Title :
A closed-loop photon beam control study for the Advanced Light Source
Author :
Portmann, G. ; Bengtsson, J.
Author_Institution :
California Univ., Berkeley, CA, USA
Abstract :
The third generation Advanced Light Source (ALS) will produce extremely bright photon beams using undulators and wigglers. In order to position the photon beams accurate to the micron level, a closed-loop feedback system is being developed. Using photon position monitors and dipole corrector magnets, a closed-loop system can automatically compensate for modeling uncertainties and exogenous disturbances. The following paper will present a dynamics model for the perturbations of the closed orbit of the electron beam in the ALS storage ring including the vacuum chamber magnetic field penetration effects. Using this reference model, two closed-loop feedback algorithms will be compared-a classical PI controller and a two degree-of-freedom approach. The two degree-of-freedom method provides superior disturbance rejection while maintaining the desired performance goals. Both methods will address the need to gain schedule the controller due to the time varying dynamics introduced by changing field strengths when scanning the insertion devices
Keywords :
beam handling equipment; beam handling techniques; computerised control; controllers; electron accelerators; feedback; particle beam diagnostics; perturbation theory; physical instrumentation control; physics computing; storage rings; vacuum apparatus; ALS; Advanced Light Source; classical PI controller; closed orbit; closed-loop feedback system; closed-loop photon beam control; dipole corrector magnets; disturbance rejection; dynamics model; electron beam; exogenous disturbances; extremely bright photon beams; micron level; modeling uncertainties; perturbations; photon position monitors; storage ring; two degree-of-freedom approach; undulators; vacuum chamber magnetic field penetration; wigglers; Dynamic scheduling; Electron beams; Feedback; Light sources; Lighting control; Magnets; Optical control; Storage rings; Uncertainty; Undulators;
Conference_Titel :
Particle Accelerator Conference, 1993., Proceedings of the 1993
Conference_Location :
Washington, DC
Print_ISBN :
0-7803-1203-1
DOI :
10.1109/PAC.1993.309292