论文标题

NOMA实用:通过干扰剥削去除接收的SIC处理

NOMA Made Practical: Removing the Receive SIC Processing through Interference Exploitation

论文作者

Salem, Abdelhamid, Tong, Xiao, Li, Ang, Masouros, Christos

论文摘要

非正交多访问(NOMA)是一种强大的传输技术,可提高通信链接的光谱效率,并正在针对5G标准及以后进行研究。 NOMA的一个主要缺点是需要按符号基础在接收器上应用连续的干扰取消(SIC),这限制了其实用性。为了避免这种情况,在本文中提出并研究了一种新颖的建设性多重访问(昏迷)方案。昏迷将叠加信号与不同用户的信号对齐。由于叠加的信号与数据信号对齐,因此无需使用SIC在接收方将其删除。因此,可以在接收器侧删除SIC组件。在这方面,为了提供全面的调查和比较,考虑了用户削减NOMA多输入单输出(MISO)系统的不同优化问题。首先,获得了受服务质量约束的昏迷的最佳预码器,以最大程度地减少昏迷的总传输功率,并与常规的NOMA进行比较。然后,研究了一个最小化昏迷符号错误率(SER)的预编码器。此外,考虑了复杂操作总数,考虑了昏迷的计算复杂性,并将其与常规的NOMA方案进行了比较。本文的结果证明了拟议的昏迷方案比常规的Noma技术的优越性,并证明了昏迷是BS天线数量较少的用户折扣Noma Miso系统的有吸引力的解决方案,同时规避接收SIC的复杂性。

Non-orthogonal multiple access (NOMA) is a powerful transmission technique that enhances the spectral efficiency of communication links, and is being investigated for 5G standards and beyond. A major drawback of NOMA is the need to apply successive interference cancellation (SIC) at the receiver on a symbol-by-symbol basis, which limits its practicality. To circumvent this, in this paper a novel constructive multiple access (CoMA) scheme is proposed and investigated. CoMA aligns the superimposed signals to the different users constructively to the signal of interest. Since the superimposed signal aligns with the data signal, there is no need to remove it at the receiver using SIC. Accordingly, SIC component can be removed at the receiver side. In this regard and in order to provide a comprehensive investigation and comparison, different optimization problems for user paring NOMA multiple-input-single-output (MISO) systems are considered. Firstly, an optimal precoder to minimize the total transmission power for CoMA subject to a quality-of-service constraint is obtained, and compared to conventional NOMA. Then, a precoder that minimizes the CoMA symbol error rate (SER) subject to power constraint is investigated. Further, the computational complexity of CoMA is considered and compared with conventional NOMA scheme in terms of total number of complex operations. The results in this paper prove the superiority of the proposed CoMA scheme over the conventional NOMA technique, and demonstrate that CoMA is an attractive solution for user paring NOMA MISO systems with low number of BS antennas, while circumventing the receive SIC complexity.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源