Overview of data acquisition system for SST-1 diagnostics

التفاصيل البيبلوغرافية
العنوان: Overview of data acquisition system for SST-1 diagnostics
المؤلفون: M.C. Sharma, Tushar Raval, Imran Mansuri, Anjna Sharma, Subrata Pradhan
المصدر: Fusion Engineering and Design. 112:872-876
بيانات النشر: Elsevier BV, 2016.
سنة النشر: 2016
مصطلحات موضوعية: 010302 applied physics, Ethernet, Computer science, business.industry, Mechanical Engineering, Real-time computing, 01 natural sciences, 010305 fluids & plasmas, Storage area network, Data acquisition, Software, Nuclear Energy and Engineering, Data retrieval, 0103 physical sciences, Synchronization (computer science), General Materials Science, User interface, business, Civil and Structural Engineering, Computer Automated Measurement and Control
الوصف: The recent first phase operations of SST-1 in short pulse mode have provided an excellent opportunity for the essential initial tests and benchmark of the SST-1 Data Acquisition System. This paper describes the SST-1 Data Acquisition systems (DAS), which with its heterogeneous composition and distributed architecture, aims to cover a wide range of slow to fast channels interfaced with a large set of diagnostics. The DAS also provides the essential user interface for data acquisition to cater both on and off-line data usage. The central archiving and retrieval service is based on a dual step architecture involving a combination of Network Attached Server (NAS) and a Storage Area Network (SAN). SST-1 Data Acquisition Systems have been reliably operated in the SST-1 experimental campaigns. At present different distributed DAS caters the need of around 130 channels from different SST-1 diagnostics and its subsystems. PXI based DAS and CAMAC based DAS have been chosen to cater the need, with sampling rates varying from 10Ksamples/sec to 1Msamples/sec. For these large sets of channels acquiring from individual diagnostics and subsystems has been a combined setup, subjected to a gradual phase of optimization and tests resulting into a series of improvisations over the recent operations. In order to facilitate a reliable data acquisition, the model further integrates the objects of the systems with the Central Control System of SST-1 using the TCP/IP communication. The associated DAS software essentially addresses the requirement of an active initialization of acquisition from SST-1 Central control and, subsequently, pushing the sampled data into the NAS for data archival using Ethernet. The focus is also on the need and implementation of loss-less data acquisition for various slow and fast SST-1 diagnostics channels along with synchronization of DAS elements with central timing system. The additional aspects of the system include a service subsystem responsible for data retrieval and analysis of diagnostics data, this integrates a facility to view diagnostics/subsystem signals across the network using a centralized MATLAB based plotting and analysis tool for the SST-1 diagnostics data.
تدمد: 0920-3796
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_________::be1d414b0fa7f5c1198ecd44b81f1578
https://doi.org/10.1016/j.fusengdes.2016.06.019
حقوق: CLOSED
رقم الأكسشن: edsair.doi...........be1d414b0fa7f5c1198ecd44b81f1578
قاعدة البيانات: OpenAIRE