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Design of recursive digital filters with linear phase using two all-pass filters with/without integer coefficients

机译:使用两个带/不带整数系数的全通滤波器设计线性相位的递归数字滤波器

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The performance of filters with linear phase in the domain of interest which are realized as a parallel of two allpass filters is investigated. The method uses unconstrained optimization to approximate both the group delay and the magnitude response of the desired filter simultaneously, if the constant group delay characteristic is required. A Hurwitz polynomial is generated, discretized, and assigned to the denominator of the filter transfer function to ensure the stability of the filter. Integer programming based on the branch-and-bound or tree search method is proposed. With this algorithm the error caused by truncating the filter coefficients is minimized. Examples to illustrate the usefulness of the proposed techniques are given.
机译:研究了在感兴趣域中具有线性相位的滤波器的性能,该滤波器实现为两个全通滤波器的并联。如果需要恒定的群延迟特性,则该方法使用无约束优化来同时近似群延迟和所需滤波器的幅度响应。生成,离散化Hurwitz多项式并将其分配给滤波器传递函数的分母,以确保滤波器的稳定性。提出了一种基于分支定界或树形搜索的整数规划方法。利用该算法,将因舍弃滤波器系数而导致的误差降到最低。给出了说明所提出的技术的实用性的示例。

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