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Analysis and Design of Efficient and Flexible Fast-Convolution Based Multirate Filter Banks

机译:基于高效,灵活快速卷积的多速率滤波器组的分析与设计

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摘要

In this paper, we investigate fast-convolution based highly tunable multirate filter bank (FB) configurations. Based on FFT-IFFT pair with overlapped processing, they offer a way to tune the filters' frequency-domain characteristics in a straightforward way. Different subbands are easily configurable for different bandwidths, center frequencies, and output sampling rates, including also partial or full-band nearly perfect-reconstruction systems. Such FBs find various applications, for example, as flexible multichannel channelization filters for software defined radios. They have also the capability to implement simultaneous waveform processing for multiple single-carrier and/or multicarrier transmission channels with nonuniform bandwidths and subchannel spacings. This paper develops an effective model for frequency response analysis and optimization for such filter banks, explores various practical issues of fast-convolution processing and reports the optimized frequency response characteristics versus direct raised cosine based designs. The fast-convolution approach is shown to be a competitive basis for filter bank based multicarrier waveform processing in terms of spectral containment and complexity.
机译:在本文中,我们研究了基于快速卷积的高度可调多速率滤波器组(FB)配置。它们基于具有重叠处理的FFT-IFFT对,提供了一种直接调整滤波器频域特性的方法。可以针对不同的带宽,中心频率和输出采样率轻松配置不同的子带,包括部分或全频带的近乎完美的重建系统。这样的FB找到了各种应用,例如,作为用于软件定义的无线电的灵活的多通道信道化滤波器。它们还具有对带宽和子信道间隔不均匀的多个单载波和/或多载波传输通道实施同步波形处理的能力。本文针对此类滤波器组开发了一种有效的频率响应分析和优化模型,探讨了快速卷积处理的各种实际问题,并报告了与基于直接升余弦的设计相比优化的频率响应特性。就频谱容纳和复杂性而言,快速卷积方法被证明是基于滤波器组的多载波波形处理的竞争基础。

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