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Two Classes of Cosine-Modulated IIR/IIR and IIR/FIR NPR Filter Banks

机译:两类余弦调制IIR / IIR和IIR / FIR NPR滤波器组

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This paper introduces two classes of cosine-modulated causal and stable filter banks (FBs) with near perfect reconstruction (NPR) and low implementation complexity. Both classes have the same infinite-length impulse response (IIR) analysis FB but different synthesis FBs utilizing IIR and finite-length impulse response (FIR) filters, respectively. The two classes are preferable for different types of specifications. The IIR/FIR FBs are preferred if small phase errors relative to the magnitude error are desired, and vice versa. The paper provides systematic design procedures so that PR can be approximated as closely as desired. It is demonstrated through several examples that the proposed FB classes, depending on the specification, can have a lower implementation complexity compared to existing FIR and IIR cosine-modulated FBs (CMFBs). The price to pay for the reduced complexity is generally an increased delay. Furthermore, two additional attractive features of the proposed FBs are that they are asymmetric in the sense that one of the analysis and synthesis banks has a lower computational complexity compared to the other, which can be beneficial in some applications, and that the number of distinct coefficients is small, which facilitates the design of FBs with large numbers of channels.
机译:本文介绍了两类余弦调制的因果和稳定滤波器组(FB),它们具有近乎完美的重构(NPR)和较低的实现复杂度。两种类别具有相同的无限长脉冲响应(IIR)分析FB,但分别利用IIR和有限长度脉冲响应(FIR)滤波器的合成FB有所不同。对于不同类型的规范,这两类是可取的。如果需要相对于幅度误差小的相位误差,则最好使用IIR / FIR FB,反之亦然。本文提供了系统的设计程序,使PR可以根据需要进行近似估算。通过几个示例证明,与现有的FIR和IIR余弦调制FB(CMFB)相比,根据规范,建议的FB类可以具有较低的实现复杂性。降低复杂性的代价通常是增加延迟。此外,所提出的功能块的两个其他吸引人的特征是它们是不对称的,即分析和综合库中的一个与另一个相比具有较低的计算复杂度,这在某些应用中可能是有益的,并且数量众多系数很小,这有助于设计具有大量通道的FB。

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