探索在视频编码中实现能量和质量平衡的像素抽取方法

Ismael Seidel, André Beims Bräscher, M. Monteiro, Jose Luis Giintzel
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引用次数: 7

摘要

本文研究了在应用像素抽取时视频编码中能量和质量之间的权衡。通过模拟五种不同的架构来计算4×4像素块的绝对差和(SAD),获得了每个块的面积和能量的真实估计。在这些体系结构中,一个可以配置为1:1、4:3、2:1或4:1的样本比例,而其余的则被定制为只使用这些比例中的每一个。这五种VLSI架构是为45纳米工业标准单元库逻辑合成的,用于目标频率和最大可实现频率。它们还通过在一个全高清(1080p)视频样本上运行的H.264/AVC编码器获得的100 k输入向量进行模拟。结果表明,采用全采样的可配置结构,最佳能量/块为3.54 pJ/块(比不可配置结构的7.08 pJ/块提高60%)。能量/块值可以进一步降低到1.34 pJ/块,平均PSNR为2.8%,平均SSIM为14.1%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring pel decimation to trade off between energy and quality in video coding
This work investigates the trade-offs between energy and quality in video coding when pel decimation is applied. Realistic estimates for area and energy per block were obtained by simulating five different architectures specially designed to compute the Sum of Absolute Differences (SAD) for 4×4 pixel blocks. Among these architectures, one can be configured to operate with 1:1, 4:3, 2:1 or 4:1 sample ratios, whereas the rest are tailored to operate exclusively with each one of those ratios. The five VLSI architectures were logically synthesized for a 45 nm industrial standard cell library for a target frequency and also for the maximum achievable frequency. They were also simulated with 100 k input vectors obtained by using an H.264/AVC encoder running on one full HD (1080p) video sample. The obtained results show that by using the configurable architecture with full sampling, the best energy/block result was 3.54 pJ/block (60% better than the non-configurable with 7.08 pJ/block). The energy/block value can be further reduced until 1.34 pJ/block at the cost of 2.8% in PSNR, on average, and 14.1% in SSIM, on average.
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