Magnetic measurements are a fundamental element for the operation of current experimental devices and future commercial fusion reactors. High-performance plasma control requires signal precision and noise immunity. This thesis project focuses on the dimensioning, design, and laboratory characterization of specialized line termination adapters. These components are extremely critical for ensuring signal integrity throughout the entire measurement chain, comprising magnetic sensors (probes), long-distance transmission lines, and front-end acquisition electronics. The activity will involve in modeling and simulating the transmission line behavior, design the matching network, with experimental validation through laboratory testing of the full measurement chain.

Magnetic measurements are a fundamental element for the operation of current experimental devices and future commercial fusion reactors. High-performance plasma control requires signal precision and noise immunity. This thesis project focuses on the dimensioning, design, and laboratory characterization of specialized line termination adapters. These components are extremely critical for ensuring signal integrity throughout the entire measurement chain, comprising magnetic sensors (probes), long-distance transmission lines, and front-end acquisition electronics. The activity will involve in modeling and simulating the transmission line behavior, design the matching network, with experimental validation through laboratory testing of the full measurement chain.

Development and validation of impedance matching adapters for magnetic diagnostics in fusion plasma devices

GALLIO, GIANLUCA
2025/2026

Abstract

Magnetic measurements are a fundamental element for the operation of current experimental devices and future commercial fusion reactors. High-performance plasma control requires signal precision and noise immunity. This thesis project focuses on the dimensioning, design, and laboratory characterization of specialized line termination adapters. These components are extremely critical for ensuring signal integrity throughout the entire measurement chain, comprising magnetic sensors (probes), long-distance transmission lines, and front-end acquisition electronics. The activity will involve in modeling and simulating the transmission line behavior, design the matching network, with experimental validation through laboratory testing of the full measurement chain.
2025
Development and validation of impedance matching adapters for magnetic diagnostics in fusion plasma devices
Magnetic measurements are a fundamental element for the operation of current experimental devices and future commercial fusion reactors. High-performance plasma control requires signal precision and noise immunity. This thesis project focuses on the dimensioning, design, and laboratory characterization of specialized line termination adapters. These components are extremely critical for ensuring signal integrity throughout the entire measurement chain, comprising magnetic sensors (probes), long-distance transmission lines, and front-end acquisition electronics. The activity will involve in modeling and simulating the transmission line behavior, design the matching network, with experimental validation through laboratory testing of the full measurement chain.
Magnetic sensors
Impedance matching
Modeling
Nuclear fusion
Plasma control
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.12608/113085