Intelligent reflecting surface (IRS) is a promising technology to enhance the coverage and performance of wireless networks. We consider the application of IRS to non-orthogonal multiple access (NOMA), where a base station transmits superposed signals to multiple users by the virtue of an IRS. The performance of an IRS-assisted NOMA networks with imperfect successive interference cancellation (ipSIC) and perfect successive interference cancellation (pSIC) is investigated by invoking 1-bit coding scheme. In particular, we derive new exact and asymptotic expressions for both outage probability and ergodic rate of the m-th user with ipSIC/pSIC. Based on analytical results, the diversity order of the m-th user with pSIC is in connection with the number of reflecting elements and channel ordering. The high signal-to-noise radio (SNR) slope of ergodic rate for the $m$-th user is obtained. The throughput and energy efficiency of non-orthogonal users for IRS-NOMA are discussed both in delay-limited and delay-tolerant transmission modes. Additionally, we derive new exact expressions of outage probability and ergodic rate for IRS-assisted orthogonal multiple access (IRS-OMA). Numerical results are presented to substantiate our analyses and demonstrate that: i) The outage behaviors of IRS-NOMA are superior to that of IRS-OMA and relaying schemes; ii) With increasing the number of reflecting elements, IRS-NOMA is capable of achieving enhanced outage performance; and iii) The M-th user has a larger ergodic rate compared to IRS-OMA and benchmarks. However, the ergodic performance of the $m$-th user exceeds relaying schemes in the low SNR regime.
翻译:智能反射表面(IRS)是提高无线网络覆盖面和性能的有希望的技术。 我们考虑将IRS应用到非垂直多重访问(NOMA)中,基础站通过IRS向多个用户传输超额信号。 IRS协助的NOMA网络的性能通过援引1位编码方案来调查,其连续干扰取消(IPSIC)和连续干扰取消(PSIC)的不完善性能。 特别是,我们用IPSIC/PSIC为超值用户的超值概率和超速率(NORS)进行新的精确和静态表达。 根据分析结果,使用pSICSIC向多个用户发送超额信号和频道订购。 我们用IMS-NOMA 低调用户的通量和节能效率在IRS-IMA 的延迟和超延迟性能性能分析中,我们用IMO-S-S-SA的超度表现率(IMA) 和超速性能性能(IMA-SIMA) 和S-SIM-S-S-S-S-SD-SD-SD-SUD-SLA-SD-SD-SD-SUD-SUD-SLA-SUD-SUD-SUD-SUDR-S-S-S-S-S-S-S-S-S-S-SLA-S-S-S-S-S-S-S-S-S-S-S-SD-SD-R-R-R-R-SUD-SD-R-R-R-S-S-R-R-S-S-S-S-S-S-S-S-S-S-S-S-S-R-R-R-R-R-R-R-S-S-R-R-R-R-R-R-SD-R-R-R-R-R-R-R-R-R-SD-R-R-R-R-R-R-R-R-S-R-R-R-R-R-R-R-R-R-R-R-R-R-R-R-R-R-