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首页> 外文期刊>Solid-State Circuits, IEEE Journal of >A 212 MPixels/s 4096 2160p Multiview Video Encoder Chip for 3D/Quad Full HDTV Applications
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A 212 MPixels/s 4096 2160p Multiview Video Encoder Chip for 3D/Quad Full HDTV Applications

机译:适用于3D / Quad Full HDTV应用的212 MPixels / s 4096 2160p多视图视频编码器芯片

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摘要

Multiview video coding (MVC) plays an important role in a 3-D video system. In addition, the resolution of HDTV is increasing to present more vivid perception for users. To realize real-time processing of dozens of TOPS, VLSI solution is necessary. However, ultra high computational complexity, a large amount of external memory bandwidth and on-chip SRAM size, and complex MVC prediction structures are three main design challenges of implementation of MVC hardware architecture. In this paper, an MVC single-chip encoder is proposed for H.264/AVC Multiview High Profile and High Profile for 3-D and quad full high definition (QFHD) TV applications, respectively. The 4096 × 2160 p multiview video encoder chip is implemented on a 11.46 mm2 die with 90 nm CMOS technology. An eight-stage macroblock pipelined architecture with proposed system scheduling and cache-based prediction core supports real-time processing from one-view 4096 × 2160 p to seven-view 720 p videos. The 212 Mpixels/s throughput is 3.4 to 7.7 times higher than previous work. The 407 Mpixels/W power efficiency is achieved, and 94% on-chip SRAM size and 79% external memory bandwidth are saved by the proposed techniques.
机译:多视图视频编码(MVC)在3-D视频系统中起着重要作用。此外,HDTV的分辨率不断提高,以为用户提供更加生动的感知。为了实现数十个TOPS的实时处理,VLSI解决方案是必要的。然而,超高的计算复杂度,大量的外部存储器带宽和片上SRAM大小以及复杂的MVC预测结构是实现MVC硬件体系结构的三个主要设计挑战。本文针对H.264 / AVC Multiview High Profile和针对3-D和Quad Full HD(QFHD)电视应用的High Profile,分别提出了MVC单芯片编码器。 4096×2160 p多视图视频编码器芯片是在采用90 nm CMOS技术的11.46 mm2裸片上实现的。具有建议的系统调度和基于缓存的预测核心的八级宏块流水线体系结构支持从单视图4096×2160 p到七视图720 p视频的实时处理。 212 Mpixels / s的吞吐量是以前工作的3.4到7.7倍。所提出的技术可实现407 Mpixels / W的功率效率,并节省了94%的片上SRAM大小和79%的外部存储器带宽。

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