Design of Secure Handover Authentication Scheme for Urban Air Mobility Environments

Citations

WEB OF SCIENCE

36
Citations

SCOPUS

44

초록

Urban air mobility (UAM) is a future air transportation system to solve the air pollution and movement efficiency problems of the traditional mobility system. In UAM environments, unmanned aerial vehicles (UAV) are used to transport passengers and goods providing various convenient services such as package delivery, air bus, and air taxi. However, UAVs communicate with ground infrastructures through open channels that can be exposed to various security attacks. Therefore, a secure mutual authentication scheme is necessary for UAM environments. Moreover, a handover authentication is also necessary to ensure seamless communication when the service location is changed. In this paper, we design a secure and efficient handover authentication scheme for UAM environments considering various security vulnerabilities and efficiency using elliptic curve cryptography (ECC). We utilize informal security analysis, Real-or-Random (RoR), Burrows-Abadi-Needham (BAN) logic, and Automated Validation of Internet Security Protocols and Applications (AVISPA) to prove the security of the proposed scheme. Furthermore, we compare the computation and communication cost comparisons of the proposed scheme with the other related schemes. The results show that the proposed scheme is secure and efficient for UAM environments.

키워드

Authentication; Handover; Security; Transportation; Elliptic curve cryptography; Autonomous aerial vehicles; Computational modeling; Urban air mobility; handover; authentication; BAN logic; RoR model; AVISPA; PROTOCOL; INTERNET; PRIVACY
제목
Design of Secure Handover Authentication Scheme for Urban Air Mobility Environments
저자
Kwon, Deokkyu; Park, Yohan; Son, Seunghwan; Kim, Hyungpyo; Park, Youngho; Lee, Sangwoo; Jeon, Yongsung
DOI
10.1109/ACCESS.2022.3168843
발행일
2022
유형
Article
저널명
IEEE Access
권
10
페이지
42529 ~ 42541