Learnable Dynamic Temporal Pooling for Time Series Classification

Author:

Lee Dongha,Lee Seonghyeon,Yu Hwanjo

Abstract

With the increase of available time series data, predicting their class labels has been one of the most important challenges in a wide range of disciplines. Recent studies on time series classification show that convolutional neural networks (CNN) achieved the state-of-the-art performance as a single classifier. In this work, pointing out that the global pooling layer that is usually adopted by existing CNN classifiers discards the temporal information of high-level features, we present a dynamic temporal pooling (DTP) technique that reduces the temporal size of hidden representations by aggregating the features at the segment-level. For the partition of a whole series into multiple segments, we utilize dynamic time warping (DTW) to align each time point in a temporal order with the prototypical features of the segments, which can be optimized simultaneously with the network parameters of CNN classifiers. The DTP layer combined with a fully-connected layer helps to extract further discriminative features considering their temporal position within an input time series. Extensive experiments on both univariate and multivariate time series datasets show that our proposed pooling significantly improves the classification performance.

Publisher

Association for the Advancement of Artificial Intelligence (AAAI)

Subject

General Medicine

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1. Self-Bidirectional Decoupled Distillation for Time Series Classification;IEEE Transactions on Artificial Intelligence;2024-08

2. Densely Knowledge-Aware Network for Multivariate Time Series Classification;IEEE Transactions on Systems, Man, and Cybernetics: Systems;2024-04

3. Time series clustering of dynamical systems via deterministic learning;International Journal of Machine Learning and Cybernetics;2024-01-28

4. WHEN: A Wavelet-DTW Hybrid Attention Network for Heterogeneous Time Series Analysis;Proceedings of the 29th ACM SIGKDD Conference on Knowledge Discovery and Data Mining;2023-08-04

5. HXPY: A High-Performance Data Processing Package for Financial Time-Series Data;Journal of Computer Science and Technology;2023-01-31

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