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Design of Oversampled Interleaved DFT Modulated Filter Bank Using 2Block Gauss-Seidel Method

机译:基于2Block Gauss-Seidel方法的过采样交错DFT调制滤波器组设计

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In this paper, we present several new properties of the recently introduced interleaved DFT modulated filter bank and an efficient algorithm for designing the filter bank. The periodicity and symmetry properties of the overall transfer function and aliasing transfer functions are stated. Then the design of the filter bank is formulated into a constrained optimization problem that jointly minimizes the overall distortion and aliasing distortion subject to fixed bounds on the stopband energy, transition-band energy, and passband flatness of the prototype filters. The constrained optimization problem is solved by the 2block Gauss-Seidel method, which alternatively optimizes the analysis PF pair and the synthesis PF pair. Since the overall distortion and aliasing distortion are jointly minimized, the proposed algorithm can lead to filter banks with small reconstruction error, even when the filter banks behave with a low redundancy ratio and short PFs. The convergence of the proposed algorithm is proved. Numerical examples and comparisons with the existing method are included to demonstrate the performance of the proposed algorithm.
机译:在本文中,我们介绍了最近推出的交错DFT调制滤波器组的一些新特性,以及设计滤波器组的有效算法。说明了整体传递函数和混叠传递函数的周期性和对称性。然后,将滤波器组的设计公式化为一个约束优化问题,该问题将使原型滤波器的阻带能量,过渡带能量和通带平坦度受到固定限制,从而使总体失真和混叠失真最小化。约束优化问题通过2block Gauss-Seidel方法解决,该方法交替优化分析PF对和合成PF对。由于总失真和混叠失真被共同最小化,即使滤波器组的冗余比低且PF短,所提出的算法也可以使滤波器组具有较小的重构误差。证明了该算法的收敛性。数值例子和与现有方法的比较证明了所提算法的性能。

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