首页> 外文期刊>IEEE Transactions on Circuits and Systems. I, Regular Papers >Approximating Noncausal IIR Digital Filters Having Arbitrary Poles, Including New Hilbert Transformer Designs, Via Forward/Backward Block Recursion
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Approximating Noncausal IIR Digital Filters Having Arbitrary Poles, Including New Hilbert Transformer Designs, Via Forward/Backward Block Recursion

机译:通过前向/后向块递归逼近具有任意极点的非因果IIR数字滤波器,包括新的希尔伯特变压器设计

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In this paper, we consider the design, use, and recursive implementation of noncausal infinite-impulse response (IIR) digital filters. Forward/backward realization of zero-phase IIR filters is well known for finite data lengths and is also applicable for arbitrary pole locations both inside and outside the unit circle. For systems processing indefinitely long inputs, this can be accomplished by separately filtering blocks of input that are much longer than the effective impulse response duration and combining the block outputs using either the overlap-add method or overlap-save method. Of course, some approximation is required because the corresponding impulse responses have theoretically infinite duration, but the associated error can be made arbitrarily small. In addition to traditional frequency selective filters and arbitrary system designs, we describe new IIR design methods for Hilbert transformers, differentiators, and interpolation networks
机译:在本文中,我们考虑了非因果无限脉冲响应(IIR)数字滤波器的设计,使用和递归实现。零相位IIR滤波器的前向/后向实现以有限的数据长度而闻名,并且还适用于单位圆内外的任意极点位置。对于处理无限长输入的系统,这可以通过分别过滤比有效脉冲响应持续时间长得多的输入块并使用重叠相加或重叠保存方法组合这些块输出来实现。当然,由于相应的脉冲响应在理论上具有无限的持续时间,因此需要一些近似值,但是相关的误差可以任意减小。除了传统的频率选择滤波器和任意系统设计之外,我们还介绍了希尔伯特变压器,微分器和插值网络的新IIR设计方法

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