Related Experiment Video
Updated: Jul 12, 2026

Bringing the Visible Universe into Focus with Robo-AO
Published on: February 12, 2013
Fourier transform wavefront control with adaptive prediction of the atmosphere
Lisa A Poyneer1, Bruce A Macintosh, Jean-Pierre Véran
1Lawrence Livemore National Laboratory, CA 94550, USA. poyneer1@llnl.gov
Abstract:
Predictive Fourier control is a temporal power spectral density-based adaptive method for adaptive optics that predicts the atmosphere under the assumption of frozen flow. The predictive controller is based on Kalman filtering and a Fourier decomposition of atmospheric turbulence using the Fourier transform reconstructor. It provides a stable way to compensate for arbitrary numbers of atmospheric layers. For each Fourier mode, efficient and accurate algorithms estimate the necessary atmospheric parameters from closed-loop telemetry and determine the predictive filter, adjusting as conditions change. This prediction improves atmospheric rejection, leading to significant improvements in system performance. For a 48x48 actuator system operating at 2 kHz, five-layer prediction for all modes is achievable in under 2x10(9) floating-point operations/s.
Related Concept Videos
Properties of Fourier Transform I
In radio broadcasting, multiple audio signals often need to be transmitted simultaneously. The Fourier...
Continuous -time Fourier Transform
Fast Fourier Transform
The computational efficiency of the FFT becomes...
Properties of Fourier Transform II
The Frequency Shifting property of Fourier Transforms highlights that a shift in the frequency domain corresponds to a phase shift in the time domain. Mathematically, if x(t) has...
Discrete-Time Fourier Series
For a discrete-time periodic signal x[n]...
Frequency-Domain Interpretation of PD Control
The proportional control gain, combined with the system's...
