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Yaoyu Hu

12 accepted papers

2025

FIReStereo: Forest InfraRed Stereo Dataset for UAS Depth Perception in Visually Degraded Environments

RA-L 2025

Robust depth perception in visually-degraded environments is crucial for autonomous aerial systems. Thermal imaging cameras, which capture infrared radiation, are robust to visual degradation. However, due to lack of a large-scale dataset, the use of thermal cameras for uncrewed aerial system (UAS)

Cited by 8SourceScholar
2025

UFM: A Simple Path towards Unified Dense Correspondence with Flow

NeurIPS 2025poster

Dense image correspondence is central to many applications, such as visual odometry, 3D reconstruction, object association, and re-identification. Historically, dense correspondence has been tackled separately for wide-baseline scenarios and optical flow estimation, despite the common goal of matchi…

Cited by 0SourceScholar
2024

Geometry-Informed Distance Candidate Selection for Adaptive Lightweight Omnidirectional Stereo Vision with Fisheye Images

ICRA 2024poster

Multi-view stereo omnidirectional distance estimation usually needs to build a cost volume with many hypothetical distance candidates. The cost volume building process is often computationally heavy considering the limited resources a mobile robot has. We propose a new geometry-informed way of dista…

Cited by 0SourceScholar
2023

PyPose: A Library for Robot Learning With Physics-Based Optimization

CVPR 2023poster

Deep learning has had remarkable success in robotic perception, but its data-centric nature suffers when it comes to generalizing to ever-changing environments. By contrast, physics-based optimization generalizes better, but it does not perform as well in complicated tasks due to the lack of high-le…

2023

VoxDet: Voxel Learning for Novel Instance Detection

NeurIPS 2023spotlight

Detecting unseen instances based on multi-view templates is a challenging problem due to its open-world nature. Traditional methodologies, which primarily rely on $2 \mathrm{D}$ representations and matching techniques, are often inadequate in handling pose variations and occlusions. To solve this, w…

2022

Unified Representation of Geometric Primitives for Graph-SLAM Optimization Using Decomposed Quadrics

ICRA 2022poster

In Simultaneous Localization And Mapping (SLAM) problems, high-level landmarks have the potential to build compact and informative maps compared to traditional point-based landmarks. In this work, we focus on the param-eterization of frequently used geometric primitives including points, lines, plan…

Cited by 11SourceScholar
2021

ORStereo: Occlusion-Aware Recurrent Stereo Matching for 4K-Resolution Images

IROS 2021poster

Stereo reconstruction models trained on small images do not generalize well to high-resolution data. Training a model on high-resolution image size faces difficulties of data availability and is often infeasible due to limited computing resources. In this work, we present the Occlusion-aware Recurre…

Cited by 11SourceScholar
2020

TartanAir: A Dataset to Push the Limits of Visual SLAM

IROS 2020poster

We present a challenging dataset, the TartanAir, for robot navigation tasks and more. The data is collected in photo-realistic simulation environments with the presence of moving objects, changing light and various weather conditions. By collecting data in simulations, we are able to obtain multi-mo…

Cited by 406SourcecodeScholar
2019

A Joint Optimization Approach of LiDAR-Camera Fusion for Accurate Dense 3-D Reconstructions

RA-L 2019

Fusing data from LiDAR and camera is conceptually attractive because of their complementary properties. For instance, camera images are of higher resolution and have colors, while LiDAR data provide more accurate range measurements and have a wider field of view. However, the sensor fusion problem r

Cited by 60SourceScholar