Frequency-tuned state space models (S4D-FT) give slightly better median NSE and KGE than LSTM for rainfall-runoff prediction at 531 US watersheds.
Gated Recurrent Neural Networks with Weighted Time-Delay Feedback
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abstract
In this paper, we present a novel approach to modeling long-term dependencies in sequential data by introducing a gated recurrent unit (GRU) with a weighted time-delay feedback mechanism. Our proposed model, named $\tau$-GRU, is a discretized version of a continuous-time formulation of a recurrent unit, where the dynamics are governed by delay differential equations (DDEs). We prove the existence and uniqueness of solutions for the continuous-time model and show that the proposed feedback mechanism can significantly improve the modeling of long-term dependencies. Our empirical results indicate that $\tau$-GRU outperforms state-of-the-art recurrent units and gated recurrent architectures on a range of tasks, achieving faster convergence and better generalization.
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A Deep State Space Model for Rainfall-Runoff Simulations
Frequency-tuned state space models (S4D-FT) give slightly better median NSE and KGE than LSTM for rainfall-runoff prediction at 531 US watersheds.