English

A Level Set Approach to Online Sensing and Trajectory Optimization with Time Delays

Systems and Control 2024-12-20 v2 Systems and Control Signal Processing Optimization and Control

Abstract

Presented is a method to compute certain classes of Hamilton-Jacobi equations that result from optimal control and trajectory generation problems with time delays. Many robotic control and trajectory problems have limited information of the operating environment a priori and must continually perform online trajectory optimization in real time after collecting measurements. The sensing and optimization can induce a significant time delay, and must be accounted for when computing the trajectory. This paper utilizes the generalized Hopf formula, which avoids the exponential dimensional scaling typical of other numerical methods for computing solutions to the Hamilton-Jacobi equation. We present as an example a robot that incrementally predicts a communication channel from measurements as it travels. As part of this example, we introduce a seemingly new generalization of a non-parametric formulation of robotic communication channel estimation. New communication measurements are used to improve the channel estimate and online trajectory optimization with time-delay compensation is performed.

Keywords

Cite

@article{arxiv.1901.11139,
  title  = {A Level Set Approach to Online Sensing and Trajectory Optimization with Time Delays},
  author = {Matthew R. Kirchner},
  journal= {arXiv preprint arXiv:1901.11139},
  year   = {2024}
}

Comments

Updated formatting to comply with publications guidelines. Corrected some minor typos. To appear in the proceedings of the 10th IFAC Symposium on Intelligent Autonomous Vehicles

R2 v1 2026-06-23T07:27:44.883Z