This paper is focused on the plasma shape and current control in a large, next generation tokamak characterized by long-duration plasma discharges. The new features of these fusion devices are described and their impact on the feedback control requirements are investigated. Many of the controller design issues are addressed in the H∞/μ synthesis framework, including the model reduction, the power constraints, the voltage limits and plant uncertainties. The application to the case of the International Thermonuclear Experimental Reactor (ITER) shows the effectiveness of this approach for the design of plasma controllers
A new model-based plasma current and shape controller has been set up and tested on the JET Tokamak ...
We present a survey of the recent literature papers dealing with the problem of designing a feedback...
A new model-based plasma current and shape controller has been set up and tested on the JET Tokamak ...
This paper is focused on the plasma shape and current control in a large, next generation tokamak ch...
This paper is focused on the plasma shape and current control in a large, next generation tokamak ch...
In this paper we present an approach for the design of a plasma current and shape feedback control s...
In this paper, we present a new approach for the design of a plasma current and shape feedback contr...
Electricity production through the control of nuclear fusion reactions is a promising option to meet...
The paper deals with the application of the so-called Reference (or Command) Governor constrained co...
The International Thermonuclear Experimental Reactor (ITER) is the next step toward the realization ...
Historically, tokamak control design has been a combination of theory driving an initial control des...
This paper deals with the design of a new plasma current and shape controller for the JET tokamak. T...
Thermonuclear controlled fusion is a promising answer to the current energy and climate issues, prov...
Elongated plasmas lead to improved performance in tokamaks but make the plasma prone to vertical ins...
This paper deals with the design of a new plasma current and shape controller for the Joint European...
A new model-based plasma current and shape controller has been set up and tested on the JET Tokamak ...
We present a survey of the recent literature papers dealing with the problem of designing a feedback...
A new model-based plasma current and shape controller has been set up and tested on the JET Tokamak ...
This paper is focused on the plasma shape and current control in a large, next generation tokamak ch...
This paper is focused on the plasma shape and current control in a large, next generation tokamak ch...
In this paper we present an approach for the design of a plasma current and shape feedback control s...
In this paper, we present a new approach for the design of a plasma current and shape feedback contr...
Electricity production through the control of nuclear fusion reactions is a promising option to meet...
The paper deals with the application of the so-called Reference (or Command) Governor constrained co...
The International Thermonuclear Experimental Reactor (ITER) is the next step toward the realization ...
Historically, tokamak control design has been a combination of theory driving an initial control des...
This paper deals with the design of a new plasma current and shape controller for the JET tokamak. T...
Thermonuclear controlled fusion is a promising answer to the current energy and climate issues, prov...
Elongated plasmas lead to improved performance in tokamaks but make the plasma prone to vertical ins...
This paper deals with the design of a new plasma current and shape controller for the Joint European...
A new model-based plasma current and shape controller has been set up and tested on the JET Tokamak ...
We present a survey of the recent literature papers dealing with the problem of designing a feedback...
A new model-based plasma current and shape controller has been set up and tested on the JET Tokamak ...