DocumentCode :
335019
Title :
Design and verification of controllers for longitudinal oscillations using optimal control theory and numerical simulation: predictions for PEP-II
Author :
Hindi, H. ; Prabhakar, S. ; Fox, J. ; Teytelman, D.
Author_Institution :
Linear Accel. Center, Stanford Univ., CA, USA
Volume :
2
fYear :
1997
fDate :
12-16 May 1997
Firstpage :
2362
Abstract :
We present a technique for the design and verification of efficient bunch-by-bunch controllers for damping longitudinal multibunch instabilities. The controllers attempt to optimize the use of available feedback amplifier power-one of the most expensive components of a feedback system-and define the limits of closed loop system performance. Our design technique alternates between analytic computation of single bunch optimal controllers and verification on a multibunch numerical simulator. The simulator identifies unstable coupled bunch modes and predicts their growth and damping rates. The results from the simulator are shown to be in reasonable agreement with analytical calculations based on the single bunch model. The technique is then used to evaluate the performance of a variety of controllers proposed for PEP-II
Keywords :
accelerator control systems; controllers; electron accelerators; feedback; optimal control; storage rings; PEP-II; bunch-by-bunch controllers; controllers; coupled bunch modes; damping rates; design; growth rates; longitudinal multibunch instabilities; longitudinal oscillations; multibunch numerical simulator; numerical simulation; optimal control; verification; Analytical models; Closed loop systems; Computational modeling; Control systems; Damping; Feedback amplifiers; Feedback loop; Numerical simulation; Optimal control; Predictive models;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Particle Accelerator Conference, 1997. Proceedings of the 1997
Conference_Location :
Vancouver, BC
Print_ISBN :
0-7803-4376-X
Type :
conf
DOI :
10.1109/PAC.1997.751209
Filename :
751209
Link To Document :
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