Energy Efficient Handover for Heterogeneous Networks: A Non-Cooperative Game Theoretic Approach

被引:0
|
作者
Mohanad Alhabo
Li Zhang
Naveed Nawaz
机构
[1] Informatics and Telecommunication Public Company/Iraqi Ministry of Communications,School of Electronic and Electrical Engineering
[2] University of Leeds,undefined
[3] University of Engineering and Technology,undefined
来源
关键词
Handover; Small cells; HetNets; Game theory; Energy efficiency;
D O I
暂无
中图分类号
学科分类号
摘要
The small cell technology is considered as a key technology for 5G networks. The capacity expansion and coverage extension are both achieved through this deployment. However, the ultra-dense small cells deployment can cause a severe interference, a high number of frequent unnecessary handovers and/or handover failure and hence, high power consumption is expected due to the signalling overhead. Placing some small cells into idle mode, without causing degradation to the quality of service, is a good strategy to enhance the energy efficiency in the network. In this paper, we propose an energy efficient game theoretical method to reduce the energy consumption in dense small cells network. The proposed method enables the small cells to adjust their transmitting power while considering to balance the load among themselves. A non-cooperative game is formulated among the cells in the network to solve the cost function which considers both the power mode and its load. The game is solved using the regret matching-based learning distribution approach in which each cell chooses its optimal transmit power strategy to reach the equilibrium. The cell selection for handover is then made using a multiple attribute TOPSIS technique. Results show that the proposed method significantly reduces the power consumption and unnecessary handovers, in addition to improving the average small cell throughput compared to the conventional method.
引用
收藏
页码:2113 / 2129
页数:16
相关论文
共 50 条
  • [31] A Game-Theoretic Approach for Non-Cooperative Load Balancing Among Competing Cloudlets
    Mondal, Sourav
    Das, Goutam
    Wong, Elaine
    [J]. IEEE OPEN JOURNAL OF THE COMMUNICATIONS SOCIETY, 2020, 1 : 226 - 241
  • [32] A non-cooperative game-theoretic approach for the flexible operation of multi-microgrids
    Mohseni, Soheil
    Brent, Alan C.
    [J]. 2023 IEEE POWER & ENERGY SOCIETY GENERAL MEETING, PESGM, 2023,
  • [33] A Non-cooperative Game Theoretic Approach for Multi-cell OFDM Power Allocation
    Gorji, Ali Elyasi
    Abolhassani, Bahman
    Honardar, Kiamars
    [J]. COMPUTING, COMMUNICATION, AND CONTROL, 2011, 1 : 159 - 163
  • [34] A stochastic non-cooperative game for energy efficiency in wireless data networks
    Buzzi, Stefano
    Poor, H. Vincent
    Saturnino, DaniehL
    [J]. WIRELESS COMMUNICATIONS 2007 CNIT THYRRENIAN SYMPOSIUM, 2008, : 135 - +
  • [35] Game-Theoretic System Design for Non-Cooperative Scenarios
    Colombi, John M.
    Donohoo, Benjamin C.
    [J]. 2023 IEEE INTERNATIONAL SYSTEMS CONFERENCE, SYSCON, 2023,
  • [36] On Non-Cooperative Location Privacy: A Game-Theoretic Analysis
    Freudiger, Julien
    Manshaei, Mohammad Hossein
    Hubaux, Jean-Pierre
    Parkes, David C.
    [J]. CCS'09: PROCEEDINGS OF THE 16TH ACM CONFERENCE ON COMPUTER AND COMMUNICATIONS SECURITY, 2009, : 324 - 337
  • [37] Game Theoretic Packet Scheduling in a Non-cooperative Wireless Environment
    Kong, Zhen
    Kwok, Yu-Kwong
    [J]. COMMUNICATION AND NETWORKING, 2009, 56 : 9 - +
  • [38] Dual Energy Scheduling for Microgrids in Energy Internet: A Non-cooperative Game Approach
    Wu, Jie
    Zhou, Wenhui
    Zhong, Weifeng
    Cheng, Yuhua
    Liu, Jinhua
    [J]. 2017 FIRST IEEE INTERNATIONAL CONFERENCE ON ENERGY INTERNET (ICEI 2017), 2017, : 48 - 52
  • [39] Energy Consumption Scheduling in Smart Grid: A Non-Cooperative Game Approach
    Ma, Kai
    Hu, Guoqiang
    Spanos, Costas J.
    [J]. 2013 9TH ASIAN CONTROL CONFERENCE (ASCC), 2013,
  • [40] A non-cooperative game approach on isolated water-energy microgrids
    Parraga, Manuel
    Fajardo, Arturo
    Rodriguez-Urrego, Leonardo
    Vuelvas, Jose
    [J]. SUSTAINABLE ENERGY GRIDS & NETWORKS, 2024, 38