English

Adaptive Bias Correction for Improved Subseasonal Forecasting

Machine Learning 2023-07-19 v3 Atmospheric and Oceanic Physics Machine Learning

Abstract

Subseasonal forecasting -- predicting temperature and precipitation 2 to 6 weeks ahead -- is critical for effective water allocation, wildfire management, and drought and flood mitigation. Recent international research efforts have advanced the subseasonal capabilities of operational dynamical models, yet temperature and precipitation prediction skills remain poor, partly due to stubborn errors in representing atmospheric dynamics and physics inside dynamical models. Here, to counter these errors, we introduce an adaptive bias correction (ABC) method that combines state-of-the-art dynamical forecasts with observations using machine learning. We show that, when applied to the leading subseasonal model from the European Centre for Medium-Range Weather Forecasts (ECMWF), ABC improves temperature forecasting skill by 60-90% (over baseline skills of 0.18-0.25) and precipitation forecasting skill by 40-69% (over baseline skills of 0.11-0.15) in the contiguous U.S. We couple these performance improvements with a practical workflow to explain ABC skill gains and identify higher-skill windows of opportunity based on specific climate conditions.

Keywords

Cite

@article{arxiv.2209.10666,
  title  = {Adaptive Bias Correction for Improved Subseasonal Forecasting},
  author = {Soukayna Mouatadid and Paulo Orenstein and Genevieve Flaspohler and Judah Cohen and Miruna Oprescu and Ernest Fraenkel and Lester Mackey},
  journal= {arXiv preprint arXiv:2209.10666},
  year   = {2023}
}
R2 v1 2026-06-28T01:51:26.848Z