NeurIPS 2021poster46 citations

Safe Pontryagin Differentiable Programming

Wanxin Jin, Shaoshuai Mou, George J. Pappas

Abstract

We propose a Safe Pontryagin Differentiable Programming (Safe PDP) methodology, which establishes a theoretical and algorithmic framework to solve a broad class of safety-critical learning and control tasks---problems that require the guarantee of safety constraint satisfaction at any stage of the learning and control progress. In the spirit of interior-point methods, Safe PDP handles different types of system constraints on states and inputs by incorporating them into the cost or loss through barrier functions. We prove three fundamentals of the proposed Safe PDP: first, both the solution and its gradient in the backward pass can be approximated by solving their more efficient unconstrained counterparts; second, the approximation for both the solution and its gradient can be controlled for arbitrary accuracy by a barrier parameter; and third, importantly, all intermediate results throughout the approximation and optimization strictly respect the constraints, thus guaranteeing safety throughout the entire learning and control process. We demonstrate the capabilities of Safe PDP in solving various safety-critical tasks, including safe policy optimization, safe motion planning, and learning MPCs from demonstrations, on different challenging systems such as 6-DoF maneuvering quadrotor and 6-DoF rocket powered landing.

safe reinforcement learningsafe learning and controlconstrained learning and controldifferentiable programmingbi-level optimizationsafety-critical tasks
BibTeX
@inproceedings{
jin2021safe,
title={Safe Pontryagin Differentiable Programming},
author={Wanxin Jin and Shaoshuai Mou and George J. Pappas},
booktitle={Advances in Neural Information Processing Systems},
editor={A. Beygelzimer and Y. Dauphin and P. Liang and J. Wortman Vaughan},
year={2021},
url={https://openreview.net/forum?id=wfGbrrWgXDm}
}
Safe Pontryagin Differentiable Programming · NeurIPS 2021