Title :
Nonlinear adaptive control of optical jitter with a new liquid crystal beam steering device
Author :
Orzechowski, P.K. ; Gibson, Sarah ; Tsu Chin Tsao ; Herrick, D. ; Beazel, V.
Author_Institution :
Mech. & Aerosp. Eng., California Univ., Los Angeles, CA
Abstract :
This paper presents a new approach to active control of optical jitter with a new transmissive liquid crystal beam steering device, or tilt corrector. The device is driven by a linear time-invariant feedback control loop and an adaptive control loop to maximize the jitter-rejection bandwidth. In contrast to conventional fast steering mirrors, the liquid crystal device optically redirects the laser beam. The new device has no moving parts and requires low operating power. The paper presents experimental results that demonstrate the capabilities of the liquid crystal device and the adaptive controller to suppress high-bandwidth jitter. For the control system, the liquid crystal device presents nonlinearities due to a rate limit and quantization. The experimental results show the importance of modeling the nonlinearities in the adaptive controller.
Keywords :
adaptive control; jitter; laser beam applications; liquid crystal devices; nonlinear control systems; steering systems; active control; adaptive controller; jitter-rejection bandwidth; laser beam; linear time-invariant feedback control loop; liquid crystal device; nonlinear adaptive control loop; optical jitter; quantization; steering mirror; tilt corrector; transmissive liquid crystal beam steering device; Adaptive control; Adaptive optics; Beam steering; Jitter; Liquid crystal devices; Nonlinear optical devices; Nonlinear optics; Optical control; Optical devices; Optical feedback; Control of lasers; adaptive control; liquid crystal beam steering device; optical jitter;
Conference_Titel :
American Control Conference, 2008
Conference_Location :
Seattle, WA
Print_ISBN :
978-1-4244-2078-0
Electronic_ISBN :
0743-1619
DOI :
10.1109/ACC.2008.4587150