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On the Complexity Reduction of Uplink Sparse Code Multiple Access for Spatial Modulation
DOI:10.1109/TCOMM.2020.3018184.png)
摘要
En 中文
Multi-user spatial modulation (SM) assisted by sparse code multiple access (SCMA) has been recently proposed to provide uplink high spectral efficiency transmission. The message passing algorithm (MPA) is employed to detect the transmitted signals, which suffers from high complexity. This paper proposes three low-complexity algorithms for the first time to the SM-SCMA. The first algorithm is referred to as successive user detection (SUD), while the second algorithm is the modified version of SUD, namely modified SUD (MSUD). Then, for the first time, the tree-search of the SM-SCMA is constructed. Based on that tree-search, another variant of the sphere decoder (SD) is proposed for the SM-SCMA, referred to as fixed-complexity SD (FCSD). SUD provides a benchmark for decoding complexity at the expense of bit-error-rate (BER) performance. Further, MSUD slightly increases the complexity of SUD with a significant improvement in BER performance. Finally, FCSD provides a near-optimum BER with a considerable reduction of the complexity compared to the MPA decoder and also supports parallel hardware implementation. The proposed algorithms provide flexible design choices for practical implementation based on system design demands. The complexity analysis and Monte-Carlo simulations of the BER are provided for the proposed algorithms.
Keyword:
Complexity theory
Decoding
Transmitting antennas
Receiving antennas
Uplink
Iterative decoding
Sparse code multiple access (SCMA)
spatial modulation (SM)
message passing algorithm (MPA)
low-complexity algorithms
complexity analysis
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期刊
IF:
8.3
论文数:
1.2W
被引数:
3.6W
机构
引用论文
A Survey on Spatial Modulation in Emerging Wireless Systems: Research Progresses and Applications新兴无线系统空间调制研究进展与应用综述

