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Generative Adversarial Active Learning for Unsupervised Outlier Detection

delete2019-01-01
delete143
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OA
AI
刘业政 (Yezheng Liu)
李哲 封面图
李哲 (Zhe Li)
C
Chong Zhou
Y
Yuanchun Jiang
孙见山 (Jianshan Sun)
M
Meng Wang
X
Xiangnan He *
DOI:10.1109/TKDE.2019.2905606delete
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摘要

摘要

En 中文
Outlier detection is an important topic in machine learning and has been used in a wide range of applications. In this paper, we approach outlier detection as a binary-classification issue by sampling potential outliers from a uniform reference distribution. However, due to the sparsity of data in high-dimensional space, a limited number of potential outliers may fail to provide sufficient information to assist the classifier in describing a boundary that can separate outliers from normal data effectively. To address this, we propose a novel Single-Objective Generative Adversarial Active Learning (SO-GAAL) method for outlier detection, which can directly generate informative potential outliers based on the mini-max game between a generator and a discriminator. Moreover, to prevent the generator from falling into the mode collapsing problem, the stop node of training should be determined when SO-GAAL is able to provide sufficient information. But without any prior information, it is extremely difficult for SO-GAAL. Therefore, we expand the network structure of SO-GAAL from a single generator to multiple generators with different objectives (MO-GAAL), which can generate a reasonable reference distribution for the whole dataset. We empirically compare the proposed approach with several state-of-the-art outlier detection methods on both synthetic and real-world datasets. The results show that MO-GAAL outperforms its competitors in the majority of cases, especially for datasets with various cluster types or high irrelevant variable ratio. The experiment codes are available at: https://github.com/leibinghe/GAAL-based-outlier-detection.
Keyword:
Anomaly detection
Generators
Computational modeling
Data models
Training
Generative adversarial networks
Gallium nitride
Outlier detection
generate potential outliers
curse of dimensionality
generative adversarial active learning
mode collapsing problem
multiple-objective generative adversarial active learning
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期刊

IEEE Transactions on Knowledge and Data Engineering 封面图
IEEE Transactions on Knowledge and Data Engineering
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10.4
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6.8K
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H
hefei university of technology
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Worcester Polytechnic Institute
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chinese academy of sciences
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