Cyberattack Models for Ship Equipment Based on the MITRE ATT&CK Framework.
Yonghyun Jo1, Oongjae Choi1, Jiwoon You1
1DSLAB Company Ltd., Seoul 08511, Korea.
Sensors (Basel, Switzerland)
|March 10, 2022
Summary
This study introduces a cyberattack model for ships using the MITRE ATT&CK framework. It analyzes maritime cyber threats and vulnerabilities to propose essential defense measures for navigation and control systems.
Area of Science:
- Maritime Cybersecurity
- Information and Communication Technology (ICT) Systems
- Cyber-Physical Systems Security
Background:
- Modern ships increasingly rely on interconnected ICT systems for critical operations like navigation and cargo management.
- Cyberattacks on these systems pose significant physical risks, including vessel sinking and operational failure.
- Existing research on maritime cybersecurity and dedicated cyberattack models is limited, highlighting a critical knowledge gap.
Purpose of the Study:
- To establish a comprehensive cyberattack model specifically for maritime environments.
- To analyze the tactics, techniques, and procedures (TTPs) employed in ship system cyberattacks.
- To identify essential defensive measures against identified threats and vulnerabilities.
Main Methods:
- Adaptation of the MITRE ATT&CK framework for a maritime context.
- Analysis of historical hacking cases and vulnerability research related to ship systems.
- Development of a ship cyberattack model to characterize system vulnerabilities and threats.
Main Results:
- Identification of key characteristics across different attack phases within maritime cyber incidents.
- Characterization of systems crucial for ship navigation, communication, and control.
- A foundational understanding of prevalent threats and vulnerabilities in shipboard ICT infrastructure.
Conclusions:
- The proposed cyberattack model provides a structured approach to understanding and mitigating maritime cyber risks.
- The study offers essential insights into defense strategies for critical ship systems.
- Results are expected to guide future research and development in naval cybersecurity.
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