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Design and implementation of motion compensator in memory reduced HDTV decoder with embedded compression engine

机译:具有嵌入式压缩引擎的内存缩减HDTV解码器中运动补偿器的设计与实现

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摘要

In this paper, a low-cost compatible motion compensator is implemented and integrated into a macroblock-level three-stage-pipelined HDTV decoder, in which an embedded compression (EC) engine is realized as well. The decoder with EC engine is designed to reduce the power consumption and memory bandwidth re quirement since memory accesses are reduced. In the motion compensator, a bound ary judgment scheme for reference pixel fetching is proposed to provide seamless integration in HDTV video decoder for the block-based EC engines. Furthermore, a buffer sharing mechanism is adopted to reduce extra memory requirement involved by EC. The reference pixel fetching unit costs only 17.3 K logic gates when the working frequency is set to 166.7 MHz. On average, when decoding HD1080 video sequence, 30% memory access reduction and 24% memory power consumption saving are achieved when a near lossless EC algorithm is integrated in the video decoder. In other words, the proposed motion compensator makes the EC engine an integral part of a memory reduced decoder without extra cost. Additionally, since the work in this paper is based on EC schemes, the EC design criterion are discussed, and several useful rules on the selection of EC algorithm are addressed for the video decoder of corresponding VLSI architecture.
机译:本文实现了一种低成本兼容的运动补偿器,并将其集成到宏块级三级流水线HDTV解码器中,其中还实现了嵌入式压缩(EC)引擎。带EC引擎的解码器旨在减少功耗和内存带宽需求,因为减少了内存访问。在运动补偿器中,提出了一种用于参考像素提取的边界判断方案,以在基于块的EC引擎的HDTV视频解码器中提供无缝集成。此外,采用缓冲区共享机制来减少EC涉及的额外内存需求。当工作频率设置为166.7 MHz时,参考像素获取单元仅花费17.3 K逻辑门。平均而言,当对HD1080视频序列进行解码时,如果将近乎无损的EC算法集成到视频解码器中,则可实现30%的内存访问减少和24%的内存功耗节省。换句话说,提出的运动补偿器使EC引擎成为减少内存的解码器的组成部分,而没有额外的成本。另外,由于本文的工作基于EC方案,因此讨论了EC设计准则,并针对相应VLSI体系结构的视频解码器,提出了一些关于EC算法选择的有用规则。

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