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An Efficient SDP Based Design for Prototype Filters of M-Channel Cosine-Modulated Filter Banks

机译:M通道余弦调制滤波器组原型滤波器的基于SDP的高效设计

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The paper presents an efficient semidefinite programming (SDP) based design for prototype filters of cosine-modulated filter banks (CMFBs). We consider a class of near-perfect reconstruction CMFBs with the linear phase prototype filter, which structurally eliminates the amplitude overall distortion. The prototype filter design problem is then formulated into a convex semi-infinite programming problem. Furthermore, to handle the semi-infinite constraints, we use the linear matrix inequality (LMI) characterization of positive trigonometric polynomials to cast the semi-infinite programming problem into SDP one. Finally, convex duality is applied to transform the SDP into another SDP with the minimal number of additional variables, which is efficiently solved. An additional advantage of the proposed method is that we can precisely control the filter specifications.
机译:本文提出了一种有效的基于半定性编程(SDP)的设计,用于余弦调制滤波器组(CMFB)的原型滤波器。我们考虑一类具有线性相位原型滤波器的近乎完美的重构CMFB,从结构上消除了振幅的整体失真。然后将原型滤波器设计问题公式化为凸半无限规划问题。此外,为了处理半无限约束,我们使用正三角多项式的线性矩阵不等式(LMI)刻画将半无限规划问题转化为SDP。最后,采用凸对偶性将SDP转换为具有最少数量的附加变量的另一个SDP,可以有效地解决该问题。所提出的方法的另一个优点是我们可以精确地控制滤波器的规格。

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