In this work, we investigate reconfigurable intelligent surfaces (RIS)-assisted cooperative non-orthogonal multiple access (C-NOMA) consisting of two paired users, where the phases of RIS are configured to boost the cell-center device. The cell-center device is designated to act as a full-duplex (FD) relay to assist the cell-edge device. The cell-center device does not use its battery energy to cooperate but harvests energy using simultaneous wireless information power transfer (SWIPT). A more practical non-linear energy harvesting model is considered. Expressions for outage probability (OP) and ergodic rate (ER) are devised, assuming that all users' links undergo Nakagami-$m$ channel fading. We first approximate the harvested power as Gamma random variables via the moments matching technique. This allows us to derive analytical OP/ER expressions that are simple to compute yet accurate for a wide range of RIS passive elements configurations, energy harvesting (EH) coefficients, and residual self-interference (SI) levels, being extensively validated by numerical simulations. The OP expressions reveal how paramount is to mitigate the SI in the FD relay mode since for reasonable values of residual SI coefficient ($\omega \geq -20$dB), it is notable its detrimental effect on the system performance. Also, numerical results reveal that increasing the number of RIS elements can benefit the cooperative system more than the non-cooperative one.
翻译:在这项工作中,我们调查由两个配对用户组成的可重新配置的智能表面(RIS)辅助合作非线性非线性能源采集模型(C-NOMA),由两个配对用户组成,RIS的阶段配置是用来提升细胞中心设备。细胞中心设备被指定作为全双向(FD)中继器,以协助细胞边缘设备。细胞中心设备不使用其电池能量进行合作,而是使用无线信息电源同时传输(SWIPT)来获取能量。考虑一种更实用的非线性能源采集模型。设计了超概率表达(OP)和ergodic 率(ER),假设所有用户的链接都经过Nakagami-$百万美元的通道淡化。我们首先通过时间匹配技术将收获的能量作为伽玛随机变量进行近似。这使我们能够得出分析OP/ER表达方式,这些表达方式简单而精确地计算出广泛的RIS被动元素配置、能量采集(EH)系数和剩余自我干扰(SI)水平,并且通过一个数字模拟广泛验证,广泛验证了SO-RIS值中继值的不具有何种显著性性表现。OP表达方式显示SIFD的S-S-S-S-SIFDS-S-S-S-S-S-SIFDFDS-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-I-I-S-S-S-S-S-SOI-S-S-I-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-S-