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Multiuser detection for uplink non-orthogonal multiple access system

机译:上行链路非正交多址系统的多用户检测

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摘要

Non-orthogonal multiple access (NOMA) makes multiple users to overload the same wireless resources by utilising the superposition coding principle, so that NOMA can improve the system capacity and spectral efficiency. Therefore, NOMA has recently received considerable attention as a promising candidate to address some of the challenges for 5G. Various NOMA schemes including the power-domain NOMA (PD-NOMA) are proposed, and successive interference cancellation (SIC) is applied for detection, which limits the promised performance gain brought by NOMA due to the error propagation. In this study, the authors introduce an iterative interference cancellation (IIC) detection scheme for uplink PD-NOMA system by using parallel interference cancellation (PIC) scheme. The interleave division multiple access is also employed for improving system performance. A new detection scheme based on IIC is proposed, which is called advanced IIC (AIIC). The simulation results show that the bit error rate performance of AIIC is much better than that of SIC, and is close to that of maximum a posteriori. The AIIC can obtain the promised performance gain brought by NOMA.
机译:非正交多址访问(NOMA)通过利用叠加编码原理使多个用户过载相同的无线资源,从而使NOMA可以提高系统容量和频谱效率。因此,作为解决5G挑战的有前途的候选者,NOMA最近受到了相当多的关注。提出了包括功率域NOMA(PD-NOMA)在内的各种NOMA方案,并将连续干扰消除(SIC)应用于检测,这限制了NOMA因错误传播而带来的预期性能增益。在这项研究中,作者通过使用并行干扰消除(PIC)方案介绍了用于上行链路PD-NOMA系统的迭代干扰消除(IIC)检测方案。交错划分多路访问也被用于改善系统性能。提出了一种基于IIC的新检测方案,称为高级IIC(AIIC)。仿真结果表明,AIIC的误码率性能比SIC好得多,并且接近最大后验误差。 AIIC可以获得NOMA带来的预期性能提升。

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