Title :
Real Time Plasma Disruptions Detection in JET Implemented With the ITMS Platform Using FPGA Based IDAQ
Author :
Ruiz, M. ; Vega, J. ; Arcas, G. ; Ratta, G. ; Barrera, E. ; Murari, A. ; López, J.M. ; Meléndez, R.
Author_Institution :
Instrum. & Appl. Acoust. Res. Group, Tech. Univ. of Madrid (UPM), Madrid, Spain
Abstract :
The use of data acquisition cards with FPGAs has permitted to develop a real time pattern recognition algorithm for disruption predictions for JET. Using 13 waveforms from JET database an algorithm for detecting incoming plasma disruptions has been implemented. The algorithm was originally developed in MATLAB using floating point representation. In this work we show a methodology based in Virtual Instrumentation technologies to implement the real time version of the algorithm using Intelligent Data Acquisition Cards (IDAQ), data acquisition (DAQ) devices with field programmable gate array (FPGA) for local processing. The whole system for evaluating the real time disruption detection (RTDD) has been implemented using the Intelligent Test and Measurement System (ITMS) platform. ITMS offers distributed data acquisition, distribution and real time processing capabilities with advanced, but easy to use, software tools that simplify application development and system setup. The RTDD hardware implementation uses a standard PXI/PXIe architecture consisting of: two 8 channel analog output cards to play the desired signals from JET database; two 8 channel DAQ cards with FPGA for feature extraction; and a system CPU running a real time operating system for classification and decision making in order to estimate an incoming disruption.
Keywords :
Tokamak devices; data acquisition; field programmable gate arrays; fusion reactor instrumentation; nuclear engineering computing; pattern recognition equipment; physics computing; plasma diagnostics; plasma nonlinear processes; plasma toroidal confinement; virtual instrumentation; FPGA based IDAQ; ITMS platform; JET database; JET disruption predictions; MATLAB; RTDD; data acquisition devices; distributed data acquisition; field programmable gate array; floating point representation; incoming plasma disruption detection algorithm; intelligent data acquisition cards; intelligent test and measurement system; real time disruption detection; real time pattern recognition algorithm; real time plasma disruption detection; real time processing; software tools; standard PXI/PXIe; virtual instrumentation technologies; Data acquisition; Databases; Field programmable gate arrays; Hardware; Instruments; Plasmas; Real time systems; Disruption detection; field programmable gate arrays; fusion experiments;
Journal_Title :
Nuclear Science, IEEE Transactions on
DOI :
10.1109/TNS.2011.2158552