Autoregressive Times Series Methods for Time Domain Astronomy
arXiv:1901.08003 · doi:10.3389/fphy.2018.00080
Abstract
Celestial objects exhibit a wide range of variability in brightness at different wavebands. Surprisingly, the most common methods for characterizing time series in statistics -- parametric autoregressive modeling -- is rarely used to interpret astronomical light curves. We review standard ARMA, ARIMA and ARFIMA (autoregressive moving average fractionally integrated) models that treat short-memory autocorrelation, long-memory `red noise', and nonstationary trends. Though designed for evenly spaced time series, moderately irregular cadences can be treated as evenly-spaced time series with missing data. Fitting algorithms are efficient and software implementations are widely available. We apply ARIMA models to light curves of four variable stars, discussing their effectiveness for different temporal characteristics. A variety of extensions to ARIMA are outlined, with emphasis on recently developed continuous-time models like CARMA and CARFIMA designed for irregularly spaced time series. Strengths and weakness of ARIMA-type modeling for astronomical data analysis and astrophysical insights are reviewed.
17 pages, 4 figures, published in 'Frontiers of Physics', vol 6, id. 80 (2018)
References in corpus (5)
- Deep-HiTS: Rotation Invariant Convolutional Neural Network for Transient Detection
- A transient search using combined human and machine classifications
- How far is quasar UV/optical variability from damped random walk at low frequency?
- Machine-learning Selection of Optical Transients in Subaru/Hyper Suprime-Cam Survey
- Uncertain classification of Variable Stars: handling observational GAPS and noise
Cited by in corpus (13)
- Looking at Blazar Light Curve Periodicities with Gaussian Processes
- AutoRegressive Planet Search: Application to the Kepler Mission
- AutoRegressive Planet Search: Methodology
- Discrete-time autoregressive model for unequally spaced time-series observations
- LSST Cadence Strategy Evaluations for AGN Time-series Data in Wide-Fast-Deep Field
- Variability Timescales of H on Active Mid-to-Late M dwarfs
- A 31.3 day Transient Quasiperiodic Oscillation in Gamma-ray Emission from Blazar S5 0716+714
- Optical variability modeling of newly identified blazar candidates behind Magellanic Clouds
- Long-term statistics of pulsar glitches due to history-dependent avalanches
- Cosmological evolution of quasar radio emission in the view of multifractality
- Do Cellular Automaton Avalanche Models Simulate the Quasi-Periodic Pulsations of Solar Flares?
- AutoRegressive Planet Search: Feasibility Study for Irregular Time Series
- Forecasting Short-term load using Econometrics time series model with T-student Distribution