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Extrapolated impulse response filter and its application in the synthesis of digital filters using the frequency-response masking technique

机译:外推脉冲响应滤波器及其在使用频率响应屏蔽技术的数字滤波器合成中的应用

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摘要

Techniques based on the frequency-response masking (FRM) approach are known to be highly effective for reducing the number of multipliers and adders in linear-phase finite-impulse response (FIR) filters. The basic FRM structure comprises a band-edge shaping filter and two masking filters. It is observed that the impulse response of the band-edge shaping filter of an FRM structure exhibits a quasi-periodic property. Previous study showed that lowpass or highpass digital FIR filters, whose impulse responses are quasi-periodic, can be synthesized using extrapolated impulse response technique, which leads to structure with much reduced arithmetic complexity. In this paper, an implementation of the extrapolated impulse response filter is presented. An FRM technique incorporating extrapolated impulse response band-edge shaping filter is introduced. An iterative optimization procedure is proposed to design the FRM sub-filters. It is demonstrated using an example taken from the literature that our new technique produces a saving of over 20% in the number of multipliers used.
机译:众所周知,基于频率响应屏蔽(FRM)方法的技术对于减少线性相位有限冲激响应(FIR)滤波器中的乘法器和加法器的数量非常有效。基本的FRM结构包括一个带边整形滤波器和两个掩膜滤波器。观察到,FRM结构的带边缘整形滤波器的脉冲响应表现出准周期特性。先前的研究表明,可以使用外推脉冲响应技术来合成脉冲响应为准周期的低通或高通数字FIR滤波器,从而使结构的算术复杂度大大降低。本文提出了外推脉冲响应滤波器的实现。引入了结合外推脉冲响应带边整形滤波器的FRM技术。提出了一种迭代优化程序来设计FRM子滤波器。通过从文献中获得的一个例子可以证明,我们的新技术可以使所使用的乘法器数量节省20%以上。

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