Performance of Major Flare Watches from the Max Millennium Program (2001-2010)
arXiv:1512.04518 · doi:10.1007/s11207-015-0833-6
Abstract
The physical processes that trigger solar flares are not well understood and significant debate remains around processes governing particle acceleration, energy partition, and particle and energy transport. Observations at high resolution in energy, time, and space are required in multiple energy ranges over the whole course of many flares in order to build an understanding of these processes. Obtaining high-quality, co-temporal data from ground- and space- based instruments is crucial to achieving this goal and was the primary motivation for starting the Max Millennium program and Major Flare Watch (MFW) alerts, aimed at coordinating observations of all flares >X1 GOES X-ray classification (including those partially occulted by the limb). We present a review of the performance of MFWs from 1 February 2001 to 31 May 2010, inclusive, that finds: (1) 220 MFWs were issued in 3,407 days considered (6.5% duty cycle), with these occurring in 32 uninterrupted periods that typically last 2-8 days; (2) 56% of flares >X1 were caught, occurring in 19% of MFW days; (3) MFW periods ended at suitable times, but substantial gain could have been achieved in percentage of flares caught if periods had started 24 h earlier; (4) MFWs successfully forecast X-class flares with a true skill statistic (TSS) verification metric score of 0.500, that is comparable to a categorical flare/no-flare interpretation of the NOAA Space Weather Prediction Centre probabilistic forecasts (TSS = 0.488).
19 pages, 2 figures, accepted for publication in Solar Physics
References in corpus (4)
- Solar Flare Prediction Using SDO/HMI Vector Magnetic Field Data with a Machine-Learning Algorithm
- Toward Reliable Benchmarking of Solar Flare Forecasting Methods
- Automated Solar Flare Statistics in Soft X-rays over 37 Years of GOES Observations - The Invariance of Self-Organized Criticality during Three Solar Cycles
- A Comprehensive Method of Estimating Electric Fields from Vector Magnetic Field and Doppler Measurements
Cited by in corpus (8)
- Flare forecasting at the Met Office Space Weather Operations Centre
- A Comparison of Flare Forecasting Methods. III. Systematic Behaviors of Operational Solar Flare Forecasting Systems
- Prediction of Solar Flares Using Unique Signatures of Magnetic Field Images
- A Comparison of Flare Forecasting Methods. IV. Evaluating Consecutive-Day Forecasting Patterns
- Flaring Rates and the Evolution of Sunspot Group McIntosh Classifications
- Reliable Probability Forecast of Solar Flares: Deep Flare Net-Reliable (DeFN-R)
- On the Performance of Multi-Instrument Solar Flare Observations During Solar Cycle 24
- Evaluating Pointing Strategies for Future Solar Flare Missions