DocumentCode :
1268436
Title :
First Steps in the FTU Migration Towards a Modular and Distributed Real-Time Control Architecture Based on MARTe
Author :
Boncagni, Luca ; Sadeghi, Yahya ; Carnevale, Daniele ; Mazzitelli, Giuseppe ; Neto, Andr ; Pucci, Daniele ; Sartori, Filippo ; Piesco, Francesco ; Sinibaldi, Simone ; Vitale, Vincenzo ; Vitelli, Riccardo ; Zaccarian, Luca ; Monaco, Salvatore ; Zamborlini,
Author_Institution :
Div. of Fusion Phys., EURATOM-ENEA Fusion Assoc., Rome, Italy
Volume :
58
Issue :
4
fYear :
2011
Firstpage :
1778
Lastpage :
1783
Abstract :
The Fusion Advanced Studies Torus (FAST) experiment is being proposed by the Italian laboratories as a European satellite Tokamak that will enhance and facilitate the exploitation of ITER like scenarios and technologies. Its size and complexity is comparable to the largest fusion machine in the world: JET. As such, its real time control system will have to meet basic requirements such as a modular and distributed architecture, where different control subsystems can be easily integrated at different times and can operate either independently or in cooperation with other subsystems. Another important feature, which has to be taken into account, is the transparency regarding both the hardware interfacing and the adopted platform. As a test bed, we are currently planning to upgrade the architecture of the Frascati Tokamak Upgrade (FTU) real-time system in order to improve its flexibility and modularity and have decided to adopt the MARTe package to reach our goal. Currently, there are four systems under development at FTU: the LH-Power system; the gas puffing control system; the ODIN Equilibrium Reconstruction system; and the position and current feedback control system (currently in a design phase). This paper will describe the current status and first results of the previously referred systems integration.
Keywords :
Tokamak devices; real-time systems; European satellite Tokamak; FAST experiment; FTU migration; Frascati Tokamak Upgrade; Fusion Advanced Studies Torus; MARTe package; ODIN Equilibrium Reconstruction system; distributed real-time control architecture; modular control architecture; Control systems; Hardware; Logic gates; Plasmas; Real time systems; Software; Valves; Gas puffing; LHPP; MARTe; real-time control; rt-ODIN;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2011.2158851
Filename :
5948402
Link To Document :
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