Mixed norm low order multirate filterbank design: Relaxed commutant lifting approach

D. Du, W. Bhosri, A. Frazho
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引用次数: 2

Abstract

In this paper, we reformulate the design of IIR synthesis filters in classical multirate systems as an optimization problem involving a new norm called Pm-norm where m is any positive integer. That optimization problem can be solved using a recent generalization of the commutant lifting techniques in operator theory. The introduced norm is actually a trade-off in handling energy distortion and error peak distortion. Our development allows the designer to select from a family of filters the one which is best suited for specific applications. The well-known H2 and Hinfin designs then can be viewed as special cases when m=1 and mrarrinfin respectively. The computation relies mainly on FFT technique and a finite section of certain Toeplitz matrices. The obtained filters are of low order and attractive for practical implementation. Moreover, the proposed approach works for non-rational transfer functions. A new method for inner outer factorization of a rational matrix-valued function is also developed.
混合范数低阶多率滤波器组设计:放松换向提升方法
本文将经典多速率系统中IIR综合滤波器的设计重新表述为一个涉及新范数pm -范数的优化问题,其中m为任意正整数。该优化问题可以用算子理论中换向提升技术的最新推广来解决。引入的范数实际上是处理能量失真和误差峰值失真的一种权衡。我们的开发允许设计人员从一系列滤波器中选择最适合特定应用的滤波器。众所周知的H2和Hinfin设计可以看作是m=1和mrrinfin时的特殊情况。计算主要依靠FFT技术和一定的Toeplitz矩阵的有限部分。所得滤波器的阶数较低,对实际应用具有吸引力。此外,该方法适用于非有理传递函数。提出了有理矩阵值函数内外分解的一种新方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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