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A Highly Efficient VLSI Architecture for H.264/AVC CAVLC Decoder

机译:用于H.264 / AVC CAVLC解码器的高效VLSI架构

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In this paper, an efficient algorithm is proposed to improve the decoding efficiency of the context-based adaptive variable length coding (CAVLC) procedure. Due to the data dependency among symbols in the decoding flow, the CAVLC decoder requires large computation time, which dominates the overall decoder system performance. To expedite its decoding speed, the critical path in the CAVLC decoder is first analyzed and then reduced by forwarding the adaptive detection for succeeding symbols. With a shortened critical path, the CAVLC architecture is further divided into two segments, which can be easily implemented by a pipeline structure. Consequently, the overall performance is effectively improved. In the hardware implementation, a low power combined LUT and single output buffer have been adopted to reduce the area as well as power consumption without affecting the decoding performance. Experimental results show that the proposed architecture surpassing other recent designs can approximately reduce power consumption by 40% and achieve three times decoding speed in comparison to the original decoding procedure suggested in the H.264 standard. The maximum frequency can be larger than 210 MHz, which can easily support the real-time requirement for resolutions higher than the HD1080 format.
机译:本文提出了一种有效的算法来提高基于上下文的自适应可变长度编码(CAVLC)过程的解码效率。由于解码流程中符号之间的数据依赖性,因此CAVLC解码器需要大量的计算时间,这支配了整个解码器系统的性能。为了加快其解码速度,首先对CAVLC解码器中的关键路径进行了分析,然后通过转发对后续符号的自适应检测来缩短该关键路径。通过缩短关键路径,CAVLC体系结构进一步分为两个部分,可以通过流水线结构轻松实现。因此,有效地改善了整体性能。在硬件实现中,采用了低功耗组合LUT和单输出缓冲器,以在不影响解码性能的情况下减小面积和功耗。实验结果表明,与H.264标准中提出的原始解码过程相比,该提议的体系结构优于其他最新设计,可以将功耗降低约40%,并实现三倍的解码速度。最大频率可以大于210 MHz,可以轻松满足对分辨率高于HD1080格式的实时要求。

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