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Minwoo Jung

11 accepted papers

2026

Geometrically-Constrained Radar-Inertial Odometry via Continuous Point-Pose Uncertainty Modeling

RA-L 2026

Radar odometry is crucial for robust localization in challenging environments; however, the sparsity of reliable returns and distinctive noise characteristics impede its performance. This paper introduces geometrically-constrained radar-inertial odometry and mapping that jointly consolidates point a

Cited by 0SourceScholar
2026

SHeRLoc: Synchronized Heterogeneous Radar Place Recognition for Cross-Modal Localization

ICRA 2026poster

Despite the growing adoption of radar in robotics, the majority of research has been confined to homogeneous sensors, overlooking the integration and cross-modality challenges inherent in heterogeneous radar. This leads to significant difficulties in generalizing across diverse radar types, with mod…

2026

TreeLoc: 6-DoF LiDAR Global Localization in Forests Via Inter-Tree Geometric Matching

ICRA 2026poster

Reliable localization is crucial for navigation in forests, where GPS is often degraded and LiDAR measurements are repetitive, occluded, and structurally complex. These conditions weaken the assumptions of traditional urban-centric localization methods, which assume that consistent features arise fr…

2025

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

ICRA 2025

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, le

Cited by 16SourceScholar
2025

Helios: Heterogeneous Lidar Place Recognition via Overlap-Based Learning and Local Spherical Transformer

ICRA 2025

LiDAR place recognition is a crucial module in localization that matches the current location with previously observed environments. Most existing approaches in LiDAR place recognition dominantly focus on the spinning type LiDAR to exploit its large FOV for matching. However, with the recent emergen

Cited by 9SourcecodeScholar
2025

ImLPR: Image-based LiDAR Place Recognition using Vision Foundation Models

CoRL 2025poster

LiDAR Place Recognition (LPR) is a key component in robotic localization, enabling robots to align current scans with prior maps of their environment. While Visual Place Recognition (VPR) has embraced Vision Foundation Models (VFMs) to enhance descriptor robustness, LPR has relied on task-specific m…

Cited by 0SourceScholar
2023

Asynchronous Multiple LiDAR-Inertial Odometry Using Point-Wise Inter-LiDAR Uncertainty Propagation

RA-L 2023

In recent years, multiple Light Detection and Ranging (LiDAR) systems have grown in popularity due to their enhanced accuracy and stability from the increased field of view (FOV). However, integrating multiple LiDARs can be challenging, attributable to temporal and spatial discrepancies. Common prac

Cited by 30SourcecodeScholar
2023

RaPlace: Place Recognition for Imaging Radar using Radon Transform and Mutable Threshold

IROS 2023poster

Due to the robustness in sensing, radar has been highlighted, overcoming harsh weather conditions such as fog and heavy snow. In this paper, we present a novel radar-only place recognition that measures the similarity score by utilizing Radon-transformed sinogram images and cross-correlation in freq…

Cited by 23SourcecodeScholar
2022

STheReO: Stereo Thermal Dataset for Research in Odometry and Mapping

IROS 2022poster

This paper introduces a stereo thermal camera dataset (STheReO) with multiple navigation sensors to encourage thermal SLAM researches. A thermal camera measures infrared rays beyond the visible spectrum therefore it could provide a simple yet robust solution to visually degraded environments where e…

Cited by 20SourceScholar