论文标题
冲动噪声对上行链路Noma系统的影响
Effect of Impulsive Noise on Uplink NOMA Systems
论文作者
论文摘要
最近提出了一种可行的技术,该技术可能会提供未来无线电网络的光谱效率,低潜伏期和庞大的连通性要求,这是一种可行的技术。在这种情况下,诸如工业互联网,智能电网和智能房屋等众多超高可靠性技术的特征是存在冲动电磁干扰,称为冲动噪音。在这种情况下,NOMA中的功率域多路复用预计将使系统对这种额外的冲动噪声特别敏感。因此,在本文中,我们量化了冲动噪声对上行链路NOMA系统中断性能的影响。广泛的蒙特卡罗模拟以及提供的分析结果证明了所涉及的诺玛用户对这种噪声的脆弱性。这突出了需要有效建模冲动噪声以及适合NOMA特定需求和挑战的缓解技术的设计。
Non-orthogonal multiple access (NOMA) was recently proposed as a viable technology that can potentially provide the spectral efficiency, low latency, and massive connectivity requirements of future radio networks. In this context, numerous ultra-high reliability technologies such as the industrial Internet of things, smart grids, and smart homes present environments which are characterized by the presence of impulsive electromagnetic interference, known as impulsive noise. Under such conditions, the power domain multiplexing in NOMA is expected to render the system particularly sensitive to this additional impulsive noise. Therefore, in this article, we quantify the effects of impulsive noise on the outage performance of uplink NOMA systems. Extensive Monte-Carlo simulations as well as offered analytical results demonstrate the vulnerability of the involved NOMA users to this type of noise. This highlights the need for effective modeling of the impulsive noise as well as the design of mitigation techniques that are suitable for the particular demands and challenges of NOMA.