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Application of frequency-response masking technique to the design of a novel modified-DFT filter bank

机译:频响掩蔽技术在新型改进型DFT滤波器组设计中的应用

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Modified-DFT (MDFT) filter banks permit subchannels with linear phase characteristics, and provide high degrees of computational efficiency. However, in MDFT filter banks with subchannels exhibiting narrow transition-bandwidths, the length of the prototype filter becomes prohibitively long, reducing the computational efficiency. It is well known that the frequency-response masking (FRM) technique provides an attractive technique for the realization of digital filters with very narrow transition-bandwidths. In this paper, the FRM digital filter design technique is exploited and applied to the design of a novel cascaded MDFT filter bank realizing selective subchannels with very narrow transition-bandwidths. An application example is given to illustrate the design of the proposed MDFT filter bank. It is shown that the resulting filter bank entails substantially less computational complexity compared to the conventional MDFT filter banks.
机译:改进的DFT(MDFT)滤波器组允许子通道具有线性相位特性,并提供高度的计算效率。但是,在子信道具有窄过渡带宽的MDFT滤波器组中,原型滤波器的长度变得过长,从而降低了计算效率。众所周知,频率响应屏蔽(FRM)技术为实现具有非常窄的过渡带宽的数字滤波器提供了一种有吸引力的技术。在本文中,FRM数字滤波器设计技术被开发并应用于新颖的级联MDFT滤波器组的设计中,该滤波器组实现了具有非常窄的过渡带宽的选择性子信道。给出了一个应用实例来说明所提出的MDFT滤波器组的设计。结果表明,与传统的MDFT滤波器组相比,所得的滤波器组所需的计算复杂度要低得多。

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