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Main Authors: Ren, Xiongpeng, Cao, Jin, Li, Hui, Zhang, Yinghui
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2404.02425
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author Ren, Xiongpeng
Cao, Jin
Li, Hui
Zhang, Yinghui
author_facet Ren, Xiongpeng
Cao, Jin
Li, Hui
Zhang, Yinghui
contents AIoT devices have attracted significant attention within the 3GPP organization. These devices, distinguished from conventional IoT devices, do not rely on additional batteries or have extremely small battery capacities, offering features such as low cost, easy deployment, and maintenance-free operation. Authentication and secure transmission are fundamental security requirements for AIoT devices. However, existing standard security mechanisms are not specifically designed for AIoT devices due to their complex key hierarchies and multi-round interactions, making them unsuitable. Besides, AIoT devices would have more various communication topologies. Therefore, we propose dedicated ultra-lightweight access authentication protocols based on various technologies and algorithms to serve as a forward-looking reference for future research and standardization. Analysis and simulation experiments using chips that closely resemble real AIoT devices, demonstrate that the existing standard protocols are indeed not suitable for such devices, and our protocols outperform existing standard protocols in terms of computational time and energy consumption. After the successful execution of proposed protocols, they can achieve secure transmission of application data, striking a balance between performance and security.
format Preprint
id arxiv_https___arxiv_org_abs_2404_02425
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Novel_Authentication_Protocols_Tailored_for_Ambient_IoT_Devices_in_3GPP_5G_Networks
Ren, Xiongpeng
Cao, Jin
Li, Hui
Zhang, Yinghui
Cryptography and Security
AIoT devices have attracted significant attention within the 3GPP organization. These devices, distinguished from conventional IoT devices, do not rely on additional batteries or have extremely small battery capacities, offering features such as low cost, easy deployment, and maintenance-free operation. Authentication and secure transmission are fundamental security requirements for AIoT devices. However, existing standard security mechanisms are not specifically designed for AIoT devices due to their complex key hierarchies and multi-round interactions, making them unsuitable. Besides, AIoT devices would have more various communication topologies. Therefore, we propose dedicated ultra-lightweight access authentication protocols based on various technologies and algorithms to serve as a forward-looking reference for future research and standardization. Analysis and simulation experiments using chips that closely resemble real AIoT devices, demonstrate that the existing standard protocols are indeed not suitable for such devices, and our protocols outperform existing standard protocols in terms of computational time and energy consumption. After the successful execution of proposed protocols, they can achieve secure transmission of application data, striking a balance between performance and security.
title Novel_Authentication_Protocols_Tailored_for_Ambient_IoT_Devices_in_3GPP_5G_Networks
topic Cryptography and Security
url https://arxiv.org/abs/2404.02425