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Recalibrating probabilistic forecasts of epidemics
by
Tibshirani, Ryan J.
, Rumack, Aaron
, Rosenfeld, Roni
in
Earth Sciences
/ Engineering and Technology
/ Epidemics
/ Forecasting
/ Humans
/ Influenza, Human - epidemiology
/ Medicine and Health Sciences
/ Physical Sciences
/ Research and Analysis Methods
/ Retrospective Studies
/ Uncertainty
2022
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Recalibrating probabilistic forecasts of epidemics
by
Tibshirani, Ryan J.
, Rumack, Aaron
, Rosenfeld, Roni
in
Earth Sciences
/ Engineering and Technology
/ Epidemics
/ Forecasting
/ Humans
/ Influenza, Human - epidemiology
/ Medicine and Health Sciences
/ Physical Sciences
/ Research and Analysis Methods
/ Retrospective Studies
/ Uncertainty
2022
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Do you wish to request the book?
Recalibrating probabilistic forecasts of epidemics
by
Tibshirani, Ryan J.
, Rumack, Aaron
, Rosenfeld, Roni
in
Earth Sciences
/ Engineering and Technology
/ Epidemics
/ Forecasting
/ Humans
/ Influenza, Human - epidemiology
/ Medicine and Health Sciences
/ Physical Sciences
/ Research and Analysis Methods
/ Retrospective Studies
/ Uncertainty
2022
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Journal Article
Recalibrating probabilistic forecasts of epidemics
2022
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Overview
Distributional forecasts are important for a wide variety of applications, including forecasting epidemics. Often, forecasts are miscalibrated, or unreliable in assigning uncertainty to future events. We present a recalibration method that can be applied to a black-box forecaster given retrospective forecasts and observations, as well as an extension to make this method more effective in recalibrating epidemic forecasts. This method is guaranteed to improve calibration and log score performance when trained and measured in-sample. We also prove that the increase in expected log score of a recalibrated forecaster is equal to the entropy of the PIT distribution. We apply this recalibration method to the 27 influenza forecasters in the FluSight Network and show that recalibration reliably improves forecast accuracy and calibration. This method, available on Github, is effective, robust, and easy to use as a post-processing tool to improve epidemic forecasts.
Publisher
Public Library of Science,Public Library of Science (PLoS)
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