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Minimax Phase Error Design of IIR Digital Filters With Prescribed Magnitude and Phase Responses

机译:具有规定幅度和相位响应的IIR数字滤波器的Minimax相位误差设计

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摘要

Infinite impulse response (IIR) digital filters with prescribed magnitude and phase responses have been used in many applications. To approximate the prescribed magnitude and phase responses, we propose a new approach to the design of general IIR filters by minimizing the maximum phase error subject to a prescribed or simultaneously minimized maximum magnitude error, where the phase error and magnitude error are controlled by two elliptic constraints respectively with major and minor axes along the desired frequency response. The sequential constrained least-squares method and Levy–Sanathanan–Koerner strategy are used to convert the nonconvex constraints into convex ones, resulting in a series of convex optimization subproblems. Design examples and comparisons with recent methods demonstrate the flexibility and effectiveness of the proposed methods.
机译:具有规定幅度和相位响应的无限脉冲响应(IIR)数字滤波器已在许多应用中使用。为了近似规定的幅度和相位响应,我们提出了一种新的通用IIR滤波器设计方法,即在规定的或同时最小的最大幅度误差的情况下将最大相位误差减至最小,其中,相位误差和幅度误差由两个椭圆控制沿期望的频率响应分别用长轴和短轴约束。使用顺序约束最小二乘法和Levy-Sanathanan-Koerner策略将非凸约束转换为凸约束,从而产生一系列凸优化子问题。设计实例和与最新方法的比较证明了所提出方法的灵活性和有效性。

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