ExoTST: Exogenous-Aware Temporal Sequence Transformer for Time Series Prediction

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Main Authors: Tayal, Kshitij, Renganathan, Arvind, Jia, Xiaowei, Kumar, Vipin, Lu, Dan
Format: Preprint
Published: 2024
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author Tayal, Kshitij
Renganathan, Arvind
Jia, Xiaowei
Kumar, Vipin
Lu, Dan
author_facet Tayal, Kshitij
Renganathan, Arvind
Jia, Xiaowei
Kumar, Vipin
Lu, Dan
contents Accurate long-term predictions are the foundations for many machine learning applications and decision-making processes. Traditional time series approaches for prediction often focus on either autoregressive modeling, which relies solely on past observations of the target ``endogenous variables'', or forward modeling, which considers only current covariate drivers ``exogenous variables''. However, effectively integrating past endogenous and past exogenous with current exogenous variables remains a significant challenge. In this paper, we propose ExoTST, a novel transformer-based framework that effectively incorporates current exogenous variables alongside past context for improved time series prediction. To integrate exogenous information efficiently, ExoTST leverages the strengths of attention mechanisms and introduces a novel cross-temporal modality fusion module. This module enables the model to jointly learn from both past and current exogenous series, treating them as distinct modalities. By considering these series separately, ExoTST provides robustness and flexibility in handling data uncertainties that arise from the inherent distribution shift between historical and current exogenous variables. Extensive experiments on real-world carbon flux datasets and time series benchmarks demonstrate ExoTST's superior performance compared to state-of-the-art baselines, with improvements of up to 10\% in prediction accuracy. Moreover, ExoTST exhibits strong robustness against missing values and noise in exogenous drivers, maintaining consistent performance in real-world situations where these imperfections are common.
format Preprint
id arxiv_https___arxiv_org_abs_2410_12184
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle ExoTST: Exogenous-Aware Temporal Sequence Transformer for Time Series Prediction
Tayal, Kshitij
Renganathan, Arvind
Jia, Xiaowei
Kumar, Vipin
Lu, Dan
Machine Learning
Accurate long-term predictions are the foundations for many machine learning applications and decision-making processes. Traditional time series approaches for prediction often focus on either autoregressive modeling, which relies solely on past observations of the target ``endogenous variables'', or forward modeling, which considers only current covariate drivers ``exogenous variables''. However, effectively integrating past endogenous and past exogenous with current exogenous variables remains a significant challenge. In this paper, we propose ExoTST, a novel transformer-based framework that effectively incorporates current exogenous variables alongside past context for improved time series prediction. To integrate exogenous information efficiently, ExoTST leverages the strengths of attention mechanisms and introduces a novel cross-temporal modality fusion module. This module enables the model to jointly learn from both past and current exogenous series, treating them as distinct modalities. By considering these series separately, ExoTST provides robustness and flexibility in handling data uncertainties that arise from the inherent distribution shift between historical and current exogenous variables. Extensive experiments on real-world carbon flux datasets and time series benchmarks demonstrate ExoTST's superior performance compared to state-of-the-art baselines, with improvements of up to 10\% in prediction accuracy. Moreover, ExoTST exhibits strong robustness against missing values and noise in exogenous drivers, maintaining consistent performance in real-world situations where these imperfections are common.
title ExoTST: Exogenous-Aware Temporal Sequence Transformer for Time Series Prediction
topic Machine Learning
url https://arxiv.org/abs/2410.12184