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Yann Labbé

6 accepted papers

2025

6D Object Pose Tracking in Internet Videos for Robotic Manipulation

ICLR 2025poster

We seek to extract a temporally consistent 6D pose trajectory of a manipulated object from an Internet instructional video. This is a challenging set-up for current 6D pose estimation methods due to uncontrolled capturing conditions, subtle but dynamic object motions, and the fact that the exact me…

Cited by 1SourcePDFScholar
2024

FoundPose: Unseen Object Pose Estimation with Foundation Features

ECCV 2024poster

"We propose FoundPose, a model-based method for 6D pose estimation of unseen objects from a single RGB image. The method can quickly onboard new objects using their 3D models without requiring any object- or task-specific training. In contrast, existing methods typically pre-train on large-scale, ta…

2022

Focal Length and Object Pose Estimation via Render and Compare

CVPR 2022poster

We introduce FocalPose, a neural render-and-compare method for jointly estimating the camera-object 6D pose and camera focal length given a single RGB input image depicting a known object. The contributions of this work are twofold. First, we derive a focal length update rule that extends an existin…

Cited by 25PDFcodeScholar
2022

MegaPose: 6D Pose Estimation of Novel Objects via Render & Compare

CoRL 2022poster

We introduce MegaPose, a method to estimate the 6D pose of novel objects, that is, objects unseen during training. At inference time, the method only assumes knowledge of (i) a region of interest displaying the object in the image and (ii) a CAD model of the observed object. The contributions of thi…

Cited by 157SourcecodeScholar
2020

CosyPose: Consistent multi-view multi-object 6D pose estimation

ECCV 2020poster

We introduce an approach for recovering the 6D pose of multiple known objects in a scene captured by a set of input images with unknown camera viewpoints. First, we present a single-view single-object 6D pose estimation method, which we use to generate 6D object pose hypotheses. Second, we develop a…

Cited by 532SourcePDFScholar
2020

Monte-Carlo Tree Search for Efficient Visually Guided Rearrangement Planning

RA-L 2020

We address the problem of visually guided rearrangement planning with many movable objects, i.e., finding a sequence of actions to move a set of objects from an initial arrangement to a desired one, while relying on visual inputs coming from an RGB camera. To do so, we introduce a complete pipeline

Cited by 82SourcecodeScholar