Fixing the Double Penalty in Data-Driven Weather Forecasting Through a Modified Spherical Harmonic Loss Function
Christopher Subich, Syed Zahid Husain, Leo Separovic, Jing Yang
Abstract
Recent advancements in data-driven weather forecasting models have delivered deterministic models that outperform the leading operational forecast systems based on traditional, physics-based models. However, these data-driven models are typically trained with a mean squared error loss function, which causes smoothing of fine scales through a "double penalty" effect. We develop a simple, parameter-free modification to this loss function that avoids this problem by separating the loss attributable to decorrelation from the loss attributable to spectral amplitude errors. Finetuning the GraphCast model with this new loss function results in sharp deterministic weather forecasts, an increase of the model's effective resolution from 1,250 km to 160 km, improvements to ensemble spread, and improvements to predictions of tropical cyclone strength and surface wind extremes.
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Cited by top-tier papers5
- STCast: Adaptive Boundary Alignment for Global and Regional Weather ForecastingHao Chen, Tao Han, Jie Zhang, Song Guo et al.CVPR 2026 · 7 citations
- (Sparse) Attention to the Details: Preserving Spectral Fidelity in ML-based Weather Forecasting ModelsMaksim Zhdanov, Ana Lucic, Max Welling, Jan-Willem van de MeentICML 2026 · 2 citations
- Physically-Guided Data-Space Rectified Flow for Precipitation NowcastingWenjie Luo, chaorong li, Chuanhu Deng, Zhuo WangICML 2026
- Multi-Scale Wavelet Transformers for Operator Learning of Dynamical SystemsXuesong Wang, Michael Groom, Rafael Oliveira, He Zhao et al.ICML 2026
- WIND: Weather Inverse Diffusion for Zero-Shot Atmospheric ModelingMichael Aich, Andreas Fürst, Florian Sestak, Carlos Ruiz-Gonzalez et al.ICML 2026
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