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Paper · arXiv 2305.11173

Going Denser with Open-Vocabulary Part Segmentation

Peize Sun, Shoufa Chen, Chenchen Zhu, Fanyi Xiao, Ping Luo, Saining Xie, Zhicheng Yan

2 upvotesMay 18, 2023arXiv 预印本
AI 摘要

A detector that predicts open-vocabulary objects and their parts using multi-granularity alignment outperforms baselines in cross-dataset and cross-category generalization.

open vocabularyobject detectionpart segmentationmulti-granularity alignmentdense semantic correspondencecross-dataset generalizationcross-category generalizationdataset-specific trainingmAPnovel AP$_{50}$PartImageNetPascal Part

Abstract

Object detection has been expanded from a limited number of categories to open vocabulary. Moving forward, a complete intelligent vision system requires understanding more fine-grained object descriptions, object parts. In this paper, we propose a detector with the ability to predict both open-vocabulary objects and their part segmentation. This ability comes from two designs. First, we train the detector on the joint of part-level, object-level and image-level data to build the multi-granularity alignment between language and image. Second, we parse the novel object into its parts by its dense semantic correspondence with the base object. These two designs enable the detector to largely benefit from various data sources and foundation models. In open-vocabulary part segmentation experiments, our method outperforms the baseline by 3.3sim7.3 mAP in cross-dataset generalization on PartImageNet, and improves the baseline by 7.3 novel AP_{50} in cross-category generalization on Pascal Part. Finally, we train a detector that generalizes to a wide range of part segmentation datasets while achieving better performance than dataset-specific training.

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