# Free-Space Features: Global Localization in 2D Laser SLAM Using Distance   Function Maps

**Authors:** Alexander Millane, Helen Oleynikova, Juan Nieto, Roland Siegwart,, C\'esar Cadena

arXiv: 1908.01863 · 2019-08-07

## TL;DR

This paper presents a novel free-space feature approach using distance function maps for improved global localization in 2D laser SLAM, enhancing place recognition by leveraging free-space geometry.

## Contribution

The paper introduces a new free-space feature based on distance functions for 2D laser SLAM, improving place recognition and localization accuracy.

## Key findings

- Free-space features improve localization performance.
- The approach outperforms surface-based descriptors.
- Evaluations on public datasets validate effectiveness.

## Abstract

In many applications, maintaining a consistent map of the environment is key to enabling robotic platforms to perform higher-level decision making. Detection of already visited locations is one of the primary ways in which map consistency is maintained, especially in situations where external positioning systems are unavailable or unreliable. Mapping in 2D is an important field in robotics, largely due to the fact that man-made environments such as warehouses and homes, where robots are expected to play an increasing role, can often be approximated as planar. Place recognition in this context remains challenging: 2D lidar scans contain scant information with which to characterize, and therefore recognize, a location. This paper introduces a novel approach aimed at addressing this problem. At its core, the system relies on the use of the distance function for representation of geometry. This representation allows extraction of features which describe the geometry of both surfaces and free-space in the environment. We propose a feature for this purpose. Through evaluations on public datasets, we demonstrate the utility of free-space in the description of places, and show an increase in localization performance over a state-of-the-art descriptor extracted from surface geometry.

## Full text

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## Figures

32 figures with captions in the complete paper: https://tomesphere.com/paper/1908.01863/full.md

## References

27 references — full list in the complete paper: https://tomesphere.com/paper/1908.01863/full.md

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Source: https://tomesphere.com/paper/1908.01863