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Forecasting the Arrival Time of Coronal Mass Ejections: Analysis of the CCMC CME Scoreboard

Authors :
Riley, Pete
Mays, M. Leila
Andries, Jesse
Amerstorfer, Tanja
Biesecker, Douglas
Delouille, Veronique
Dumbovic, Mateja
Feng, Xueshang
Henley, Edmund
Linker, Jon A
Mostl, Christian
Nunez, Marlon
Pizzo, Vic
Temmer, Manuela
Tobiska, W. K
Verbeke, C
West, Matthew J
Zhao, Xinhua
Markus, Mona L
Source :
Space Weather. 16(9)
Publication Year :
2018
Publisher :
United States: NASA Center for Aerospace Information (CASI), 2018.

Abstract

Accurate forecasting of the properties of coronal mass ejections (CMEs) as they approach Earth is now recognized as an important strategic objective for both NOAA and NASA. The time of arrival of such events is a key parameter, one that had been anticipated to be relatively straightforward to constrain. In this study, we analyze forecasts submitted to the Community Coordinated Modeling Center at NASA's Goddard Space Flight Center over the last 6 years to answer the following questions: (1) How well do these models forecast the arrival time of CME-driven shocks? (2) What are the uncertainties associated with these forecasts? (3) Which model(s) perform best? (4) Have the models become more accurate during the past 6 years? We analyze all forecasts made by 32 models from 2013 through mid-2018, and additionally focus on 28 events, all of which were forecasted by six models. We find that the models are generally able to predict CME-shock arrival times, in an average sense, to within ±10 hr, but with standard deviations often exceeding 20 hr. The best performers, on the other hand, maintained a mean error (bias) of 1 hr, a mean absolute error of 13 hr, and a precision (standard deviation) of 15 hr. Finally, there is no evidence that the forecasts have become more accurate during this interval. We discuss the intrinsic simplifications of thevarious models analyzed, the limitations of this investigation, and suggest possible paths to improve these forecasts in the future.

Subjects

Subjects :
Astrophysics

Details

Language :
English
ISSN :
15427390 and 15394956
Volume :
16
Issue :
9
Database :
NASA Technical Reports
Journal :
Space Weather
Notes :
SPEC5732, , WBS 382230.02.01.01.01.02, , NNX15AF39G
Publication Type :
Report
Accession number :
edsnas.20190001667
Document Type :
Report
Full Text :
https://doi.org/10.1029/2018SW001962