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Synthesis of Wideband Linear-Phase FIR Filters with a Piecewise-Polynomial-Sinusoidal Impulse Response

机译:具有分段多项式正弦脉冲响应的宽带线性相位FIR滤波器的合成

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A method is presented to synthesize wideband linear-phase finite-impulse-response (FIR) filters with a piecewise-polynomial-sinusoidal impulse response. The method is based on merging the earlier synthesis scheme proposed by the authors to design piecewise-polynomial filters with the method proposed by Chu and Bur-rus. The method uses an arbitrary number of separately generated center coefficients instead of only one or none as used in the method by Chu-Burrus. The desired impulse response is created by using a parallel connection'of several filter branches and by adding an arbitrary number of center coefficients to form it. This method is especially effective for designing Hilbert transformers by using Type 4 linear-phase FIR filters, where only real-valued multipliers are needed in the implementation. The arithmetic complexity is proportional to the number of branches, the common polynomial order for each branch, and the number of separate center coefficients. For other linear-phase FIR filter types the arithmetic complexity depends additionally on the number of complex multipliers. Examples are given to illustrate the benefits of this method compared to the frequency-response masking (FRM) technique with regard to reducing the number of coefficients as well as arithmetic complexity.
机译:提出了一种具有分段多项式正弦脉冲响应的宽带线性相位有限冲激响应(FIR)滤波器的合成方法。该方法基于作者提出的较早的合成方案,以与Chu和Bur-rus提出的方法设计分段多项式滤波器。该方法使用任意数量的单独生成的中心系数,而不是Chu-Burrus方法中使用的一个或一个。通过使用几个滤波器分支的并联连接并通过添加任意数量的中心系数来形成所需的脉冲响应。该方法对于使用类型4线性相位FIR滤波器设计希尔伯特(Hilbert)变压器特别有效,其中在实现中仅需要实数值乘法器。算术复杂度与分支数量,每个分支的通用多项式阶数以及单独的中心系数的数量成比例。对于其他线性相位FIR滤波器类型,算术复杂度还取决于复数乘法器的数量。给出了一些示例,以说明与频率响应屏蔽(FRM)技术相比,该方法在减少系数数量以及算法复杂度方面的优势。

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