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首页> 外文期刊>IEEE transactions on wireless communications >Energy Efficiency Maximization of Full-Duplex Two-Way Relay With Non-Ideal Power Amplifiers and Non-Negligible Circuit Power
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Energy Efficiency Maximization of Full-Duplex Two-Way Relay With Non-Ideal Power Amplifiers and Non-Negligible Circuit Power

机译:具有非理想功率放大器和不可忽略电路功率的全双工双向继电器的能效最大化

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摘要

In this paper, we maximize the energy efficiency (EE) of full-duplex (FD) two-way relay (TWR) systems under non-ideal power amplifiers (PAs) and non-negligible transmission-dependent circuit power. We start with the case where only the relay operates full duplex and two timeslots are required for TWR. Then, we extend to the advanced case, where the relay and the two nodes all operate full duplex, and accomplish TWR in a single timeslot. In both cases, we establish the intrinsic connections between the optimal transmit powers and durations, based on which the original non-convex EE maximization can be convexified and optimally solved. Simulations show the superiority of FD-TWR in terms of EE, especially when traffic demand is high. The simulations also reveal that the maximum EE of FD-TWR is more sensitive to the PA efficiency, than it is to self-cancellation. The full FD design of FD-TWR is susceptible to traffic imbalance, while the design with only the relay operating in the FD mode exhibits strong tolerance.
机译:在本文中,我们在非理想功率放大器(PA)和不可忽略的与传输相关的电路功率下,使全双工(FD)双向中继(TWR)系统的能量效率(EE)最大化。我们从只有继电器工作全双工且TWR需要两个时隙的情况开始。然后,我们扩展到高级情况,中继和两个节点都以全双工方式运行,并在单个时隙内完成TWR。在这两种情况下,我们都在最佳发射功率和持续时间之间建立了内在联系,在此基础上可以凸现和最佳地解决原始的非凸EE最大化。仿真显示了FD-TWR在EE方面的优越性,特别是在交通需求较高时。仿真还表明,FD-TWR的最大EE对PA效率比对自抵消更为敏感。 FD-TWR的完整FD设计容易受到流量不平衡的影响,而仅继电器在FD模式下运行的设计具有很强的容差。

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