A Hardware Implementation of Real-Time Video Deblocking Using Shifted Thresholding

M. Hansen, A. Wong, W. Bishop
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引用次数: 4

Abstract

Video compression has become very important as demand has increased for the storage and transmission of digital video content. Popular video compression schemes like MPEG encoding make use of block-transform coding techniques which are susceptible to blocking artifacts. Recently, an efficient deblocking algorithm based on the concept of shifted thresholding has been proposed. This algorithm uses only integer arithmetic and replaces division operations with bit shifting. This paper proposes a new hardware architecture for the implementation of video deblocking using shifted thresholding. A prototype system for high performance video deblocking using a FPGA (field programmable gate array) board is described. The prototype system leverages the reduced hardware complexity of the shifted thresholding algorithm to cost-effectively implement video deblocking on a FPGA board.
一种使用移位阈值的实时视频块的硬件实现
随着数字视频内容存储和传输需求的增加,视频压缩变得非常重要。流行的视频压缩方案,如MPEG编码,使用易受块伪影影响的块变换编码技术。近年来,提出了一种基于移位阈值概念的高效去块算法。该算法仅使用整数运算,并用移位取代除法运算。本文提出了一种利用移位阈值实现视频分块的新硬件结构。介绍了一种利用现场可编程门阵列(FPGA)板实现高性能视频分块的原型系统。原型系统利用移位阈值算法降低的硬件复杂性,在FPGA板上经济有效地实现视频块。
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