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Design of complex coefficient variable fractional-delay allpass digital filters by eigenfilter approach

机译:基于特征滤波器的复系数可变分数延迟全通数字滤波器设计

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In this paper, the technique of eigenfilter approach is applied to the design of complex coefficient variable fractional-delay (VFD) allpass digital filters. The objective error function is formulated into a quadratic form aTQa where a is a coefficient vector and Q is a real, symmetric and positive-definite matrix. By Rayleigh principle, the eigenvector corresponding to the smallest eigenvalue of Q minimizes the error function, and is the desired solution. Several examples are presented to demonstrate the effectiveness of the proposed method.
机译:本文将本征滤波器技术应用于复系数可变分数延迟(VFD)全通数字滤波器的设计。将目标误差函数表述为二次形式a T Qa,其中a是系数矢量,Q是实数,对称和正定矩阵。根据瑞利原理,与Q的最小特征值相对应的特征向量使误差函数最小化,并且是理想的解决方案。给出了几个例子来证明所提出方法的有效性。

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