敏捷和弹性嵌入式系统

M. Vai, David Whelihan, K. Denney, Robert Lychev, Jeffrey J. Hughes, Donato Kava, Alice Lee, Nicholas Evancich, Richard Clark, D. Lide, K. Kwak, Jason H. Li, Douglas Schafer, Michael Lynch, Kyle Tillotson, Wladimir Tirenin
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引用次数: 0

摘要

任务保障要求所有作战平台和系统能够在日益增长的网络敌对挑战下执行其功能。自2014年以来,空军研究实验室(AFRL)敏捷和弹性嵌入式系统(ARES)项目一直在开发网络安全和弹性(CSR)方法和相关技术,用于基础设计以及改造现有平台。在整个项目期间,ARES方法在一架八旋翼飞机、一架无人机系统试验台和一架固定翼飞机上进行了应用和演示。从那时起,一直致力于提高能力并将CSR技术转化为国防部系统。在本文中,我们总结了ARES的方法和技术,并描述了我们将它们插入国防部嵌入式系统的经验。
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Agile and Resilient Embedded Systems
Mission assurance requires all operational platforms and systems to be able to perform their function under the ever-growing challenge of cyber hostility. Since 2014, the Air Force Research Laboratory (AFRL) Agile and Resilient Embedded System (ARES) program has been developing a Cyber Security and Resilience (CSR) methodology and associated technologies for ground-up designs as well as retrofitting existing platforms. Throughout the duration of the program, the ARES approach was applied and demonstrated with an octocopter, an unmanned aerial system testbed, and a fixed-wing aircraft. Since then, efforts have been focused on advancing capability and transitioning CSR technologies into DoD systems. In this paper, we summarize the ARES methodology and technologies, and describe our experience of inserting them into DoD embedded systems.
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