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MMSE-based transceiver design for distributed MIMO amplify-and-forward cooperative networks in correlated channels

机译:相关信道中用于分布式MIMO放大转发协作网络的基于MMSE的收发器设计

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In this paper, the source-precoder, multiple-relay amplifying matrices, and destination-equalizer joint optimization is investigated in distributed MIMO amplify-and-forward multiple-relay networks with direct source-destination transmission in correlated fading channels. With the use of taking both the direct link and spatial correlation between antenna elements into account, the cooperative transceiver joint design is developed based on the minimum mean-squared error criterion under individual power constraints at the source and multiple-relay nodes. Simulation results demonstrate that the cooperative transceiver joint design architecture for an amplify-and-forward MIMO multiple-relay system outperforms substantially the noncooperative transceiver design techniques on the BER performance under the spatial-correlation channels. Copyright (C) 2012 John Wiley & Sons, Ltd.
机译:本文研究了在相关衰落信道中直接进行源-目的传输的分布式MIMO放大转发多中继网络中的源-预编码器,多中继放大矩阵和目标均衡器联合优化。通过同时考虑天线元件之间的直接链接和空间相关性,在源和多个中继节点的单个功率约束下,基于最小均方误差标准开发了协作收发器联合设计。仿真结果表明,在空间相关信道下,用于放大转发MIMO多中继系统的协作式收发器联合设计架构在性能上明显优于非协作式收发器设计技术。版权所有(C)2012 John Wiley&Sons,Ltd.

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