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IoT-Based Coordinated Direct and Relay Transmission With Non-Orthogonal Multiple Access

机译:基于IOT的协调直接和继电器传输,具有非正交多址

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This letter studies an Internet-of-Things (IoT)-based coordinated direct and relay transmission (CDRT) adopting non-orthogonal multiple access (NOMA), where an information source directly communicates with a strong user while a weak user needs the help of an IoT master node. Different from traditional NOMA-CDRT systems, in which NOMA protocol is only deployed at the information source to serve users, the proposed novel system, i.e., IoT-assisted NOMA-CDRT, have two stages: (1) information source transmits the information data to users and (2) IoT master node operating as a relay to decode and forward data of the weak user along with IoT-U. Under the considered system setup, we derive exact closed-form expressions for the outage probability of users as well as approximated expressions for the ergodic sum capacity. Our results show that the proposed system may not perform well in terms of outage performance at the strong user during the cooperative transmission phase, but achieves higher ergodic sum capacity in whole communication process, and enhances efficient spectrum usage, compared with conventional CDRT and orthogonal multiple access systems.
机译:这封信研究了一个关于非正交多次访问(NOMA)的基于互联网的协调直接和中继传输(CDRT),其中信息源直接与强用户通信,而弱用户需要帮助IOT主节点。与传统的NOMA-CDRT系统不同,其中NOMA协议仅在信息源部署以服务用户,所提出的新颖系统,即IOS辅助NOMA-CDRT,具有两个阶段:(1)信息源传输信息数据用户和(2)IOT主节点作为继电器进行操作以与IOT-U一起解码和转发弱者的数据。在考虑的系统设置下,我们推出了确切的闭合表达式表达式,以便用户的停电概率以及遍历遍历总和容量的近似表达式。我们的研究结果表明,在合作传输阶段,强势用户的中断性能方面,该系统可能无法对整个通信过程中的遍历总和容量更高,并增强了与传统的CDRT和正交倍数相比增强了有效的频谱使用量访问系统。

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