A Framework for Worst-Case and Stochastic Safety Verification Using Barrier Certificates
California Institute of Technology · Credit Suisse (Switzerland) · +1 more institution
Abstract
This paper presents a methodology for safety verification of continuous and hybrid systems in the worst-case and stochastic settings. In the worst-case setting, a function of state termed barrier certificate is used to certify that all trajectories of the system starting from a given initial set do not enter an unsafe region. No explicit computation of reachable sets is required in the construction of barrier certificates, which makes it possible to handle nonlinearity, uncertainty, and constraints directly within this framework. In the stochastic setting, our method computes an upper bound on the probability that a trajectory of the system reaches the unsafe set, a bound whose validity is proven by the…
Citation impact
- FWCI
- 13.09
- Percentile
- 100%
- References
- 60
Authors
3Topics & keywords
- Computer science
- Set (abstract data type)
- Mathematical optimization
- Certificate
- Trajectory
- Computation
- Polynomial
- Upper and lower bounds