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Design of constrained IIR and interpolated IIR filters using a new semi-definite programming based model reduction technique

机译:基于新的基于半定规划的模型约简技术设计约束IIR和内插IIR滤波器

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摘要

This paper proposes a new method for designing IIR filter with peak error constraints and prescribed flatness constraints, such as zeros at stopband. It is based on the model reduction of a FIR function that satisfies the specification by extending a method previously proposed by Brandenstein et al. The proposed model reduction method retains the denominator of the conventional techniques and formulates the optimal design of the numerator as a semi-definite programming problem. Therefore, linear and convex quadratic inequalities such as peak error constraints and prescribed number of zeros at the stopband for the IIR filters can be imposed and solved optimally. Moreover, a method is also proposed to facilitate the efficient implementation of the model reduced IIR filters in multirate applications. Design examples show that the proposed method gives better performance, and more flexibility in incorporating a wide variety of constraints than conventional methods.
机译:本文提出了一种新的设计IIR滤波器的方法,该滤波器具有峰值误差约束和规定的平坦度约束,例如阻带为零。它基于通过扩展Brandenstein等人先前提出的方法来满足规格的FIR函数的模型简化。提出的模型简化方法保留了传统技术的分母,并将分子的最佳设计公式化为半定规划问题。因此,可以强加并解决IIR滤波器的线性和凸二次不等式,例如峰值误差约束和阻带处规定的零个数。此外,还提出了一种方法,以促进在多速率应用中有效地实施模型简化的IIR滤波器。设计实例表明,与传统方法相比,所提出的方法在合并各种约束时具有更好的性能和更大的灵活性。

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