Solar Magnetic Feature Detection and Tracking for Space Weather Monitoring
arXiv:1006.5898 · doi:10.1016/j.asr.2010.06.024
Abstract
We present an automated system for detecting, tracking, and cataloging emerging active regions throughout their evolution and decay using SOHO Michelson Doppler Interferometer (MDI) magnetograms. The SolarMonitor Active Region Tracking (SMART) algorithm relies on consecutive image differencing to remove both quiet-Sun and transient magnetic features, and region-growing techniques to group flux concentrations into classifiable features. We determine magnetic properties such as region size, total flux, flux imbalance, flux emergence rate, Schrijver's R-value, R* (a modified version of R), and Falconer's measurement of non-potentiality. A persistence algorithm is used to associate developed active regions with emerging flux regions in previous measurements, and to track regions beyond the limb through multiple solar rotations. We find that the total number and area of magnetic regions on disk vary with the sunspot cycle. While sunspot numbers are a proxy to the solar magnetic field, SMART offers a direct diagnostic of the surface magnetic field and its variation over timescale of hours to years. SMART will form the basis of the active region extraction and tracking algorithm for the Heliophysics Integrated Observatory (HELIO).
References in corpus (1)
Cited by in corpus (13)
- A Comparison of Flare Forecasting Methods, I: Results from the "All-Clear" Workshop
- Solar Flare Prediction Model with Three Machine-Learning Algorithms Using Ultraviolet Brightening and Vector Magnetogram
- Predicting Solar Flares Using a Long Short-Term Memory Network
- Source of a Prominent Poleward Surge During Solar Cycle 24
- Towards Coupling Full-disk and Active Region-based Flare Prediction for Operational Space Weather Forecasting
- Properties of quasi-periodic pulsations in solar flares from a single active region
- Improved AI-generated Solar Farside Magnetograms by STEREO and SDO Data Sets and Their Release
- Reliable Probability Forecast of Solar Flares: Deep Flare Net-Reliable (DeFN-R)
- AutoTAB: Automatic Tracking Algorithm for Bipolar Magnetic Regions
- Long-period oscillations of active region patterns: least-squares mapping on second-order curves
- Automated detection of coronaL MAss ejecta origiNs for space weather AppliCations (ALMANAC)
- Real-time solar image classification: assessing spectral, pixel-based approaches
- Automation of the filament tracking in the framework of the HELIO project