1999
DOI: 10.1364/ao.38.003857
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Modeling the combined effect of static and varying phase distortions on the performance of adaptive optical systems

Abstract: The end-to-end performance achieved by an adaptive optical (AO) imaging system is determined by a combination of the residual time-varying phase distortions associated with atmospheric turbulence and the quasi-static unsensed and uncorrectable aberrations in the optical system itself. Although the effects of these two errors on the time-averaged Strehl ratio and the time-averaged optical transfer function (OTF) of the AO system are not formally separable, such an approximation is found to be accurate to within… Show more

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Cited by 5 publications
(6 citation statements)
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“…This relation holds formally for statistically stationary turbulence (turbulence free of AO compensation is stationary) and is a surprisingly robust approximation for nonstationary turbulence (Ellerbroek & Tyler 1999). This means that equation ( 29) can be rewritten as…”
Section: A{p}mentioning
confidence: 95%
“…This relation holds formally for statistically stationary turbulence (turbulence free of AO compensation is stationary) and is a surprisingly robust approximation for nonstationary turbulence (Ellerbroek & Tyler 1999). This means that equation ( 29) can be rewritten as…”
Section: A{p}mentioning
confidence: 95%
“…It has been shown that decoupling static and residual turbulence holds to a high level of accuracy [10], hence the multiplicative approximation made in (2.1) is accurate. Since PSFs are recorded on digital sensors, all quantities in (2.1) are discrete, matching the Spatial Domain (SD) detector pixel sampling and field of view (FoV).…”
Section: Overviewmentioning
confidence: 99%
“…14 Other detailed analyses of closedloop systems are presented elsewhere. [15][16][17][18][19] 3 Concept of H ؕ Control…”
Section: Impetus For a Multivariable Controllermentioning
confidence: 99%