Distributed beamforming techniques for dual-hop decode-and-forward MIMO relay networks

N. Suraweera, K. Wavegedara
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引用次数: 6

Abstract

Cooperative relay networks with multiple antennas at each node enable achieving both macro diversity and micro diversity in a wireless fading channel. Using beamforming along with space-time (ST) coding at the source and the relay of a cooperative relay network allows achieving both diversity gain and array gain. In this paper we propose novel distributed beamforming techniques for a space-time (ST) coded dual-hop cooperative multiple-input multiple-output (MIMO) decode-and-forward (DF) relay network to minimize the pair-wise error probability (PEP), while maintaining the SNR at the relay node above a given threshold. Beamforming techniques for the availability of full-instantaneous channel state information at the transmitter (CSIT) as well as statistical CSIT are proposed. The source and the relay compute their own beamforming matrices based only its own CSIT subject to individual power constraints at each node. The simulation results show that the proposed beamforming techniques offer a significant performance enhancement over the performance of a relay network using ST coding only. Furthermore, the proposed beamforming techniques maintain their performance improvement throughout the possible spatial correlation factor range for the channel.
双跳解码转发MIMO中继网络的分布式波束形成技术
在每个节点具有多个天线的协作中继网络能够在无线衰落信道中实现宏分集和微分集。在合作中继网络的源和中继处使用波束形成和空时(ST)编码可以同时获得分集增益和阵列增益。本文针对时空(ST)编码双跳合作多输入多输出(MIMO)译发(DF)中继网络提出了一种新的分布式波束形成技术,以最小化对向错误概率(PEP),同时保持中继节点的信噪比高于给定阈值。提出了在发射机获得全瞬时信道状态信息的波束形成技术和统计波束形成技术。源和中继仅根据各自的CSIT计算各自的波束形成矩阵,并受每个节点各自的功率约束。仿真结果表明,与仅使用ST编码的中继网络相比,所提出的波束形成技术提供了显著的性能增强。此外,所提出的波束形成技术在信道可能的空间相关因子范围内保持了性能的提高。
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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