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Pareto Optimality for the Single-Stream Transmission in Multiuser Relay Networks

机译:多用户中继网络中单流传输的帕累托最优性

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In this paper, we study Pareto optimality for multiuser relay networks. We adopt single-stream transmission and amplify-and-forward relays. First, with fixed relay processing matrices and transmit and receive beamforming vectors, we study Pareto optimality with respect to the power of the transmitters. Based on the signal-to-noise-plus-interference ratio (SINR) balancing analysis, we give a necessary and sufficient condition for a set of SINRs to be Pareto optimal. Second, we consider Pareto optimality with respect to the relay processing matrices, where the power of the transmitters and the transmit and receive beamforming vectors is fixed. Taking advantage of multi-objective optimization analysis, we present a necessary and sufficient condition for a set of SINRs to be Pareto optimal. We also give a necessary condition to check whether Pareto optimality is fulfilled. Finally, with fixed relay processing matrices, we study Pareto optimality with respect to the transmit and receive beamforming vectors. Simulations show that our proposed algorithms outperform the compared schemes.
机译:在本文中,我们研究了多用户中继网络的帕累托最优性。我们采用单流传输和放大转发中继。首先,利用固定的中继处理矩阵以及发送和接收波束成形向量,我们研究了相对于发射机功率的帕累托最优性。基于信噪比(SINR)平衡分析,我们给出了一组SINR达到帕累托最优的充要条件。其次,我们考虑中继处理矩阵的帕累托最优性,其中发射机的功率以及发射和接收波束成形矢量的功率是固定的。利用多目标优化分析,我们为一组SINR成为帕累托最优提供了充要条件。我们还提供了必要条件来检查是否满足帕累托最优性。最后,使用固定的中继处理矩阵,我们针对发射和接收波束成形向量研究帕累托最优性。仿真表明,我们提出的算法优于比较方案。

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