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首页> 外文期刊>Circuits and Systems I: Regular Papers, IEEE Transactions on >Design Methodology for Nearly Linear-Phase Recursive Digital Filters by Constrained Optimization
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Design Methodology for Nearly Linear-Phase Recursive Digital Filters by Constrained Optimization

机译:约束优化的近线性相位递归数字滤波器设计方法

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摘要

A methodology for the design of recursive digital filters having nearly linear phase response is proposed. The underlying design method is of the direct type whereby the filter is designed as a single unit. The design problem is formulated as a cascade of filter sections where each section is represented by a biquadratic transfer function either in the conventional polynomial form or in the polar form. The design problem is then solved using a constrained Newton's method whereby constraints are used to assure the stability of the filter, to control the step size in order to achieve fast convergence, and to eliminate a real-axis pole-migration problem that often interferes with the design process. Several design examples demonstrate that when compared with filters designed using existing state-of-the-art methods, the proposed methodology yields filters having reduced order and/or improved performance.
机译:提出了一种具有近似线性相位响应的递归数字滤波器设计方法。基本的设计方法是直接类型的,由此将滤波器设计为单个单元。设计问题被表述为滤波器部分的级联,其中每个部分由常规多项式形式或极形式的双二次传递函数表示。然后使用约束牛顿法解决设计问题,其中使用约束条件来确保滤波器的稳定性,控制步长以实现快速收敛,并消除经常干扰实际轴的极点迁移问题设计过程。几个设计实例表明,与使用现有技术方法设计的滤波器相比,所提出的方法可以产生阶数减少和/或性能提高的滤波器。

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