完美重建DFT调制过采样滤波器组收发器

Siavash Rahimi, B. Champagne
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引用次数: 14

摘要

本文提出了一种用于多载波收发系统的完全重构(PR)、离散傅立叶变换(DFT)调制过采样滤波器组(FB)设计的新方法。通过对发射子系统或接收子系统的多相矩阵施加准酉约束来保证其PR特性。期望的多相矩阵通过嵌入低维准酉构建块获得,每个构建块通过基于给定旋转的因式分解以有限的设计参数集表示。调整这些参数以最小化子带滤波器的阻带能量,从而改善其光谱遏制。在多载波收发器应用中研究了所提出的FB的性能,并将其与OFDM和其他最近提出的FB结构进行了比较。数值结果表明,当存在窄带干扰或频率偏移时,与基准方法相比,该方法可以显著降低误码率(BER)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Perfect reconstruction DFT modulated oversampled filter bank transceivers
This paper proposes a novel method for the design of perfect reconstruction (PR), discrete Fourier transform (DFT) modulated oversampled filter banks (FB) for application in multi-carrier transceiver systems. The PR property is guaranteed by enforcing a paraunitary constraint on the polyphase matrix of the transmit or receive sub-systems. The desired polyphase matrix is obtained via embedding of lower dimensional paraunitary building blocks, each expressed in terms of a limited set of design parameters through a factorization based on Givens rotations. These parameters are adjusted to minimize the stop-band energy of the subband filters and thus improve their spectral containment. The performance of the proposed FB is investigated in a multi-carrier transceiver application, where it is compared with OFDM and other recently proposed FB structures. Numerical results show that the proposed approach can lead to significant reduction in the bit error rate (BER), as compared to the benchmark approaches, when used in the presence of narrowband interference or frequency offset.
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