Title of article :
The ITER CODAC conceptual design
Author/Authors :
Lister، نويسنده , , J.B. and Farthing، نويسنده , , J.W. and Greenwald، نويسنده , , M. and Yonekawa، نويسنده , , I.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Abstract :
CODAC orchestrates the activity of 60–90 Plant Systems in normal ITER operation. Interlock Systems protect ITER from potentially damaging operating off-normal conditions. Safety Systems protect the personnel and the environment and will be subject to licensing. The principal challenges to be met in the design and implementation of CODAC include: complexity, reliability, transparent access respecting security, a high experiment data rate and data volume since ITER is an experimental reactor, scientific exploitation from multiple Participant Team Experiment Sites and the long 35-year period for construction and operation.
xity is addressed by prescribing the communication interfaces to the Plant Systems and prescribing the technical implementation within the Plant Systems. Plant Systems export to CODAC all the information on their construction and operation as “self-description”. Complexity is also addressed by automating the operation of ITER and of the plasma, using a structured data description of “Operation Schedules” which encompass all non-manual control, including Plasma Control.
ility is addressed by maximising code reuse and maximising the use of existing products thereby minimising in-house development. The design is hierarchical and modular in both hardware and software. The latter facilitates evolution of methods during the project lifetime.
teeing security while maximising access is addressed by flow separation. Out-flowing data, including experimental signals and the status of ITER plant is risk-free. In-flowing commands and data originate from Experiment Sites. The Cadarache Experiment Site is equated with the Remote Experiment Sites and a rigorous “Operation Request Gatekeeper” is provided.
gh data rates and data volumes are handled with high performance networks. Global Area Networks allow Participant Teams to access all CODAC data and applications.
ific exploitation of ITER will remain a human as well as technical challenge, to find methods of effectively combining the experience and observations of a geographically distributed research team.
Keywords :
Communication , ITER , Control , DATA ACQUISITION
Journal title :
Fusion Engineering and Design
Journal title :
Fusion Engineering and Design