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Journal ArticleDOI

Hardware Trojan Attacks: Threat Analysis and Countermeasures

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TLDR
The threat of hardware Trojan attacks is analyzed; attack models, types, and scenarios are presented; different forms of protection approaches are discussed; and emerging attack modes, defenses, and future research pathways are described.
Abstract
Security of a computer system has been traditionally related to the security of the software or the information being processed. The underlying hardware used for information processing has been considered trusted. The emergence of hardware Trojan attacks violates this root of trust. These attacks, in the form of malicious modifications of electronic hardware at different stages of its life cycle, pose major security concerns in the electronics industry. An adversary can mount such an attack with an objective to cause operational failure or to leak secret information from inside a chip-e.g., the key in a cryptographic chip, during field operation. Global economic trend that encourages increased reliance on untrusted entities in the hardware design and fabrication process is rapidly enhancing the vulnerability to such attacks. In this paper, we analyze the threat of hardware Trojan attacks; present attack models, types, and scenarios; discuss different forms of protection approaches, both proactive and reactive; and describe emerging attack modes, defenses, and future research pathways.

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Citations
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Journal ArticleDOI

Resilient Embedded Systems Designs via on the Fly Generation of Adaptive Degenerate Components Using Machine Learning

TL;DR: In this paper, an adaptive component-level degeneracy (ACD) model is proposed to learn the functionality of an SDR component. And the model can detect when the component is compromised and mitigate the issue with its own output.
Proceedings ArticleDOI

On the Detection and Circumvention of Bitstream-level Trojans in FPGAs

TL;DR: This work introduces a first-ever successful pre-configuration countermeasure against the “Malicious LUT”-hardware Trojan, by employing bitstream-level Proof-Carrying Hardware (PCH) and presents the complete design-and-verification flow for iCE40 FPGAs.
Proceedings ArticleDOI

Automated Detection of Hardware Trojans using Power Side-Channel Analysis and VGG-Net

TL;DR: In this paper , the authors proposed a method for detecting HTs based on the VGG-Net architecture, which achieved an accuracy of 93%, 87%, 100, 100, and 76% on the Advanced Encryption Standard (AES) benchmarks of T500, T600, T700, T800, and T1600.
References
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Journal ArticleDOI

A Survey of Hardware Trojan Taxonomy and Detection

TL;DR: A classification of hardware Trojans and a survey of published techniques for Trojan detection are presented.
Proceedings ArticleDOI

Trojan Detection using IC Fingerprinting

TL;DR: These results show that Trojans that are 3-4 orders of magnitude smaller than the main circuit can be detected by signal processing techniques and provide a starting point to address this important problem.
Proceedings ArticleDOI

Hardware Trojan detection using path delay fingerprint

TL;DR: A new behavior-oriented category method is proposed to divide trojans into two categories: explicit payload trojan and implicit payloadtrojan, which makes it possible to construct trojan models and then lower the cost of testing.
Journal ArticleDOI

A taxonomy of computer program security flaws

TL;DR: This survey provides a taxonomy for computer program security flaws, with an Appendix that documents 50 actual security flaws that provide a good introduction to the characteristics of security flaws and how they can arise.
Journal ArticleDOI

Trustworthy Hardware: Identifying and Classifying Hardware Trojans

TL;DR: A proposed new hardware Trojan taxonomy provides a first step in better understanding existing and potential threats.
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