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Fast design of 2D fully oversampled DFT modulated filter bank using Toeplitz-block Toeplitz matrix inversion

机译:使用Toeplitz块Toeplitz矩阵求逆快速设计2D完全过采样的DFT调制滤波器组

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摘要

This letter presents a low-complexity algorithm to design two-dimensional (2D) DFT modulated filter bank (DMFB) with nearly perfect reconstruction (NPR). The design problem is formulated into an unconstrained optimization problem whose cost function consists of the overall distortion and stopband energy. By exploiting the gradient information, the prototype filter (PF) coefficients are iteratively optimized with closed-form formula. At each iteration, the computational complexity is dramatically reduced by evoking Toeplitz-block Toeplitz matrix inversion and matrix inversion lemma, which makes the algorithm suitable for design 2D DMFB with a large number of channels and PF coefficients. Numerical example and comparison are included to show the effectiveness of the proposed design algorithm.
机译:这封信提出了一种低复杂度算法,用于设计具有几乎完美重构(NPR)的二维(2D)DFT调制滤波器组(DMFB)。设计问题被公式化为无约束的优化问题,其成本函数由总体失真和阻带能量组成。通过利用梯度信息,原型滤波器(PF)系数通过闭式公式进行迭代优化。在每次迭代中,通过调用Toeplitz-block Toeplitz矩阵求逆和矩阵求逆引理,可以显着降低计算复杂度,这使得该算法适合于设计具有大量通道和PF系数的2D DMFB。数值算例和比较结果表明了所提设计算法的有效性。

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