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Papers/A Transformer-based Framework for Multivariate Time Series...

A Transformer-based Framework for Multivariate Time Series Representation Learning

George Zerveas, Srideepika Jayaraman, Dhaval Patel, Anuradha Bhamidipaty, Carsten Eickhoff

2020-10-06Unsupervised Pre-trainingImputationRepresentation LearningregressionTime Series RegressionGeneral ClassificationTime SeriesTime Series AnalysisTime Series Classification
PaperPDFCodeCodeCodeCodeCodeCode(official)

Abstract

In this work we propose for the first time a transformer-based framework for unsupervised representation learning of multivariate time series. Pre-trained models can be potentially used for downstream tasks such as regression and classification, forecasting and missing value imputation. By evaluating our models on several benchmark datasets for multivariate time series regression and classification, we show that not only does our modeling approach represent the most successful method employing unsupervised learning of multivariate time series presented to date, but also that it exceeds the current state-of-the-art performance of supervised methods; it does so even when the number of training samples is very limited, while offering computational efficiency. Finally, we demonstrate that unsupervised pre-training of our transformer models offers a substantial performance benefit over fully supervised learning, even without leveraging additional unlabeled data, i.e., by reusing the same data samples through the unsupervised objective.

Results

TaskDatasetMetricValueModel
Time Series ClassificationInsectwingbeatAccuracy0.687TST

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