Intrusion Resilience Systems for Modern Vehicles

Ali Shoker, Vincent Rahli, Jérémie Decouchant, Paulo Esteves-Veríssimo

Research output: Chapter in Book/Conference proceedings/Edited volumeConference contributionScientificpeer-review

1 Citation (Scopus)
10 Downloads (Pure)

Abstract

Current vehicular Intrusion Detection and Prevention Systems either incur high false-positive rates or do not capture zero-day vulnerabilities, leading to safety-critical risks. In addition, prevention is limited to few primitive options like dropping network packets or extreme options, e.g., ECU Bus-off state. To fill this gap, we introduce the concept of vehicular Intrusion Resilience Systems (IRS) that ensures the resilience of critical applications despite assumed faults or zero-day attacks, as long as threat assumptions are met. IRS enables running a vehicular application in a replicated way, i.e., as a Replicated State Machine, over several ECUs, and then requiring the replicated processes to reach a form of Byzantine agreement before changing their local state. Our study rides the mutation of modern vehicular environments, which are closing the gap between simple and resource-constrained "real-time and embedded systems", and complex and powerful "information technology" ones. It shows that current vehicle (e.g., Zonal) architectures and networks are becoming plausible for such modular fault and intrusion tolerance solutions—deemed too heavy in the past. Our evaluation on a simulated Automotive Ethernet network running two state-of-the-art agreement protocols (Damysus and Hotstuff) shows that the achieved latency and throughout are feasible for many Automotive applications.
Original languageEnglish
Title of host publicationProceedings of the 2023 IEEE 97th Vehicular Technology Conference (VTC2023-Spring)
Place of PublicationPiscataway
PublisherIEEE
Pages1-7
Number of pages7
ISBN (Electronic)979-8-3503-1114-3
ISBN (Print)979-8-3503-1115-0
DOIs
Publication statusPublished - 2023
Event 2023 IEEE 97th Vehicular Technology Conference (VTC2023-Spring) - Florence, Italy
Duration: 20 Jun 202323 Jun 2023
Conference number: 97th

Publication series

NameIEEE Vehicular Technology Conference
Volume2023-June
ISSN (Print)1550-2252

Conference

Conference 2023 IEEE 97th Vehicular Technology Conference (VTC2023-Spring)
Country/TerritoryItaly
City Florence
Period20/06/2323/06/23

Bibliographical note

Green Open Access added to TU Delft Institutional Repository 'You share, we take care!' - Taverne project https://www.openaccess.nl/en/you-share-we-take-care
Otherwise as indicated in the copyright section: the publisher is the copyright holder of this work and the author uses the Dutch legislation to make this work public.

Keywords

  • Intrusion resilience
  • fault masking
  • cybersecurity
  • Byzantine agreement
  • automotive

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