Liu Yaxuan, Gao Huadong, Cheng Hao, Xia Yili, Pei Wenjiang
School of Information Science and Engineering, Southeast University, Nanjing 210096, China.
Guangdong Communications and Networks Institute, Guangzhou 510070, China.
Entropy (Basel). 2023 Aug 6;25(8):1172. doi: 10.3390/e25081172.
The improper Gaussian signaling (IGS) technique can improve the achievable rate of an interference-limited network by fully exploiting the second-order statistics of complex signaling. This paper addresses the outage performance analysis of a two-user downlink non-orthogonal multiple access (NOMA) system using the IGS technique in the presence of imperfect successive interference cancellation (SIC). The strong channel user (SU) adopts the IGS, while the weak channel user (WU) adopts the traditional proper Gaussian signaling (PGS). Considering a practical scenario where the transmitter has obtained the statistics of the channel coefficients instead of the instantaneous channel state information (CSI), the expressions of the achievable rates of both users under residual interference due to imperfect SIC are derived, together with their outage probabilities, subject to predetermined target rates and channel statistics. Given a fixed transmit power of the WU, both the transmit power and the degree of impropriety of the SU are optimized to minimize the outage probability subject to the outage constraint of the WU. Numerical results are provided to assess the benefits of the proposed IGS-based downlink NOMA system, which are consistent with the analysis.
非恰当高斯信号(IGS)技术能够通过充分利用复信号的二阶统计特性来提高干扰受限网络的可达速率。本文针对存在不完美连续干扰消除(SIC)情况下,使用IGS技术的两用户下行非正交多址接入(NOMA)系统的中断性能进行分析。强信道用户(SU)采用IGS,而弱信道用户(WU)采用传统的恰当高斯信号(PGS)。考虑发射机已获取信道系数统计信息而非瞬时信道状态信息(CSI)的实际场景,推导了由于不完美SIC导致残余干扰情况下两用户的可达速率表达式及其中断概率,这些均受制于预定的目标速率和信道统计信息。在给定WU固定发射功率的情况下,对SU的发射功率和非恰当程度进行优化,以在满足WU中断约束的条件下使中断概率最小化。提供了数值结果以评估所提出的基于IGS的下行NOMA系统的优势,其与分析结果一致。