Title :
System overview for the multi-element corrector magnets and controls for the Fermilab Booster
Author :
Drennan, C. ; Ball, M. ; Franck, A.R. ; Harding, D.J. ; Kasley, P.A. ; Krafczyk, G.E. ; Kucera, M.J. ; Lackey, J. ; McArthur, D. ; Misek, J. ; Pellico, W. ; Prebys, E.J. ; Triplett, K. ; Wolff, D.A.
Author_Institution :
FNAL, Batavia
Abstract :
To better control the beam position, tune, and chromaticity in the Fermilab Booster synchrotron, a new package of six corrector elements has been designed, incorporating both normal and skew orientations of dipole, quadrupole, and sextupole magnets. The devices are under construction and will be installed in 48 locations in the Booster accelerator. Each of these 288 corrector magnets will be individually powered. Each of the magnets will be individually controlled using operator programmed current ramps designed specifically for each type of Booster acceleration cycle. This paper provides an overview of the corrector magnet installation in the accelerator enclosure, power and sensor interconnections, specifications for the switch-mode power supplies, rack and equipment layouts, controls and interlock electronics, and the features of the operator interface for programming the current ramps and adjusting the timing of the system triggers.
Keywords :
accelerator control systems; accelerator magnets; particle beam diagnostics; synchrotrons; Fermilab Booster synchrotron; beam position control; dipole magnets; interlock electronics; multielement corrector magnets; operator programmed current ramps; quadrupole magnets; sextupole magnets; switch-mode power supplies; Acceleration; Accelerator magnets; Control systems; Electron accelerators; Magnetic sensors; Packaging; Sensor phenomena and characterization; Sensor systems; Structural beams; Synchrotrons;
Conference_Titel :
Particle Accelerator Conference, 2007. PAC. IEEE
Conference_Location :
Albuquerque, NM
Print_ISBN :
978-1-4244-0916-7
DOI :
10.1109/PAC.2007.4440241