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Performance-Driven Metamorphic Testing of Cyber-Physical Systems.PDF (352.9Kb)
Performance-Driven Metamorphic Testing of Cyber-Physical Systems.PDF (396.8Kb)
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Title
Performance-Driven Metamorphic Testing of Cyber-Physical Systems
Author
Ayerdi, Jon
Arrieta, Aitor
Sagardui, Goiuria
Author (from another institution)
Valle Entrena, Pablo
Segura, Sergio
Arratibel, Maite
Research Group
Ingeniería del software y sistemas
Other institutions
Universidad de Sevilla
Orona S.Coop.
Version
Postprint
Rights
© 2022 IEEE
Access
Embargoed access
URI
https://hdl.handle.net/20.500.11984/5824
Publisher’s version
https://dx.doi.org/10.1109/TR.2022.3193070
Published at
IEEE Transactions on Reliability  IEEE. August, 2022
Publisher
IEEE
Keywords
Elevators
testing
Materials requirements planning
Control systems ... [+]
Elevators
testing
Materials requirements planning
Control systems
Computer bugs
Meteorology
Mathematical models [-]
Abstract
Cyber-physical systems (CPSs) are a new generation of systems, which integrate software with physical processes. The increasing complexity of these systems, combined with the uncertainty in their inte ... [+]
Cyber-physical systems (CPSs) are a new generation of systems, which integrate software with physical processes. The increasing complexity of these systems, combined with the uncertainty in their interactions with the physical world, makes the definition of effective test oracles especially challenging, facing the well-known test oracle problem. Metamorphic testing has shown great potential to alleviate the test oracle problem by exploiting the relations among the inputs and outputs of different executions of the system, so-called metamorphic relations (MRs). In this article, we propose an MR pattern called PV for the identification of performance-driven MRs, and we show its applicability in two CPSs from different domains, which are automated navigation systems and elevator control systems. For the evaluation, we assessed the effectiveness of this approach for detecting failures in an open-source simulation-based autonomous navigation system, as well as in an industrial case study from the elevation domain. We derive concrete MRs based on the PV pattern for both case studies, and we evaluate their effectiveness with seeded faults. Results show that the approach is effective at detecting over 88% of the seeded faults, while keeping the ratio of FPs at 4% or lower. [-]
xmlui.dri2xhtml.METS-1.0.item-sponsorship
Comisión Europea
xmlui.dri2xhtml.METS-1.0.item-projectID
info:eu-repo/grantAgreement/EC/H2020/871319/EU/Design-Operation Continuum Methods for Testing and Deployment under Unforeseen Conditions for Cyber-Physical Systems of Systems/ADEPTNESS
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