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A Fully-Integrated Energy-Efficient H.265/HEVC Decoder with eDRAM for Wearable Devices

机译:完全集成的节能H.265 / HEVC解码器,带有eDRam,适用于可穿戴设备

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摘要

Data movement to and from off-chip memory dominates energy consumption in most video decoders, with DRAM accesses consuming 2.8x-6x more energy than the processing itself. We present a H.265/HEVC video decoder with embedded DRAM (eDRAM) as main memory. We propose the following techniques to optimize data movement and reduce the power consumption of eDRAM: 1) lossless compression is used to store reference frames in 2x fewer eDRAM banks, reducing refresh power by 33%; 2) eDRAM banks are powered up on-demand to further reduce refresh power by 33%; 3) syntax elements are distributed to four decoder cores in a partially compressed form to reduce decoupling buffer power by 4x. These approaches reduce eDRAM power by 2x in a fully-integrated H.265/HEVC decoder with the lowest reported system power. The decoder chip requires no external components and consumes 24.9 – 30.6mW for 1920x1080 video at 24-50 fps.
机译:在大多数视频解码器中,进出片外存储器的数据移动是能耗的主要来源,DRAM访问比处理本身要多消耗2.8到6倍的能量。我们提出了一种H.265 / HEVC视频解码器,它具有嵌入式DRAM(eDRAM)作为主存储器。我们提出以下技术来优化数据移动并降低eDRAM的功耗:1)无损压缩用于将参考帧存储在少2倍的eDRAM库中,从而将刷新功率降低了33%; 2)eDRAM库按需加电,以将刷新功率进一步降低33%; 3)语法元素以部分压缩的形式分配给四个解码器内核,以将去耦缓冲器的功耗降低4倍。这些方法在报告的系统功耗最低的全集成H.265 / HEVC解码器中将eDRAM功耗降低了2倍。解码器芯片不需要任何外部组件,并且在24-50 fps的1920x1080视频中消耗24.9 – 30.6mW。

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