Falsification of Multiple Requirements for Cyber-Physical Systems Using Online Generative Adversarial Networks and Multi-Armed Bandits

Jarkko Peltomäki*, Ivan Porres

*Korresponderande författare för detta arbete

Forskningsoutput: Kapitel i bok/konferenshandlingKonferensbidragVetenskapligPeer review

3 Citeringar (Scopus)

Sammanfattning

We consider the problem of falsifying safety requirements of Cyber-Physical Systems expressed in signal temporal logic (STL). This problem can be turned into an optimization problem via STL robustness functions. In this paper, our focus is in falsifying systems with multiple requirements. We propose to solve such conjunctive requirements using online generative adversarial networks (GANs) as test generators. Our main contribution is an algorithm which falsifies a conjunctive requirement ϕ1 ∧•⋯•∧ϕn by using a GAN for each requirement ϕi separately. Using ideas from multi-armed bandit algorithms, our algorithm only trains a single GAN at every step, which saves resources. Our experiments indicate that, in addition to saving resources, this multi-armed bandit algorithm can falsify requirements with fewer number of executions on the system under test when compared to (i) an algorithm training a single GAN for the complete conjunctive requirement and (ii) an algorithm always training n GANs at each step.

OriginalspråkEngelska
Titel på värdpublikation2022 IEEE International Conference on Software Testing, Verification and Validation Workshops (ICSTW)
FörlagIEEE
Sidor21-28
ISBN (tryckt) 978-1-6654-9628-5
DOI
StatusPublicerad - 2022
MoE-publikationstypA4 Artikel i en konferenspublikation
Evenemang IEEE International Conference on Software Testing Verification and Validation Workshop, ICSTW -
Varaktighet: 4 apr. 202213 apr. 2022

Publikationsserier

NamnIEEE International Conference on Software Testing, Verification and Validation Workshops
ISSN (tryckt)2159-4848

Konferens

Konferens IEEE International Conference on Software Testing Verification and Validation Workshop, ICSTW
Förkortad titelICSTW
Period04/04/2213/04/22

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