Multi-Device Security Application for Unmanned Surface and Aerial Systems

Drones Pub Date : 2024-05-15 DOI:10.3390/drones8050200
Andre Leon, Christopher Britt, Britta Hale
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Abstract

The use of autonomous and unmanned systems continues to increase, with uses spanning from package delivery to simple automation of tasks and from factory usage to defense industries and agricultural applications. With the proliferation of unmanned systems comes the question of how to secure the command-and-control communication links among such devices and their operators. In this work, we look at the use of the Messaging Layer Security (MLS) protocol, designed to support long-lived continuous sessions and group communication with a high degree of security. We build out MAUI—an MLS API for UxS Integration that provides an interface for the secure exchange of data between a ScanEagle unmanned aerial vehicle (UAV) and an unmanned surface vehicle (USV) in a multi-domain ad-hoc network configuration, and experiment on system limits such as the ciphersuite set-up time and message handling rates. The experiments in this work were conducted in virtual and physical environments between the UAV, USV, and a controller device (all of different platforms). Our results demonstrate the viability of capitalizing on MLS’s capabilities to securely and efficiently transmit data for distributed communication among various unmanned system platforms.
无人水面和航空系统的多设备安全应用
自主和无人系统的使用不断增加,其用途从包裹运送到简单的任务自动化,从工厂使用到国防工业和农业应用。随着无人系统的激增,如何确保此类设备与其操作员之间的指挥控制通信链路的安全也成了问题。在这项工作中,我们研究了消息层安全(MLS)协议的使用,该协议旨在支持具有高度安全性的长期连续会话和群组通信。我们构建了 MAUI--用于 UxS 集成的 MLS API,为 ScanEagle 无人机(UAV)和无人水面飞行器(USV)在多域 ad-hoc 网络配置中安全交换数据提供了接口,并对系统限制(如密码套件设置时间和消息处理率)进行了实验。这项工作中的实验是在无人机、USV 和控制器设备(均为不同平台)之间的虚拟和物理环境中进行的。我们的结果表明,利用 MLS 的功能在各种无人系统平台之间安全高效地传输分布式通信数据是可行的。
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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