Control, data acquisition and remote participation for steady-state operation in LHD

Control, data acquisition, plasma monitoring and remote participation for steady state operation in the large helical device (LHD) are reviewed. By controlling the impedance matching of ICH, the plasma position and the electron density, high temperature plasma is confined for 1905s. The plasma param...

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Veröffentlicht in:Fusion engineering and design 2006-07, Vol.81 (15), p.1713-1721
Hauptverfasser: Sudo, S., Nagayama, Y., Emoto, M., Nakanishi, H., Chikaraishi, H., Imazu, S., Iwata, C., Kogi, Y., Kojima, M., Komada, S., Kubo, S., Kumazawa, R., Mase, A., Miyazawa, J., Mutoh, T., Nakamura, Y., Nonomura, M., Ohsuna, M., Saito, K., Sakamoto, R., Seki, T., Shoji, M., Tsuda, K., Yoshida, M., Team, LHD
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Sprache:eng
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Zusammenfassung:Control, data acquisition, plasma monitoring and remote participation for steady state operation in the large helical device (LHD) are reviewed. By controlling the impedance matching of ICH, the plasma position and the electron density, high temperature plasma is confined for 1905s. The plasma parameters are monitored in real time. Data are continuously sampled by the YOKOGAWA WE7000 system and by the NATIONAL INSTRUMENTS CompactPCI system. Those data are managed by the object-oriented database system based on ObjectStore in distributed servers with mass storage. By using the multi protocol label switching-virtual private network (MPLS-VPN) technology, the local area network of LHD is expanded to the Japanese fusion community. This provides the remote participants with the same environment of the LHD control room.
ISSN:0920-3796
1873-7196
DOI:10.1016/j.fusengdes.2006.04.027