Non-orthogonal multiple access (NOMA) is considered a key technology for improving the spectral efficiency of fifth-generation (5G) and beyond 5G cellular networks. NOMA is beneficial when the channel vectors of the users are in the same direction, which is not always possible in conventional wireless systems. With the help of a reconfigurable intelligent surface (RIS), the base station can control the directions of the channel vectors of the users. Thus, by combining both technologies, the RIS-assisted NOMA systems are expected to achieve greater improvements in the network throughput. However, ideal phase control at the RIS is unrealizable in practice because of the imperfections in the channel estimations and the hardware limitations. This imperfection in phase control can have a significant impact on the system performance. Motivated by this, in this paper, we consider an RIS-assisted uplink NOMA system in the presence of imperfect phase compensation. We formulate the criterion for pairing the users that achieves minimum required data rates. We propose adaptive user pairing algorithms that maximize spectral or energy efficiency. We then derive various bounds on power allocation factors for the paired users. Through extensive simulation results, we show that the proposed algorithms significantly outperform the state-of-the-art algorithms in terms of spectral and energy efficiency.
翻译:非垂直多重存取(NOMA)被认为是提高第五代(5G)和5G以上蜂窝网络光谱效率的关键技术。当用户的频道矢量朝同一方向发展时,NOMA是有用的,在常规无线系统中并不总是可能这样做。在可重新配置的智能表面(RIS)的帮助下,基站可以控制用户频道矢量的方向。因此,通过将两种技术结合起来,RIS辅助的NOMA系统可望在网络输送量方面实现更大的改进。然而,由于频道估计和硬件限制的不完善,RIS的理想阶段控制在实际中是无法实现的。在阶段控制中的这种不完善可能对系统性能产生重大影响。在本文中,我们考虑在存在不完善的阶段补偿的情况下,由RIS辅助的连接NOMA系统可以控制用户的导航方向。我们为达到最低要求的数据率的用户制定了配对标准。我们提议了适应性用户配方算算法,以最大限度的光谱或能源效率。我们随后从配方的电源分配因素中得出了各种约束性的能量配置因素,从而展示了配对式的用户的模拟结果。我们提议了配方的模型。