Dynamic resource allocation for OFDMA femtocell networks: a game-theoretic approach

被引:0
作者
Azadeh Pourkabirian
Mehdi Dehghan Takht Fooladi
Esmaeil Zeinali
Amir Masoud Rahmani
机构
[1] Islamic Azad University,Department of Computer Engineering, Science and Research Branch
[2] Amirkabir University of Technology,Department of Computer Engineering and Information Technology
[3] Islamic Azad University,Department of Computer and Information Technology Engineering, Qazvin Branch
来源
Telecommunication Systems | 2018年 / 69卷
关键词
Resource allocation; VCG auction; Game theory; Quality of service; Q-learning algorithm; Femtocell networks;
D O I
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中图分类号
学科分类号
摘要
Femtocells consisting of small femto base stations have emerged as an efficient solution for improving the capacity and coverage of wireless cellular networks. However, due to limited wireless radio resources, resource allocation is a key issue in two-tier femtocell networks. Motivated by this challenge, in this paper, we propose a resource allocation approach which satisfies the quality of service requirements and maximizes social welfare. Users compete with each other for a serving base station that fulfills their quality of service requirements, and the serving base stations prefer to serve more users to make more revenue. We model the competition among these rational decision makers as the Vickrey–Clarke–Groves auction game theory in which each user as a buyer submits a bid for resources, and each base station as a seller decides which users will win the auction and how much the winning users should pay and then it assigns the resources to the winning users. Unlike the previous studies, we also take into account macro user’s activity as cross-tier interference in the resource allocation process. We develop an algorithm based on Q-learning in which each user gradually learns from its own past information and adjusts its bid value to achieve the Nash equilibrium as the solution of the game without any interaction with other users. We also investigate the existence and uniqueness of the Nash equilibrium. Simulation results verify the accuracy of the numerical results obtained from the proposed model.
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页码:51 / 59
页数:8
相关论文
共 84 条
  • [1] Chandrasekhar V(2008)Femtocell networks: A survey IEEE Communications magazine 46 59-508
  • [2] Andrews JG(2012)Femtocells: Past, present, and future IEEE Journal on Selected Areas in Communications 30 497-30
  • [3] Gatherer A(2009)Radio resource allocation algorithms for the downlink of multiuser OFDM communication systems IEEE Communications Surveys & Tutorials 11 92-624
  • [4] Andrews JG(2010)Radio resource management considerations for LTE femto cells ACM SIGCOMM Computer Communication Review 40 26-634
  • [5] Claussen H(2005)Cross-layer optimization for OFDM wireless networks-part I: Theoretical framework IEEE Transactions on Wireless Communications 4 614-1758
  • [6] Dohler M(2005)Cross-layer optimization for OFDM wireless networks-part II: Algorithm development IEEE Transactions on Wireless Communications 4 625-528
  • [7] Rangan S(1999)Multiuser OFDM with adaptive subcarrier, bit, and power allocation IEEE Journal on Selected Areas in Communications 17 1747-234
  • [8] Reed MC(2005)Joint subcarrier and power allocation in uplink OFDMA systems IEEE Communications Letters 9 526-1401
  • [9] Sadr S(2009)Joint scheduling and resource allocation in uplink OFDM systems for broadband wireless access networks IEEE Journal on Selected Areas in Communications 27 226-194
  • [10] Anpalagan A(2014)Fair resource allocation for OFDMA femtocell networks with macrocell protection IEEE Transactions on Vehicular Technology 63 1388-2255