Interference-aware User Grouping Strategy in NOMA Systems with QoS Constraints

被引:0
作者
Guo, Fengqian [1 ]
Lu, Hancheng [1 ]
Zhu, Daren [1 ]
Wu, Hao [1 ]
机构
[1] Univ Sci & Technol China, Sch Informat Sci & Technol, Hefei, Anhui, Peoples R China
来源
IEEE CONFERENCE ON COMPUTER COMMUNICATIONS (IEEE INFOCOM 2019) | 2019年
基金
美国国家科学基金会;
关键词
Non-orthogonal multiple access (NOMA); user grouping; quality of service (QoS); interference; NONORTHOGONAL MULTIPLE-ACCESS; POWER ALLOCATION; DOWNLINK NOMA; 5G SYSTEMS; NETWORKS;
D O I
10.1109/infocom.2019.8737590
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
To meet the performance and complexity requirements from practical deployment of non-orthogonal multiple access (NOMA) systems, several users are grouped together for NOMA transmission while orthogonal resources are allocated among groups. User grouping strategies have significant impact on the power consumption and system performance. However, existing related studies divide users into groups based on channel conditions, where diverse quality of service (QoS) and interference have not been considered. In this paper, we focus on the interference-aware user grouping strategy in NOMA systems, aiming at minimizing power consumption with QoS constraints. We define a power consumption and externality (PCE) function for each user to represent the power consumption involved by this user to satisfy its QoS requirement as well as interference that this user brings to others in the same group. Then, we extend the definition of PCE to multi-user scenarios and convert the user grouping problem into the problem of searching for specific negative loops in the graph. Bellman-Ford algorithm is extended to find these negative loops. Furthermore, a greedy suboptimal algorithm is proposed to approach the solution within polynomial time. Simulation results show that the proposed algorithms can considerably reduce the total power consumption compared with existing strategies.
引用
收藏
页码:1378 / 1386
页数:9
相关论文
共 23 条
[1]   Dynamic User Clustering and Power Allocation for Uplink and Downlink Non-Orthogonal Multiple Access (NOMA) Systems [J].
Ali, Md Shipon ;
Tabassum, Hina ;
Hossain, Ekram .
IEEE ACCESS, 2016, 4 :6325-6343
[2]  
[Anonymous], FLOWS NETWORKS
[3]  
Bellman R., 1958, Q APPL MATH, V16, P87, DOI [DOI 10.1090/QAM/102435, 10.1090/qam/102435]
[4]   Energy-Efficient and Secure Resource Allocation for Multiple-Antenna NOMA With Wireless Power Transfer [J].
Chang, Zheng ;
Lei, Lei ;
Zhang, Huaqing ;
Ristaniemi, Tapani ;
Chatzinotas, Symeon ;
Ottersten, Bjorn ;
Han, Zhu .
IEEE TRANSACTIONS ON GREEN COMMUNICATIONS AND NETWORKING, 2018, 2 (04) :1059-1071
[5]   Optimal User Scheduling and Power Allocation for Millimeter Wave NOMA Systems [J].
Cui, Jingjing ;
Liu, Yuanwei ;
Ding, Zhiguo ;
Fan, Pingzhi ;
Nallanathan, Arumugam .
IEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS, 2018, 17 (03) :1502-1517
[6]  
Dai LL, 2015, IEEE COMMUN MAG, V53, P74, DOI 10.1109/MCOM.2015.7263349
[7]   Sub-Channel Assignment, Power Allocation, and User Scheduling for Non-Orthogonal Multiple Access Networks [J].
Di, Boya ;
Song, Lingyang ;
Li, Yonghui .
IEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS, 2016, 15 (11) :7686-7698
[8]   Impact of User Pairing on 5G Nonorthogonal Multiple-Access Downlink Transmissions [J].
Ding, Zhiguo ;
Fan, Pingzhi ;
Poor, H. Vincent .
IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2016, 65 (08) :6010-6023
[9]   On the Performance of Non-Orthogonal Multiple Access in 5G Systems with Randomly Deployed Users [J].
Ding, Zhiguo ;
Yang, Zheng ;
Fan, Pingzhi ;
Poor, H. Vincent .
IEEE SIGNAL PROCESSING LETTERS, 2014, 21 (12) :1501-1505
[10]   Planar graphs, negative weight edges, shortest paths, and near linear time [J].
Fakcharoenphol, Jittat ;
Rao, Satish .
JOURNAL OF COMPUTER AND SYSTEM SCIENCES, 2006, 72 (05) :868-889