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首页> 外文期刊>IEEE transactions on circuits and systems. II, Express briefs >Design of FIR digital filters with prescribed flatness and peak error constraints using second-order cone programming
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Design of FIR digital filters with prescribed flatness and peak error constraints using second-order cone programming

机译:使用二阶锥规划设计具有规定平坦度和峰值误差约束的FIR数字滤波器

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摘要

This paper studies the design of digital finite impulse response (FIR) filters with prescribed flatness and peak design error constraints using second-order cone programming (SOCP). SOCP is a powerful convex optimization method, where linear and convex quadratic inequality constraints can readily be incorporated. It is utilized in this study for the optimal minimax and least squares design of linear-phase and low-delay (LD) FIR filters with prescribed magnitude flatness and peak design error. The proposed approach offers more flexibility than traditional maximally-flat approach for the tradeoff between the approximation error and the degree of design freedom. Using these results, new LD specialized filters such as digital differentiators, Hilbert Transformers, Mth band filters and variable digital filters with prescribed magnitude flatness constraints can also be derived.
机译:本文使用二阶锥规划(SOCP)研究具有规定平坦度和峰值设计误差约束的数字有限冲激响应(FIR)滤波器的设计。 SOCP是一种强大的凸优化方法,可以轻松地合并线性和凸二次不等式约束。在本研究中将其用于具有规定幅度平坦度和峰值设计误差的线性相位和低延迟(LD)FIR滤波器的最佳minimax和最小二乘设计。对于近似误差和设计自由度之间的折衷,所提出的方法比传统的最大平坦方法具有更大的灵活性。利用这些结果,还可以得出具有特定的幅度平坦度约束的新型LD专用滤波器,例如数字微分器,希尔伯特变压器,Mth带滤波器和可变数字滤波器。

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