针对 VDC-M 的优化变换熵解码架构

Saeyeon Kim, Sohyeon Kim, Hannah Yang, Heejin Roh, Jiyoung Lee, Ji-Hoon Kim
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引用次数: 0

摘要

随着显示技术的发展,视频压缩技术的重要性得到了高度重视,而显示技术在许多行业中都发挥着至关重要的作用。视频压缩技术在减少带宽使用、优化存储空间和提高数据传输效率方面具有重要意义。视频电子标准协会(VESA)发布的显示压缩-M(VDC-M)视频压缩标准[1]显示了高压缩比和高性能。本文提出了一种支持 VDC-M 标准的变换熵解码硬件架构。它可以提取并对齐量化系数,然后从编码器传输到解码器进行重构。利用优化的熵编码技术提高了整体性能,使所提出的硬件架构有助于在现代显示技术中实现先进的视频压缩。
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Optimized Transform Entropy Decoding Architecture for VDC-M
The importance of video compression technology is highly emphasized according to the advancement of display technology which plays a crucial role in many industries. Video compression technology is important in the aspect of reducing bandwidth usage, optimizing storage space, and enhancing the efficiency of data transmission. Video Electronics Standards Association (VESA) Display Compression-M (VDC-M) video compression standard [1], as released by the VESA, shows high compression ratio and high performance. In this paper, we propose a hardware architecture for transform entropy decoding which supports the VDC-M standard. It can extract and align quantized coefficients which are transmitted from encoder to decoder for reconstruction. The utilization of optimized entropy coding techniques enhances the overall performance, making the proposed hardware architecture contribute to advanced video compression in modern display technologies.
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