论文标题
一类低复杂性DCT样转换用于图像和视频编码
A Class of Low-complexity DCT-like Transforms for Image and Video Coding
论文作者
论文摘要
离散的余弦变换(DCT)是信号处理应用中的相关工具,主要以其良好的去相关属性而闻名。当前的图像和视频编码标准(例如JPEG和HEVC)采用DCT作为压缩的基本构件。最近的作品引入了DCT的低复杂度近似,这对于要求实时计算和低功率消耗的应用程序至关重要。 DCT近似的设计涉及计算复杂性和性能之间的权衡。本文介绍了一个新的多参数转换类,其中包含圆形DCT(RDCT)和修改后的RDCT(MRDCT),这是两个相关的无乘数8点近似DCT。提供了相关的快速算法。通过解决多准则优化问题,可以获得四个新型的正交低复合度8点DCT近似值。最佳的8点变换缩放到长度16和32,同时保持算术复杂性低。提出的方法通过相对于确切的DCT的接近度和编码度量进行评估。执行图像和视频编码实验硬件实现。小说变换的性能靠近或跑步近或胜过当前的最新DCT近似值。
The discrete cosine transform (DCT) is a relevant tool in signal processing applications, mainly known for its good decorrelation properties. Current image and video coding standards -- such as JPEG and HEVC -- adopt the DCT as a fundamental building block for compression. Recent works have introduced low-complexity approximations for the DCT, which become paramount in applications demanding real-time computation and low-power consumption. The design of DCT approximations involves a trade-off between computational complexity and performance. This paper introduces a new multiparametric transform class encompassing the round-off DCT (RDCT) and the modified RDCT (MRDCT), two relevant multiplierless 8-point approximate DCTs. The associated fast algorithm is provided. Four novel orthogonal low-complexity 8-point DCT approximations are obtained by solving a multicriteria optimization problem. The optimal 8-point transforms are scaled to lengths 16 and 32 while keeping the arithmetic complexity low. The proposed methods are assessed by proximity and coding measures with respect to the exact DCT. Image and video coding experiments hardware realization are performed. The novel transforms perform close to or outperform the current state-of-the-art DCT approximations.