Cyber-Security Internals of a Skoda Octavia vRS: A Hands on Approach

Urquhart, Colin; Bellekens, Xavier; Tachtatzis, Christos; Atkinson, Robert; Hanan Hindy; Seeam, Amar;

Abstract


The convergence of information technology and vehicular technologies are a growing paradigm, allowing information to be sent by and to vehicles. This information can further be processed by the Electronic Control Unit (ECU) and the Controller Area Network (CAN) for in-vehicle communications or through a mobile phone or server for out-vehicle communication. Information sent by or to the vehicle can be life-critical (e.g. breaking, acceleration, cruise control, emergency communication, etc ...). As vehicular technology advances, in-vehicle networks are connected to external networks through 3 and 4G mobile networks, enabling manufacturer and customer monitoring of different aspects of the car. While these services provide valuable information, they also increase the attack surface of the vehicle, and can enable long and short range attacks. In this manuscript, we evaluate the security of the 2017 Skoda Octavia vRS 4x4. Both physical and remote attacks are considered, the key fob rolling code is successfully compromised, privacy attacks are demonstrated through the infotainment system, the Volkswagen Transport Protocol 2.0 is reverse engineered. Additionally, in-car attacks are highlighted and described, providing an overlook of potentially deadly threats by modifying ECU parameters and components enabling digital forensics investigation are identified.


Other data

Title Cyber-Security Internals of a Skoda Octavia vRS: A Hands on Approach
Authors Urquhart, Colin; Bellekens, Xavier; Tachtatzis, Christos; Atkinson, Robert; Hanan Hindy ; Seeam, Amar
Keywords Cyber-security;digital forensics;physical attacks;privacy attacks;remote attacks;reverse engineering;Skoda Octavia;Computer Science;Cryptography and Security;Computer Science;Cryptography and Security
Issue Date 1-Jan-2019
Publisher IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Journal IEEE Access 
Volume 7
Start page 146057
End page 146069
Description 
13 pages, 27 figures
ISSN 2169-3536
DOI 10.1109/ACCESS.2019.2943837
Scopus ID 2-s2.0-85078894190
Web of science ID WOS:000614765300015

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