A Lightweight Authenticated Key Agreement Protocol Using Fog Nodes in Social Internet of Vehicles

Recently, there has been rapid growth in the Internet of things, the Internet of vehicles, fog computing, and social Internet of vehicles SIoV, which can generate large amounts of real-time data. Now, researchers have begun applying fog computing to the SIoV to reduce the computing pressure on cloud...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Tsu-Yang Wu, Xinglan Guo, Lei Yang, Qian Meng, Chien-Ming Chen
Formato: article
Lenguaje:EN
Publicado: Hindawi Limited 2021
Materias:
Acceso en línea:https://doaj.org/article/79f3351f4fb44b4193aa800ebb6e89fe
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:79f3351f4fb44b4193aa800ebb6e89fe
record_format dspace
spelling oai:doaj.org-article:79f3351f4fb44b4193aa800ebb6e89fe2021-11-29T00:55:41ZA Lightweight Authenticated Key Agreement Protocol Using Fog Nodes in Social Internet of Vehicles1875-905X10.1155/2021/3277113https://doaj.org/article/79f3351f4fb44b4193aa800ebb6e89fe2021-01-01T00:00:00Zhttp://dx.doi.org/10.1155/2021/3277113https://doaj.org/toc/1875-905XRecently, there has been rapid growth in the Internet of things, the Internet of vehicles, fog computing, and social Internet of vehicles SIoV, which can generate large amounts of real-time data. Now, researchers have begun applying fog computing to the SIoV to reduce the computing pressure on cloud servers. However, there are still security challenges in SIoV. In this paper, we propose a lightweight and authenticated key agreement protocol based on fog nodes in SIoV. The protocol completes the mutual authentication between entities and generates the session key for subsequent communication. Through a formal analysis of the Burrows–Abadi–Needham (BAN) logic, real-oracle random (ROR) model, and ProVerif, the security, validity, and correctness of the proposed protocol are demonstrated. In addition, informal security analysis shows that our proposed protocol can resist known security attacks. We also evaluate the performance of the proposed protocol and show that it achieves better performance in terms of computing power and communication cost.Tsu-Yang WuXinglan GuoLei YangQian MengChien-Ming ChenHindawi LimitedarticleTelecommunicationTK5101-6720ENMobile Information Systems, Vol 2021 (2021)
institution DOAJ
collection DOAJ
language EN
topic Telecommunication
TK5101-6720
spellingShingle Telecommunication
TK5101-6720
Tsu-Yang Wu
Xinglan Guo
Lei Yang
Qian Meng
Chien-Ming Chen
A Lightweight Authenticated Key Agreement Protocol Using Fog Nodes in Social Internet of Vehicles
description Recently, there has been rapid growth in the Internet of things, the Internet of vehicles, fog computing, and social Internet of vehicles SIoV, which can generate large amounts of real-time data. Now, researchers have begun applying fog computing to the SIoV to reduce the computing pressure on cloud servers. However, there are still security challenges in SIoV. In this paper, we propose a lightweight and authenticated key agreement protocol based on fog nodes in SIoV. The protocol completes the mutual authentication between entities and generates the session key for subsequent communication. Through a formal analysis of the Burrows–Abadi–Needham (BAN) logic, real-oracle random (ROR) model, and ProVerif, the security, validity, and correctness of the proposed protocol are demonstrated. In addition, informal security analysis shows that our proposed protocol can resist known security attacks. We also evaluate the performance of the proposed protocol and show that it achieves better performance in terms of computing power and communication cost.
format article
author Tsu-Yang Wu
Xinglan Guo
Lei Yang
Qian Meng
Chien-Ming Chen
author_facet Tsu-Yang Wu
Xinglan Guo
Lei Yang
Qian Meng
Chien-Ming Chen
author_sort Tsu-Yang Wu
title A Lightweight Authenticated Key Agreement Protocol Using Fog Nodes in Social Internet of Vehicles
title_short A Lightweight Authenticated Key Agreement Protocol Using Fog Nodes in Social Internet of Vehicles
title_full A Lightweight Authenticated Key Agreement Protocol Using Fog Nodes in Social Internet of Vehicles
title_fullStr A Lightweight Authenticated Key Agreement Protocol Using Fog Nodes in Social Internet of Vehicles
title_full_unstemmed A Lightweight Authenticated Key Agreement Protocol Using Fog Nodes in Social Internet of Vehicles
title_sort lightweight authenticated key agreement protocol using fog nodes in social internet of vehicles
publisher Hindawi Limited
publishDate 2021
url https://doaj.org/article/79f3351f4fb44b4193aa800ebb6e89fe
work_keys_str_mv AT tsuyangwu alightweightauthenticatedkeyagreementprotocolusingfognodesinsocialinternetofvehicles
AT xinglanguo alightweightauthenticatedkeyagreementprotocolusingfognodesinsocialinternetofvehicles
AT leiyang alightweightauthenticatedkeyagreementprotocolusingfognodesinsocialinternetofvehicles
AT qianmeng alightweightauthenticatedkeyagreementprotocolusingfognodesinsocialinternetofvehicles
AT chienmingchen alightweightauthenticatedkeyagreementprotocolusingfognodesinsocialinternetofvehicles
AT tsuyangwu lightweightauthenticatedkeyagreementprotocolusingfognodesinsocialinternetofvehicles
AT xinglanguo lightweightauthenticatedkeyagreementprotocolusingfognodesinsocialinternetofvehicles
AT leiyang lightweightauthenticatedkeyagreementprotocolusingfognodesinsocialinternetofvehicles
AT qianmeng lightweightauthenticatedkeyagreementprotocolusingfognodesinsocialinternetofvehicles
AT chienmingchen lightweightauthenticatedkeyagreementprotocolusingfognodesinsocialinternetofvehicles
_version_ 1718407777439711232