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New cost-effective VLSI implementation of a 2-D discrete cosine transform and its inverse

机译:二维离散余弦变换及其逆的经济高效的VLSI新实现方式

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This paper first reviewed the two-dimensional discrete cosine transform (2-D DCT) and inverse DCT (IDCT) architectures. Then a new VLSI architecture, namely the transpose free row column decomposition method (TF-RCDM), for 2-D DCT/IDCT is proposed. The new RCDM architecture replaces the transpose circuits with permutation networks and parallel memory modules. As results, the timing overhead of I/O operations is eliminated and the hardware complexity is largely reduced. An accuracy testing system is designed to find the optimum word-length parameters. Based on the accuracy testing system, the proposed architecture has achieved the smallest word-length among the reported 2-D DCT architectures. Synthesis results showed that with 0.25-μm CMOS technology library, the area was about 1.5 mm2 and the speed was about 125 MHz.
机译:本文首先回顾了二维离散余弦变换(2-D DCT)和逆DCT(IDCT)体系结构。然后提出了一种新的VLSI架构,即用于二维DCT / IDCT的转置自由行列分解方法(TF-RCDM)。新的RCDM体系结构用置换网络和并行存储器模块代替了转置电路。结果,消除了I / O操作的时序开销,并且大大降低了硬件复杂性。设计了一种准确性测试系统,以找到最佳的字长参数。基于精度测试系统,所提出的体系结构已实现了所报道的二维DCT体系结构中最小的字长。综合结果表明,采用0.25μmCMOS技术库,面积约为1.5 mm2,速度约为125 MHz。

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