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2003 International Conference on Physics and Control - Volume 3 (PHYCON'03)
Improving plasma stabilization system in ITER by excluding non-efficient poloidal coils
Saint Petersburg, Russia
August 20-August 22
ISBN: 0-7803-7939-X
D.A. Ovsyannikov, Fac. of Appl. Math. & Control Processes, St. Petersburg State Univ., Russia
A.D. Ovsyannikov, Fac. of Appl. Math. & Control Processes, St. Petersburg State Univ., Russia
A.P. Zhabko, Fac. of Appl. Math. & Control Processes, St. Petersburg State Univ., Russia
E.I. Veremey, Fac. of Appl. Math. & Control Processes, St. Petersburg State Univ., Russia
B.A. Misenov, Fac. of Appl. Math. & Control Processes, St. Petersburg State Univ., Russia
V.A. Belyakov, Nat. Inst. for Lasers. Plasma & Radiat. Phys., Bucharest, Romania
A.A. Kavin, Nat. Inst. for Lasers. Plasma & Radiat. Phys., Bucharest, Romania
In the paper the problem of plasma control in the toroidal magnetic chamber of ITER tokamak is investigated. Extreme physical conditions in tokamaks lead to very high requirement to control accuracy for electromagnetic capture system while positioning plasma within given gaps from the walls of chamber. On the other hand, real conditions restrict some characteristics, such as control power. Mathematical methods of stabilizing control design based on modern optimization theory are proposed. These methods were designed to increase control efficiency by redistributing its power between tasks.
Citation:
D.A. Ovsyannikov, A.D. Ovsyannikov, A.P. Zhabko, E.I. Veremey, B.A. Misenov, V.A. Belyakov, A.A. Kavin, "Improving plasma stabilization system in ITER by excluding non-efficient poloidal coils," phycon, vol. 3, pp.1009-1018, 2003 International Conference on Physics and Control - Volume 3 (PHYCON'03), 2003
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