss the design of reconfigurable wavelet filters for image processing applications that can meet such dynamic requirements. We generate several efficient hardware designs based on a derived family of bi-orthogonal 9/7 filters. An efficient folded and multiplier-free implementation of a 9/7 filter is obtained with the help of nine adders, which is a significant improvement over other existing approaches. We also propose an architecture that allows for on-the-fly switching between 9/7 and 5/3 filter structures. A performance comparison of these filters and their hardware requirements with other existing approaches demonstrates the suitability of our choice.
高效可重构小波滤波器的设计与分析
视频监控和远程医疗等实时图像和多媒体处理应用可能对系统延迟、吞吐量和功耗有动态要求。本文讨论了图像处理应用中可重构小波滤波器的设计,以满足这种动态要求。我们基于派生的双正交9/7滤波器族生成了几种高效的硬件设计。在9个加法器的帮助下,获得了一个有效的折叠和无乘法器的9/7滤波器实现,这是对其他现有方法的重大改进。我们还提出了一种架构,允许在9/7和5/3滤波器结构之间进行实时切换。将这些滤波器及其硬件要求与其他现有方法进行性能比较,证明了我们选择的适用性。
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