1 |
NIKOPOUR H, BALIGH H. Sparse code multiple access[C]//Proc.of the 24th Annual International Symposium on Personal, Indoor and Mobile Radio Communications, 2013: 332-336.
|
2 |
YAN C , ZHANG N B , KANG G X . Downlink multiple input multiple output mixed sparse code multiple access for 5G system[J]. IEEE Access, 2018, 6, 20837- 20847.
doi: 10.1109/ACCESS.2018.2825221
|
3 |
BAO J C , MA Z , XIAO M , et al. Bit-interleaved coded SCMA with iterative multiuser detection: multidimensional constellations design[J]. IEEE Trans.on Communications, 2018, 66 (11): 5292- 5304.
doi: 10.1109/TCOMM.2017.2782325
|
4 |
FONTANA B , SILVA D , UCHOA-FILHO B . A multistage method for SCMA codebook design based on MDS codes[J]. IEEE Wireless Communications Letters, 2019, 8 (6): 1524- 1527.
doi: 10.1109/LWC.2019.2925801
|
5 |
SILVA F D B , RUYET D L , UCHOA-FILHO B . Threshold-based edge selection MPA for SCMA[J]. IEEE Trans.on Vehi-cular Technology, 2020, 69 (3): 2957- 2966.
doi: 10.1109/TVT.2020.2966333
|
6 |
新型多址专题组成员.新型多址专题组技术报告[R].北京: IMT-2020 (5G)推进组, 2019: 1-108.
|
|
Members of New Multiple Access Theme Group. Technical report of new multiple access thematic group[R]. Beijing: IMT-2020(5G) Promotion Group, 2019: 1-108.
|
7 |
THOMPSON J , GE X H , WU H C , et al. 5G wireless communication systems: prospects and challenges[Guest Editorial][J]. IEEE Communications Magazine, 2014, 52 (2): 62- 64.
doi: 10.1109/MCOM.2014.6736744
|
8 |
TAHERZADEH M, NIKOPOUR H, BAYESTEH A, et al. SCMA codebook design[C]//Proc.of the 80th Vehicular Technology Conference, 2014.
|
9 |
WU Y Q, ZHANG S Q, CHEN Y. Iterative multiuser receiver in sparse code multiple access systems[C]//Proc.of the International Conference on Communications, 2015: 2918-2923.
|
10 |
HOSHYAR R , WATHAN F P , TAFAZOLLI R . Novel low-density signature for synchronous CDMA systems over AWGN channel[J]. IEEE Trans.on Signal Processing, 2008, 56 (4): 1616- 1626.
doi: 10.1109/TSP.2007.909320
|
11 |
METKARUNCHIT T. SCMA codebook design base on circular-QAM[C]//Proc.of the Integrated Communications, Navigation and Surveillance Conference, 2017: 3E1-1-3E1-8.
|
12 |
HAO S L, SU X, ZENG J, et al. A low complexity SCMA detector based on avoiding redundant iterations[C]//Proc.of the 12th International Symposium on Medical Information and Communication Technology, 2018.
|
13 |
MIAO J S, HU X J, ZHAO Z M. A low complexity multiuser detection scheme with dynamic factor graph for uplink SCMA systems[C]//Proc.of the International Conference on Communications in China, 2019: 846-851.
|
14 |
杜洋, 董彬虹, 王显俊, 等. 基于串行策略的SCMA多用户检测算法[J]. 电子与信息学报, 2016, 38 (8): 1888- 1893.
|
|
DU Y , DONG B H , WANG X J , et al. SCMA multi-user detection algorithm based on serial strategy[J]. Journal of Electronic and Information Technology, 2016, 38 (8): 1888- 1893.
|
15 |
王若男, 常俊, 余江, 等. 基于串并结合策略的SCMA多用户检测[J]. 电讯技术, 2018, 58 (3): 245- 250.
doi: 10.3969/j.issn.1001-893x.2018.03.002
|
|
WANG R N , CHANG J , YU J , et al. SCMA multiuser detection based on string parallel combination strategy[J]. Telecommunication Engineering, 2018, 58 (3): 245- 250.
doi: 10.3969/j.issn.1001-893x.2018.03.002
|
16 |
DU Y , DONG B H , CHEN Z , et al. Shuffled multi-user detection schemes for uplink sparse code multiple access systems[J]. IEEE Communications Letters, 2016, 20 (6): 1231- 1234.
doi: 10.1109/LCOMM.2016.2551742
|
17 |
吉明明, 郑建宏. 基于动态消息调度的SCMA低复杂度检测算法[J]. 计算机应用研究, 2018, 35 (8): 2489- 2491.
doi: 10.3969/j.issn.1001-3695.2018.08.063
|
|
JI M M , ZHENG J H . Research on low complexity decoding for SCMA based on serial strategies of variable node[J]. Computer Application Research, 2018, 35 (8): 2489- 2491.
doi: 10.3969/j.issn.1001-3695.2018.08.063
|
18 |
DU Y , DONG B H , CHEN Z , et al. A fast convergence multiuser detection scheme for uplink SCMA systems[J]. IEEE Wireless Communications Letters, 2016, 5 (4): 388- 391.
doi: 10.1109/LWC.2016.2565581
|
19 |
WEI L, HUANG B, ZHENG J D. Low-complexity detectors for uplink SCMA: symbol flipping and dynamic partial marginalization based MPA[C]//Proc.of the 87th Vehicular Technology Conference, 2018.
|
20 |
MU H , MA Z , ALHAJI M , et al. A fixed low complexity message pass algorithm detector for up-link SCMA system[J]. IEEE Wireless Communications Letters, 2015, 4 (6): 585- 588.
doi: 10.1109/LWC.2015.2469668
|
21 |
邵凯, 余贝, 王光宇, 等. 部分外部信息传递的SCMA多用户检测算法[J]. 系统工程与电子技术, 2017, 39 (10): 2320- 2326.
|
|
SHAO K , YU B , WANG G Y , et al. Multiuser detection scheme for SCMA with partial extrinsic information transmission[J]. Systems Engineering and Electronics, 2017, 39 (10): 2320- 2326.
|
22 |
YANG L , MA X , SIU Y M . Low complexity MPA detector based on sphere decoding for SCMA[J]. IEEE Communications Letters, 2017, 21 (8): 1855- 1858.
doi: 10.1109/LCOMM.2017.2697425
|
23 |
YANG L , LIU Y Y , SIU Y M . Low complexity message passing algorithm for SCMA system[J]. IEEE Communications Letters, 2016, 20 (12): 2466- 2469.
doi: 10.1109/LCOMM.2016.2609382
|
24 |
WEI F , CHEN W . Low complexity iterative receiver design for sparse code multiple access[J]. IEEE Trans.on Communications, 2017, 65 (2): 621- 634.
doi: 10.1109/TCOMM.2016.2631468
|
25 |
MACKAY D J C . Good error-correcting codes based on very sparse matrices[J]. IEEE Trans.on Information Theory, 1999, 45 (2): 399- 431.
|
26 |
BAYESTEH A, NIKOPOUR H, TAHERZADEH M, et al. Low complexity techniques for SCMA detection[C]//Proc.of the Globecom Workshops, 2015.
|