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首页> 外文期刊>IEEE Transactions on Circuits and Systems. I, Regular Papers >Optimization-Based Design and Implementation of Multidimensional Zero-Phase IIR Filters
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Optimization-Based Design and Implementation of Multidimensional Zero-Phase IIR Filters

机译:基于优化的多维零相IIR滤波器的设计与实现

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This paper considers multidimensional infinite-impulse response (IIR) filters that are iteratively implemented. The focus is on zero-phase filters with symmetric polynomials in the numerator and denominator of the multivariable transfer function. A rigorous optimization-based design of the filter is considered. Transfer function magnitude specifications, convergence speed requirements for the iterative implementation, and spatial decay of the filter impulse response (which defines the boundary condition influence in the spatial domain of the filtered signal) are all formulated as optimization constraints. When the denominator of the zero-phase IIR filter is strictly positive, these frequency domain specifications can be cast as a linear program and then efficiently solved. The method is illustrated with two two-dimensional IIR filter design examples.
机译:本文考虑了迭代实现的多维无限冲激响应(IIR)滤波器。重点是在多变量传递函数的分子和分母中具有对称多项式的零相位滤波器。考虑严格的基于优化的滤波器设计。传递函数大小规范,迭代实现的收敛速度要求以及滤波器脉冲响应的空间衰减(定义了滤波信号空间域中的边界条件影响)均被公式化为优化约束。当零相位IIR滤波器的分母严格为正时,可以将这些频域规范转换为线性程序,然后有效地求解。用两个二维IIR滤波器设计示例说明了该方法。

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