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A Novel Multi-Dimensional Constellation Design Method Based on Lattices for Sparse Code Multiple Access

机译:一种新型多维星座设计方法,基于稀疏代码多址的格子

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Sparse Code Multiple Access (SCMA), as a new non-orthogonal multiple access scheme, achieves the good performance to access to massive information. Shaping gain of a multidimensional constellation is the main source of the performance improvement. However, when the number of constellation points is large, the process of the constellation design is too complex. In this paper, a novel multidimensional constellation design method based on lattices is proposed. The constellation with spherical boundary, which has the largest shaping gain, is designed and correspondingly a simplified optimization algorithm is proposed. We present the capacity of the constrained constellation on the AWGN channel. Experimental results show that the proposed constellation design method reduces the average transmit power. In addition, compared to orthogonal frequency division multiple access (OFDMA), the performance of the system is improved.
机译:稀疏代码多访问(SCMA)作为新的非正交多址方案,实现了访问大规模信息的良好性能。塑造多维星座的增益是性能改进的主要来源。然而,当星座点数大时,星座设计的过程太复杂。本文提出了一种基于格子的新型多维星座设计方法。设计且相应地设计了具有最大成形增益的球形边界的星座,并相应地进行简化的优化算法。我们介绍了约束星座对AWGN频道的能力。实验结果表明,所提出的星座设计方法降低了平均发射功率。另外,与正交频分多址(OFDMA)相比,系统的性能得到改善。

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