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Two-Hop AF MIMO Relay System Optimization With Own Information From the Relay Node

机译:具有中继节点自身信息的两跳AF MIMO中继系统优化

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In this paper, we consider precoding matrices optimization for a new two-hop amplify-and-forward (AF) multiple-input multiple-output (MIMO) relay system, where in addition to forwarding the source signals, the relay node concurrently transmits its own signals to the destination node. Compared with conventional AF MIMO relay systems where the relay node only forwards the source signals, the transceiver optimization problem in the new system is more challenging to solve. We prove that for all Schur-concave objective functions, the optimal source and relay matrices jointly diagonalize the source-relay-destination and relay-destination channels, which simplifies the matrices optimization problem to a joint subchannel and power allocation problem with scalar variables. It is shown that to achieve a maximal sum mutual information (MI) of both the source and relay links, the strongest subchannels of the second-hop channel should be allocated for transmitting signals from the relay node. With additional quality-of-service constraints in terms of the lower bounds of the MI of both links, the optimal subchannel allocation problem is NP-hard. In this case, we propose a suboptimal channel allocation algorithm with a low computational complexity. For a given subchannel allocation, we develop a primal decomposition based algorithm to efficiently solve the power allocation problem. Simulation results show that compared with the exhaustive search based channel allocation approach and the general nonlinear programming based power allocation algorithm, the proposed subchannel and power allocation algorithms have a much lower computational complexity with only a small performance loss.
机译:在本文中,我们考虑了针对新的两跳放大转发(AF)多输入多输出(MIMO)中继系统的预编码矩阵优化,该中继系统除了转发源信号外,还同时传输其源信号。自己的信号到目标节点。与中继节点仅转发源信号的常规AF MIMO中继系统相比,新系统中的收发器优化问题更具挑战性。我们证明,对于所有Schur凹面目标函数,最优源矩阵和中继矩阵共同对角化源中继目标和中继目标通道,从而将矩阵优化问题简化为带有标量变量的联合子通道和功率分配问题。示出了为了实现源链路和中继链路两者的最大和互信息(MI),第二跳信道的最强子信道应当被分配用于从中继节点传输信号。由于在两条链路的MI的下限方面存在附加的服务质量约束,因此最佳子信道分配问题是NP-hard。在这种情况下,我们提出了一种计算复杂度较低的次优信道分配算法。对于给定的子信道分配,我们开发了一种基于原始分解的算法来有效解决功率分配问题。仿真结果表明,与基于穷举搜索的信道分配方法和基于常规非线性规划的功率分配算法相比,所提出的子信道和功率分配算法具有较低的计算复杂度,并且性能损失较小。

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