International LDACS Security Validation Activities -A Cooperation Effort between DLR and ENRI

Nils Mäurer, Thomas Ewert, L. Jansen, T. Gräupl, K. Morioka, C. Schmitt
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引用次数: 2

Abstract

The L-Band Digital Aeronautical Communications System (LDACS) is a possible successor of the VHF Datalink mode 2 (VDLm2) for continental aeronautical communications. It is a cellular broadband digital data link system, foreseen for regularity-of-flight and safety-communications. As of 2023, LDACS has successfully been flight trialled numerous times, the final Standards and Recommended Practices (SARPS) have been endorsed by ICAO and LDACS has been introduced to the Internet community in the form of an informational Request For Comments (RFC). LDACS will support IPv6 based digital voice, Aeronautical Telecommunications Network (ATN)/Internet Protocol Suite (IPS) traffic and enable multiple new applications such as 4D trajectories, secure Ground Based Augmentation System (GBAS), Alternative Positioning Navigation and Timing (APNT) and secondary surveillance capabilities.Any newly developed critical infrastructures system must provide strong cybersecurity. This is especially true for system handling safety-critical data from a range of applications. As such, a dedicated cybersecurity architecture for LDACS has been developed and is part of the LDACS standard. In cooperation with the Electronic Navigation Research Institute (ENRI), the German Aerospace Center (DLR) demonstrated and evaluated the main features of the cybersecurity architecture: the Mutual Authentication and Key Establishment (MAKE) protocol and user-data protection. The objective of this paper is to provide a detailed insight into the security measures and present the LDACS security validation results based on real radio hardware.
国际LDACS安全验证活动——DLR与ENRI的合作
l波段数字航空通信系统(LDACS)是用于大陆航空通信的VHF数据链模式2 (VDLm2)的可能继承者。它是一种蜂窝宽带数字数据链系统,可用于飞行规律和安全通信。截至2023年,LDACS已成功进行了多次飞行试验,最终的标准和建议措施(SARPS)已得到国际民航组织的认可,LDACS已以征求意见征询(RFC)的形式介绍给互联网社区。LDACS将支持基于IPv6的数字语音、航空电信网络(ATN)/互联网协议套件(IPS)流量,并支持多种新应用,如4D轨迹、安全地面增强系统(GBAS)、替代定位导航和定时(APNT)以及二次监视能力。任何新开发的关键基础设施系统都必须提供强大的网络安全。对于处理来自各种应用程序的安全关键数据的系统尤其如此。因此,专门用于LDACS的网络安全体系结构已经被开发出来,并成为LDACS标准的一部分。德国航空航天中心(DLR)与电子导航研究所(ENRI)合作,演示并评估了网络安全架构的主要特征:相互认证和密钥建立(MAKE)协议和用户数据保护。本文的目的是提供对安全措施的详细见解,并给出基于真实无线电硬件的LDACS安全验证结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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