CLEANN: Accelerated Trojan Shield for Embedded Neural Networks

September 04, 2020 ยท Declared Dead ยท ๐Ÿ› 2020 IEEE/ACM International Conference On Computer Aided Design (ICCAD)

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Authors Mojan Javaheripi, Mohammad Samragh, Gregory Fields, Tara Javidi, Farinaz Koushanfar arXiv ID 2009.02326 Category cs.LG: Machine Learning Cross-listed cs.AR, cs.CR, cs.CV, stat.ML Citations 48 Venue 2020 IEEE/ACM International Conference On Computer Aided Design (ICCAD) Last Checked 6 months ago
Abstract
We propose CLEANN, the first end-to-end framework that enables online mitigation of Trojans for embedded Deep Neural Network (DNN) applications. A Trojan attack works by injecting a backdoor in the DNN while training; during inference, the Trojan can be activated by the specific backdoor trigger. What differentiates CLEANN from the prior work is its lightweight methodology which recovers the ground-truth class of Trojan samples without the need for labeled data, model retraining, or prior assumptions on the trigger or the attack. We leverage dictionary learning and sparse approximation to characterize the statistical behavior of benign data and identify Trojan triggers. CLEANN is devised based on algorithm/hardware co-design and is equipped with specialized hardware to enable efficient real-time execution on resource-constrained embedded platforms. Proof of concept evaluations on CLEANN for the state-of-the-art Neural Trojan attacks on visual benchmarks demonstrate its competitive advantage in terms of attack resiliency and execution overhead.
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