非理想SIC下SWIPT-CR-NOMA网络中断性能分析

Outage Performance of Imperfect SIC for Cooperative NOMA Systems in Cognitive Radio Networks with SWIPT

  • 摘要: 针对采用无线携能通信的多中继底层协作认知非正交多址接入网络,提出一种两阶段中继选择策略。认知中继执行功率划分的无线携能通信协议为次级用户提供解码转发服务,其能量开销源于所采集到的能量。考虑了实际的非正交多址接入网络中,中继节点与次级用户均无法完全消除多址干扰,即无法实现理想连续干扰消除。在干扰阈值约束下,推导了非理想连续干扰消除下两次级用户端中断概率的精确表达式,并通过蒙特卡洛仿真验证其正确性。此外,定量分析了各系统相关参数(最大发射功率、干扰阈值、功率分配系数等)的选取对次级用户中断性能的具体影响。结果表明,在相同的系统参数设置下,所提方案次级用户中断性能远优于现有部分中继选择方案。

     

    Abstract: In this paper, a cooperative non-orthogonal multiple access system using simultaneous wireless information and power transfer is investigated in an underlay cognitive radio network. In our proposed system, a two-stage relay selection strategy is proposed. The relay nodes take power splitting protocol to harvest the transmission power and use collected energy to decode and forward the users’ message. In realistic conditions, ideal successive interference cancellation can not be performed by the relay and secondary destination. The outage probability expression for each secondary user is derived under the conditions of the interference temperature constraint and non-ideal successive interference cancellation. The simulation results are provided to verify the correctness of our analytical results. Also, the influences of system parameters (the maximum transmit power at S, interference temperature constraint, power allocation factor, etc.) on secondary users’ outage performance are analyzed quantitatively, and the relevant simulation results demonstrate that the outage performance of our proposed strategy is better than the partial relay selection strategy under the same parameters setting.

     

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