Controlling the False Discovery Rate in Astrophysical Data Analysis
arXiv:astro-ph/0107034 · doi:10.1086/324109
Abstract
The False Discovery Rate (FDR) is a new statistical procedure to control the number of mistakes made when performing multiple hypothesis tests, i.e. when comparing many data against a given model hypothesis. The key advantage of FDR is that it allows one to a priori control the average fraction of false rejections made (when comparing to the null hypothesis) over the total number of rejections performed. We compare FDR to the standard procedure of rejecting all tests that do not match the null hypothesis above some arbitrarily chosen confidence limit, e.g. 2 sigma, or at the 95% confidence level. When using FDR, we find a similar rate of correct detections, but with significantly fewer false detections. Moreover, the FDR procedure is quick and easy to compute and can be trivially adapted to work with correlated data. The purpose of this paper is to introduce the FDR procedure to the astrophysics community. We illustrate the power of FDR through several astronomical examples, including the detection of features against a smooth one-dimensional function, e.g. seeing the ``baryon wiggles'' in a power spectrum of matter fluctuations, and source pixel detection in imaging data. In this era of large datasets and high precision measurements, FDR provides the means to adaptively control a scientifically meaningful quantity -- the number of false discoveries made when conducting multiple hypothesis tests.
15 pages, 9 figures. Submitted to AJ
References in corpus (3)
Cited by in corpus (64)
- Galaxy Star-Formation as a Function of Environment in the Early Data Release of the Sloan Digital Sky Survey
- Galaxy ecology: groups and low-density environments in the SDSS and 2dFGRS
- The SCUBA HAlf Degree Extragalactic Survey (SHADES) -- II. Submillimetre maps, catalogue and number counts
- Constraints on the Progenitor System of the Type Ia Supernova SN 2011fe/PTF11kly
- The C4 Clustering Algorithm: Clusters of Galaxies in the Sloan Digital Sky Survey
- The Environment of AGNs in the Sloan Digital Sky Survey
- Milagro Observations of Multi-TeV Emission from Galactic Sources in the Fermi Bright Source List
- Discovery of extreme particle acceleration in the microquasar Cygnus X-3
- The Phoenix Deep Survey: The 1.4 GHz microJansky catalogue
- Noise Based Detection and Segmentation of Nebulous Objects
- Results from the Supernova Photometric Classification Challenge
- A new source detection algorithm using FDR
- M Dwarfs in SDSS Stripe 82: Photometric Light Curves and Flare Rate Analysis
- Tests of General Relativity with GWTC-3
- Duchamp: a 3D source finder for spectral-line data
- M Dwarf Flares from Time-Resolved SDSS Spectra
- Multi-wavelength characterization of stellar flares on low-mass stars using SDSS and 2MASS time domain surveys
- The VLA-COSMOS Survey: I. Radio Identifications from the Pilot Project
- K2 Ultracool Dwarfs Survey. III. White Light Flares are Ubiquitous in M6-L0 Dwarfs
- Weak Lensing Mass Reconstruction using Wavelets
- Episodic Transient Gamma-Ray Emission from the Microquasar Cygnus X-1
- Disk Loss and Disk Renewal Phases in Classical Be Stars I: Analysis of Long-Term Spectropolarimetric Data
- Berkeley Supernova Ia Program III: Spectra Near Maximum Brightness Improve the Accuracy of Derived Distances to Type Ia Supernovae
- H0LiCOW VIII. A weak lensing measurement of the external convergence in the field of the lensed quasar HE04351223
- Unsupervised empirical Bayesian multiple testing with external covariates
- A nonparametric empirical Bayes framework for large-scale multiple testing
- Weak Lensing Galaxy Cluster Field Reconstruction
- A wider look at the gravitational-wave transients from GWTC-1 using an unmodeled reconstruction method
- AGILE detection of Cygnus X-3 γ-ray active states during the period mid-2009/mid-2010
- An X-ray survey of the central molecular zone: variability of the Fe Ka emission line
- The Cluster Galaxy Circular Velocity Function
- K2 Ultracool Dwarfs Survey. V. High superflare rates on rapidly rotating late-M dwarfs
- Sunyaev-Zel'dovich clusters reconstruction in multiband bolometer camera surveys
- Constraints on Stellar Flare Energy Ratios in the NUV and Optical From a Multiwavelength Study of GALEX and Kepler Flare Stars
- The ATLAS 5.5 GHz Survey of the Extended Chandra Deep Field South: The Second Data Release
- Ultracool Dwarfs Survey. VI. White light superflares observed on an L5 dwarf and flare rates of L dwarfs
- DRAFTS: A Deep, Rapid Archival Flare Transient Search in the Galactic Bulge
- H0LiCOW XI. A weak lensing measurement of the external convergence in the field of the lensed quasar B1608+656 using HST and Subaru deep imaging
- The ATLAS 5.5 GHz survey of the Extended Chandra Deep Field South: Catalogue, Source Counts and Spectral Indices
- Measuring the Three Point Correlation Function of the Cosmic Microwave Background
- X-ray properties of Lyman Break Galaxies in the Hubble Deep Field North region
- The completeness and reliability of threshold and false-discovery-rate source extraction algorithms for compact continuum sources
- PySE: Software for Extracting Sources from Radio Images
- Minute-cadence Observations of the LAMOST Fields with the TMTS: I. Methodology of Detecting Short-period Variables and Results from the first-year Survey
- Type I error rate control for testing many hypotheses: a survey with proofs
- Reliable detection and characterization of low-frequency polarized sources in the LOFAR M51 field
- Detecting the Baryons in Matter Power Spectra
- Darth Fader: Using wavelets to obtain accurate redshifts of spectra at very low signal-to-noise
- Photometric Flaring Fraction of M dwarf Stars from the SkyMapper Southern Survey
- The correct estimate of the probability of false detection of the matched filter in the detection of weak signals. II. (Further results with application to a set of ALMA and ATCA data)
- The ATLAS 9.0 GHz Survey of the Extended Chandra Deep Field South: The Faint 9.0 GHz Radio Population
- A search for OH 6 GHz maser emission towards supernova remnants
- The ALMA Frontier Fields survey V: ALMA Stacking of Lyman-Break Galaxies in Abell 2744, Abell 370, Abell S1063, MACSJ0416.1-2403 and MACSJ1149.5+2223
- Correct estimate of the probability of false detection of the matched filter in weak-signal detection problems. III (Peak distribution method versus the Gumbel distribution method)
- The SCUBA-2 Ambitious Sky Survey: a catalogue of beam-sized sources in the Galactic longitude range 120 to 140
- False discovery rate: setting the probability of false claim of detection
- Comparison of Halo Detection from Noisy Weak Lensing Convergence Maps with Gaussian Smoothing and MRLens Treatment
- The Interplay of Cluster and Galaxy Evolution
- Milagro Observations of Potential TeV Emitters
- Heterocedasticity-Adjusted Ranking and Thresholding for Large-Scale Multiple Testing
- On the future of astrostatistics: statistical foundations and statistical practice
- Spatially Dependent Photometric Activity of M dwarfs in the Solar Cylinder
- Charge-Injection Device Imaging of Sirius with Contrast Ratios Greater than 1:26 Million
- Estimation of a Two-component Mixture Model with Applications to Multiple Testing