Adaptive Power Allocation for D2D Assisted Cooperative Relaying System with NOMA

Fan Jiang, Guan Huang, W. Liu, Changyin Sun
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引用次数: 6

Abstract

This paper considers the power allocation problem for a device-to-device (D2D) assisted cooperative relaying system with non-orthogonal multiple access (NOMA). Under the constraint of satisfying each user’s minimum rate requirement, we formulate the optimization problem to maximize the sum rate. Specifically, by satisfying one user’s minimum rate requirement, the data rate of the other user is maximized. Then with the Karush-Kuhn-Tucker (KKT) conditions, we obtain two closed-form solutions of power allocation factor. Simulation results substantiate that compared with the traditional framework with orthogonal multiple access (OMA), D2D assisted cooperative relaying system is capable of improving the data rate effectively. Furthermore, by adaptively adjusting the power allocation factor, the proposed power allocation algorithm achieves the maximum sum rate under the two-user model.
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基于NOMA的D2D辅助协同继电系统自适应功率分配
研究了具有非正交多址(NOMA)的设备对设备(D2D)辅助协同中继系统的功率分配问题。在满足每个用户的最小速率要求的约束下,提出了以速率总和最大化为目标的优化问题。具体来说,通过满足一个用户的最小速率要求,另一个用户的数据速率得到最大化。然后在KKT条件下,得到了功率分配因子的两个封闭解。仿真结果表明,与传统的正交多址(OMA)框架相比,D2D辅助协同中继系统能够有效地提高数据速率。此外,通过自适应调整功率分配因子,本文提出的功率分配算法在双用户模型下实现了最大和率。
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