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Haojia Li

4 accepted papers

2024

FC-Planner: A Skeleton-guided Planning Framework for Fast Aerial Coverage of Complex 3D Scenes

ICRA 2024poster

3D coverage path planning for UAVs is a crucial problem in diverse practical applications. However, existing methods have shown unsatisfactory system simplicity, computation efficiency, and path quality in large and complex scenes. To address these challenges, we propose FC-Planner, a skeleton-guide…

Cited by 12SourcecodeScholar
2023

AutoTrans: A Complete Planning and Control Framework for Autonomous UAV Payload Transportation

RA-L 2023

The robotics community is increasingly interested in autonomous aerial transportation. Unmanned aerial vehicles with suspended payloads have advantages over other systems, including mechanical simplicity and agility, but pose great challenges in planning and control. To realize fully autonomous aeri

Cited by 47SourceScholar
2023

PredRecon: A Prediction-boosted Planning Framework for Fast and High-quality Autonomous Aerial Reconstruction

ICRA 2023poster

Autonomous UAV path planning for 3D reconstruction has been actively studied in various applications for high-quality 3D models. However, most existing works have adopted explore-then-exploit, prior-based or exploration-based strategies, demonstrating inefficiency with repeated flight and low autono…

Cited by 25SourcecodeScholar
2021

FAST-Dynamic-Vision: Detection and Tracking Dynamic Objects with Event and Depth Sensing

IROS 2021poster

The development of aerial autonomy has enabled aerial robots to fly agilely in complex environments. However, dodging fast-moving objects in flight remains a challenge, limiting the further application of unmanned aerial vehicles (UAVs). The bottleneck of solving this problem is the accurate percept…

Cited by 45SourcecodeScholar