A New Approach to Time Domain Classification of Broadband Noise in Gravitational Wave Data
arXiv:1201.4400 · doi:10.1103/PhysRevD.86.023004
Abstract
Broadband noise in gravitational wave (GW) detectors, also known as triggers, can often be a deterrant to the efficiency with which astrophysical search pipelines detect sources. It is important to understand their instrumental or environmental origin so that they could be eliminated or accounted for in the data. Since the number of triggers is large, data mining approaches such as clustering and classification are useful tools for this task. Classification of triggers based on a handful of discrete properties has been done in the past. A rich information content is available in the waveform or 'shape' of the triggers that has had a rather restricted exploration so far. This paper presents a new way to classify triggers deriving information from both trigger waveforms as well as their discrete physical properties using a sequential combination of the Longest Common Sub-Sequence (LCSS) and LCSS coupled with Fast Time Series Evaluation (FTSE) for waveform classification and the multidimensional hierarchical classification (MHC) analysis for the grouping based on physical properties. A generalized k-means algorithm is used with the LCSS (and LCSS+FTSE) for clustering the triggers using a validity measure to determine the correct number of clusters in absence of any prior knowledge. The results have been demonstrated by simulations and by application to a segment of real LIGO data from the sixth science run.
16 pages, 16 figures
References in corpus (8)
- Multiresolution techniques for the detection of gravitational-wave bursts
- First search for gravitational waves from the youngest known neutron star
- All-sky search for gravitational-wave bursts in the first joint LIGO-GEO-Virgo run
- The LSC Glitch Group : Monitoring Noise Transients during the fifth LIGO Science Run
- Search for gravitational wave ringdowns from perturbed black holes in LIGO S4 data
- Performance of the WaveBurst algorithm on LIGO data
- Veto Studies for LIGO Inspiral Triggers
- Proposed method for searches of gravitational waves from PKS 2155-304 and other blazar flares