Neural Network Aided Glitch-Burst Discrimination and Glitch Classification
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[1] Salvatore Rampone,et al. Three-and-six-month-before forecast of water resources in a karst aquifer in the Terminio massif (Southern Italy) , 2013, Appl. Soft Comput..
[2] Fabio Postiglione,et al. Robust gravitational wave burst detection and source localization in a network of interferometers using cross-Wigner spectra , 2011, 1112.5105.
[3] Ik Siong Heng,et al. Rotating stellar core-collapse waveform decomposition: a principal component analysis approach , 2008, 0810.5707.
[4] C. Ott,et al. Gravitational wave burst signal from core collapse of rotating stars , 2008, 0806.4953.
[5] Maria Principe,et al. Modeling the impulsive noise component and its effect on the operation of a simple coherent network algorithm for detecting unmodeled gravitational wave bursts , 2008, 0806.4574.
[6] S. Mukherjee. Preliminary results from the hierarchical glitch pipeline , 2007 .
[7] Soumya D. Mohanty,et al. Coherent network analysis for triggered gravitational wave burst searches , 2007, 0709.0940.
[8] A. Lazzarini,et al. Coherent network analysis technique for discriminating gravitational-wave bursts from instrumental noise , 2006, gr-qc/0605002.
[9] Soumya D. Mohanty,et al. Variability of signal-to-noise ratio and the network analysis of gravitational wave burst signals , 2006, gr-qc/0601076.
[10] Laura Cadonati,et al. CorrPower: a cross-correlation-based algorithm for triggered and untriggered gravitational-wave burst searches , 2005 .
[11] Tx,et al. Constraint Likelihood analysis for a network of gravitational wave detectors , 2005, gr-qc/0508068.
[12] Tucson,et al. Gravitational Waves from Axisymmetric, Rotating Stellar Core Collapse , 2003, astro-ph/0307472.
[13] Klaus Schulten,et al. Self-organizing maps: stationary states, metastability and convergence rate , 1992, Biological Cybernetics.
[14] Klaus Schulten,et al. Self-organizing maps: ordering, convergence properties and energy functions , 1992, Biological Cybernetics.
[15] Gennaro Miele,et al. Thinking, Observing and Mining the Universe , 2004 .
[16] Teuvo Kohonen,et al. Self-organized formation of topologically correct feature maps , 2004, Biological Cybernetics.
[17] J. Sylvestre. Optimal generalization of power filters for gravitational wave bursts from single to multiple detectors , 2003, gr-qc/0308062.
[18] E. Porter,et al. Coincidence and coherent data analysis methods for gravitational wave bursts in a network of interferometric detectors , 2003, gr-qc/0307100.
[19] Andreas Haungs,et al. Image and non-image parameters of atmospheric Cherenkov events: a comparative study of their γ-ray/hadron classification potential in ultrahigh energy regime , 2002 .
[20] Roberto Tagliaferri,et al. A neural network-based approach to noise identification of interferometric GW antennas: the case of the 40 m Caltech laser interferometer , 2002 .
[21] J. Font,et al. Relativistic simulations of rotational core collapse - II. Collapse dynamics and gravitational radiation , 2002, astro-ph/0204289.
[22] D. Smirnov. A Neural Net technique for the Higgs Search at the Tevatron , 2002 .
[23] Steven A. Gabriel,et al. Neural network prediction of solar energetic proton events with long lead times , 2002 .
[24] A. Vicer'e. Optimal detection of burst events in gravitational wave interferometric observatories , 2001, gr-qc/0112013.
[25] M. Barsuglia,et al. Detection in coincidence of gravitational wave bursts with a network of interferometric detectors: Geometric acceptance and timing , 2001, gr-qc/0107081.
[26] S. Sciutto,et al. A multivariate study of mass composition for simulated showers at the Auger South Observatory , 2001, astro-ph/0109140.
[27] H. Lampeitl,et al. Particle identification by multifractal parameters in γ-astronomy with the HEGRA-Cherenkov-telescopes , 2001, astro-ph/0101318.
[28] E. al.,et al. Primary proton spectrum between 200-TeV and 1000-TeV observed with the Tibet burst detector and air shower array , 2000, astro-ph/0010292.
[29] Mohamed Ibnkahla,et al. Convergence properties of self-organizing maps applied for communication channel equalization , 2000, 2000 IEEE International Conference on Acoustics, Speech, and Signal Processing. Proceedings (Cat. No.00CH37100).
[30] ARGO-YBJ Collaboration presented by S. Bussino. Gamma-Hadron Discrimination with a Neural Network in the ARGO-YBJ Experiment , 1999, astro-ph/9906201.
[31] R. Tagliaferri,et al. A Neural Network-based ARX Model of Virgo Noise ” , 1999, astro-ph/9906107.
[32] T. Zwerger,et al. Dynamics and gravitational wave signature of axisymmetric rotational core collapse , 1997 .
[33] R. Horowitz,et al. Self-organizing neural networks: convergence properties , 1996, Proceedings of International Conference on Neural Networks (ICNN'96).
[34] Heekuck Oh,et al. Neural Networks for Pattern Recognition , 1993, Adv. Comput..
[35] George Cybenko,et al. Approximation by superpositions of a sigmoidal function , 1992, Math. Control. Signals Syst..
[36] F. Girosi,et al. Networks for approximation and learning , 1990, Proc. IEEE.
[37] M. Tinto,et al. Near optimal solution to the inverse problem for gravitational-wave bursts. , 1989, Physical review. D, Particles and fields.
[38] Donald W. Bouldin,et al. A Cluster Separation Measure , 1979, IEEE Transactions on Pattern Analysis and Machine Intelligence.