Publication | Open Access
Unsupervised classification of variable stars
31
Citations
38
References
2017
Year
EngineeringMachine LearningUnsupervised Machine LearningVariable StarsClassification MethodImage AnalysisData ScienceData MiningPattern RecognitionLight CurvesUnsupervised ClassificationMachine VisionAutomatic ClassificationFeature LearningKnowledge DiscoveryComputer ScienceImage SimilarityDeep LearningComputer VisionData ClassificationSimilarity Search
During the past 10 years, a considerable amount of effort has been made to develop algorithms for automatic classification of variable stars. That has been primarily achieved by applying machine learning methods to photometric data sets where objects are represented as light curves. Classifiers require training sets to learn the underlying patterns that allow the separation among classes. Unfortunately, building training sets is an expensive process that demands a lot of human efforts. Every time data come from new surveys; the only available training instances are the ones that have a cross-match with previously labelled objects, consequently generating insufficient training sets compared with the large amounts of unlabelled sources. In this work, we present an algorithm that performs unsupervised classification of variable stars, relying only on the similarity among light curves. We tackle the unsupervised classification problem by proposing an untraditional approach. Instead of trying to match classes of stars with clusters found by a clustering algorithm, we propose a query-based method where astronomers can find groups of variable stars ranked by similarity. We also develop a fast similarity function specific for light curves, based on a novel data structure that allows scaling the search over the entire data set of unlabelled objects. Experiments show that our unsupervised model achieves high accuracy in the classification of different types of variable stars and that the proposed algorithm scales up to massive amounts of light curves.
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