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A Downlink NOMA System Based on Combinatorial Design

机译:基于组合设计的下行诺马马斯系统

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It is known that the Non-Orthogonal Multiple Access (NOMA) system is capable of obtaining higher spectral efficiency and massive connectivity owing to the fact that multiple users are superimposed over each resource. However, as the number of users is more than that of resources, the resultant surjective-only mapping and expanded constellation increase the multiuser detection (MUD) complexity at the receiver inherently. In this paper, a downlink code-domain NOMA design based on combinatorial structures with balanced incomplete block design (BIBD) is studied. The unique discretizing distribution of BIBD provides an inherent mapping pattern for the linear combination of multiuser data. To accommodate with our system, a heuristic constellation forming paradigm is proposed. Message Passing Algorithm (MPA) is used at the receiver in this design. Simulation results on additive white Gaussian (AWGN) and Rayleigh fading channel demonstrate that our system obtain an equivalent even better performance compared with other similar code-domain NOMA techniques with much lower design complexity.
机译:众所周知,由于多个用户叠加在每个资源上,非正交多次访问(NOMA)系统能够获得更高的频谱效率和大规模连接。然而,随着用户数量超过资源的数量,仅由此产生的映射和扩展的星座固有地增加了接收器处的多用户检测(泥浆)复杂性。本文研究了一种基于具有平衡不完全块设计(BIBD)的组合结构的下行链路码域NOMA设计。 BIBD的独特离散化分布为多用户数据的线性组合提供了一个固有的映射模式。为了适应我们的系统,提出了一种启发式星座形成范式。消息传递算法(MPA)在此设计中使用。添加剂白色高斯(AWGN)和Rayleigh衰落通道的仿真结果表明,与其他类似的代码域NOMM技术相比,我们的系统获得了相当更好的性能,具有较低的设计复杂性。

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