Smart City Gnosys

Smart city article details

Title Game Theory In Internet Of Things: A Survey
ID_Doc 27659
Authors Chi C.; Wang Y.; Tong X.; Siddula M.; Cai Z.
Year 2022
Published IEEE Internet of Things Journal, 9, 14
DOI http://dx.doi.org/10.1109/JIOT.2021.3133669
Abstract Internet of Things (IoT) devices are being used widely in the fields of smart city, smart grid, environmental monitoring, Internet of Vehicles and other fields that need large-scale sensing data. However, the research on storage and computation power for IoT is still in its early stages. The game theory converts the interaction between two IoT devices into a game where the conflict is resolved by utilizing the game's equilibrium conditions. Our goal with the game theory is to maximize the utility for every device in the IoT network. In this article, we review the recent game-theory-based solutions proposed in IoT networks. We summarize game theory concepts and categorize the common game models for ease of understanding for the reader. Later, we focus on analyzing solutions proposed in resource allocation, task scheduling, node selection, quality of service, and network security. Finally, we summarize research challenges and propose future research directions. © 2014 IEEE.
Author Keywords Conflict; game theory; Internet of Things (IoT); Nash equilibrium


Similar Articles


Id Similarity Authors Title Published
31066 View0.897Maddikunta P.K.R.; Pham Q.-V.; Nguyen D.C.; Huynh-The T.; Aouedi O.; Yenduri G.; Bhattacharya S.; Gadekallu T.R.Incentive Techniques For The Internet Of Things: A SurveyJournal of Network and Computer Applications, 206 (2022)
52082 View0.875Ranjbaran S.; Jafari A.R.; Crespi N.Socially Aware Multi-Resource Trading For Iot Applications In Smart Cities Using Auction TheoryProceedings - 2023 6th Conference on Cloud and Internet of Things, CIoT 2023 (2023)
27660 View0.871Dasari V.S.; Kantarci B.; Pouryazdan M.; Foschini L.; Girolami M.Game Theory In Mobile Crowdsensing: A Comprehensive SurveySensors (Switzerland), 20, 7 (2020)
14802 View0.869Ranjbaran S.; Jafari A.R.; Crespi N.; Correia S.D.Combinatorial Double Auction For Multi-Resource Trading In Iot ApplicationsDiscover Internet of Things, 5, 1 (2025)
1882 View0.869Kumar S.; Goswami A.; Gupta R.; Singh S.P.; Lay-Ekuakille A.A Game-Theoretic Approach For Cost-Effective Multicast Routing In The Internet Of ThingsIEEE Internet of Things Journal, 9, 18 (2022)
9976 View0.863Konovalov M.D.; Uvarova L.A.Application Of Reinforcement Learning Algorithms And Game Theory To Optimize The Offloading Of A Mobile Edge Computing SystemProceedings of the 2023 International Conference "Quality Management, Transport and Information Security, Information Technologies", IT and QM and IS 2023 (2023)
61973 View0.857Miao L.; Jiang D.; Zhang H.Wireless Secret Sharing Game For Internet Of ThingsSustainability (Switzerland), 15, 9 (2023)
36301 View0.856Huang J.; Hua K.Managing The Internet Of Things: Architectures, Theories And ApplicationsManaging the Internet of Things: Architectures, theories and applications (2016)
20653 View0.855Hashem I.A.; Siddiqa A.; Alaba F.A.; Bilal M.; Alhashmi S.M.Distributed Intelligence For Iot-Based Smart Cities: A SurveyNeural Computing and Applications, 36, 27 (2024)
46091 View0.852Farooq J.; Zhu Q.Resource Management For On-Demand Mission-Critical Internet Of Things ApplicationsResource Management for On-Demand Mission-Critical Internet of Things Applications (2021)