Aurora
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Aurora
Overview :
Aurora, developed by Microsoft Research, is a large-scale foundation model trained on over a million hours of diverse weather and climate data. Leveraging the advantages of foundation model approaches, Aurora provides operational predictions for various atmospheric prediction problems, including those with limited training data, heterogeneous variables, and extreme events. Aurora can generate 5-day global air pollution predictions and 10-day high-resolution weather forecasts in less than a minute, outperforming state-of-the-art traditional simulation tools and the best specialized deep learning models. These results demonstrate that foundation models can transform environmental prediction.
Target Users :
Aurora is suitable for meteorologists, environmental scientists, and policy makers who need rapid, accurate, and comprehensive atmospheric predictions. It helps them better understand climate change, develop mitigation strategies, and optimize resource allocation through high-quality predictions.
Total Visits: 1154.6M
Top Region: US(20.76%)
Website Views : 53.5K
Use Cases
Meteorologists use Aurora to predict extreme weather events, enabling proactive preparation and minimizing disaster impacts.
Environmental scientists leverage Aurora's predictions to study the effects of climate change on ecosystems.
Policy makers utilize Aurora's prediction data to develop plans for improving air quality.
Features
Generate 5-day global air pollution predictions
Generate 10-day high-resolution weather forecasts
Adapt to prediction problems with limited training data
Handle heterogeneous and extreme event prediction
Rapidly generate prediction results, improving efficiency
Exceed the performance of traditional tools and specialized models
How to Use
Step 1: Visit the Aurora model's webpage link.
Step 2: Familiarize yourself with the basic information and functionalities of the Aurora model.
Step 3: Select the desired prediction type based on your needs, such as air pollution or weather prediction.
Step 4: Input relevant parameters, such as geographical location and time range.
Step 5: Submit the prediction request and wait for Aurora to generate the prediction results.
Step 6: Analyze the prediction results and make corresponding decisions or conduct research accordingly.
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