Abstract
High Efficiency Video Coding, the latest video standard, uses larger and variable-sized coding units and longer interpolation filters than H.264/AVC to better exploit redundancy in video signals. These algorithmic techniques enable a 50% decrease in bitrate at the cost of computational complexity, external memory bandwidth, and, for ASIC implementations, on-chip SRAM of the video codec. This paper describes architectural optimizations for an HEVC video decoder chip. The chip uses a two-stage subpipelining scheme to reduce on-chip SRAM by 56∼ kbytes - a 32% reduction. A high-throughput read-only cache combined with DRAM-latency-aware memory mapping reduces DRAM bandwidth by 67%. The chip is built for HEVC Working Draft 4 Low Complexity configuration and occupies 1.77 mm2 in 40-nm CMOS. It performs 4K Ultra HD 30-fps video decoding at 200 MHz while consuming 1.19 nJ/pixel of normalized system power. © 2013 IEEE.
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CITATION STYLE
Tikekar, M., Huang, C. T., Juvekar, C., Sze, V., & Chandrakasan, A. P. (2014). A 249-mpixel/s hevc video-decoder chip for 4k ultra-hd applications. IEEE Journal of Solid-State Circuits, 49(1), 61–72. https://doi.org/10.1109/JSSC.2013.2284362
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