Standard

Analysis and synthesis of plasma stabilization systems in tokamaks. / Misenov, BA; Ovsyannikov, DA; Ovsyannikov, AD; Veremey, EI; Zhabko, AP.

CONTROL APPLICATIONS OF OPTIMIZATION 2000, VOLS 1 AND 2. ред. / Zakharov. Elsevier, 2000. стр. 255-260.

Результаты исследований: Публикации в книгах, отчётах, сборниках, трудах конференцийстатья в сборнике материалов конференциинаучнаяРецензирование

Harvard

Misenov, BA, Ovsyannikov, DA, Ovsyannikov, AD, Veremey, EI & Zhabko, AP 2000, Analysis and synthesis of plasma stabilization systems in tokamaks. в Zakharov (ред.), CONTROL APPLICATIONS OF OPTIMIZATION 2000, VOLS 1 AND 2. Elsevier, стр. 255-260, 11th IFAC Workshop on Control Applications of Optimization (CAO 2000), Санкт-Петербург, Российская Федерация, 3/07/00.

APA

Misenov, BA., Ovsyannikov, DA., Ovsyannikov, AD., Veremey, EI., & Zhabko, AP. (2000). Analysis and synthesis of plasma stabilization systems in tokamaks. в Zakharov (Ред.), CONTROL APPLICATIONS OF OPTIMIZATION 2000, VOLS 1 AND 2 (стр. 255-260). Elsevier.

Vancouver

Misenov BA, Ovsyannikov DA, Ovsyannikov AD, Veremey EI, Zhabko AP. Analysis and synthesis of plasma stabilization systems in tokamaks. в Zakharov, Редактор, CONTROL APPLICATIONS OF OPTIMIZATION 2000, VOLS 1 AND 2. Elsevier. 2000. стр. 255-260

Author

Misenov, BA ; Ovsyannikov, DA ; Ovsyannikov, AD ; Veremey, EI ; Zhabko, AP. / Analysis and synthesis of plasma stabilization systems in tokamaks. CONTROL APPLICATIONS OF OPTIMIZATION 2000, VOLS 1 AND 2. Редактор / Zakharov. Elsevier, 2000. стр. 255-260

BibTeX

@inproceedings{a8e658ffe6e740d6b96d6a4a81aef66a,
title = "Analysis and synthesis of plasma stabilization systems in tokamaks",
abstract = "The central problem to be investigated in this paper is plasma control in the toroidal magnetic chamber. It is well known that plasma as an object of control is a mobile non-stable dynamic system with extremely high values of physical parameters, temperature as high as millions centigrade, first of all. This fact rises very high the requirement for electromagnetic capture system control accuracy. The special attention is paid to the stabilization of the plasma to chamber walls gap in some fixed control points. Mathematical methods of stabilizing control design based on modern optimization theory are proposed. Copyright (C) 2000 IFAC.",
keywords = "control systems, controller, optimization, linear optimal control, control system synthesis, SHAPE CONTROL",
author = "BA Misenov and DA Ovsyannikov and AD Ovsyannikov and EI Veremey and AP Zhabko",
year = "2000",
language = "Английский",
isbn = "0-08-043550-5",
pages = "255--260",
editor = "Zakharov",
booktitle = "CONTROL APPLICATIONS OF OPTIMIZATION 2000, VOLS 1 AND 2",
publisher = "Elsevier",
address = "Нидерланды",
note = "null ; Conference date: 03-07-2000 Through 06-07-2000",

}

RIS

TY - GEN

T1 - Analysis and synthesis of plasma stabilization systems in tokamaks

AU - Misenov, BA

AU - Ovsyannikov, DA

AU - Ovsyannikov, AD

AU - Veremey, EI

AU - Zhabko, AP

N1 - Conference code: 11

PY - 2000

Y1 - 2000

N2 - The central problem to be investigated in this paper is plasma control in the toroidal magnetic chamber. It is well known that plasma as an object of control is a mobile non-stable dynamic system with extremely high values of physical parameters, temperature as high as millions centigrade, first of all. This fact rises very high the requirement for electromagnetic capture system control accuracy. The special attention is paid to the stabilization of the plasma to chamber walls gap in some fixed control points. Mathematical methods of stabilizing control design based on modern optimization theory are proposed. Copyright (C) 2000 IFAC.

AB - The central problem to be investigated in this paper is plasma control in the toroidal magnetic chamber. It is well known that plasma as an object of control is a mobile non-stable dynamic system with extremely high values of physical parameters, temperature as high as millions centigrade, first of all. This fact rises very high the requirement for electromagnetic capture system control accuracy. The special attention is paid to the stabilization of the plasma to chamber walls gap in some fixed control points. Mathematical methods of stabilizing control design based on modern optimization theory are proposed. Copyright (C) 2000 IFAC.

KW - control systems

KW - controller

KW - optimization

KW - linear optimal control

KW - control system synthesis

KW - SHAPE CONTROL

M3 - статья в сборнике материалов конференции

SN - 0-08-043550-5

SP - 255

EP - 260

BT - CONTROL APPLICATIONS OF OPTIMIZATION 2000, VOLS 1 AND 2

A2 - Zakharov, null

PB - Elsevier

Y2 - 3 July 2000 through 6 July 2000

ER -

ID: 87467378