Rotating-coil magnetometers are among the most common and most accurate transducers for measuring the integral magnetic-field harmonics in accelerator magnets. The measurement uncertainty depends on the mechanical properties of the shafts, bearings, drive systems, and supports. In this paper we study the mechanical phenomena (static and dynamic) affect- ing rotating-coil measurements and propose analysis and diagnostic methods for improving the instrument in terms of material choice and geometrical design. The propagation of uncertainty is investigated on the measured quantities (induced voltages, integrated and developed into a Fourier series, the coefficients of which are know as field harmonics). This results in a consistent framework for the design of a measurement bench for rotating-coil magnetometers. The paper also presents the design of a complete system, including displacement stages, supports, rotating coils, and an angular position system.

A mechanical analysis of rotating-coil magnetometers / S. Sorti, C. Petrone, S. Russenschuck, F. Braghin - In: 24th IMEKO TC4 International Symposium and 22nd International Workshop on ADC and DAC Modelling and Testing (IMEKO TC-4 2020)[s.l] : Curran Associates, 2020. - ISBN 978-1-7138-2010-9. - pp. 201-205 (( Intervento presentato al 24. convegno IMEKO TC4 International Symposium tenutosi a Palermo nel 2020.

A mechanical analysis of rotating-coil magnetometers

S. Sorti
;
2020

Abstract

Rotating-coil magnetometers are among the most common and most accurate transducers for measuring the integral magnetic-field harmonics in accelerator magnets. The measurement uncertainty depends on the mechanical properties of the shafts, bearings, drive systems, and supports. In this paper we study the mechanical phenomena (static and dynamic) affect- ing rotating-coil measurements and propose analysis and diagnostic methods for improving the instrument in terms of material choice and geometrical design. The propagation of uncertainty is investigated on the measured quantities (induced voltages, integrated and developed into a Fourier series, the coefficients of which are know as field harmonics). This results in a consistent framework for the design of a measurement bench for rotating-coil magnetometers. The paper also presents the design of a complete system, including displacement stages, supports, rotating coils, and an angular position system.
Settore FIS/01 - Fisica Sperimentale
2020
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/1018413
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