ICRA 2024poster2 citations

Dynamic Occupancy Grids for Object Detection: A Radar-Centric Approach

Max Peter Ronecker, Markus Schratter, Lukas Kuschnig, Daniel Watzenig

Abstract

Dynamic Occupancy Grid Mapping is a technique used to generate a local map of the environment, containing both static and dynamic information. Typically, these maps are primarily generated using lidar measurements. However, with improvements in radar sensing, resulting in better accuracy and higher resolution, radar is emerging as a viable alternative to lidar as the primary sensor for mapping. In this paper, we propose a radar-centric dynamic occupancy grid mapping algorithm with adaptations to the state computation, inverse sensor model, and field-of-view computation tailored to the specifics of radar measurements. We extensively evaluate our approach with real data to demonstrate its effectiveness and establish the first benchmark for radar-based dynamic occupancy grid mapping using the publicly available Radarscenes dataset.

BibTeX
@inproceedings{icra2024_dynamicoccupancy,
  title = {Dynamic Occupancy Grids for Object Detection: A Radar-Centric Approach},
  author = {Max Peter Ronecker and Markus Schratter and Lukas Kuschnig and Daniel Watzenig},
  booktitle = {ICRA 2024},
  year = {2024}
}
Dynamic Occupancy Grids for Object Detection: A Radar-Centric Approach · ICRA 2024