A Security Enhanced Chaotic-Map-Based Authentication Protocol for Internet of Drones

dc.contributor.authorMahmood, Khalid
dc.contributor.authorGhaffar, Zahid
dc.contributor.authorFarooq, Muhammad
dc.contributor.authorYahya, Khalid
dc.contributor.authorKumar, Ashok
dc.date.accessioned2024-08-27T08:10:17Z
dc.date.available2024-08-27T08:10:17Z
dc.date.issued2024-06-15
dc.descriptionT HE Internet of Drones (IoD) plays a pivotal role across diverse sectors, with applications ranging from military surveillance and logistical operations to agricultural monitoring. These drones, often equipped with advanced sensors, facilitate real-time data collection and remote operation, primarily through wireless technologies like Bluetooth and WiFi. While IoD offers substantial benefits, such as enhanced efficiency and data accuracy, challenges include security risks and potential privacy violations.
dc.description.abstractThe Internet of Drones (IoD) extends the capabilities of unmanned aerial vehicles, enabling them to participate in a connected network. In IoD infrastructure, drones communicate not only among themselves but also with users and a control center. This interconnected communication framework holds promise for various applications, from collaborative decision-making to real-time data exchange. However, the expansion of communication in IoD also introduces new challenges, particularly in terms of security, privacy and authentication. Unfortunately, the current authentication protocols are inadequate in offering robust security features against various attacks in the IoD environment. To address these security issues and limitations, we proposed a secure protocol for the IoD environment using chaotic maps and hash functions. In addition, we also employed a physically unclonable function in the development of the proposed protocol. We assess the security of the protocol through both informal and formal security analysis. The formal security analysis is conducted through a widely used random or real (RoR) model. The informal analysis shows the rigorous security features against various attacks, such as masquerading, anonymity violation, and physical cloning attacks. Moreover, we compare the performance of the devised protocol with similar existing protocols across important performance parameters, such as communication overhead, computation overhead, and security features. The devised protocol provides a 67.86% and 17.80% reduction in computation and communication overheads, respectively, as compared to related protocols. The analysis demonstrates the proposed protocol’s capacity to support secure communication in the IoD environment and satisfy desirable security attributes. Keywords Anonymity, Authentication, Impersonation Attack, Mutual Authentication, Securityen
dc.identifier.citationMahmood, K., Ghaffar, Z., Farooq, M., Yahya, K., Das, A. K., & Chaudhry, S. A. (2024). A security enhanced chaotic-map based authentication protocol for internet of drones. IEEE Internet of Things Journal.
dc.identifier.doihttps://doi.org/10.1109/JIOT.2024.3379930
dc.identifier.urihttps://repository.adu.ac.ae/handle/1/6325
dc.language.isoen
dc.publisherInstitute of Electrical and Electronics Engineers Inc.
dc.titleA Security Enhanced Chaotic-Map-Based Authentication Protocol for Internet of Drones
dc.typeArticle

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