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Preliminary design of safety and interlock system for indian test facility of diagnostic neutral beam.

Authors :
Tyagi, Himanshu
Soni, Jignesh
Yadav, Ratnakar
Bandyopadhyay, Mainak
Rotti, Chandramouli
Gahlaut, Agrajit
Joshi, Jaydeep
Parmar, Deepak
Bansal, Gourab
Pandya, Kaushal
Chakraborty, Arun
Source :
Fusion Engineering & Design. Nov2016, Vol. 112, p766-770. 5p.
Publication Year :
2016

Abstract

Indian Test Facility (INTF) is being built in Institute For Plasma Research to characterize Diagnostic Neutral Beam in co-operation with ITER Organization. INTF is a complex system which consists of several plant systems like beam source, gas feed, vacuum, cryogenics, high voltage power supplies, high power RF generators, mechanical systems and diagnostics systems. Out of these, several INTF components are ITER deliverable, that is, beam source, beam line components and power supplies. To ensure successful operation of INTF involving integrated operation of all the constituent plant systems a matured Data Acquisition and Control System (DACS) is required. The INTF DACS is based on CODAC platform following on PCDH (Plant Control Design Handbook) guidelines. The experimental phases involve application of HV power supplies (100 KV) and High RF power (∼800 KW) which will produce energetic beam of maximum power 6MW within the facility for longer durations. Hence the entire facility will be exposed tohigh heat fluxes and RF radiations. To ensure investment protection and to provide occupational safety for working personnel a matured Safety and Interlock system is required for INTF. The Safety and Interlock systems are high-reliability I&C systems devoted completely to the specific functions. These systems will be separate from the conventional DACS of INTF which will handle the conventional control and acquisition functions. Both, the Safety and Interlock systems are based on IEC 61511 and IEC 61508 standards as prescribed by the ITER PCDH guidelines. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09203796
Volume :
112
Database :
Academic Search Index
Journal :
Fusion Engineering & Design
Publication Type :
Academic Journal
Accession number :
119157577
Full Text :
https://doi.org/10.1016/j.fusengdes.2016.05.017