15 April 2013 Identified state-space prediction model for aero-optical wavefronts
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Abstract
A state-space disturbance model and associated prediction filter for aero-optical wavefronts are described. The model is computed by system identification from a sequence of wavefronts measured in an airborne laboratory. Estimates of the statistics and flow velocity of the wavefront data are shown and can be computed from the matrices in the state-space model without returning to the original data. Numerical results compare velocity values and power spectra computed from the identified state-space model with those computed from the aero-optical data.
© 2013 Society of Photo-Optical Instrumentation Engineers (SPIE) 0091-3286/2013/$25.00 © 2013 SPIE
Azin Faghihi, Jonathan Tesch, and Steve Gibson "Identified state-space prediction model for aero-optical wavefronts," Optical Engineering 52(7), 071419 (15 April 2013). https://doi.org/10.1117/1.OE.52.7.071419
Published: 15 April 2013
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CITATIONS
Cited by 8 scholarly publications.
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KEYWORDS
Data modeling

Wavefronts

Statistical modeling

Digital filtering

Matrices

Statistical analysis

System identification

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