论文标题

与Noma和RSMA上行链路用户合作的传输方案,检测和功率分配

Transmission Scheme, Detection and Power Allocation for Uplink User Cooperation with NOMA and RSMA

论文作者

Abbasi, Omid, Yanikomeroglu, Halim

论文摘要

在本文中,我们提出了两个新颖的合作 - 非正交 - 元音(C-NOMA)和合作利率 - 拆分 - 分类 - 访问(C-RSMA)方案,以进行上行链路用户合作。在这些方案的第一个微型插槽中,每个用户都会传输其信号,并以全双工模式接收另一个用户的传输信号,在第二个迷你插槽中,每个用户都会使用Amplify-and-Forward(AF)协议中继另一个用户的消息。在这两个方案中,为了提高光谱效率,用户在两个迷你插槽中以非正交模式传输信号。在C-RSMA中,我们还采用了分类方法,其中每个用户的消息被分为两个流。在提出的C-NOMA和C-RSMA的检测方案中,我们采用了最大比率综合(MRC)和连续的干预策略(SIC)的组合。然后,我们得出C-Noma和C-RSMA的可实现率,并通过考虑比例公​​平系数来提出两个优化问题,以最大程度地提高两个用户的最低率。我们提出了两种基于连续的convex-Approximation(SCA)和几何编程(GP)的功率分配算法,以解决这些非凸问题。接下来,我们得出了提出的C-Noma和C-RSMA方案的渐近中断概率,并证明它们达到了两个。最后,通过模拟证实了上述性能。

In this paper, we propose two novel cooperative-non-orthogonal-multiple-access (C-NOMA) and cooperative-rate-splitting-multiple-access (C-RSMA) schemes for uplink user cooperation. At the first mini-slot of these schemes, each user transmits its signal and receives the transmitted signal of the other user in full-duplex mode, and at the second mini-slot, each user relays the other user's message with amplify-and-forward (AF) protocol. At both schemes, to achieve better spectral efficiency, users transmit signals in the non-orthogonal mode in both mini-slots. In C-RSMA, we also apply the rate-splitting method in which the message of each user is divided into two streams. In the proposed detection schemes for C-NOMA and C-RSMA, we apply a combination of maximum-ratio-combining (MRC) and successive-interference-cancellation (SIC). Then, we derive the achievable rates for C-NOMA and C-RSMA, and formulate two optimization problems to maximize the minimum rate of two users by considering the proportional fairness coefficient. We propose two power allocation algorithms based on successive-convex-approximation (SCA) and geometric-programming (GP) to solve these non-convex problems. Next, we derive the asymptotic outage probability of the proposed C-NOMA and C-RSMA schemes, and prove that they achieve diversity order of two. Finally, the above-mentioned performance is confirmed by simulations.

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