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首页> 外文期刊>IEEE transactions on circuits and systems. II, Express briefs >Design of Pipelined IIR Filters Using Two-Stage Frequency-Response Masking Technique
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Design of Pipelined IIR Filters Using Two-Stage Frequency-Response Masking Technique

机译:采用两阶段频率响应屏蔽技术的流水线IIR滤波器设计

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A pipelined, high-speed infinite impulse response (IIR) filter based on the frequency-response masking (FRM) technique has been proposed by Johansson and Wanhammar. In their method, the bandedge shaping filters are a pair of IIR power complementary filters whose z-transform functions are functions of z(M) and the masking filters are linear phase finite impulse response (FIR) filters. The IIR bandedge shaping filters have M delays in the feedback loop and can be pipelined by M stages. In this brief, we present a two-stage FRM method for reducing the number of multipliers of the pipelined IIR filter proposed by Johansson and Wanhammar for a given magnitude response specification and a given number of pipeline stages in the feedback loop. In our design, all the subfilters are optimized jointly. We show that our two-stage masking design requires fewer multipliers if the number of pipeline stages in the feedback loop is larger than four.
机译:Johansson和Wanhammar提出了一种基于频率响应屏蔽(FRM)技术的流水线高速无限冲激响应(IIR)滤波器。在他们的方法中,带边缘整形滤波器是一对IIR功率互补滤波器,其z变换函数是z(M)的函数,而掩模滤波器是线性相位有限冲激响应(FIR)滤波器。 IIR带边缘整形滤波器在反馈环路中具有M个延迟,可以通过M个级进行流水线处理。在本简介中,我们针对给定的幅度响应规范和反馈环路中给定的流水线级数,提出了一种两阶段FRM方法,用于减少Johansson和Wanhammar提出的流水线IIR滤波器乘数的数量。在我们的设计中,所有子滤波器都进行了优化。我们表明,如果反馈回路中的流水线级数大于四个,则我们的两级掩蔽设计需要较少的乘法器。

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