Bridging short- and medium-range weather forecasting with machine learning

📅 2026-08-27
📈 Citations: 0
Influential: 0
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🤖 AI Summary
研究通过开发Nested-EAGLE模型,结合短中期天气预报,利用机器学习提高美国本土地区天气预测准确性。
📝 Abstract
The National Oceanic and Atmospheric Administration (NOAA) employs independent prediction systems for distinct forecast products. While some separation is practical, we argue that combining short- and medium-range weather into a single prediction system would provide the public with a useful distillation of global weather and its impacts. To this end, we present Nested-EAGLE (Experimental Artificial intelligence Global and Limited-area Ensemble): a 0.25° global weather model with a 6 km refinement over the Contiguous United States (CONUS). The model achieves significantly lower mean-squared error in near-surface and low-level quantities over CONUS compared to NOAA's Global Forecast System and High-Resolution Rapid Refresh (HRRR), while remaining competitive throughout the rest of the global atmosphere. We show that the skill gains for near-surface fields stem from incorporating high-resolution regional analysis data into training through the nesting process. Forecasts of precipitation amounts are less skillful than those from HRRR, owing to deterministic training. However, we show that Nested-EAGLE provides the most accurate forecasts of storm locations at longer leads, despite blurred extrema. Our results motivate future work to extend the skill gains beyond CONUS and improve precipitation representation.
Problem

Research questions and friction points this paper is trying to address.

short- and medium-range weather forecasting
single prediction system
global weather
Innovation

Methods, ideas, or system contributions that make the work stand out.

Nested-EAGLE
high-resolution regional analysis data
nesting process
skill gains
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