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首页> 外文期刊>Internet of Things Journal, IEEE >Cooperative NOMA Broadcasting/Multicasting for Low-Latency and High-Reliability 5G Cellular V2X Communications
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Cooperative NOMA Broadcasting/Multicasting for Low-Latency and High-Reliability 5G Cellular V2X Communications

机译:低延迟和高可靠性5G蜂窝V2​​X通信的NOMA合作广播/组播

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摘要

To achieve low-latency and high-reliability (LLHR) for the vehicle-to-everything (V2X) services, the Long Term Evolution (LTE)-based solution has been considered as a promising technology. Since the existing LTE networks are based on the orthogonal multiple access (OMA), the limited spectrum resources have not been fully and efficiently utilized, so that severe data congestion and low access efficiency cannot be avoided in dense networks. Non-OMA (NOMA) provides a new solution for 5G V2X services to mitigate traffic congestion and reduce latency. Different from existing works, we propose two relay-assisted NOMA transmission schemes for 5G V2X communications, i.e., half-duplex relay-assisted NOMA (HDRNOMA) broadcasting/multicasting and full-duplex relay-assisted NOMA (FDR-NOMA) broadcasting/multicasting, and investigate the optimal power allocation problems for them. To improve the quality of service (QoS) for the users with the poor channel conditions and to guarantee the fairness, the power allocation problems are formulated to maximize the minimum achievable rate for all users. Even though both of the formulated problems are neither concave nor convex, it is shown that the considered problems are quasi-concave. Hence, a bisection-based power allocation algorithm is proposed to obtain the optimal solutions to the problems. Numerical results demonstrate that the proposed schemes outperform the scheme with fixed power allocation obviously and achieve a significant performance improvement with respect to a suboptimal fractional transmit power allocation (FTPA) method and the optimized time division multiple access (TDMA) scheme. Besides, compared with HDR-NOMA, better performance can be achieved by FDR-NOMA scheme when the self-interference is sufficiently suppressed.
机译:为了实现车对所有(V2X)服务的低延迟和高可靠性(LLHR),基于长期演进(LTE)的解决方案被认为是一种有前途的技术。由于现有的LTE网络是基于正交多址接入(OMA)的,因此有限的频谱资源尚未得到充分有效的利用,从而在密集网络中无法避免严重的数据拥塞和低接入效率。 Non-OMA(NOMA)为5G V2X服务提供了新的解决方案,以减轻流量拥塞并减少延迟。与现有工作不同,我们提出了两种用于5G V2X通信的中继辅助NOMA传输方案,即半双工中继辅助NOMA(HDRNOMA)广播/组播和全双工中继辅助NOMA(FDR-NOMA)广播/组播,并研究它们的最佳功率分配问题。为了改善信道条件较差的用户的服务质量(QoS)并确保公平性,制定了功率分配问题,以使所有用户的最小可实现速率最大化。即使两个既定问题都不是凹面也不是凸面,但表明所考虑的问题是拟凹的。因此,提出了一种基于二等分的功率分配算法,以获得针对这些问题的最佳解决方案。数值结果表明,所提出的方案明显优于具有固定功率分配的方案,并且相对于次优的分数发射功率分配(FTPA)方法和优化的时分多址(TDMA)方案,其性能得到了显着改善。此外,与HDR-NOMA相比,当充分抑制自干扰时,通过FDR-NOMA方案可以实现更好的性能。

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