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Design for real-time data acquisition based on streaming technology
For the LHD project a long-pulse plasma experiment of 1-h duration is planned. In this quasi steady-state operation, the data acquisition system will be required to continuously transfer the diagnostic data from the digitizer front-end and display them in real-time. The CompactPCI standard is used t...
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Published in: | Fusion engineering and design 2001-10, Vol.56, p.1011-1016 |
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container_title | Fusion engineering and design |
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creator | Nakanishi, H Mamoru, Kojima |
description | For the LHD project a long-pulse plasma experiment of 1-h duration is planned. In this quasi steady-state operation, the data acquisition system will be required to continuously transfer the diagnostic data from the digitizer front-end and display them in real-time. The CompactPCI standard is used to replace the conventional CAMAC digitizers in LHD, because it provides good functionality for real-time data streaming and also a connectivity with modern PC technology. The digitizer scheme, interface to the host computer, adoption of data compression, and downstream applications are discussed in detail to design and implement this new real-time data streaming system for LHD plasma diagnostics. |
doi_str_mv | 10.1016/S0920-3796(01)00449-5 |
format | article |
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source | Elsevier:Jisc Collections:Elsevier Read and Publish Agreement 2022-2024:Freedom Collection (Reading list) |
subjects | Applied sciences CompactPCI Controled nuclear fusion plants Data compression Data streaming Data transfer Digitizer front-end Energy Energy. Thermal use of fuels Exact sciences and technology Fusion reactors Installations for energy generation and conversion: thermal and electrical energy LHD Plasma diagnostics Real time systems Real-time data acquisition Tokamak devices |
title | Design for real-time data acquisition based on streaming technology |
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