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Outage probability and capacity analysis of the collaborative NOMA assisted relaying system in 5G

机译:5G中NOMA协作中继系统的中断概率和容量分析

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It is challenging for the base station (BS) to serve multiple cell-edge users concurrently with data rate guarantee due to limited power and spectrum resource. Using the relay enhances cell-edge user received signal strength by short-distance communication in low transmit power. Non-orthogonal multiple access (NOMA), a promising spectral efficient technology for the 5-th generation network (5G), enables the relay to transmit multiple messages to cell-edge users concurrently. In this paper, a Collaborative NOMA Assisted Relaying (CNAR) system for 5G is proposed with the collaboration of the source-relay (S-R) and relay-destination (R-D) NOMA link. The relay decodes its own message from the S-R NOMA signal and transmits the remaining part with adjusted power to cell-edge users in the R-D link. Then the exact expression of system outage probability is derived by analyzing the outage behavior in S-R and R-D links separately. To guarantee the data rate, the optimal power allocation among NOMA users is provided by minimizing the outage probability. To further characterize the system performance, the ergodic sum capacity in high SNR regime is approximated from discussions on the interference at cell-edge users. Simulation results validate our mathematical analysis, and show that the relaying system assisted by NOMA achieves lower outage probability and higher sum capacity than orthogonal multiple access (OMA).
机译:由于有限的功率和频谱资源,基站(BS)难以同时为多个小区边缘用户提供数据速率保证。使用中继通过低发射功率的短距离通信增强了小区边缘用户接收信号的强度。非正交多路访问(NOMA)是用于第五代网络(5G)的一种有前途的频谱高效技术,它使中继能够同时向小区边缘用户发送多个消息。在本文中,通过源中继(S-R)和中继目的地(R-D)NOMA链路的协作,提出了用于5G的协作式NOMA辅助中继(CNAR)系统。中继站从S-R NOMA信号中解码自己的消息,并将剩余部分以调整后的功率发送到R-D链路中的小区边缘用户。然后,通过分别分析S-R和R-D链路中的中断行为,得出系统中断概率的精确表达式。为了保证数据速率,通过使中断概率最小化来提供NOMA用户之间的最佳功率分配。为了进一步表征系统性能,高信噪比条件下的遍历总和容量是从有关小区边缘用户干扰的讨论中得出的。仿真结果验证了我们的数学分析,并表明与正交多路访问(OMA)相比,由NOMA辅助的中继系统实现了更低的中断概率和更高的总容量。

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