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Design of Nearly Perfect Reconstruction Cosine Modulated Filter Banks Based on Eigenfilter

机译:基于特征滤波器的近完美重构余弦调制滤波器组设计

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Traditional designs for M-channel cosine modulated filter banks usually involve optimization with many unknown parameters. As a result, it is difficult to design filter banks with high stopband attenuation. In contrast, a simple design approach that involves the optimization of only a single parameter is presented such that cosine modulated filter banks with high stopband attenuation can be easily obtained. In this method, the prototype filter of the M-channel cosine modulated filter banks is formulated as an eigenfilter. The cosine modulated filter banks can be efficiently designed by changing the passband edge frequency of the eigenfilter. Moreover, a simple time domain objective function based on the properties of Nyquist filter is used. Two design examples are presented to show that cosine modulated filter banks with high stopband attenuation can be obtained.
机译:M通道余弦调制滤波器组的传统设计通常涉及使用许多未知参数进行优化。结果,难以设计具有高阻带衰减的滤波器组。相反,提出了一种仅涉及单个参数优化的简单设计方法,从而可以轻松获得具有高阻带衰减的余弦调制滤波器组。在这种方法中,M通道余弦调制滤波器组的原型滤波器被公式化为特征滤波器。通过改变特征滤波器的通带边缘频率,可以有效地设计余弦调制滤波器组。此外,使用了基于奈奎斯特滤波器特性的简单时域目标函数。给出了两个设计实例,以显示可获得具有高阻带衰减的余弦调制滤波器组。

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