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Improved 8-Point Approximate DCT for Image and Video Compression Requiring Only 14 Additions

机译:改进的8点近似DCT,仅需14次加法即可进行图像和视频压缩

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摘要

Video processing systems such as HEVC requiring low energy consumption needed for the multimedia market has lead to extensive development in fast algorithms for the efficient approximation of 2-D DCT transforms. The DCT is employed in a multitude of compression standards due to its remarkable energy compaction properties. Multiplier-free approximate DCT transforms have been proposed that offer superior compression performance at very low circuit complexity. Such approximations can be realized in digital VLSI hardware using additions and subtractions only, leading to significant reductions in chip area and power consumption compared to conventional DCTs and integer transforms. In this paper, we introduce a novel 8-point DCT approximation that requires only 14 addition operations and no multiplications. The proposed transform possesses low computational complexity and is compared to state-of-the-art DCT approximations in terms of both algorithm complexity and peak signal-to-noise ratio. The proposed DCT approximation is a candidate for reconfigurable video standards such as HEVC. The proposed transform and several other DCT approximations are mapped to systolic-array digital architectures and physically realized as digital prototype circuits using FPGA technology and mapped to 45 nm CMOS technology.
机译:诸如HEVC之类的视频处理系统要求多媒体市场所需的低能耗,已经导致快速算法的广泛发展,以快速逼近2-D DCT变换。由于DCT具有出色的能量压缩特性,因此可用于多种压缩标准。已经提出了无乘法器的近似DCT变换,该变换可在非常低的电路复杂度下提供出色的压缩性能。仅使用加法和减法即可在数字VLSI硬件中实现这种近似,与传统的DCT和整数变换相比,可显着减少芯片面积和功耗。在本文中,我们介绍了一种新颖的8点DCT逼近,该逼近仅需14个加法运算而无需乘法。所提出的变换具有较低的计算复杂度,并且在算法复杂度和峰值信噪比方面都与最新的DCT近似进行了比较。提议的DCT近似值是可重配置视频标准(例如HEVC)的候选者。拟议的变换和其他几种DCT近似映射到脉动阵列数字体系结构,并使用FPGA技术物理实现为数字原型电路,并映射到45 nm CMOS技术。

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