We investigate the use of Convolutional Neural Networks (including the modern ConvNeXt network family) to classify transient noise signals (i.e.~glitches) and gravitational waves in data from the Advanced LIGO detectors. First, we use models with a supervised learning approach, both trained from scratch using the Gravity Spy dataset and employing transfer learning by fine-tuning pre-trained models in this dataset. Second, we also explore a self-supervised approach, pre-training models with automatically generated pseudo-labels. Our findings are very close to existing results for the same dataset, reaching values for the F1 score of 97.18% (94.15%) for the best supervised (self-supervised) model. We further test the models using actual gravi...
The observation of gravitational waves is hindered by the presence of transient noise (glitches). We...
The low-latency characterization of detector noise is a crucial step in the detection of gravitation...
(abridged for arXiv) With the first direct detection of gravitational waves, the Advanced Laser Inte...
We investigate the use of convolutional neural networks (including the modern ConvNeXt network famil...
LIGO interferometer is considered the most sensitive and complicated gravitational experimental equi...
The sensitivity of searches for astrophysical transients in data from the Laser Interferometer Gravi...
Data streams of gravitational-wave detectors are polluted by transient noise features, or "glitches"...
The observation of gravitational waves from compact binary coalescences by LIGO and Virgo has begun ...
The noise of gravitational-wave (GW) interferometers limits their sensitivity and impacts the data q...
We present here the latest development of a machine-learning pipeline for pre-merger alerts from gra...
“The existence of gravitational waves (GWs), small perturbations in spacetime produced by accelerati...
Gravitational-wave astronomy is an emerging field in observational astrophysics concerned with the s...
In the field of gravitational-wave (GW) interferometers, the most severe limitation to the detection...
The observation of gravitational waves is hindered by the presence of transient noise (glitches). We...
Transient noise glitches in gravitational-wave detector data limit the sensitivity of searches and c...
The observation of gravitational waves is hindered by the presence of transient noise (glitches). We...
The low-latency characterization of detector noise is a crucial step in the detection of gravitation...
(abridged for arXiv) With the first direct detection of gravitational waves, the Advanced Laser Inte...
We investigate the use of convolutional neural networks (including the modern ConvNeXt network famil...
LIGO interferometer is considered the most sensitive and complicated gravitational experimental equi...
The sensitivity of searches for astrophysical transients in data from the Laser Interferometer Gravi...
Data streams of gravitational-wave detectors are polluted by transient noise features, or "glitches"...
The observation of gravitational waves from compact binary coalescences by LIGO and Virgo has begun ...
The noise of gravitational-wave (GW) interferometers limits their sensitivity and impacts the data q...
We present here the latest development of a machine-learning pipeline for pre-merger alerts from gra...
“The existence of gravitational waves (GWs), small perturbations in spacetime produced by accelerati...
Gravitational-wave astronomy is an emerging field in observational astrophysics concerned with the s...
In the field of gravitational-wave (GW) interferometers, the most severe limitation to the detection...
The observation of gravitational waves is hindered by the presence of transient noise (glitches). We...
Transient noise glitches in gravitational-wave detector data limit the sensitivity of searches and c...
The observation of gravitational waves is hindered by the presence of transient noise (glitches). We...
The low-latency characterization of detector noise is a crucial step in the detection of gravitation...
(abridged for arXiv) With the first direct detection of gravitational waves, the Advanced Laser Inte...