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1. Design, implementation and test of the XSC extreme shape controller in JET

2. Overview of JET results

3. Management of the ITER PCS Design Using a System-Engineering Approach

4. Optimal number and position of the magnetic sensors for plasma shape identification in ITER

5. Conceptual design of the FAST load assembly

6. Magnetic control of plasma current, position, and shape in Tokamaks: a survey or modeling and control approaches

7. Perspectives for the High Field Approach in Fusion Research and Advances within the Ignitor Program

8. Development environments for Tokamak plasma control

9. Conceptual architecture of the plant system controller for the magnetics diagnostic of the ITER tokamak

10. Design and experimental testing of a robust multivariable controller on a tokamak

11. A control scheme to deal with coil current saturation in a Tokamak

12. A Modern Plasma Controller Tested on the TCV Tokamak

13. Overview of magnetic control in ITER

14. Shape Control with the eXtreme Shape Controller during Plasma Current Ramp-Up and Ramp-Down at the JET Tokamak

15. New developments, plasma physics regimes and issues for the Ignitor experiment

16. Shape control with the XSC during plasma current ramp-up and ramp-down at the JET tokamak

17. Optimization of the magnetic diagnostic for plasma shape identification in tokamak machines

18. A Software Tool for the Design of the Current Limit Avoidance System at the JET tokamak

19. Exploitation of modularity in the JET tokamak vertical stabilization system

20. Modelling and control for plasma disruption avoidance and mitigation

21. Overview of modelling activities for Plasma Control Upgrade in JET

22. Plasma Modeling and Magnetic Control of FAST Tokamak Proposal

23. Plasma Vertical Stabilization in the ITER Tokamak via Constrained Static Output Feedback

24. Robust vertical control of ITER plasmas via static output feedback

25. On dynamic input allocation for set-point regulation of the JET tokamak plasma shape

26. Control of Elongated Plasma in Presence of ELMs in the JET Tokamak

27. A flexible architecture for the rapid prototyping of control systems in fusion experiments

28. Resistive wall mode control code maturity: progress and specific examples

29. The Fusion Advanced Studies Torus (FAST): a proposal for an ITER satellite facility in support of the development of fusion energy

30. ITER vertical stabilization system

31. Design of the plasma position and shape control in the ITER tokamak using in-vessel coils

32. Principal physics developments evaluated in the ITER design review

33. Dynamic simulation of a planar flexible boom for tokamak in-vessel operations

34. Plasma position and shape control in ITER using in-vessel coils

35. ITER operational space for full plasma current H-mode operation

36. Magnetic Control of a Tokamak Plasma

37. XSC tools: A software suite for tokamak plasma shape control design and validation

38. THE SYSTEM ARCHITECTURE OF THE NEW JET SHAPE CONTROLLER

39. Development of real-time diagnostics and feedback algorithms for JET in view of the next step

40. Plasma modeling for position and current control in FTU

41. A model based controller design approach for the TCV tokamak

42. An integrated approach to the control of magnetically confined plasmas

43. Optimal trade-off between plasma shape control performance and current saturation problems in the next generation tokamaks

44. PF Coil Voltage Optimization for Startup Scenario in Air Core Tokamaks

45. Modeling Tools for the ITER Central Interlock System

46. Optimal regulation for linear non right-invertible plants

47. Can better modelling improve tokamak control?

48. Upgrade of the present JET shape and vertical stability controller

49. Adaptive tracking control of industrial robots

50. Magnetic configuration control of ITER plasmas

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