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A Systematic Algorithm for the Design of Lattice Wave Digital Filters With Short-Coefficient Wordlength

机译:短系数字长的格子波数字滤波器设计的系统算法

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This paper describes an efficient algorithm for designing lattice wave digital (LWD) filters (parallel connections of two all-pass filters) with short-coefficient wordlength. The coefficient optimization is performed using the following three steps. First, an initial infinite-precision filter is designed such that it exceeds the given criteria in order to provide some tolerance for coefficient quantization. Second, a nonlinear optimization algorithm is used for determining a parameter space of the infinite-precision coefficients including the feasible space where the filter meets the given criteria. The third step involves finding the filter parameters in this space so that the resulting filter meets the given criteria with the simplest coefficient representation forms. The proposed algorithm guarantees that the optimum finite-precision solution can be found for both the fixed-point binary and multiplierless coefficient representation forms. In addition, this algorithm is applicable for producing the desired finite-precision solutions for both conventional and approximately linear-phase LWD filters. Comparisons with some other existing quantization schemes show that the proposed algorithm gives the best finite-precision solutions in all examples taken from the literature.
机译:本文介绍了一种有效的算法,该算法可设计出具有短系数字长的晶格波数字(LWD)滤波器(两个全通滤波器的并行连接)。使用以下三个步骤执行系数优化。首先,设计初始无限精度滤波器,使其超过给定标准,以便为系数量化提供一定的容差。其次,使用非线性优化算法确定无限精度系数的参数空间,包括滤波器满足给定标准的可行空间。第三步涉及在该空间中找到滤波器参数,以使所得滤波器以最简单的系数表示形式满足给定标准。所提出的算法保证了对于定点二进制和无乘数系数表示形式都能找到最佳的有限精度解。此外,该算法适用于为常规和近似线性相位LWD滤波器生成所需的有限精度解决方案。与其他现有量化方案的比较表明,在从文献中选取的所有示例中,该算法都提供了最佳的有限精度解决方案。

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