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Very large scale integration architecture for block-matching motion estimation using adaptive rood pattern search algorithm

机译:使用自适应Rood模式搜索算法进行块匹配运动估计的超大规模集成架构

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This study introduces an architecture for motion estimation block of the video encoder using adaptive rood pattern search (ARPS) algorithm. The architecture has been designed for field programmable gate array (FPGA) as well as application specific integrated circuit (ASIC) implementations. Experimental results show that the speed of ARPS algorithm is ahead of several existing fast motion estimation algorithms without compromising the peak signal-to-noise ratio values. The Virtex-4 FPGA implementation of the proposed architecture using Xilinx 14.2 attains a maximum frequency of 103 MHz with <3% usage of slices. ASIC implementation of the proposed architecture with Synopsys design vision tool (0.18 µm) using 100 MHz frequency involves power consumption of 4.54 mW and occupies 0.073 mm2. A maximum frequency of 333 MHz has been achieved for the ASIC implementation with 16 × 16 blocks and it can process 651 frames of slow motion video such as Akiyo and 280 frames of fast motion video such as Football of CIF format (352 × 288 resolution) per second. Moreover, the ASIC implementation can process up to 31 frames of HD (1920 × 1080 resolution) video per second. Hence, the proposed architecture fits well in applications such as video conferencing and video phones.
机译:本研究介绍了一种使用自适应Rood模式搜索(ARPS)算法的视频编码器运动估计块的体系结构。该体系结构已设计用于现场可编程门阵列(FPGA)以及专用集成电路(ASIC)实现。实验结果表明,ARPS算法的速度在不损害峰值信噪比值的情况下领先于几种现有的快速运动估计算法。使用Xilinx 14.2的拟议架构的Virtex-4 FPGA实现以小于3%的条带使用实现了103 MHz的最大频率。使用Synopsys设计视觉工具(0.18 µm),频率为100 MHz的拟议架构的ASIC实现涉及4.54 mW的功耗,并占用0.073 mm2。通过16×16块的ASIC实现,最高频率为333 MHz,它可以处理651帧慢动作视频(例如Akiyo)和280帧快动作视频(例如CIF格式的Football)(352×288分辨率)每秒。此外,ASIC实现每秒可处理多达31帧高清(1920×1080分辨率)视频。因此,所提出的架构非常适合诸如视频会议和视频电话之类的应用。

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