Energy-efficient cross-layer resource allocation scheme for OFDMA systems

被引:1
作者
Khalil, Ayman [1 ]
Helard, Jean-Francois [1 ]
机构
[1] European Univ Brittany UEB, Inst Elect & Telecommun Rennes IETR, INSA, 20 Ave Buttes Coesmes, F-35708 Rennes, France
关键词
Green communication; Quality of service (QoS); LTE; OFDMA;
D O I
10.1007/s12243-020-00825-9
中图分类号
TN [电子技术、通信技术];
学科分类号
0809 ;
摘要
Recently, the interest of the telecommunication operators and Internet service providers (ISPs) in energy efficiency (EE) for wireless networks has remarkably increased. The boost in energy prices, the continuous increase of the user numbers, the pervasion of wideband access, and the diffusion of offered services have motivated this interest. The challenge is to minimize the transmitted energy without compromising the quality of service (QoS) and the network performance. In this paper, a new efficient Orthogonal Frequency Division Multiple Access (OFDMA) resource allocation for Long Term Evolution (LTE)-advanced systems based on cross-layer optimization between Physical (PHY) and Medium Access Control (MAC) layers is proposed. A new solution based on Rate Adaptive (RA) principle is presented to achieve better EE resource allocation. The purpose behind the new model is to increase the capacity of the system as much as possible while trying to decrease the total transmit power. Hence, the EE which is equal to the capacity to total transmit power ratio is increased. As reducing the transmit power for the transmission of a given capacity reduces the power consumption, the greenhouse gas (GHG) emission will be then reduced. On the other hand, the service differentiation is highly considered to provide high QoS support. The users are differentiated according to different service classes and different data rates. The proposed cross-layer-based solution has then to allocate the system resources in an optimal way while satisfying the users having high QoS requirements.
引用
收藏
页码:399 / 411
页数:13
相关论文
共 26 条
[1]  
Amanna A, 2009, METRICS MEASUREMENT, P50
[2]  
Anas M., 2004, Proceedings of 2004 International Symposium on Intelligent Signal Processing And Communication Systems ISPACS 2004 (IEEE Cat. No.04EX910), P477, DOI 10.1109/ISPACS.2004.1439101
[3]  
[Anonymous], R1030999 3GPP TSGRAN, V34, P1
[4]  
Bertsekas DP, 2009, ADPRL: 2009 IEEE SYMPOSIUM ON ADAPTIVE DYNAMIC PROGRAMMING AND REINFORCEMENT LEARNING, P1
[5]   A Survey of Green Networking Research [J].
Bianzino, Aruna Prem ;
Chaudet, Claude ;
Rossi, Dario ;
Rougier, Jean-Louis .
IEEE COMMUNICATIONS SURVEYS AND TUTORIALS, 2012, 14 (01) :3-20
[6]  
Chen M, 2016, WIRELESS NETW-GER, P1, DOI 10.1007/978-3-319-47355-0_1
[7]   A Survey of Energy-Efficient Wireless Communications [J].
Feng, Daquan ;
Jiang, Chenzi ;
Lim, Gubong ;
Cimini, Leonard J., Jr. ;
Feng, Gang ;
Li, Geoffrey Ye .
IEEE COMMUNICATIONS SURVEYS AND TUTORIALS, 2013, 15 (01) :167-178
[8]  
Furqan F, 2014, IEEE INT PERF COMP C, P1
[9]  
Ganesh A, 2008, ARTIF INT SER WSEAS, P100
[10]   Linear Modeling and Performance Evaluation of Resource Allocation and User Scheduling for LTE-like OFDMA networks [J].
Gotsis, Antonis G. ;
Komnakos, Dimitris ;
Constantinou, Philip .
2009 6TH INTERNATIONAL SYMPOSIUM ON WIRELESS COMMUNICATION SYSTEMS (ISWCS 2009), 2009, :196-200