Analyzing the potential of full duplex in 5G ultra-dense small cell networks

被引:0
|
作者
Marta Gatnau Sarret
Gilberto Berardinelli
Nurul H. Mahmood
Marko Fleischer
Preben Mogensen
Helmut Heinz
机构
[1] Aalborg University,Department of Electronics Systems
[2] Nokia Solutions and Networks,undefined
[3] Nokia Bell Labs,undefined
来源
EURASIP Journal on Wireless Communications and Networking | / 2016卷
关键词
Full duplex; 5G; Small cell; Throughput; Delay; Interference; Traffic profile;
D O I
暂无
中图分类号
学科分类号
摘要
Full-duplex technology has become an attractive solution for future 5th generation (5G) systems for accommodating the exponentially growing mobile traffic demand. Full duplex allows a node to transmit and receive simultaneously in the same frequency band, thus, theoretically, doubling the system throughput over conventional half-duplex systems. A key limitation in building a feasible full-duplex node is the self-interference, i.e., the interference generated by the transmitted signal to the desired signal received on the same node. This constraint has been overcome given the recent advances in the self-interference cancellation technology. However, there are other limitations in achieving the theoretical full-duplex gain: residual self-interference, traffic constraints, and inter-cell and intra-cell interference. The contribution of this article is twofold. Firstly, achievable levels of self-interference cancellation are demonstrated using our own developed test bed. Secondly, a detailed evaluation of full-duplex communication in 5G ultra-dense small cell networks via system level simulations is provided. The results are presented in terms of throughput and delay. Two types of full duplex are studied: when both the station and the user equipments are full duplex capable and when only the base station is able to exploit simultaneous transmission and reception. The impact of the traffic profile and the inter-cell and intra-cell interferences is addressed, individually and jointly. Results show that the increased interference that simultaneous transmission and reception causes is one of the main limiting factors in achieving the promised full-duplex throughput gain, while large traffic asymmetries between downlink and uplink further compromise such gain.
引用
收藏
相关论文
共 50 条
  • [31] An Energy-Efficient Small-Cell Operation Algorithm for Ultra-Dense Cellular Networks
    Hasan, MD. Mehedi
    Haq, MD. Shayanul
    Hossain, MD. Maruf
    Tiash, Junaed Kiron
    Kwon, Sungoh
    IEEE ACCESS, 2024, 12 : 191650 - 191660
  • [32] Dynamic Load Adjustments for Small Cells in Heterogeneous Ultra-dense Networks
    Zhang, Qi
    Xu, Xiaodong
    Zhang, Jingxuan
    Tao, Xiaofeng
    Liu, Cong
    2020 IEEE WIRELESS COMMUNICATIONS AND NETWORKING CONFERENCE (WCNC), 2020,
  • [33] Enhanced uplink handover scheme for improvement of energy efficiency and QoS in LTE-A/5G HetNet with ultra-dense small cells
    Ju-Hung Jon
    Chol Jong
    Kwuang-Sik Ryu
    Won Kim
    Wireless Networks, 2024, 30 : 1321 - 1338
  • [34] On the cross link interference of 5G with flexible duplex and full duplex
    Guo, Zheng
    Fei, Yongqiang
    2020 IEEE WIRELESS COMMUNICATIONS AND NETWORKING CONFERENCE WORKSHOPS (WCNCW), 2020,
  • [35] Cell Clustering-based Resource Allocation in Ultra-dense Networks
    Teng, Deyang
    Ye, Na
    PROCEEDINGS OF 2017 3RD IEEE INTERNATIONAL CONFERENCE ON COMPUTER AND COMMUNICATIONS (ICCC), 2017, : 622 - 627
  • [36] Service- and interference-aware dynamic TDD design in 5G ultra-dense network scenario
    Gao, Weidong
    Lin, Binyong
    Chuai, Gang
    EURASIP JOURNAL ON WIRELESS COMMUNICATIONS AND NETWORKING, 2017,
  • [37] Service- and interference-aware dynamic TDD design in 5G ultra-dense network scenario
    Weidong Gao
    Binyong Lin
    Gang Chuai
    EURASIP Journal on Wireless Communications and Networking, 2017
  • [38] Radio resource coordination and scheduling scheme in ultra-dense cloud-based small cell networks
    Zengxian Chen
    Sai Zou
    Yuliang Tang
    Xiaojiang Du
    Mohsen Guizani
    EURASIP Journal on Wireless Communications and Networking, 2018
  • [39] Data-Driven Deployment and Cooperative Self-Organization in Ultra-Dense Small Cell Networks
    Du, Zhiyong
    Sun, Youming
    Guo, Weisi
    Xu, Yuhua
    Wu, Qihui
    Zhang, Jie
    IEEE ACCESS, 2018, 6 : 22839 - 22848
  • [40] Radio resource coordination and scheduling scheme in ultra-dense cloud-based small cell networks
    Chen, Zengxian
    Zou, Sai
    Tang, Yuliang
    Du, Xiaojiang
    Guizani, Mohsen
    EURASIP JOURNAL ON WIRELESS COMMUNICATIONS AND NETWORKING, 2018,