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Physics-Guided Gated Recurrent Units for Inversion-Based Feedforward Control

delete2026-02-25
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PRE
AI
M
Mingdao Lin
M
Max Bolderman
M
Mircea Lazar
DOI:10.1109/TCST.2026.3662610delete
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Abstract

Abstract

En 中文
Inversion-based feedforward control relies on an accurate model that describes the inverse system dynamics. The gated recurrent unit (GRU), which is a recent architecture in recurrent neural networks (RNNs), is a strong candidate for obtaining such a model from data. However, due to their closed-box nature, GRUs face challenges such as limited interpretability and vulnerability to overfitting. Recently, physics-guided neural networks (PGNNs) have been introduced, which integrate the prior physical model structure into the prediction process. This approach not only improves training convergence, but also facilitates the learning of a physics-based model. In this work, we integrate a GRU in the PGNN framework to obtain a PG-GRU, based on which we adopt a two-step approach to feedforward control design. First, we adopt stable inversion techniques to design a stable linear model of the inverse dynamics. Then, a GRU trained on the residual is tailored to inverse system identification. The resulting PG-GRU feedforward controller is validated by means of real-life experiments on a two-mass spring-damper system, where it demonstrates roughly a twofold improvement compared to the linear feedforward and a preview-based GRU feedforward in terms of the integral absolute error (IAE).
Keywords:
Feedforward control
gated recurrent units (GRUs)
motion control
recurrent neural networks (RNNs)

Journal

IEEE Transactions on Control Systems Technology cover
IEEE Transactions on Control Systems Technology
IF:
3.9
Papers:
4.9K
Citations:
1.7W

Organization

E
Eindhoven University of Technology
Scholars:
1.6W
Papers: 1.5W
Citations: 2.2W