English

HeRCULES: Heterogeneous Radar Dataset in Complex Urban Environment for Multi-session Radar SLAM

Robotics 2025-02-24 v3 Computer Vision and Pattern Recognition

Abstract

Recently, radars have been widely featured in robotics for their robustness in challenging weather conditions. Two commonly used radar types are spinning radars and phased-array radars, each offering distinct sensor characteristics. Existing datasets typically feature only a single type of radar, leading to the development of algorithms limited to that specific kind. In this work, we highlight that combining different radar types offers complementary advantages, which can be leveraged through a heterogeneous radar dataset. Moreover, this new dataset fosters research in multi-session and multi-robot scenarios where robots are equipped with different types of radars. In this context, we introduce the HeRCULES dataset, a comprehensive, multi-modal dataset with heterogeneous radars, FMCW LiDAR, IMU, GPS, and cameras. This is the first dataset to integrate 4D radar and spinning radar alongside FMCW LiDAR, offering unparalleled localization, mapping, and place recognition capabilities. The dataset covers diverse weather and lighting conditions and a range of urban traffic scenarios, enabling a comprehensive analysis across various environments. The sequence paths with multiple revisits and ground truth pose for each sensor enhance its suitability for place recognition research. We expect the HeRCULES dataset to facilitate odometry, mapping, place recognition, and sensor fusion research. The dataset and development tools are available at https://sites.google.com/view/herculesdataset.

Keywords

Cite

@article{arxiv.2502.01946,
  title  = {HeRCULES: Heterogeneous Radar Dataset in Complex Urban Environment for Multi-session Radar SLAM},
  author = {Hanjun Kim and Minwoo Jung and Chiyun Noh and Sangwoo Jung and Hyunho Song and Wooseong Yang and Hyesu Jang and Ayoung Kim},
  journal= {arXiv preprint arXiv:2502.01946},
  year   = {2025}
}

Comments

2025 IEEE International Conference on Robotics and Automation (ICRA 2025)

R2 v1 2026-06-28T21:31:31.894Z