Grand Challenges in Resilience: Autonomous System Resilience through Design and Runtime Measures
Saurabh Bagchi, Vaneet Aggarwal, Somali Chaterji, Fred Douglis, Aly El, Gamal, Jiawei Han, Brian J. Henz, Hank Hoffmann, Suman Jana, Milind Kulkarni,, Felix Xiaozhu Lin, Karen Marais, Prateek Mittal, Shaoshuai Mou, Xiaokang Qiu,, and Gesualdo Scutari

TL;DR
This paper discusses the major challenges and solutions for enhancing cyber resilience in autonomous systems through design and runtime measures, focusing on autonomous vehicles and rescue systems.
Contribution
It identifies key cyber resilience challenges in autonomous systems and proposes foundational design and runtime solutions, outlining a research roadmap for resilient autonomous systems.
Findings
Resilience-by-design involves developing software design methods for resilience.
Resilience-by-reaction includes runtime response, reconfiguration, and recovery strategies.
Adaptive execution can improve resilience across diverse platforms.
Abstract
A set of about 80 researchers, practitioners, and federal agency program managers participated in the NSF-sponsored Grand Challenges in Resilience Workshop held on Purdue campus on March 19-21, 2019. The workshop was divided into three themes: resilience in cyber, cyber-physical, and socio-technical systems. About 30 attendees in all participated in the discussions of cyber resilience. This article brings out the substantive parts of the challenges and solution approaches that were identified in the cyber resilience theme. In this article, we put forward the substantial challenges in cyber resilience in a few representative application domains and outline foundational solutions to address these challenges. These solutions fall into two broad themes: resilience-by-design and resilience-by-reaction. We use examples of autonomous systems as the application drivers motivating cyber…
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Taxonomy
TopicsAdversarial Robustness in Machine Learning · Advanced Malware Detection Techniques · Smart Grid Security and Resilience
