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Flexible Low Complexity Uniform and Nonuniform Digital Filter Banks With High Frequency Resolution for Multistandard Radios

机译:灵活的低复杂度,统一和不统一的数字滤波器组,具有高分辨率的多标准无线电

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摘要

Multistandard radios typically employ digital filter banks (FBs) for channelization of wideband input signals consisting of multiple radio channels corresponding to different wireless communication standards. In this paper, we propose a new design technique to obtain uniform as well as nonuniform digital FBs for multistandard channelization. In the proposed FB design technique, the improved coefficient decimation method (ICDM) is used to obtain different low-pass, high-pass, and multiband frequency responses using a single low-pass prototype filter. These frequency responses are algebraically operated upon using appropriate spectral subtraction, complementary filter response operation, and frequency response masking operations to obtain the desired sub-bands in the FB. With the help of suitable design examples, we show that our FB is a low complexity and flexible alternative to the other digital FBs in the literature, in both uniform and nonuniform channelization scenarios. The proposed ICDM-based FB is shown to be able to achieve a higher number of distinctly located sub-bands with twice the center frequency resolution when compared with the discrete Fourier transform-based FB (DFTFB) and the conventional coefficient decimation method-based FB (CDFB). For a uniform channelization design example for wireless communications, implementation results show that the proposed ICDM-based FB achieves 70.92% and 15.49% reductions in resource utilizations and 58.72% and 23.13% reductions in power consumptions when compared with the DFTFB and CDFB respectively. Also, for a nonuniform channelization design example for wireless communications, the proposed ICDM-based FB shows an 11.46% reduction in multiplication complexity when compared with the CDFB.
机译:多标准无线电通常采用数字滤波器组(FB)来对包含对应于不同无线通信标准的多个无线电信道的宽带输入信号进行信道化。在本文中,我们提出了一种新的设计技术,以获取用于多标准信道化的统一和非统一数字FB。在提出的FB设计技术中,改进的系数抽取方法(ICDM)用于使用单个低通原型滤波器获得不同的低通,高通和多频带频率响应。这些频率响应在使用适当的频谱减法,互补滤波器响应操作和频率响应屏蔽操作进行代数运算后获得FB中的所需子带。借助适当的设计示例,我们证明了在均匀和非均匀通道化场景中,我们的FB都是文献中其他数字FB的低复杂性和灵活替代方案。与基于离散傅里叶变换的FB(DFTFB)和基于传统系数抽取方法的FB相比,基于ICDM的建议FB能够以中心频率分辨率的两倍实现更高数量的不同位置的子带(CDFB)。对于无线通信的统一信道化设计示例,实现结果表明,与DFTFB和CDFB相比,所建议的基于ICDM的FB分别实现了70.92%和15.49%的资源利用率降低以及58.72%和23.13%的功耗降低。同样,对于用于无线通信的非均匀信道化设计示例,与CDFB相比,建议的基于ICDM的FB显示乘法复杂度降低了11.46%。

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