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A Regular VLSI Architecture of Motion Vector Prediction for Multiple-Standard MPEG-Like Video Codec

机译:用于多标准MPEG-like视频编解码器的运动矢量预测的常规VLSI架构

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Motion vector (MV) prediction and residue coding technique is adopted to fully utilize the motion field redundancy in the prevailing video standards, and MV prediction is desired in both video encoder and decoder. The computation burden for MV prediction is not very high. However, there is high irregularity in raw MV prediction algorithm with two-stage and four-level hierarchical tree control flows. It makes efficient VLSI architecture implementation challenging. The high irregularity is mainly derived from the abundant inter prediction modes including variable block size partition and temporal prediction direction, as well as the irregular control flow of the MV prediction algorithm. This paper proposes a highly regular architecture to implement MV prediction for multi-standard video codec. Complex control logic is simplified by regularly table look-up of the control parameters predefined and stored in on-chip tables. The parameters of the current macroblock (MB) and its neighboring blocks are initialized and refreshed in a regular manner. Moreover, pipelining and parallelism are employed in the proposed architecture to improve throughput efficiency and tradeoff between hardware cost and efficiency. Simulation results verify the effectiveness of the proposed design.
机译:运动矢量(MV)预测和残差编码技术被采用来充分利用主流视频标准中的运动场冗余,并且在视频编码器和解码器中都期望MV预测。 MV预测的计算负担不是很高。然而,具有两级和四级分层树控制流的原始MV预测算法存在很高的不规则性。这使得高效的VLSI架构实施具有挑战性。高不规则性主要来自丰富的帧间预测模式,包括可变块大小分区和时间预测方向,以及MV预测算法的不规则控制流程。本文提出了一种高度规则的体系结构,以实现多标准视频编解码器的MV预测。通过对预定义并存储在片上表中的控制参数进行定期表查找,可以简化复杂的控制逻辑。当前宏块(MB)及其相邻块的参数以常规方式初始化和刷新。此外,在提出的架构中采用流水线化和并行性来提高吞吐量效率以及硬件成本和效率之间的权衡。仿真结果验证了所提出设计的有效性。

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