DocumentCode
1344800
Title
Energy ramping control system for the PLS storage ring
Author
Lee, Jill W. ; Tae-Yeon Lee ; Yun, Jong C. ; Lee, E.H. ; Chang, S.S.
Author_Institution
Accel. Lab., Pohang Inst. of Sci. & Technol., South Korea
Volume
47
Issue
2
fYear
2000
fDate
4/1/2000 12:00:00 AM
Firstpage
225
Lastpage
228
Abstract
An energy ramping control system was developed for the PLS storage ring. Basically the ramping process is to increase currents of magnet power supplies. But the real process is never easy because of two requirements; fast ramping and keeping the storage ring optics unchanged. To satisfy these requirements, the energy ramping system took full advantage of the three-layered PLS control system. Twelve machine interface units (MIUs) at the bottom layer synchronously control the magnet power supplies. One subsystem control computer (SCC) at the middle layer generates the synchronization signals and sends them to the MIUs for the synchronous control of the magnet power supplies. Operator computer at the top layer does nothing but simply sending ramping start command to the SCC and MIUs. The broadcasting protocol of MIL-1553B is used for the transmission of the synchronization signals from the SCC to the MIUs. Now we can increase 2.0 GeV beam energy to 2.5 GeV in a few minutes with the ramping control system. This paper describes system structure, synchronization scheme, and control software of the PLS energy ramping control system
Keywords
accelerator control systems; electron accelerators; power supplies to apparatus; storage rings; PLS storage ring; control software; energy ramping control system; machine interface units; magnet power supplies; storage ring optics; subsystem control computer; synchronization scheme; synchronization signals; system structure; Control systems; Laboratories; Light sources; Linear accelerators; Optical control; Power generation; Power supplies; Signal generators; Storage rings; Synchrotrons;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/23.846152
Filename
846152
Link To Document