DocumentCode
1344741
Title
General architecture, implementation and performance of the digital feedback control in RFX
Author
Luchetta, A. ; Manduchi, G.
Author_Institution
Consorzio RFX, Padua, Italy
Volume
47
Issue
2
fYear
2000
fDate
4/1/2000 12:00:00 AM
Firstpage
186
Lastpage
191
Abstract
RFX is a large toroidal machine in the European Programme for nuclear fusion research. It uses digital active feedback for both control of global magnetic configuration and correction of local magnetic field errors. These controls have different time requirements. Global controls must produce output reference waveforms with updating frequencies of some kSample/s and must allow a maximum delay between input and corresponding output of few ms. Conversely, the local controls need faster response with updating frequencies of the outputs up to 20 kSample/s and maximum delay of 200 μs. The I/O requirements are also different, ranging from few to many tens of input signals, depending on the specific controls. A general scalable distributed architecture has been designed and realized for the RFX feedback control systems. It is based on processor networks implemented by means of Digital Signal Processors equipped with built-in facilities for interprocessor communication and connected to each other either directly or via a fiber-optic based network. The paper summarizes the design concepts of the system architecture and, after the description of the hardware and software structure, reports the performances obtained
Keywords
digital control; distributed control; feedback; fusion reactor design; physical instrumentation control; reversed field pinch; I/O requirements; RFX feedback control systems; digital active feedback; digital feedback control; fiber-optic based network; general architecture; interprocessor communication; local controls; local magnetic field errors; nuclear fusion research; processor networks; scalable distributed architecture; system architecture; toroidal machine; Communication system control; Computer architecture; Digital signal processors; Error correction; Feedback control; Frequency conversion; Fusion reactors; Optical fiber communication; Propagation delay; Toroidal magnetic fields;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/23.846144
Filename
846144
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