A Lightweight Cryptographic Protocol with Certificateless Signature for the Internet of Things

A Lightweight Cryptographic Protocol with Certificateless Signature for the Internet of Things
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DOI:
10.1145/3301306
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发表时间:
2019-04
期刊:
ACM Transactions on Embedded Computing Systems (TECS)
影响因子:
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通讯作者:
Lu Zhou;Chunhua Su;Kuo-Hui Yeh
Lu Zhou;Chunhua Su;Kuo-Hui Yeh
中科院分区:
其他
文献类型:
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作者:
Lu Zhou;Chunhua Su;Kuo-Hui Yeh

文献摘要

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随着智能设备的普及,物联网的快速发展和泛在应用的显著进步。设计新型的物联网兼容加密协议已经成为一种更流行的方式来保护基于物联网的应用程序。为物联网设备实现轻量级和安全的加密协议的挑战一直备受关注。在这项研究中,我们提出了一个集成无证书签名和双线性配对密码原语的轻量级密码协议。在提议的协议中,我们优雅地改进了流程,以在安全操作期间考虑计算有限的物联网设备。进行了严格的安全分析,以保证所提出的加密协议的鲁棒性。此外,我们演示了一个彻底的性能评估,其中基于物联网的测试平台,即树莓派,被模拟为我们提出的加密协议实现的底层平台。实验结果表明了该协议的实用性。
The universality of smart-devices has brought rapid development and the significant advancement of ubiquitous applications for the Internet of Things (IoT). Designing new types of IoT-compatible cryptographic protocols has become a more popular way to secure IoT-based applications. Significant attention has been dedicated to the challenge of implementing a lightweight and secure cryptographic protocol for IoT devices. In this study, we propose a lightweight cryptographic protocol integrating certificateless signature and bilinear pairing crypto-primitives. In the proposed protocol, we elegantly refine the processes to account for computation-limited IoT devices during security operations. Rigorous security analyses are conducted to guarantee the robustness of the proposed cryptographic protocol. In addition, we demonstrate a thorough performance evaluation, where an IoT-based test-bed, i.e., the Raspberry PI, is simulated as the underlying platform of the implementation of our proposed cryptographic protocol. The results show the practicability of the proposed protocol.