DocumentCode :
1485455
Title :
Diplexers for Power Combination and Switching in High Power ECRH Systems
Author :
Bruschi, A. ; Erckmann, Volker ; Kasparek, Walter ; Petelin, M.I. ; Thumm, Manfred ; Bin, W. ; Cirant, S. ; D´Arcangelo, O. ; Hollmann, Frank ; Lubyako, L. ; Noke, Frank ; Plaum, B. ; Purps, Frank ; Zohm, H.
Author_Institution :
Ist. di Fis. del Plasma, EURATOM-ENEA-CNR Assoc., Milan, Italy
Volume :
38
Issue :
6
fYear :
2010
fDate :
6/1/2010 12:00:00 AM
Firstpage :
1427
Lastpage :
1438
Abstract :
Electron Cyclotron Resonance Heating (ECRH) systems for next step large fusion-devices operate at a Continuous Wave (CW) power well beyond 10 MW generated by a large number of gyrotrons with typically 1 MW power per unit. The combination of the power of two (or more) gyrotrons and switching of the power between different launchers for different physics applications is an attractive feature for such systems. The combination of beams from different gyrotrons would reduce the number of transmission lines and the requirements on port space. Fast switching between two antennas synchronously with the Magneto-Hydro Dynamic (MHD) modes frequency would increase the efficiency of mode stabilization. Both combination and switching as well as power sharing between different ports can be performed with high-power four-port diplexers using small frequency differences or small frequency-shift keying of the gyrotrons, respectively. Fast directional switches (FADIS) and beam combiners (BC) can be designed on the basis of different physical mechanisms: some selected design variants were investigated and the results are presented. Considerations on the integration of FADIS/BC´s into large ECRH systems and their use in test arrangements are presented.
Keywords :
gyrotrons; multiplexing equipment; plasma instability; plasma magnetohydrodynamics; plasma radiofrequency heating; transmission lines; beam combiners; electron cyclotron heating; fast directional switches; gyrotrons; high power ECRH systems; high-power four-port diplexers; magneto-hydro dynamic mode frequency; mode stabilization; power combination; transmission lines; Diplexers; millimeter wave switches; plasma control; plasma heating; power combiners; resonators;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2010.2047658
Filename :
5460918
Link To Document :
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