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XMem: Long-Term Video Object Segmentation with an Atkinson-Shiffrin Memory Model

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We present XMem, a video object segmentation architecture for long videos with unified feature memory stores inspired by the Atkinson-Shiffrin memory model. Prior work on video object segmentation typically only uses one type of feature memory. For videos longer than a minute, a single feature memory model tightly links memory consumption and accuracy. In contrast, following the Atkinson-Shiffrin model, we develop an architecture that incorporates multiple independent yet deeply-connected feature memory stores: a rapidly updated sensory memory, a high-resolution working memory, and a compact thus sustained long-term memory. Crucially, we develop a memory potentiation algorithm that routinely consolidates actively used working memory elements into the long-term memory, which avoids memory explosion and minimizes performance decay for long-term prediction. Combined with a new memory reading mechanism, XMem greatly exceeds state-of-the-art performance on long-video datasets while being on par with state-of-the-art methods (that do not work on long videos) on short-video datasets. Code is available at https://hkchengrex.github.io/XMem

Ho Kei Cheng, Alexander G. Schwing• 2022

Related benchmarks

TaskDatasetResultRank
Video Object SegmentationDAVIS 2017 (val)
J mean84
1130
Video Object SegmentationDAVIS 2016 (val)
J Mean90.7
564
Video Object SegmentationYouTube-VOS 2018 (val)
J Score (Seen)85.1
493
Video Object SegmentationDAVIS 2017 (test-dev)
Region J Mean77.4
237
Video Object SegmentationYouTube-VOS 2019 (val)
J-Score (Seen)89.2
231
Video Object SegmentationDAVIS 2017 (test)
J (Jaccard Index)82.9
107
Video Object SegmentationSA-V (val)
J&F Score60.1
74
Video Object SegmentationSA-V (test)
J&F62.3
70
Video Object SegmentationYouTube-VOS 2018
Score G86.1
47
Video Object SegmentationMOSE (val)
J&F Score59.6
45
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