English

2.5D Mapping, Pathfinding and Path Following For Navigation Of A Differential Drive Robot In Uneven Terrain

Robotics 2022-09-16 v1 Systems and Control Systems and Control

Abstract

Safe navigation in uneven terrains is an important problem in robotic research. In this paper we propose a 2.5D navigation system which consists of elevation map building, path planning and local path following with obstacle avoidance. For local path following we use Model Predictive Path Integral (MPPI) control method. We propose novel cost-functions for MPPI in order to adapt it to elevation maps and motion through unevenness. We evaluate our system on multiple synthetic tests and in a simulated environment with different types of obstacles and rough surfaces.

Keywords

Cite

@article{arxiv.2209.07252,
  title  = {2.5D Mapping, Pathfinding and Path Following For Navigation Of A Differential Drive Robot In Uneven Terrain},
  author = {Stepan Dergachev and Kirill Muravyev and Konstantin Yakovlev},
  journal= {arXiv preprint arXiv:2209.07252},
  year   = {2022}
}

Comments

This is a preprint of the paper accepted to IFAC SYROCO'21/22. It contains 6 pages, 4 figures and 2 tables. The supplementary video available at https://youtu.be/LGhKaxnL8xA