Transmit beamforming techniques for space-frequency coded MIMO-OFDM systems in a correlated Ricean fading channel

N. Suraweera, K. Wavegedara
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Abstract

In highly spatially correlated channels the diversity gain achieved by space-frequency (SF) coding is significantly low. Nevertheless, when full or partial channel state information is available at the transmitter, improved performance can be obtained by combining transmit beamforming with SF coding. In this paper we propose two novel transmit beamforming techniques based on the minimum pair-wise error probability (PEP) criterion for SF-coded MIMO-OFDM systems in frequency-selective Ricean fading channels. The proposed beamforming techniques (referred to as Technique 1 and Technique 2) require only the channel mean and spatial correlation statistics. Technique 1 optimally distributes the total transmit power among all the eigenmodes of the channel, whereas Technique 2 allocates the total transmit power only to the strongest eigenmodes of the channel. The simulation results demonstrate that Technique 1 and 2 offers considerable performance improvements over a system using only SF coding in low and highly spatially correlated channels, respectively. When compared with Technique 1, Technique 2 is more appealing due to the facts that it has less computational complexity, and that it offers better performance in highly correlated channels for all values of the Ricean-K factor.
相关Ricean衰落信道中空频编码MIMO-OFDM系统的发射波束形成技术
在高度空间相关信道中,空频编码获得的分集增益非常低。然而,当发射机可以获得全部或部分信道状态信息时,可以通过将发射波束形成与顺频编码相结合来提高性能。本文提出了两种基于最小对向误差概率(PEP)准则的低频编码MIMO-OFDM系统在频率选择的Ricean衰落信道中的发射波束形成技术。所提出的波束形成技术(称为技术1和技术2)只需要信道均值和空间相关统计量。技术1将总发射功率最优地分配给信道的所有本征模,而技术2只将总发射功率分配给信道的最强本征模。仿真结果表明,技术1和技术2分别在低空间相关信道和高空间相关信道中比仅使用SF编码的系统提供了相当大的性能改进。与技术1相比,技术2更具吸引力,因为它具有更低的计算复杂性,并且它在所有rice - k因子值的高度相关通道中提供了更好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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