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Coefficient-free and high-accuracy recursive kernel design for forward and inverse transforms of MDST and MDCT

机译:用于MDST和MDCT的正向和逆向变换的无系数和高精度递归内核设计

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This paper presents an efficient recursive architecture for realizing modified discrete cosine transform (MDCT), modified discrete sine transform (MDST), inverse MDCT (IMDCT), and inverse MDST (IMDST) computations. After employing the data rearrangement and a coefficient-free algorithm, the computations MDCT, MDST, IMDCT and IMDST can be represented as a modified type-II of inverse discrete sine transform (Modified IDST-II), which can be further realized into a second-order infinite-impulse response (IIR) filter. The analytic results show that the proposed recursive structure has some advantages in terms of lower computational cycles and higher data transformation throughput rate compared with the conventional work. It would be a better solution for the applications of various audio compression techniques in the future.
机译:本文介绍了实现修改的离散余弦变换(MDCT),修改离散正弦变换(MDST),逆MDCT(IMDCT)和反向MDST(IMDST)计算的有效递归架构。在采用数据重新排列和无系数算法之后,计算MDCT,MDST,IMDCT和IMDST可以表示为逆离散正弦变换(修改IDST-II)的修改类型-II,这可以进一步实现为第二个-Order无限脉冲响应(IIR)过滤器。分析结果表明,与常规工作相比,所提出的递归结构在较低的计算周期和更高的数据变换吞吐率方面具有一些优点。将来是对各种音频压缩技术的应用更好的解决方案。

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