Journal Article10.1109/JIOT.2017.2703088
Mutual Authentication in IoT Systems Using Physical Unclonable Functions
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TL;DR: A security and performance analysis of the protocols shows that they are not only robust against different types of attacks, but are also very efficient in terms of computation, memory, energy, and communication overhead.
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Abstract: The Internet of Things (IoT) represents a great opportunity to connect people, information, and things, which will in turn cause a paradigm shift in the way we work, interact, and think. IoT devices are usually small, low cost, and have limited resources, which makes them vulnerable to physical, side-channel, and cloning attacks. Therefore, any protocol designed for IoT systems should not only be secure but also efficient in terms of usage of chip area, energy, storage, and processing. To address this issue, we present light-weight mutual authentication protocols for IoT systems based on physical unclonable functions. Protocols for two scenarios are presented, one when an IoT device and server wish to communicate and the other when two IoT devices want to establish a session. A security and performance analysis of the protocols shows that they are not only robust against different types of attacks, but are also very efficient in terms of computation, memory, energy, and communication overhead. The proposed protocols are suitable for real time applications and are an attractive choice for implementing mutual authentication in IoT systems.
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Citations
A Survey on IoT Security: Application Areas, Security Threats, and Solution Architectures
TL;DR: A detailed review of the security-related challenges and sources of threat in the IoT applications is presented and four different technologies, blockchain, fog computing, edge computing, and machine learning, to increase the level of security in IoT are discussed.
A Survey of Internet of Things (IoT) Authentication Schemes
TL;DR: This paper provides a near complete and up-to-date view of the IoT authentication field and provides a summary of a large range of authentication protocols proposed in the literature, using a multi-criteria classification previously introduced in this work.
398
Lightweight and Privacy-Preserving Two-Factor Authentication Scheme for IoT Devices
Prosanta Gope,Biplab Sikdar +1 more
TL;DR: This paper presents a lightweight and privacy-preserving two-factor authentication scheme for IoT devices, where physically uncloneable functions have been considered as one of the authentication factors and is very efficient in terms of computational efficiently.
Building PUF Based Authentication and Key Exchange Protocol for IoT Without Explicit CRPs in Verifier Database
Urbi Chatterjee,Vidya Govindan,Rajat Sadhukhan,Debdeep Mukhopadhyay,Rajat Subhra Chakraborty,Debashis Mahata,Mukesh Manjunath Prabhu +6 more
TL;DR: This paper develops an authentication and key exchange protocol by combining the ideas of Identity based Encryption, PUFs and Key-ed Hash Function to show that this combination can help to do away with the requirement to store the secret challenge-response pair explicitly at the verifier end.
280
A decentralized lightweight blockchain-based authentication mechanism for IoT systems
Umair Khalid,Muhammad Asim,Thar Baker,Patrick C. K. Hung,Muhammad Adnan Tariq,Laura Rafferty +5 more
TL;DR: A decentralized authentication and access control mechanism is proposed for lightweight IoT devices and is applicable to a large number of scenarios and demonstrates a superior performance when compared to a state-of-the-art blockchain-based authentication technique.
266
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