Dr-LiSA: Direct Radar-Lidar Scan Alignment for $SE(3)$ Localization
Abstract
This paper introduces Dr-LiSA, a first-of-its-kind direct method for localizing 2D spinning radar intensity measurements in $SE(3)$ against 3D lidar maps. Radar-lidar localization combines the complementary strengths of the two sensing modalities: radar is robust to adverse weather and precipitation, while lidar provides high-fidelity 3D maps in favourable conditions. However, existing radar-lidar localization methods are restricted to planar $SE(2)$ localization and have generally fallen short ...
Description / Details
This paper introduces Dr-LiSA, a first-of-its-kind direct method for localizing 2D spinning radar intensity measurements in against 3D lidar maps. Radar-lidar localization combines the complementary strengths of the two sensing modalities: radar is robust to adverse weather and precipitation, while lidar provides high-fidelity 3D maps in favourable conditions. However, existing radar-lidar localization methods are restricted to planar localization and have generally fallen short of the accuracy achieved by lidar-lidar and even radar-radar systems. A key challenge is the substantial sensing-modality gap between radar and lidar, which observe and represent scene structure in fundamentally different ways. Dr-LiSA bridges this gap using a learned forward model that predicts radar measurements from a lidar submap at a candidate pose, enabling direct photometric alignment of predicted and observed radar scans in . Dr-LiSA outperforms prior radar-lidar approaches in while achieving planar accuracy competitive with state-of-the-art radar-radar localization across more than 90 km of on-road data.
Source: arXiv:2609.26423v1 - http://arxiv.org/abs/2609.26423v1 PDF: https://arxiv.org/pdf/2609.26423v1 Original Link: http://arxiv.org/abs/2609.26423v1
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Sep 23, 2026
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