English

Closed-Loop Policies for Operational Tests of Safety-Critical Systems

Artificial Intelligence 2018-05-22 v3

Abstract

Manufacturers of safety-critical systems must make the case that their product is sufficiently safe for public deployment. Much of this case often relies upon critical event outcomes from real-world testing, requiring manufacturers to be strategic about how they allocate testing resources in order to maximize their chances of demonstrating system safety. This work frames the partially observable and belief-dependent problem of test scheduling as a Markov decision process, which can be solved efficiently to yield closed-loop manufacturer testing policies. By solving for policies over a wide range of problem formulations, we are able to provide high-level guidance for manufacturers and regulators on issues relating to the testing of safety-critical systems. This guidance spans an array of topics, including circumstances under which manufacturers should continue testing despite observed incidents, when manufacturers should test aggressively, and when regulators should increase or reduce the real-world testing requirements for an autonomous vehicle.

Keywords

Cite

@article{arxiv.1707.08234,
  title  = {Closed-Loop Policies for Operational Tests of Safety-Critical Systems},
  author = {Jeremy Morton and Tim A. Wheeler and Mykel J. Kochenderfer},
  journal= {arXiv preprint arXiv:1707.08234},
  year   = {2018}
}

Comments

12 pages, 5 figures, 5 tables