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Enhanced uplink non-orthogonal multiple access for 5G and beyond systems

机译:适用于5G及更高系统的增强型上行链路非正交多路访问

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Uplink non-orthogonal multiple access (NOMA) is a promising technique to meet the requirements of the fifth generation (5G) and beyond systems. Various NOMA schemes have been proposed in both academia and industry. However, most existing schemes assume equal average received power, which limits the performance. We propose three enhancements of uplink NOMA to achieve the requirements of massive connectivity and high reliability in 5G, where unequal average received power is exploited as part of the multiple access signature. First, the optimal sequences targeting to generalized Welch-bound equality (GWBE) are obtained for unequal average received power. Then user grouping with multi-level received powers is proposed for better successive interference cancellation (SIC) at the receiver. Finally, sequence grouping based on the cross-correlation properties of sequences is proposed to reduce inter- and intra-group interference. Simulation results show that by incorporating multi-level received powers and sequence grouping into existing NOMA schemes, for an NOMA system with 400% overloading and fixed signature allocation, 3 dB and 10 dB signal-to-noise ratio (SNR) gains at 0.1 block error rate (BLER) target can be achieved compared with existing NOMA schemes and orthogonal multiple access (OMA), respectively. Besides, 0.01 BLER target can be achieved while an error floor exists in existing NOMA schemes. Under random sequence selection, collision probability is reduced by multi-level powers. In addition, GWBE sequences achieve lower BLER than existing sequences and the gain is large especially for low BLER requirements. This shows that the proposed scheme can support larger connectivity and higher reliability.
机译:上行非正交多路访问(NOMA)是一种有前途的技术,可以满足第五代(5G)及更高系统的要求。学术界和工业界已经提出了各种NOMA方案。但是,大多数现有方案假定平均接收功率相等,这限制了性能。我们提出了三种上行链路NOMA增强功能,以实现5G中大规模连接性和高可靠性的要求,其中不均等的平均接收功率被用作多路访问签名的一部分。首先,针对不相等的平均接收功率,获得了针对广义韦氏约束相等(GWBE)的最佳序列。然后提出了具有多级接收功率的用户分组,以在接收机处实现更好的连续干扰消除(SIC)。最后,提出了一种基于序列互相关特性的序列分组方法,以减少组内和组内干扰。仿真结果表明,通过将多级接收功率和序列分组合并到现有的NOMA方案中,对于具有400%过载和固定签名分配的NOMA系统,在0.1块时可获得3 dB和10 dB的信噪比(SNR)与现有的NOMA方案和正交多路访问(OMA)相比,可以分别实现误码率(BLER)目标。此外,在现有的NOMA方案中存在错误底限的同时,可以实现0.01 BLER目标。在随机序列选择下,碰撞概率通过多级幂降低。另外,GWBE序列实现的BLER比现有序列要低,并且增益很大,尤其是对于低BLER要求。这表明所提出的方案可以支持更大的连接性和更高的可靠性。

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