DocumentCode :
66003
Title :
Two RF Driver-Based Negative Ion Source Experiment
Author :
Bandyopadhyay, Mainak ; Pandey, Rashmi ; Shah, Shalin ; Bansal, Gourab ; Parmar, Dhaval ; Gahlaut, Agrajit ; Soni, Jignesh ; Yadav, Rajat ; Sudhir, D. ; Tyagi, Himanshu ; Pandya, Kaushal ; Parmar, K.G. ; Mistri, H.S. ; Vuppugalla, M. ; Chakraborty, Ajoy K
Author_Institution :
Inst. for Plasma Res., ITER, Gandhinagar, India
Volume :
42
Issue :
3
fYear :
2014
fDate :
Mar-14
Firstpage :
624
Lastpage :
627
Abstract :
Multidriver-based radio-frequency (RF) ion sources have emerged as the most promising option for producing the plasma in large ion sources required for fusion applications. In India, under domestic long-term fusion program, a negative ion source development program has been initiated. A 100-kW inductively coupled single RF driver-based negative ion source (ROBIN) has been installed and it is operational at the Institute for Plasma Research. The next step is to move to a multidriver source and address to several issues related to configuration and operation. A two-driver-based twin source has been configured for this purpose. The experimental plan is divided into two phases: 1) plasma operation phase and beam extraction and 2) acceleration phase. A vacuum chamber has been specially designed to accommodate these phases of operations. The data acquisition and control system (DACS) of the experimental system is designed based on International Thermonuclear Experimental Reactor-COntrol Data Access and Communication (ITER-CODAC) guidelines. Probe and spectroscopy diagnostics constitute the principal diagnostics. This paper presents the experimental system with emphasis on the aspects of mechanical, electrical, and DACS integration.
Keywords :
Tokamak devices; fusion reactor ignition; ion sources; plasma beam injection heating; plasma diagnostics; plasma toroidal confinement; COntrol Data Access and Communication; DACS integration; ITER-CODAC guidelines; India; Institute for Plasma Research; International Thermonuclear Experimental Reactor; RF driver-based negative ion source experiment; beam extraction; control system; data acquisition; domestic long-term fusion program; experimental system; fusion applications; multidriver-based radio-frequency ion sources; negative ion source development program; operation phases; plasma operation phase; principal diagnostics; spectroscopy diagnostics; vacuum chamber; Control systems; Data acquisition; Ion sources; Particle beams; Plasmas; Procurement; Radio frequency; CODAC; inductively coupled plasma (ICP); negative ion source; neutral beam injector (NBI); plasma diagnostics; radio frequency (RF);
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2013.2295718
Filename :
6716032
Link To Document :
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