Title :
Distributed real time control in RFX-mod nuclear fusion experiment: commissioning and first results
Author :
Cavinato, Mario ; Manduchi, Gabriele ; Luchetta, Adriano ; Marchiori, Giuseppe ; Taliercio, Cesare
Author_Institution :
Consorzio RFX-Euratom-ENEA Assoc., Padova, Italy
fDate :
6/1/2006 12:00:00 AM
Abstract :
The RFX-mod experiment is resuming operation after a five-year shutdown during which significant machine modifications have been done to improve plasma controllability. Its scientific program is focused on the exploitation of innovative plasma control techniques, including magneto-hydrodynamic mode control. To allow a variety of control schemes on the experiment, a distributed, digital, real time control system has been developed and commissioned. This includes a set of computing nodes (currently seven), exchanging data in real time during the plasma discharge. Characteristic figures of the control schemes implemented in the experiment are: pulsed operation with one 200 ms pulse every 10 minutes, large amount of input/output channels (currently about 740 input and 270 output channels), maximum latency time in the range 0.3-2 ms depending on control applications. The paper, after a brief discussion on the system architecture, presents the control operational scenarios, focusing on the system commissioning and the first results achieved in operation.
Keywords :
data acquisition; digital control; discharges (electric); distributed control; plasma magnetohydrodynamics; reversed field pinch; RFX-mod nuclear fusion experiment; control applications; data acquisition; digital control system; distributed real time control; feedback control; machine modifications; magneto-hydrodynamic mode control; plasma control techniques; plasma controllability; plasma discharge; system architecture; Communication system control; Control systems; Controllability; Distributed control; Feedback control; Fusion reactors; Local area networks; Plasma properties; Real time systems; Toroidal magnetic fields; Data acquisition; feedback control; nuclear fusion; real time control;
Journal_Title :
Nuclear Science, IEEE Transactions on
DOI :
10.1109/TNS.2006.873531