Fabiane Rediess, L. Agostini, Cassio Cristani, Pargles Dall'Oglio, M. Porto
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引用次数: 10
摘要
为了提高主观视频质量,本文提出了一种基于自适应环路滤波器(ALF)核的高吞吐量硬件设计方案。自适应环路滤波器是新兴视频编码标准HEVC提出的一种新技术。ALF是环内滤波器的一部分,环内滤波器还包括去块滤波器(DF)和样本自适应偏移(SAO)。这三个过滤器负责提高最终的视频质量,减少在所有编码器步骤中产生的错误。ALF是一个菱形过滤器,它有三种尺寸:5×5, 7×7和9×9。本文针对这三种ALF尺寸的滤波器内核提出了高效的硬件架构,重点关注高清视频的实时处理。这些架构用VHDL描述,并合成到Altera FPGA上,在最坏的情况下达到204MHz,因此,达到每秒98 HD 1080p (1920×1080)帧和49 WQXGA (2560×1600)帧的最低帧率。
High throughput hardware design for the Adaptive Loop Filter of the emerging HEVC video coding
This work presents a high throughput hardware design for the Adaptive Loop Filter (ALF) cores, a new technique proposed by the High Efficiency Video Coding (HEVC), the emerging video coding standard, in order to improve the subjective video quality. The ALF is a part of the In-Loop Filter which also includes the Deblocking Filter (DF) and the Sample Adaptive Offset (SAO). These three filters are responsible to improve the final video quality, reducing the errors that are generated in all encoder steps. The ALF is a diamond-shaped filter and it has three sizes: 5×5, 7×7 and 9×9. This work proposes efficient hardware architectures for the filter cores of these three ALF sizes, with focus on real time processing of high definition videos. The architectures were described in VHDL and synthesized to an Altera FPGA, achieving 204MHz in the worst case, and consequently, reaching a minimum frame rate of 98 HD 1080p (1920×1080) frames per second for and 49 WQXGA (2560×1600) frames per second.