使用多级互联PUF的物联网中高效安全的组密钥管理

Hongxiang Gu, M. Potkonjak
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引用次数: 17

摘要

安全的群体通信对于物联网(IoT)的广泛应用至关重要。随着物联网技术的发展,与隐私敏感环境中基于物联网的应用中面向组的通信相关的安全问题已经成为人们关注的主要问题。不幸的是,许多物联网设备的设计都是便携轻便的;因此,它们的功能,包括安全模块,受到有限的能源资源(例如,电池容量)的严重限制。为了解决这些问题,我们提出了一种基于新型物理不可克隆功能(PUF)设计的组密钥管理方案:多级互联PUF (MIPUF),以保护能量受限环境下的组通信。我们的设计能够安全有效地执行密钥分发、密钥存储和密钥更新等密钥管理任务。实验结果表明,与最先进的基于椭圆曲线加密(ECC)的密钥管理方案相比,我们的设计在全球范围内平均节省了47.33%的能源。
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Efficient and Secure Group Key Management in IoT using Multistage Interconnected PUF
Secure group-oriented communication is crucial to a wide range of applications in Internet of Things (IoT). Security problems related to group-oriented communications in IoT-based applications placed in a privacy-sensitive environment have become a major concern along with the development of the technology. Unfortunately, many IoT devices are designed to be portable and light-weight; thus, their functionalities, including security modules, are heavily constrained by the limited energy resources (e.g., battery capacity). To address these problems, we propose a group key management scheme based on a novel physically unclonable function (PUF) design: multistage interconnected PUF (MIPUF) to secure group communications in an energy-constrained environment. Our design is capable of performing key management tasks such as key distribution, key storage and rekeying securely and efficiently. We show that our design is secure against multiple attack methods and our experimental results show that our design saves 47.33% of energy globally comparing to state-of-the-art Elliptic-curve cryptography (ECC)-based key management scheme on average.
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