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首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers >On the Polyphase Decomposition for Design of Generalized Comb Decimation Filters
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On the Polyphase Decomposition for Design of Generalized Comb Decimation Filters

机译:广义梳状抽取滤波器设计的多相分解

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Generalized comb filters (GCFs) are efficient anti-aliasing decimation filters with improved selectivity and quantization noise (QN) rejection performance around the so called folding bands with respect to classical comb filters. In this paper, we address the design of GCF filters by proposing an efficient partial polyphase architecture with the aim to reduce the data rate as much as possible after the $SigmaDelta$ A/D conversion. We propose a mathematical framework in order to completely characterize the dependence of the frequency response of GCFs on the quantization of the multipliers embedded in the proposed filter architecture. This analysis paves the way to the design of multiplier-less decimation architectures. We also derive the impulse response of a sample third-order GCF filter used as reference scheme throughout the paper.
机译:通用梳状滤波器(GCF)是有效的抗混叠抽取滤波器,相对于传统梳状滤波器,在所谓的折叠带周围具有改进的选择性和量化噪声(QN)抑制性能。在本文中,我们通过提出一种有效的部分多相架构来解决GCF滤波器的设计问题,目的是在SigmaDelta $ A / D转换后尽可能降低数据速率。我们提出一个数学框架,以完全表征GCF频率响应对所提出的滤波器体系结构中嵌入的乘法器的量化的依赖性。该分析为无乘数抽取架构的设计铺平了道路。我们还导出了整个样本中用作参考方案的样本三阶GCF滤波器的脉冲响应。

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