Manh Hoang Tran, Nguyen Ba Cao, Trung Tran Thanh, Dung Le The
Telecommunications University, Khanh Hoa Province, Viet Nam.
Division of Computational Physics, Institute for Computational Science, Ton Duc Thang University, Ho Chi Minh City, Viet Nam.
Heliyon. 2020 Nov 10;6(11):e05440. doi: 10.1016/j.heliyon.2020.e05440. eCollection 2020 Nov.
This paper considers a non-orthogonal multiple access (NOMA) multi-user relay system where both source and relay harvest the energy from a power beacon (PB) equipped with multiple antennas and use this harvested energy to transmit signals to several users. Realistic nonlinear energy harvesting models are applied, and time switching protocols are adopted at source and relay. We successfully derive the exact closed-form expressions of the outage probability and throughput of the system over Nakagami- fading channels. Then, we use Monte-Carlo simulations to validate the correctness of these derived mathematical expressions. Numerical results show that a higher saturated power threshold of the nonlinear energy harvester results in lower outage probability and higher throughput. Moreover, the optimal time switching ratio that maximizes the throughput is smaller than the optimal time switching ratio that minimizes the outage probability.
本文考虑了一种非正交多址接入(NOMA)多用户中继系统,其中源节点和中继节点都从配备多个天线的功率信标(PB)收集能量,并利用这些收集到的能量向多个用户发送信号。应用了实际的非线性能量收集模型,并且源节点和中继节点采用了时间切换协议。我们成功推导了该系统在 Nakagami 衰落信道上的中断概率和吞吐量的精确闭式表达式。然后,我们使用蒙特卡罗模拟来验证这些推导的数学表达式的正确性。数值结果表明,非线性能量收集器的饱和功率阈值越高,中断概率越低,吞吐量越高。此外,使吞吐量最大化的最优时间切换比小于使中断概率最小化的最优时间切换比。