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iCTGAN--An Attack Mitigation Technique for Random-vector Attack on Accelerometer-based Gait Authentication Systems

Abstract

A recent study showed that commonly (vanilla) studied implementations of accelerometer-based gait authentication systems (vvABGait) are susceptible to random-vector attack. The same study proposed a beta noise-assisted implementation (β\betaABGait) to mitigate the attack. In this paper, we assess the effectiveness of the random-vector attack on both vvABGait and β\betaABGait using three accelerometer-based gait datasets. In addition, we propose iiABGait, an alternative implementation of ABGait, which uses a Conditional Tabular Generative Adversarial Network. Then we evaluate iiABGait's resilience against the traditional zero-effort and random-vector attacks. The results show that iiABGait mitigates the impact of the random-vector attack to a reasonable extent and outperforms β\betaABGait in most experimental settings.

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