DocumentCode
1455811
Title
New Approximations and Calibration Methods to Provide Routine Real-Time Polarimetry on JET
Author
Gelfusa, Michela ; Murari, Andrea ; Gaudio, Pasquale ; Boboc, Alexandru ; Mazon, Didler ; Avino, Fabio ; Lupelli, Ivan ; Orsitto, F.P. ; Tudisco, O.
Author_Institution
Culham Sci. Centre, JET-EFDA, Abingdon, UK
Volume
40
Issue
4
fYear
2012
fDate
4/1/2012 12:00:00 AM
Firstpage
1149
Lastpage
1161
Abstract
The increasing importance of providing reliable polarimetric measurements in real time, for both machine protection and plasma control, has motivated the development of a quick version of the calibration algorithms for JET polarimeter. This new code, which interprets the calibration procedure performed before each shot, is based on a physical equivalent model of the diagnostic optical path and is valid for any operational regime of JET. It provides results before the plasma breakdown, and, with its estimates of the optical paths parameters, the polarimetric measurements have an accuracy more than sufficient for real-time purposes. New approximate equations have been validated in order to obtain the line integrated density from the newly calibrated horizontal chords, so that also these polarimetric measurements can also be used for density feedback and machine protection. The availability of reliable polarimetric measurements in real time opens new perspectives also to the determination of the plasma boundary, the magnetic equilibrium, and their use in advanced feedback control schemes.
Keywords
Tokamak devices; calibration; plasma density; plasma diagnostics; plasma toroidal confinement; polarimetry; JET polarimeter; advanced feedback control schemes; calibration methods; density feedback; diagnostic optical path; line integrated density; machine protection; magnetic equilibrium; optical path parameters; physical equivalent model; plasma boundary; plasma breakdown; plasma control; polarimetric measurements; routine real-time polarimetry; Calibration; Faraday effect; Measurement by laser beam; Plasma measurements; Plasmas; Polarimetry; Real time systems; Line integrated density; polarimetry; real-time;
fLanguage
English
Journal_Title
Plasma Science, IEEE Transactions on
Publisher
ieee
ISSN
0093-3813
Type
jour
DOI
10.1109/TPS.2012.2186641
Filename
6156793
Link To Document