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Implementation Strategies for Statistical Codec Designs in H.264/AVC Standard

机译:H.264 / AVC标准统计编解码器设计的实施策略

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Two statistical coding tools - the Context-based Adaptive Variable Length Coding (CAVLC) and the Context-based Adaptive Binary Arithmetic Coding (CABAC) - have been adopted in different profiles of the H.264/AVC video coding standard. The throughput at the statistical coding stage is mainly constrained by the high data dependency and sequential coding nature of CAVLC and CABAC. Many hardware designs have been proposed to remove the bottlenecks and accelerate statistical coding and decoding of H.264/AVC. In this paper, different implementation strategies of CAVLC and CABAC encoder and decoder architectures are investigated. The strategies are evaluated using criteria such as circuit area, processing time, and power consumption. The three most important techniques used are: multi-symbol processing, table lookup optimization, and critical path reduction by data prefetch and pre-calculation. In the discussion of CABAC encoder design, our implementation strategies are introduced and compared with other reported designs.
机译:两个统计编码工具 - 基于上下文的自适应变长编码(CAVLC)和基​​于上下文的自适应二进制算术编码(CABAC) - 已经在H.264 / AVC视频编码标准的不同的配置文件被采纳。统计编码阶段的吞吐量主要受Cavlc和Cabac的高数据依赖性和顺序编码性质。已经提出了许多硬件设计以消除瓶颈并加速H.264 / AVC的统计编码和解码。本文研究了CAVLC和CABAC编码器和解码器架构的不同实现策略。使用电路区域,处理时间和功耗等标准来评估策略。使用的三种最重要的技术是:多符号处理,表查找优化和数据预取和预算的关键路径减少。在对CABAC编码器设计的讨论中,我们的实施策略介绍并与其他报告的设计进行了比较。

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