A Security Framework for a Drone Delivery Service

Seung-Hyun Seo, Jongho Won, E. Bertino, Yousung Kang, Dooho Choi
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引用次数: 32

Abstract

Delivery drones are unmanned aerial vehicles (UAV) utilized to transport packages, food, medicine, or other goods. With high demand for a prompt and efficient delivery, a drone delivery system can be an effective solution for timely deliveries and especially for emergency management. However, current delivery drone systems lack crucial security functions. Drones may have to operate in unsupervised hostile areas, and therefore be vulnerable to physical capture in addition to conventional cyber attacks. A captured drone can be analyzed by a white-box attack model in which the attacker has full control over the execution environment of cryptographic modules in static and dynamic methods including all side-channel information. In this paper, we propose and evaluate a security framework which utilizes white-box cryptography in order to protect critical data and cryptographic keys in delivery drones from white-box attacks. The experimental results show that the proposed framework is cost effective in terms of resource usage and thus is suitable even for resource-limited UAV.
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无人机送货服务的安全框架
送货无人机是用于运输包裹、食品、药品或其他货物的无人驾驶飞行器(UAV)。由于对快速高效的送货要求很高,无人机送货系统可以成为及时送货,特别是应急管理的有效解决方案。然而,目前的送货无人机系统缺乏关键的安全功能。无人机可能必须在无人监督的敌对地区操作,因此除了常规的网络攻击外,还容易受到物理捕获。捕获的无人机可以通过白盒攻击模型进行分析,攻击者可以通过静态和动态方法完全控制加密模块的执行环境,包括所有的侧信道信息。在本文中,我们提出并评估了一个利用白盒加密的安全框架,以保护无人机中的关键数据和加密密钥免受白盒攻击。实验结果表明,该框架在资源利用方面具有成本效益,甚至适用于资源有限的无人机。
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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