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...
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Hindawi Limited
2021
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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) |
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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 |
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1718407777439711232 |