A method is proposed for calibrating the radius of a rotating coil sensor by relaxing the metrological constraints on alignment and field errors of the reference quadrupole. A coil radius calibration considering a roll-angle misalignment of the measurement bench, the magnet, and the motor-drive unit is analyzed. Then, the error arising from higher-order harmonic field imperfections in the reference quadrupole is assessed. The method is validated by numerical field computation for both the higher-order harmonic errors and the roll-angle misalignment. Finally, an experimental proof-of-principle demonstration is carried out in a calibration magnet with sextupole harmonic.
Rotating-coil calibration in a reference quadrupole, considering roll-angle misalignment and higher-order harmonics / Arpaia, Pasquale; Buzio, Marco; Köster, Oliver; Russenschuck, Stephan; Severino, Giordana. - In: MEASUREMENT. - ISSN 0263-2241. - 87:(2016), pp. 74-82. [10.1016/j.measurement.2016.02.061]
Rotating-coil calibration in a reference quadrupole, considering roll-angle misalignment and higher-order harmonics
Pasquale Arpaia
;
2016
Abstract
A method is proposed for calibrating the radius of a rotating coil sensor by relaxing the metrological constraints on alignment and field errors of the reference quadrupole. A coil radius calibration considering a roll-angle misalignment of the measurement bench, the magnet, and the motor-drive unit is analyzed. Then, the error arising from higher-order harmonic field imperfections in the reference quadrupole is assessed. The method is validated by numerical field computation for both the higher-order harmonic errors and the roll-angle misalignment. Finally, an experimental proof-of-principle demonstration is carried out in a calibration magnet with sextupole harmonic.File | Dimensione | Formato | |
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