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A Multi-Scale Isolation Forest Approach for Real-Time Detection and Filtering of FGSM Adversarial Attacks in Video Streams of Autonomous Vehicles

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arxiv 2502.16044 v1 pith:24IAQRKF submitted 2025-02-22 cs.CV cs.CRcs.LG

classification cs.CVcs.CRcs.LG
keywords imagesadversarialattacksfgsmapproachdnnsgradientmethod
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

Deep Neural Networks (DNNs) have demonstrated remarkable success across a wide range of tasks, particularly in fields such as image classification. However, DNNs are highly susceptible to adversarial attacks, where subtle perturbations are introduced to input images, leading to erroneous model outputs. In today's digital era, ensuring the security and integrity of images processed by DNNs is of critical importance. One of the most prominent adversarial attack methods is the Fast Gradient Sign Method (FGSM), which perturbs images in the direction of the loss gradient to deceive the model. This paper presents a novel approach for detecting and filtering FGSM adversarial attacks in image processing tasks. Our proposed method evaluates 10,000 images, each subjected to five different levels of perturbation, characterized by $\epsilon$ values of 0.01, 0.02, 0.05, 0.1, and 0.2. These perturbations are applied in the direction of the loss gradient. We demonstrate that our approach effectively filters adversarially perturbed images, mitigating the impact of FGSM attacks. The method is implemented in Python, and the source code is publicly available on GitHub for reproducibility and further research.

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  1. Robust Model Predictive Control Design for Autonomous Vehicles with Perception-based Observers

    cs.RO 2025-09 conditional novelty 5.0 of 10

    A perception-aware tube MPC that treats CNN-based perception noise as a bounded zonotope and is solved as an LP, with hardware validation on a mobile robot.

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