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PRESENT STATUS OF THE ANGARA-5 FUSION FACILITY CONTROL SYSTEM

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Title: PRESENT STATUS OF THE ANGARA-5 FUSION FACILITY CONTROL SYSTEM


1
PRESENT STATUS OF THE ANGARA-5 FUSION FACILITY
CONTROL SYSTEM

TRINITI ANGARA-5
V.I.Zaitsev, A.V.Kartashov, N.I.Lachtjushko Sta
te Research Center of Russian Federation Troitsk
Institute for Innovation and Fusion Research,
TRINITI, Troitsk, Moscow reg., 142190, Russian
Federation
2
CONTENTS
TRINITI ANGARA-5
  • What is HIGH POWER FACILITY?
  • Fields of applications.
  • ANGARA-5 facility
  • -parameters
  • -research program.
  • Control tasks.
  • Upgrading steps.
  • State of art.

3
Working cycle (shot) algorithm of HPF
TRINITI ANGARA-5
4
ANGARA-5 fusion facility
TRINITI ANGARA-5
5
ANGARA-5 parameters
TRINITI ANGARA-5
  • SCIENTIFIC PROGRAM
  • FUSION EXPERIMENTS
  • SHOCK WAVE EXPERIMENTS
  • X-RAY GENERATION
  • X-RAY INTERACTION WITH MATTER.
  • PARAMETERS
  • NUMBER of MODULES 8
  • OUTPUT VOLTAGE 1 MV
  • CURRENT ON THE LOAD up to 5 MA
  • PULSE DURIATION 90 ns
  • NUMBER of SHOT per day up to 4
  • LOAD TYPES
  • ELECTRON BEAMS
  • DIFFERENT LINER KINDS GAS, WIRES, FOAM


6
The main tasks of Angara-5 control
TRINITI ANGARA-5
  • technological preparation of shot
  • shot permission and start
  • synchronization of facility units operation
  • waveform data acquisition
  • data processing and their representation.

7
Steps of development of Angara-5 control systems
TRINITI ANGARA-5
  • 1984-1986 years. Realization and operation of
    the initial project of the A-5 control and data
    acquisition systems.
  • Hardware
  • VECTOR blocks (Russian analog CAMAC)
  • computers ELEKTRONIK-60, SM-4 (DEC types).
  • Software operation systems RSX, RT-11
  • 1989-1991 years. The first upgrading of A- 5
    control and data acquisition systems.
  • Hardware
  • Change of the computer type DEC to IBM PC.
  • Software instrument
  • operation system MS DOS
  • language Quick C and Borland C
  • local network protocol DOS Decnet.
  • 2003-2005 years. The new subsystem of waveform
    acquisition
  • Digital Tektronix TDS- oscilloscopes, IEEE
    488.2 interface
  • Software
  • LabVIEW, TCP/IP protocol

8
Acknowledgements
TRINITI ANGARA-5
  • A number of scientists and engineers from
  • various organizations participated, at different
  • stages, in the creation and development of
  • CDAS. The authors, noting a valuable contribution
  • of the SNIP team headed by Prof. Kurochkin S.S.
  • and co-workers in the SRC RF TRINITI,
  • Savochkin V.N., Dudorova E.L. Luzin Yu.N.,
  • and Bulan V.V., express their profound gratitude
  • to these institutions and friends.
  •  
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