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A Remez-Type Algorithm for Designing Digital Filters Composed of All-Pass Sections Based on Phase Approximations

机译:一种remez型算法,用于设计基于相位近似的全通段组成的数字滤波器

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An efficient Remez-type algorithm is introduced for determining an allpass section in such a way that its phase response minimizes in the Chebyshev sense a given weighted error function on a closed subset of [0, π]. The effectiveness of the algorithm is based on two facts. First, for the best solution of an allpass filter of order N, if it exists, the weighted error function achieves the peak absolute value with alternating signs at least at N + 1 consecutive points in the approximation subset. Second, the phase response of an allpass filter of order N can be forced to take on the given values at N points by using the recurrence formulas of Henk. The algorithm can be applied in a straightforward manner for designing phase equalizers, filters proving an arbitrary non-integer delay, and special approximately linear-phase Hilbert transformers as well as filters with transfer function of the form H(z) = [z~(-M )+ A(z)]/2 with A(z) being an allpass filter. Futhermore, it can be applied for designing wave lattice filters (parallel connection of two stable allpass filters) having several passband and stopband regions and arbitrary weightings in these regions. Several examples are included illustrating the flexibility and efficiency of the proposed design technique.
机译:介绍了一种有效的Remez型算法,用于确定Allpass部分,使得其相位响应在Chebyshev中最小化了在[0,π]的闭合子集上的给定加权误差函数。算法的有效性基于两个事实。首先,对于订单N的Allpass滤波器的最佳解决方案,如果存在,则加权误差函数在近似子集中的N + 1连续点处至少在N + 1连续点处实现峰值绝对值。其次,顺序滤波器N的阶段响应可以通过使用Henk的复发公式来强制在N个点处接受给定值。该算法可以以直接的方式应用用于设计相位均衡器,滤波器证明任意非整数延迟,以及特殊的大致线性相位Hilbert变压器以及具有形式H(Z)= [Z〜( -m)+ a(z)] / 2,具有(z)是Allpass滤波器。 Futhermore,它可以应用于设计波晶片过滤器(两个稳定的Allpass滤波器的并联连接),这些区域中具有多个通带和阻带区域和任意加权。包括若干示例说明所提出的设计技术的灵活性和效率。

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