CAN 통신 메시지 내의 Checksum Signal 식별 방법 연구

Vol. 34, No. 4, pp. 747-761, 8월. 2024
10.13089/JKIISC.2024.34.4.747, Full Text:
Keywords: Vehicle Security, CAN, CAN reverse engineering, Checksum, Checksum Calculation
Abstract

Recently, modern vehicles have been controlled by Electronic Control Units (ECUs), by which the safety and convenience of drivers are highly improved. It is known that a luxury vehicle has more than 100 ECUs to electronically control its function. However, the modern vehicles are getting targeted by cyber attacks because of this computer-based automotive system. To address the cyber attacks, automotive manufacturers have been developing some methods for securing their vehicles, such as automotive Intrusion Detection System (IDS). This development is only allowed to the automotive manufacturers because they have databases for their in-vehicle network (i.e., DBC Format File) which are highly confidential. This confidentiality poses a significant challenge to external researchers who attempt to conduct automotive security researches. To handle this restricted information, in this paper, we propose a method to partially understand the DBC Format File by analyzing in-vehicle network traffics. Our method is designed to analyze Controller Area Network (CAN) traffics so that checksum signals are identified in CAN Frame Data Field. Also, our method creates a Lookup Set by which a checksum signal is correctly estimated for a given message. We validate our method with the publicly accessible dataset as well as one from a real vehicle.

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Cite this article
[IEEE Style]
이경연, 이동훈, 최원석, 김형훈, "CAN 통신 메시지 내의 Checksum Signal 식별 방법 연구," Journal of The Korea Institute of Information Security and Cryptology, vol. 34, no. 4, pp. 747-761, 2024. DOI: 10.13089/JKIISC.2024.34.4.747.

[ACM Style]
이경연, 이동훈, 최원석, and 김형훈. 2024. CAN 통신 메시지 내의 Checksum Signal 식별 방법 연구. Journal of The Korea Institute of Information Security and Cryptology, 34, 4, (2024), 747-761. DOI: 10.13089/JKIISC.2024.34.4.747.