Modeling DRX for D2D Communication

被引:11
作者
Moradi, Farnaz [1 ]
Fitzgerald, Emma [1 ,2 ]
Landfeldt, Bjorn [1 ]
机构
[1] Lund Univ, Dept Elect & Informat Technol, S-22100 Lund, Sweden
[2] Warsaw Univ Technol, Inst Telecommun, PL-00661 Warsaw, Poland
关键词
Device-to-device communication; Delays; 5G mobile communication; Numerical models; Analytical models; Internet of Things; Power demand; Device discovery; device-to-device (D2D) communication; discontinuous reception (DRX); energy efficiency; fifth; 5th generation wireless netwoks (5G); Internet of Things (IoT); TO-DEVICE COMMUNICATION; CELLULAR NETWORKS; DISCOVERY; INTERNET; THINGS;
D O I
10.1109/JIOT.2020.3018321
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Discontinuous reception (DRX) has been included in 4G-LTE as the main power saving mechanism for user equipment (UE). However, the existing 3-state DRX model is not sufficient for new use cases introduced by 4G and 5G. For example, the device discovery process in device to device (D2D) communication has a significant impact on delay and power consumption, but the existing conventional 3-state DRX model is unable to capture this impact. In this article, we propose a novel 5-state DRX model for D2D communications using a semi-Markov process, with separate arrival processes for data and discovery messages. The proposed model includes separate states for the discovery process, and is general and easy to extend for possible future changes. Our model allows us to investigate the behavior of the system under various DRX and discovery parameters. Numerical results show significant influence of the discovery phase on the performance of the DRX mechanism and provide new insights into how it affects power saving and delay.
引用
收藏
页码:2574 / 2584
页数:11
相关论文
共 44 条
[1]   Directional-DRX for 5G wireless communications [J].
Agiwal, M. ;
Maheshwari, M. K. ;
Saxena, N. ;
Roy, A. .
ELECTRONICS LETTERS, 2016, 52 (21) :1816-U80
[2]  
Anajemba JH, 2018, IEEE IND ELEC, P3864, DOI 10.1109/IECON.2018.8591373
[3]  
[Anonymous], 1998, 3003 UMTS
[4]  
[Anonymous], 2007, 3GPP TSG RAN WG2 M R
[5]   5G D2D Networks: Techniques, Challenges, and Future Prospects [J].
Ansari, Rafay Iqbal ;
Chrysostomou, Chrysostomos ;
Hassan, Syed Ali ;
Guizani, Mohsen ;
Mumtaz, Shahid ;
Rodriguez, Jonathan ;
Rodrigues, Joel J. P. C. .
IEEE SYSTEMS JOURNAL, 2018, 12 (04) :3970-3984
[6]   DRX With Quick Sleeping: A Novel Mechanism for Energy-Efficient IoT Using LTE/LTE-A [J].
Balasubramanya, Naveen Mysore ;
Lampe, Lutz ;
Vos, Gustav ;
Bennett, Steve .
IEEE INTERNET OF THINGS JOURNAL, 2016, 3 (03) :398-407
[7]   Intelligent Device-to-Device Communication in the Internet of Things [J].
Bello, Oladayo ;
Zeadally, Sherali .
IEEE SYSTEMS JOURNAL, 2016, 10 (03) :1172-1182
[8]  
Chang HH, 2016, TOP MED CHEM SER, V20, P1, DOI 10.1007/7355_2014_68
[9]   Optimal Routing for Multihop Social-Based D2D Communications in the Internet of Things [J].
Chen, Gaojie ;
Tang, Jinchuan ;
Coon, Justin P. .
IEEE INTERNET OF THINGS JOURNAL, 2018, 5 (03) :1880-1889
[10]   VANET Aided D2D Discovery: Delay Analysis and Performance [J].
Chour, Hussein ;
Nasser, Youssef ;
Artail, Hassan ;
Kachouh, Alaa ;
Al-Dubai, Ahmed .
IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2017, 66 (09) :8059-8071