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USE: Universal Segment Embeddings for Open-Vocabulary Image Segmentation

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The open-vocabulary image segmentation task involves partitioning images into semantically meaningful segments and classifying them with flexible text-defined categories. The recent vision-based foundation models such as the Segment Anything Model (SAM) have shown superior performance in generating class-agnostic image segments. The main challenge in open-vocabulary image segmentation now lies in accurately classifying these segments into text-defined categories. In this paper, we introduce the Universal Segment Embedding (USE) framework to address this challenge. This framework is comprised of two key components: 1) a data pipeline designed to efficiently curate a large amount of segment-text pairs at various granularities, and 2) a universal segment embedding model that enables precise segment classification into a vast range of text-defined categories. The USE model can not only help open-vocabulary image segmentation but also facilitate other downstream tasks (e.g., querying and ranking). Through comprehensive experimental studies on semantic segmentation and part segmentation benchmarks, we demonstrate that the USE framework outperforms state-of-the-art open-vocabulary segmentation methods.

Xiaoqi Wang, Wenbin He, Xiwei Xuan, Clint Sebastian, Jorge Piazentin Ono, Xin Li, Sima Behpour, Thang Doan, Liang Gou, Han Wei Shen, Liu Ren• 2024

Related benchmarks

TaskDatasetResultRank
Semantic segmentationPASCAL-Context 59 classes (test)
mIoU57.8
75
Semantic segmentationPASCAL-Context PC-459
mIoU14.7
69
Open Vocabulary Semantic SegmentationADE-847
mIoU13.4
59
Open Vocabulary Semantic SegmentationPascal Context PC-59
mIoU58
57
Open Vocabulary Semantic SegmentationADE20K A-150
mIoU37.1
54
Semantic segmentationADE-20k A-847 (test)
mIoU13.3
37
Semantic segmentationADE20K 150 (test)
mIoU37
29
Open Vocabulary Semantic SegmentationPASCAL-Context PC-459
mIoU15
24
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