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首页> 外文期刊>Communications, IET >Transceiver design for cooperative non-orthogonal multiple access systems with wireless energy transfer
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Transceiver design for cooperative non-orthogonal multiple access systems with wireless energy transfer

机译:具有无线能量传输的协作式非正交多址系统的收发器设计

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摘要

In this study, an energy harvesting (EH)-based cooperative non-orthogonal multiple access (NOMA) system is considered, where node S simultaneously sends independent signals to a stronger node R and a weaker node D. The authors focus on the scenario that the direct link between S and D is too weak to meet the quality of service (QoS) of D. Based on the NOMA principle, R, the stronger user, has prior knowledge about the information of the weaker user, D. To satisfy the targeted rate of D, R also serves as an EH decode-and-forward relay to forward the traffic from S to D. In the sense of equivalent cognitive radio concept, R viewed as a secondary user assists to boost D's performance, in exchange for receiving its own information from S. Specifically, transmitter beamforming, power splitter and receiver filter are jointly designed to maximise R's rate with the predefined QoS constraint of D and the power constraint of S. Since the problem is non-convex, they propose an iterative approach to solve it. Moreover, a zero-forcing based low-complexity solution is also presented. Simulation results demonstrate that, both two proposed schemes have better performance than the direction transmission.
机译:在这项研究中,考虑了基于能量收集(EH)的协作式非正交多路访问(NOMA)系统,其中节点S同时将独立的信号发送到较强的节点R和较弱的节点D。 S和D之间的直接链接太弱而无法满足D的服务质量(QoS)。基于NOMA原理,R(较强的用户)具有有关较弱的用户D的信息的先验知识。以D的目标速率为目标,R还充当EH解码和转发中继,以将流量从S转发到D。在等效认知无线电概念的意义上,R被视为次要用户,它有助于提升D的性能,以换取具体来说,发射器波束成形,功率分配器和接收器滤波器共同设计为在D的预定义QoS约束和S的功率约束下最大化R的速率。由于问题是非凸的,所以他们提出了一个迭代方法解决它。此外,还提出了一种基于零强制的低复杂度解决方案。仿真结果表明,两种方案均具有比方向传输更好的性能。

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