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Time-Distributed Backdoor Attacks on Federated Spiking Learning

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arxiv 2402.02886 v1 pith:PSRDSGTO submitted 2024-02-05 cs.CR cs.CVcs.NE

Time-Distributed Backdoor Attacks on Federated Spiking Learning

classification cs.CR cs.CVcs.NE
keywords snnsattackattacksbackdoordatadevicesevaluatefederated
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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This paper investigates the vulnerability of spiking neural networks (SNNs) and federated learning (FL) to backdoor attacks using neuromorphic data. Despite the efficiency of SNNs and the privacy advantages of FL, particularly in low-powered devices, we demonstrate that these systems are susceptible to such attacks. We first assess the viability of using FL with SNNs using neuromorphic data, showing its potential usage. Then, we evaluate the transferability of known FL attack methods to SNNs, finding that these lead to suboptimal attack performance. Therefore, we explore backdoor attacks involving single and multiple attackers to improve the attack performance. Our primary contribution is developing a novel attack strategy tailored to SNNs and FL, which distributes the backdoor trigger temporally and across malicious devices, enhancing the attack's effectiveness and stealthiness. In the best case, we achieve a 100 attack success rate, 0.13 MSE, and 98.9 SSIM. Moreover, we adapt and evaluate an existing defense against backdoor attacks, revealing its inadequacy in protecting SNNs. This study underscores the need for robust security measures in deploying SNNs and FL, particularly in the context of backdoor attacks.

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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. Temporal Poisoning: Clean-Label Backdoors via Event Redistribution in SNNs

    cs.CR 2026-07 conditional novelty 6.0

    Retiming target-class neuromorphic events installs clean-label SNN backdoors with ASR up to 1.0 while leaving rate frames identical, and rate-collapsed defenses miss them.