A stochastic approach for generating spectrum compatible fully nonstationary earthquakes

[1]  P. C. Jennings,et al.  Simulated earthquake motions , 1968 .

[2]  M. K. Kaul,et al.  Stochastic characterization of earthquakes through their response spectrum , 1978 .

[3]  C. Sundararajan An iterative method for the generation of seismic power spectral density functions , 1980 .

[4]  André Preumont A method for the generation of artificial earthquake accelerograms , 1980 .

[5]  Dieter D. Pfaffinger,et al.  Calculation of Power Spectra from Response Spectra , 1983 .

[6]  André Preumont,et al.  The generation of spectrum compatible accelerograms for the design of nuclear power plants , 1984 .

[7]  André Preumont,et al.  The generation of non-separable artificial earthquake accelerograms for the design of nuclear power plants , 1985 .

[8]  P. D. Spanos,et al.  A statistical approach to generation of design spectrum compatible earthquake time histories , 1985 .

[9]  Masanobu Shinozuka,et al.  Stochastic Methods in Structural Dynamics , 1987 .

[10]  Masanobu Shinozuka,et al.  Stochastic Fields and their Digital Simulation , 1987 .

[11]  Michael E. Barenberg,et al.  Inelastic Response of a Spectrum-Compatible Artificial Accelerogram , 1989 .

[12]  L. Cohen,et al.  Time-frequency distributions-a review , 1989, Proc. IEEE.

[13]  Y. K. Wen,et al.  Modeling of nonstationary ground motion and analysis of inelastic structural response , 1990 .

[14]  A. Kiureghian,et al.  Response spectrum method for multi‐support seismic excitations , 1992 .

[15]  Hiroyuki Kameda,et al.  Simulated Earthquake Ground Motions for Design Purpose , 1993 .

[16]  George Deodatis,et al.  Non-stationary stochastic vector processes: seismic ground motion applications , 1996 .

[17]  Joel P. Conte,et al.  Fully nonstationary analytical earthquake ground-motion model , 1997 .

[18]  Jamshid Ghaboussi,et al.  New method of generating spectrum compatible accelerograms using neural networks , 1998 .

[19]  Shahram Sarkani,et al.  Spectral characteristics of nonstationary random processes — a critical review , 1999 .

[20]  Jamshid Ghaboussi,et al.  Generating multiple spectrum compatible accelerograms using stochastic neural networks , 2001 .

[21]  Vinay K. Gupta,et al.  WAVELET-BASED GENERATION OF SPECTRUM COMPATIBLE TIME-HISTORIES , 2002 .

[22]  Shie Qian,et al.  Simulations of non‐stationary frequency content and its importance to seismic assessment of structures , 2002 .

[23]  Pierfrancesco Cacciola,et al.  Combination of modal responses consistent with seismic input representation , 2004 .

[24]  P. Spanos,et al.  Evolutionary Spectra Estimation Using Wavelets , 2004 .

[25]  Julian J. Bommer,et al.  Processing of strong-motion accelerograms: needs, options and consequences , 2005 .

[26]  Luis E. Suarez,et al.  Generation of artificial earthquakes via the wavelet transform , 2005 .

[27]  JONATHAN HANCOCK,et al.  AN IMPROVED METHOD OF MATCHING RESPONSE SPECTRA OF RECORDED EARTHQUAKE GROUND MOTION USING WAVELETS , 2006 .

[28]  Agathoklis Giaralis,et al.  Time–frequency representation of earthquake accelerograms and inelastic structural response records using the adaptive chirplet decomposition and empirical mode decomposition , 2007 .

[29]  Agathoklis Giaralis,et al.  Numerical Treatment of Seismic Accelerograms and of Inelastic Seismic Structural Responses Using Harmonic Wavelets , 2007, Comput. Aided Civ. Infrastructure Eng..

[30]  Agathoklis Giaralis,et al.  Wavelet-based response spectrum compatible synthesis of accelerograms—Eurocode application (EC8) , 2009 .