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A Fine-Grain Scalable and Low Memory Cost Variable Block Size Motion Estimation Architecture for H.264/AVC

机译:用于H.264 / AVC的细粒度可扩展且低成本的可变块大小运动估计体系结构

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摘要

One full search variable block size motion estimation (VBSME) architecture with integer pixel accuracy is proposed in this paper. This proposed architecture has following features: (1) Through widening data path from the search area memories, m processing element groups (PEG) could be scheduled to work in parallel and fully utilized, where m is a factor of sixteen. Each PEG has sixteen processing elements (PE) and just costs 8.5K gates. This feature provides users more flexibility to make tradeoff between the hardware cost and the performance. (2) Based on pipelining and multi-cycle data path techniques, this architecture can work at high clock frequency. (3) The memory partition number is greatly reduced. When sixteen PEGs are adopted, only two memory partitions are required for the search area data storage. Therefore, both the system hardware cost and power consumption can be saved. A 16-PEG design with 48 x 32 search range has been implemented with TSMC 0.18 μm CMOS technology. In typical work conditions, its maximum clock frequency is 261 MHz. Compared with the previous 2-D architecture, about 13.4% hardware cost and 5.7% power consumption can be saved.
机译:本文提出了一种具有整数像素精度的全搜索可变块大小运动估计(VBSME)体系结构。该提议的体系结构具有以下特征:(1)通过扩展来自搜索区域存储器的数据路径,可以调度m个处理元素组(PEG)并行工作并充分利用,其中m是16的倍数。每个PEG具有16个处理元件(PE),仅需8.5K门。此功能为用户提供了更大的灵活性,可以在硬件成本和性能之间进行权衡。 (2)基于流水线和多周期数据路径技术,该体系结构可以在高时钟频率下工作。 (3)大大减少了内存分区数。当采用十六个PEG时,搜索区域数据存储仅需要两个存储分区。因此,可以节省系统硬件成本和功耗。 TSMC 0.18μmCMOS技术已实现了具有48 x 32搜索范围的16-PEG设计。在典型的工作条件下,其最大时钟频率为261 MHz。与以前的2D架构相比,可以节省大约13.4%的硬件成本和5.7%的功耗。

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