The highly-reproducible current-driven resistive wall mode (RWM) was explored to assess the RWM physics and magnetic feedback capability. Application of feedback with sufficiently-high gain can robustly stabilize the q 95 ~ 4 current-driven RWM. Feedback stabilization needs a response time of ~1 ms, faster than the mode growth time of 3-4 ms. We have identified the feedback stabilization process as direct feedback rather than error field correction.

Exploring Robustness of Magnetic Feedback Stabilization On Current-Driven Resistive Wall Mode Stabilization

Marrelli L;
2009

Abstract

The highly-reproducible current-driven resistive wall mode (RWM) was explored to assess the RWM physics and magnetic feedback capability. Application of feedback with sufficiently-high gain can robustly stabilize the q 95 ~ 4 current-driven RWM. Feedback stabilization needs a response time of ~1 ms, faster than the mode growth time of 3-4 ms. We have identified the feedback stabilization process as direct feedback rather than error field correction.
2009
Istituto gas ionizzati - IGI - Sede Padova
Inglese
36th EPS Conference on Plasma Physics
1083
1086
4
http://crpppc42.epfl.ch/Sofia/pdf/P4_141.pdf
No
29 June - 3 July 2009
Sofia
Current-driven
Error field
Feedback stabilization
Growth time
Magnetic feedback
Resistive wall modes
P-4.141
1
none
Okabayashi M.; In Y.; Jackson G.L.; Bolzonella T.; Garofalo A.M.; Kim J.S.; La Haye R.J.; Lanctot M.J.; Marrelli L.; Martin P.; Reimerdes H.; Schaffer...espandi
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/69157
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