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Guessing Smart: Biased Sampling for Efficient Black-Box Adversarial Attacks

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arxiv 1812.09803 v3 pith:G2WTKPPH submitted 2018-12-24 stat.ML cs.CRcs.CVcs.LG

Guessing Smart: Biased Sampling for Efficient Black-Box Adversarial Attacks

classification stat.ML cs.CRcs.CVcs.LG
keywords attacksadversarialattackbiasedbiasesblack-boxefficientimage
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We consider adversarial examples for image classification in the black-box decision-based setting. Here, an attacker cannot access confidence scores, but only the final label. Most attacks for this scenario are either unreliable or inefficient. Focusing on the latter, we show that a specific class of attacks, Boundary Attacks, can be reinterpreted as a biased sampling framework that gains efficiency from domain knowledge. We identify three such biases, image frequency, regional masks and surrogate gradients, and evaluate their performance against an ImageNet classifier. We show that the combination of these biases outperforms the state of the art by a wide margin. We also showcase an efficient way to attack the Google Cloud Vision API, where we craft convincing perturbations with just a few hundred queries. Finally, the methods we propose have also been found to work very well against strong defenses: Our targeted attack won second place in the NeurIPS 2018 Adversarial Vision Challenge.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Stateful Detection of Black-Box Adversarial Attacks

    cs.CR 2019-07 unverdicted novelty 7.0

    The paper argues for stateful defenses over stateless ones to detect adversarial example generation via query history and introduces query blinding as a counter-attack.