arXiv · 2109.06697
Safe Nonlinear Control Using Robust Neural Lyapunov-Barrier Functions
Abstract
Safety and stability are common requirements for robotic control systems; however, designing safe, stable controllers remains difficult for nonlinear and uncertain models. We develop a model-based learning approach to synthesize robust feedback controllers with safety and stability guarantees. We take inspiration from robust convex optimization and Lyapunov theory to define robust control Lyapunov barrier functions that generalize despite model uncertainty. We demonstrate our approach in simulation on problems including car trajectory tracking, nonlinear control with obstacle avoidance, satellite rendezvous with safety constraints, and flight control with a learned ground effect model. Simulation results show that our approach yields controllers that match or exceed the capabilities of robust MPC while reducing computational costs by an order of magnitude.
Explore related subjects
Keep this discovery
Charles Dawson, Zengyi Qin, Sicun Gao, Chuchu Fan. 2021-09-14. Safe Nonlinear Control Using Robust Neural Lyapunov-Barrier Functions. https://arxiv.org/abs/2109.06697
Cite the original work for its findings. Save a collection to share your selection of sources.