Submission: MUSE/HOT3D/full

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Submission name full
Submission time (UTC) Nov. 17, 2024, 12:34 a.m.
User csm8167
Task Model-based 2D detection of unseen objects
Dataset HOT3D
Description
Evaluation scores
AP:0.426
AP50:0.563
AP75:0.486
AP_large:0.544
AP_medium:0.363
AP_small:0.015
AR1:0.514
AR10:0.530
AR100:0.530
AR_large:0.710
AR_medium:0.426
AR_small:0.014
average_time_per_image:1.197

Method: MUSE

User csm8167
Publication Not Yet
Implementation
Training image modalities None
Test image modalities RGB
Description

Submitted to: BOP Challenge 2024

MUSE: Model-agnostic Unseen 2D Object Recognition via 3D-aware Similarity of Multi-Embeddings We present MUSE, a training-free and model-agnostic framework for unseen 2D object recognition, leveraging 3D-aware similarity computed from multi-embedding descriptors.

Specifically, MUSE integrates class-level and patch-level embeddings into a novel similarity metric, and introduces the Integrated von Mises-Fisher (I-vMF) similarity, which applies the von Mises-Fisher (vMF) distribution to weigh the contributions of 3D template views. This weighting reflects the assumption that high similarity scores are concentrated around the correct template view on the viewing sphere.

To further enhance reliability, we propose Confidence-Assisted Similarity (CAS), which modulates the I-vMF similarity using the uncertainty estimate of the vision model, giving more influence to confident predictions.

As our approach relies solely on similarity computations over feature embeddings, MUSE is fully model-agnostic and can be integrated with any vision backbone without fine-tuning.

In our implementation, we use Grounding DINO and SAM2 to extract detection proposals, and adopt DINOv2-Large as the feature encoder for computing multi-level similarity.

Authors – Temporary Anonymous

Computer specifications rtx4090