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Joint codebook assignment and power allocation for SCMA based on capacity with Gaussian input

机译:基于具有高斯输入的容量的SCMA联合代码簿分配和功率分配

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Sparse Code Multiple Access (SCMA) is a non-orthogonal multi-dimensional spreading technique based on layered codebooks. In SCMA, incoming bits are directly mapped to multi-dimensional codewords of pre-defined codebooks. In comparison to simple repetition of QAM symbols in Low Density Signature (LDS), shaping gain of the multi-dimensional constellation is the main advantage of SCMA for performance improvement. Similar to LDS, SCMA can take the advantage of a near optimal Message Passing Algorithm (MPA) receiver with reasonable complexity. In this paper, the uplink SCMA sum capacity is derived and a specific codebook design method is proposed, which can cancel the effect of the dependency between the non-zero entries of codewords. Under this condition, we study the uplink sum-rate optimization problem. A joint codebook assignment and power allocation method is proposed to achieve a near optimal solution. Simulation results show the significant performance gain of the proposed algorithm.
机译:稀疏码多址(SCMA)是基于分层码本的非正交多维扩展技术。在SCMA中,输入位直接映射到预定义码本的多维码字。与低密度签名(LDS)中QAM符号的简单重复相比,多维星座图的整形增益是SCMA用于提高性能的主要优势。与LDS相似,SCMA可以利用具有合理复杂度的近乎最佳的消息传递算法(MPA)接收器的优势。本文推导了上行SCMA总容量,并提出了一种特定的码本设计方法,该方法可以消除码字非零条目之间的依存关系。在这种情况下,我们研究了上行链路总速率优化问题。提出了一种联合码本分配和功率分配的方法,以实现接近最优的解决方案。仿真结果表明,该算法具有明显的性能增益。

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