iLQR for Piecewise-Smooth Hybrid Dynamical Systems

03/26/2021
by   Nathan J. Kong, et al.
0

Trajectory optimization is a popular strategy for planning trajectories for robotic systems. However, many robotic tasks require changing contact conditions, which is difficult due to the hybrid nature of the dynamics. The optimal sequence and timing of these modes are typically not known ahead of time. In this work, we extend the Iterative Linear Quadratic Regulator (iLQR) method to a class of piecewise smooth hybrid dynamical systems by allowing for changing hybrid modes in the forward pass, using the saltation matrix to update the gradient information in the backwards pass, and using a reference extension to account for mode mismatch. We demonstrate these changes on a variety of hybrid systems and compare the different strategies for computing the gradients.

READ FULL TEXT
research
08/17/2021

Poincaré-Hopf theorem for hybrid systems

A generalization of the Poincaré-Hopf index theorem applicable to hybrid...
research
06/12/2023

Saltation Matrices: The Essential Tool for Linearizing Hybrid Dynamical Systems

Hybrid dynamical systems, i.e. systems that have both continuous and dis...
research
05/09/2021

Segmenting Hybrid Trajectories using Latent ODEs

Smooth dynamics interrupted by discontinuities are known as hybrid syste...
research
10/14/2017

Hybrid DDP in Clutter (CHDDP): Trajectory Optimization for Hybrid Dynamical System in Cluttered Environments

We present an algorithm for obtaining an optimal control policy for hybr...
research
06/02/2021

Trajectory Optimization for Manipulation of Deformable Objects: Assembly of Belt Drive Units

This paper presents a novel trajectory optimization formulation to solve...
research
10/02/2017

Unsupervised Learning for Nonlinear PieceWise Smooth Hybrid Systems

This paper introduces a novel system identification and tracking method ...
research
03/05/2021

A Hybrid Dynamical Modeling Framework for Shape Memory Alloy Wire Actuated Structures

In this paper, a hybrid model for single-crystal Shape Memory Alloy (SMA...

Please sign up or login with your details

Forgot password? Click here to reset