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      Formal Test Synthesis for Safety-Critical Autonomous Systems based on Control Barrier Functions

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          Abstract

          The prolific rise in autonomous systems has led to questions regarding their safe instantiation in real-world scenarios. Failures in safety-critical contexts such as human-robot interactions or even autonomous driving can ultimately lead to loss of life. In this context, this paper aims to provide a method by which one can algorithmically test and evaluate an autonomous system. Given a black-box autonomous system with some operational specifications, we construct a minimax problem based on control barrier functions to generate a family of test parameters designed to optimally evaluate whether the system can satisfy the specifications. To illustrate our results, we utilize the Robotarium as a case study for an autonomous system that claims to satisfy waypoint navigation and obstacle avoidance simultaneously. We demonstrate that the proposed test synthesis framework systematically finds those sequences of events (tests) that identify points of system failure.

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          Author and article information

          Journal
          08 April 2020
          Article
          2004.04227
          3d40cdcc-fd70-4609-be45-e95c53230910

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          Custom metadata
          eess.SY cs.FL cs.RO cs.SY math.OC

          Numerical methods,Theoretical computer science,Performance, Systems & Control,Robotics

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