Title :
Compensation for the effect of vacuum chamber eddy current by digital signal processing for closed orbit feedback
Author :
Chung, Y. ; Emery, L. ; Kirchman, J.
Author_Institution :
Argonne Nat. Lab., IL, USA
Abstract :
The Advanced Photon Source (APS) will implement both global and local beam position feedback systems to stabilize the particle and X-ray beams. The relatively thick (1/2") aluminum storage ring vacuum chamber at corrector magnet locations for the local feedback systems will induce significant eddy current. This will reduce the correction bandwidth and could potentially destabilize the feedback systems. This paper describes measurement of the effect of the eddy current induced in the APS storage ring vacuum chamber by a horizontal/vertical corrector magnet and its compensation using digital signal processing at 4 kHz sampling frequency with proportional, integral, and derivative (PID) control algorithm for closed orbit feedback. A theory of digital feedback to obtain the linear system responses and the conditions for optimal control will also be presented. The magnet field in the vacuum chamber shows strong quadrupole and sextupole components varying with frequency, in addition to significant attenuation and phase shift with bandwidth (-3 dB) of 20 Hz for horizontal and 4 Hz for vertical fields relative to the magnet current. Large changes in the magnet resistance and inductance were also observed, as the result of reduced total magnetic energy and increased Ohmic heat loss
Keywords :
X-ray production; beam handling equipment; beam handling techniques; computerised control; digital control; eddy currents; electron accelerators; feedback; linear systems; nuclear electronics; optimal control; particle beam diagnostics; physical instrumentation control; physics computing; signal processing; storage rings; three-term control; vacuum apparatus; 20 Hz; 4 Hz; 4 kHz; APS; Advanced Photon Source; Al; X-ray beams; closed orbit feedback; correction bandwidth; corrector magnet locations; derivative control algorithm; digital feedback; digital signal processing; horizontal/vertical corrector magnet; integral control algorithm; linear system responses; magnet field; optimal control; particle beams; phase shift; position feedback systems; proportional control algorithm; quadrupole components; sextupole components; vacuum chamber eddy current compensation; vertical fields; Aluminum; Bandwidth; Current measurement; Eddy currents; Extraterrestrial measurements; Feedback; Frequency; Particle beams; Storage rings; Vacuum systems;
Conference_Titel :
Particle Accelerator Conference, 1993., Proceedings of the 1993
Conference_Location :
Washington, DC
Print_ISBN :
0-7803-1203-1
DOI :
10.1109/PAC.1993.309290