Game theoretic approach for bandwidth sharing in future generation networks

被引:0
作者
Judhajit Sanyal
Tuhina Samanta
Mainak Chatterjee
机构
[1] IIEST Shibpur,Department of Information Technology
[2] University of Central Florida,Department of Computer Science
来源
Computing | 2021年 / 103卷
关键词
4G; Bandwidth sharing; User-provided network; Coordination game; Nash equilibrium; 91A80; 90B18;
D O I
暂无
中图分类号
学科分类号
摘要
With the advent of 4G LTE networks, the demand for bandwidth has rapidly increased among users of mobile devices, especially handheld smartphones. Consequently, the 4G data plans offered by mobile network operators have become expensive in many countries around the world. Moreover, due to the discrete tiers of the data plans, users often experience shortage or surplus. In order to facilitate sharing of bandwidth among users, we propose a game theoretic framework where users share bandwidth with each other. The sharing mechanism is based on the distribution of surplus bandwidth of some users to overcome the shortage of others. All users sometimes serve as providers (i.e., offering bandwidth to others) and sometimes as receivers (i.e., receiving bandwidth from the providers), thus constituting a user-provided network (UPN). The sharing game is designed in such a way that those receiving bandwidth are obligated to offer the same to others at a later point of time. Unused bandwidth of a user is shared to other users who require bandwidth at that instance, who must return the bandwidth that they use to the provider of the bandwidth at a later time based on requirement, by a coordination-based model of user interaction in the UPN that consists of these entities. Further, we have developed a coordination-based game model to better simulate user interaction in this context. In order to validate the proposed framework, we conducted simulations experiments as well as conducted experiments with handheld devices where bandwidth from a 4G LTE commercial network provider was shared among the devices. Results reveal that a Nash Equilibrium is reached for the overall set of interactions between users sharing and receiving bandwidth, provided that a Nash Equilibrium is reached in the interactions between each pair of users.
引用
收藏
页码:613 / 640
页数:27
相关论文
共 46 条
[1]  
Santos A(2016)Fair linking mechanisms for resource allocation with correlated player types Springer Comput 98 777-801
[2]  
Anta AF(2008)Cooperative resource allocation games in shared networks: symmetric and asymmetric fair bargaining models IEEE Trans Wirel Commun 7 4166-4175
[3]  
Cuesta JA(2016)Zero-determinant strategy for resource sharing in wireless cooperations IEEE Trans Wirel Commun 15 2179-2192
[4]  
Fernández LL(2016)New bandwidth sharing and pricing policies to achieve a win–win situation for cloud provider and tenants IEEE Trans Parallel Distrib Syst 27 2682-2697
[5]  
Hew SL(2017)Offloading in HetNet: a coordination of interference mitigation, user association, and resource allocation IEEE Trans Mobile Comput 16 2276-2291
[6]  
White LB(2019)Cooperative caching for HTTP-based adaptive streaming contents in cache-enabled radio access networks Springer Comput 101 435-453
[7]  
Zhang H(2018)Multi-client file download time reduction from cloud/fog storage servers IEEE Transa Mobile Comput 99 1924-1937
[8]  
Niyato D(2017)Efficient and fair collaborative mobile internet access IEEE ACM Trans Netw 25 1386-1400
[9]  
Song L(2017)Promoting device-to-device communication in cellular networks by contract-based incentive mechanisms IEEE Netw 31 14-20
[10]  
Jiang T(2014)Coalitional games for resource allocation in the device-to-device uplink underlaying cellular networks IEEE Trans Wirel Commun 13 3965-3977