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Robust Augmentation for Multivariate Time Series Classification

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arxiv 2201.11739 v1 pith:FPMKDWRH submitted 2022-01-27 cs.LG

classification cs.LG
keywords seriestimeaugmentationclassificationdatasetsmethodsaccuracyarchitectures
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Neural networks are capable of learning powerful representations of data, but they are susceptible to overfitting due to the number of parameters. This is particularly challenging in the domain of time series classification, where datasets may contain fewer than 100 training examples. In this paper, we show that the simple methods of cutout, cutmix, mixup, and window warp improve the robustness and overall performance in a statistically significant way for convolutional, recurrent, and self-attention based architectures for time series classification. We evaluate these methods on 26 datasets from the University of East Anglia Multivariate Time Series Classification (UEA MTSC) archive and analyze how these methods perform on different types of time series data.. We show that the InceptionTime network with augmentation improves accuracy by 1% to 45% in 18 different datasets compared to without augmentation. We also show that augmentation improves accuracy for recurrent and self attention based architectures.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Compositionality in Time Series: A Proof of Concept using Symbolic Dynamics and Compositional Data Augmentation

    cs.LG 2025-08 reject novelty 6.0 of 10

    Clinical time series can be synthesized compositionally by clustering subsequences into symbols and recombining them, producing training data that matches or improves on the original in forecasting and SOFA score prediction.

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