Language Pre-training Guided Masking Representation Learning for Time Series Classification

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Abstract

The representation learning of time series has a wide range of downstream tasks and applications in many practical scenarios. However, due to the complexity, spatiotemporality, and continuity of sequential stream data, compared with the representation learning of structural data such as images/videos, the time series self-supervised representation learning is even more challenging. Besides, the direct application of existing contrastive learning and masked autoencoder based approaches to time series representation learning encounters inherent theoretical limitations, such as ineffective augmentation and masking strategies. To this end, we propose a Language Pre-training guided Masking Representation Learning (LPMRL) for times series classification. Specifically, we first propose a novel language pre-training guided masking encoder for adaptively sampling semantic spatiotemporal patches via natural language descriptions and improving the discriminability of latent representations. Furthermore, we present the dual-information contrastive learning mechanism to explore both local and global information by meticulously designing high-quality hard negative samples of time series data samples. As a result, we also design various experiments, such as visualization of masking position and distribution and reconstruction error to verify the reasonability of proposed language guided masking technique. Last, we evaluate the performance of proposed representation learning via classification task conducted on 106 time series datasets, which demonstrates the effectiveness of proposed method.

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APA

Tang, L., Wang, Z., Wang, J., He, G., Hao, Z., Wang, R., & Nie, F. (2025). Language Pre-training Guided Masking Representation Learning for Time Series Classification. In Proceedings of the AAAI Conference on Artificial Intelligence (Vol. 39, pp. 12631–12639). Association for the Advancement of Artificial Intelligence. https://doi.org/10.1609/aaai.v39i12.33377

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