Optimal Power Allocation in NOMA-Based Diamond Relaying Networks

Noha H. Khattab, Samy S. Soliman
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Abstract

Unlike conventional cooperative networks, diamond relaying networks can provide higher achievable data rates. In a non-orthogonal multiple access (NOMA) based diamond relaying network (DRN), two relays work together to transmit two messages to the destination within only two-time slots. Power allocation is crucial for improving system performance in NOMA-based networks. Accordingly, the effect of optimizing the power allocation coefficients for the DRN system is investigated. A closed-form analytical solution for obtaining the optimum power allocation coefficients of the DRN model is presented. Simulation results show the superiority of the analytical solution of optimal power allocation assignment over a fixed power allocation. A comparison between the proposed analytical solution with other exhaustive search algorithms is discussed. Finally, the accuracy of the suggested solution is confirmed via simulation results.
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基于noma的菱形中继网络的最优功率分配
与传统的合作网络不同,钻石中继网络可以提供更高的可实现数据速率。在基于非正交多址(NOMA)的菱形中继网络(DRN)中,两个中继一起工作,仅在两个时隙内将两条消息发送到目的地。在基于noma的网络中,功率分配是提高系统性能的关键。在此基础上,研究了优化功率分配系数对DRN系统的影响。给出了DRN模型最优功率分配系数的封闭解析解。仿真结果表明,解析解的最优功率分配优于固定功率分配。并与其他穷举搜索算法进行了比较。最后,通过仿真结果验证了所提方案的准确性。
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