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Yewei Huang

12 accepted papers

2026

Multi-Session SLAM for Imaging Sonar Equipped Underwater Vehicles Using Semantic Scene Graphs

RA-L 2026

Accurate, reliable state estimation is an essential component in underwater autonomy. In underwater environments, simultaneous localization and mapping (SLAM) is often employed to provide a robot with state estimates, given the lack of GPS. SLAM state estimates exhibit error growth over time, which

Cited by 0SourceScholar
2026

Underwater Dense Mapping with the First Compact 3D Sonar

ICRA 2026poster

In the past decade, the adoption of compact 3D range sensors, such as LiDARs, has driven the developments of robust state-estimation pipelines, making them a standard sensor for aerial, ground, and space autonomy. Unfortunately, poor propagation of electromagnetic waves underwater, has limited the v…

2025

CVD-SfM: A Cross-View Deep Front-end Structure-from-Motion System for Sparse Localization in Multi-Altitude Scenes

IROS 2025

We present a novel multi-altitude camera pose estimation system, addressing the challenges of robust and accurate localization across varied altitudes when only considering sparse image input. The system effectively handles diverse environmental conditions and viewpoint variations by integrating the

Cited by 1SourceScholar
2025

DRACo-SLAM2: Distributed Robust Acoustic Communication-efficient SLAM for Imaging Sonar Equipped Underwater Robot Teams with Object Graph Matching

IROS 2025

We present DRACo-SLAM2, a distributed SLAM framework for underwater robot teams equipped with multibeam imaging sonar. This framework improves upon the original DRACo-SLAM by introducing a novel representation of sonar maps as object graphs and utilizing object graph matching to achieve time-efficie

Cited by 0SourceScholar
2025

Distributional Reinforcement Learning Based Integrated Decision Making and Control for Autonomous Surface Vehicles

RA-L 2025

With the growing demands for Autonomous Surface Vehicles (ASVs) in recent years, the number of ASVs being deployed for various maritime missions is expected to increase rapidly in the near future. However, it is still challenging for ASVs to perform sensor-based autonomous navigation in obstacle-fil

Cited by 5SourcecodeScholar
2024

Decentralized Multi-Robot Navigation for Autonomous Surface Vehicles with Distributional Reinforcement Learning

ICRA 2024poster

Collision avoidance algorithms for Autonomous Surface Vehicles (ASV) that follow the Convention on the International Regulations for Preventing Collisions at Sea (COLREGs) have been proposed in recent years. However, it may be difficult and unsafe to follow COLREGs in congested waters, where multipl…

Cited by 9SourcecodeScholar
2024

Mission-Oriented Gaussian Process Motion Planning for UUVs Over Complex Seafloor Terrain and Current Flows

RA-L 2024

Wepresent a novel motion planning framework for unmanned underwater vehicles (UUVs) - the first framework that applies Gaussian process motion planning to solve a 3D path planning problem for a 6-DoF robot in underwater environments. We address missions requiring UUVs to remain in close proximity to

Cited by 4SourceScholar
2024

Multi-Robot Autonomous Exploration and Mapping Under Localization Uncertainty with Expectation-Maximization

ICRA 2024poster

We propose an autonomous exploration algorithm designed for decentralized multi-robot teams, which takes into account map and localization uncertainties of range-sensing mobile robots. Virtual landmarks are used to quantify the combined impact of process noise and sensor noise on map uncertainty. Ad…

Cited by 3SourceScholar
2022

DRACo-SLAM: Distributed Robust Acoustic Communication-efficient SLAM for Imaging Sonar Equipped Underwater Robot Teams

IROS 2022poster

An essential task for a multi-robot system is generating a common understanding of the environment and relative poses between robots. Cooperative tasks can be executed only when a vehicle has knowledge of its own state and the states of the team members. However, this has primarily been achieved wit…

Cited by 17SourcecodeScholar
2022

DiSCo-SLAM: Distributed Scan Context-Enabled Multi-Robot LiDAR SLAM With Two-Stage Global-Local Graph Optimization

RA-L 2022

We propose a novel framework for distributed,multi-robot SLAM intended for use with 3D LiDAR observations. The framework, DiSCo-SLAM, is the first to use the lightweight Scan Context descriptor for multi-robot SLAM, permitting a data-efficient exchange of LiDAR observations among robots. Additionall

Cited by 125SourceScholar
2021

Zero-Shot Reinforcement Learning on Graphs for Autonomous Exploration Under Uncertainty

ICRA 2021poster

This paper studies the problem of autonomous exploration under localization uncertainty for a mobile robot with 3D range sensing. We present a framework for self-learning a high-performance exploration policy in a single simulation environment, and transferring it to other environments, which may be…

Cited by 24SourceScholar
2020

Autonomous Exploration Under Uncertainty via Deep Reinforcement Learning on Graphs

IROS 2020poster

We consider an autonomous exploration problem in which a range-sensing mobile robot is tasked with accurately mapping the landmarks in an a priori unknown environment efficiently in real-time; it must choose sensing actions that both curb localization uncertainty and achieve information gain. For th…

Cited by 86SourcecodeScholar