Joint Resource Block and Power Allocation for Interference Management in Device to Device Underlay Cellular Networks: A Game Theoretic Approach

被引:0
|
作者
Georgios Katsinis
Eirini Eleni Tsiropoulou
Symeon Papavassiliou
机构
[1] National Technical University of Athens (NTUA),School of Electrical & Computer Engineering
[2] University of Texas at Dallas,Erik Jonsson School of Engineering and Computer Science
来源
Mobile Networks and Applications | 2017年 / 22卷
关键词
5G networks; Game theory; Interference management; D2D underlay cellular networks;
D O I
暂无
中图分类号
学科分类号
摘要
This paper addresses the problem of joint resource block (RB) and uplink transmission power allocation in a Device to Device (D2D) underlay cellular network via a game theoretic approach. In contrast to the majority of previous research works in this area, the proposed framework aims mainly at interference mitigation and energy efficiency. We do not restrict a priori the number of D2D pairs which can reuse a RB allocated to a cellular link. However, this is determined dynamically by the objective of interference minimization. To address the resource allocation problem under consideration and deal with its inherent complexity, a two-step distributed approach is proposed. At first the RB allocation process is modeled as an exact potential game which is shown to minimize the total interference in the network. Second a non-cooperative game theoretic model for the uplink transmission power allocation process is proposed. For both stages of the proposed framework, efficient and distributed algorithms for the computation of the desired Nash Equilibrium (NE) point of each game are introduced. The efficiency of the overall proposed framework is evaluated through modeling and simulation, while comparative numerical results are presented that demonstrate the superiority of our methodology against other state of the art approaches.
引用
收藏
页码:539 / 551
页数:12
相关论文
共 50 条
  • [1] Joint Resource Block and Power Allocation for Interference Management in Device to Device Underlay Cellular Networks: A Game Theoretic Approach
    Katsinis, Georgios
    Tsiropoulou, Eirini Eleni
    Papavassiliou, Symeon
    MOBILE NETWORKS & APPLICATIONS, 2017, 22 (03) : 539 - 551
  • [2] Multicell interference management in Device to Device underlay cellular networks
    Katsinis G.
    Tsiropoulou E.E.
    Papavassiliou S.
    Papavassiliou, Symeon (papavass@netmode.ntua.gr), 2017, MDPI AG (09):
  • [3] Game-theoretic approach to energy-efficient resource allocation in device-to-device underlay communications
    Zhou, Zhenyu
    Dong, Mianxiong
    Ota, Kaoru
    Shi, Ruifeng
    Liu, Zhiheng
    Sato, Takuro
    IET COMMUNICATIONS, 2015, 9 (03) : 375 - 385
  • [4] Spectrum Sharing for Device-to-Device Communications in Cellular Networks: A Game Theoretic Approach
    Xiao, Yong
    Chen, Kwang-Cheng
    Yuen, Chau
    DaSilva, Luiz A.
    2014 IEEE INTERNATIONAL SYMPOSIUM ON DYNAMIC SPECTRUM ACCESS NETWORKS (DYSPAN), 2014, : 60 - 71
  • [5] Power Allocation via Interference Compensation in Underlay Cognitive Radio Networks: A Game Theoretic Perspective
    Abdulghfoor, Omar B.
    Ismail, Mahamod
    Nordin, Rosdiadee
    2012 INTERNATIONAL SYMPOSIUM ON TELECOMMUNICATION TECHNOLOGIES (ISTT), 2012, : 296 - 301
  • [6] Joint Resource Allocation for Device-to-Device Communications Underlaying Uplink MIMO Cellular Networks
    Zhong, Wei
    Fang, Yixin
    Jin, Shi
    Wong, Kai-Kit
    Zhong, Sheng
    Qian, Zuping
    IEEE JOURNAL ON SELECTED AREAS IN COMMUNICATIONS, 2015, 33 (01) : 41 - 54
  • [7] A Game-Theoretic Approach for Joint Channel and Power Allocation in Downlink of Cellular Cognitive Radio Networks
    Omidvar, Naeimeh
    Khalaj, Babak H.
    2012 IEEE 23RD INTERNATIONAL SYMPOSIUM ON PERSONAL INDOOR AND MOBILE RADIO COMMUNICATIONS (PIMRC), 2012, : 1198 - 1202
  • [8] Joint Downlink and Uplink Interference Management for Device to Device Communication Underlaying Cellular Networks
    Thong Huynh
    Onuma, Tomoyuki
    Kuroda, Kaori
    Hasegawa, Mikio
    Hwang, Won-Joo
    IEEE ACCESS, 2016, 4 : 4420 - 4430
  • [9] Protocol Design and Game Theoretic Solutions for Device-to-Device Radio Resource Allocation
    Su, Shih-Tang
    Huang, Bo-Yuan
    Wang, Chih-Yu
    Yeh, Che-Wei
    Wei, Hung-Yu
    IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2017, 66 (05) : 4271 - 4286
  • [10] A game-theoretic approach to decentralized optimal power allocation for cellular networks
    Shrutivandana Sharma
    Demosthenis Teneketzis
    Telecommunication Systems, 2011, 47 : 65 - 80