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A Block-by-Block Blind Post-FFT Multistage Beamforming Algorithm for Multiuser OFDM Systems Based on Subcarrier Averaging

机译:基于子载波平均的多用户OFDM系统的逐块盲后FFT多级波束成形算法

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摘要

Chi et al. proposed a computationally efficient fast kurtosis maximization algorithm for blind equalization of multiple-input multiple-output linear time-invariant systems. This algorithm is also an iterative batch processing algorithm and has been applied to blind source separation. This paper considers blind beamforming of multiuser orthogonal frequency division multiplexing (OFDM) systems. Assuming that the channel is static within one OFDM block, a blind post-FFT multistage beamforming algorithm (MSBFA) based on subcarrier averaging is proposed. The algorithm basically comprises: i) source (path signal) extraction using a hybrid beamforming algorithm composed of a Fourier beamformer and a kurtosis maximization beamformer, ii) time delay estimation and compensation, iii) classification (path-to-user association) and blind maximum ratio combining (of path signals). The designed beamformer is exactly the same for all the subcarriers, effectively utilizes multipath diversity for performance gain, and works well even in an environment with spatially correlated sources. Some simulation results are presented to demonstrate the effectiveness of the proposed MSBFA.
机译:Chi等。提出了一种计算效率高的峰度最大化算法,用于多输入多输出线性时不变系统的盲均衡。该算法还是迭代批处理算法,已应用于盲源分离。本文考虑了多用户正交频分复用(OFDM)系统的盲波束成形。假设信道在一个OFDM块内是静态的,提出了一种基于子载波平均的盲后FFT多级波束成形算法(MSBFA)。该算法主要包括:i)使用由傅里叶波束形成器和峰度最大化波束形成器组成的混合波束形成算法进行源(路径信号)提取,ii)时间延迟估计和补偿,iii)分类(路径与用户关联)和盲目(路径信号的)最大比率合并。设计的波束形成器对于所有子载波都是完全相同的,可以有效地利用多径分集来提高性能,并且即使在具有空间相关源的环境中也能很好地工作。提出了一些仿真结果,以证明所提出的MSBFA的有效性。

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