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Efficient implementation for cosine-modulated filter banks using the frequency response masking approach

机译:使用频率响应屏蔽方法的余弦调制滤波器组的高效实现

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Frequency-response masking (FRM) approach is a very efficient method for designing linear-phase FIR digital filters with general passbands and sharp transition bands. The FRM approach has recently been adapted to design cosine-modulated filter banks (CMFB). The resulting structure is a two-stage filter formed by the polyphase decomposition of the base filter in cascade with the decomposition of the masking filter. The present paper discusses the implementation of the FRM-CMFB using a butterfly-type structure proposed by Malvar (1991) to implement the masking filter polyphase decomposition. The result is an even more efficient structure in terms of computational complexity. The issue of perfect reconstruction (PR) in this new structure is also addressed, and it is shown how the PR of the overall filter depends on the characteristics of the FRM base and masking filters.
机译:频率响应屏蔽(FRM)方法是一种用于设计具有通用通带和尖锐过渡带的线性相位FIR数字滤波器的非常有效的方法。 FRM方法最近已适应设计余弦调制滤波器组(CMFB)。最终的结构是两级滤波器,由基础滤波器的多相分解与掩蔽滤波器的分解级联形成。本文讨论了使用Malvar(1991)提出的蝶型结构实现FRM-CMFB来实现掩蔽滤波器多相分解的方法。结果是就计算复杂度而言,效率更高的结构。还解决了这种新结构中的完美重建(PR)问题,并说明了整个滤波器的PR如何取决于FRM基极和掩膜滤波器的特性。

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