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A Dual-Interferometer-Based Angular Measurement System With Absolute Angle Recovery Method

A dual-interferometer-based angular measurement system is proposed and studied, obtaining analytical expressions for the measured distance of each interferometric axis. The nonzero convexity of the characteristic curve during a rotation is proven to be an intrinsic characteristic of the setup. An ab...

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Detalles Bibliográficos
Autores principales: Serrano Gálvez, Pablo, Butcher, Mark, Masi, Alessandro
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TIM.2018.2857598
http://cds.cern.ch/record/2669956
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author Serrano Gálvez, Pablo
Butcher, Mark
Masi, Alessandro
author_facet Serrano Gálvez, Pablo
Butcher, Mark
Masi, Alessandro
author_sort Serrano Gálvez, Pablo
collection CERN
description A dual-interferometer-based angular measurement system is proposed and studied, obtaining analytical expressions for the measured distance of each interferometric axis. The nonzero convexity of the characteristic curve during a rotation is proven to be an intrinsic characteristic of the setup. An absolute angle recovery method is proposed relying on the use of this characteristic curve as an absolute reference to overcome the limitation of the relative operation of conventional interferometric systems. The recovery method is evaluated by Monte Carlo simulations, studying the effect of the noise and the number of points on the performance of the recovery. Finally, the technique is successfully applied to a high-precision rotational stage, where an independent dual-interferometer system is used to experimentally evaluate the performance of the method. The results show an accuracy of $\pm 1.29 \mu$rad ($3 \sigma$) in the recovery of the angle, which is in agreement with the Monte Carlo simulations.
id oai-inspirehep.net-1702508
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
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spelling oai-inspirehep.net-17025082022-01-14T15:04:42Zdoi:10.1109/TIM.2018.2857598http://cds.cern.ch/record/2669956engSerrano Gálvez, PabloButcher, MarkMasi, AlessandroA Dual-Interferometer-Based Angular Measurement System With Absolute Angle Recovery MethodDetectors and Experimental TechniquesA dual-interferometer-based angular measurement system is proposed and studied, obtaining analytical expressions for the measured distance of each interferometric axis. The nonzero convexity of the characteristic curve during a rotation is proven to be an intrinsic characteristic of the setup. An absolute angle recovery method is proposed relying on the use of this characteristic curve as an absolute reference to overcome the limitation of the relative operation of conventional interferometric systems. The recovery method is evaluated by Monte Carlo simulations, studying the effect of the noise and the number of points on the performance of the recovery. Finally, the technique is successfully applied to a high-precision rotational stage, where an independent dual-interferometer system is used to experimentally evaluate the performance of the method. The results show an accuracy of $\pm 1.29 \mu$rad ($3 \sigma$) in the recovery of the angle, which is in agreement with the Monte Carlo simulations.A dual-interferometer-based angular measurement system is proposed and studied, obtaining analytical expressions for the measured distance of each interferometric axis. The nonzero convexity of the characteristic curve during a rotation is proven to be an intrinsic characteristic of the setup. An absolute angle recovery method is proposed relying on the use of this characteristic curve as an absolute reference to overcome the limitation of the relative operation of conventional interferometric systems. The recovery method is evaluated by Monte Carlo simulations, studying the effect of the noise and the number of points on the performance of the recovery. Finally, the technique is successfully applied to a high-precision rotational stage, where an independent dual-interferometer system is used to experimentally evaluate the performance of the method. The results show an accuracy of ±1.29 μrad (3σ) in the recovery of the angle, which is in agreement with the Monte Carlo simulations.oai:inspirehep.net:17025082019
spellingShingle Detectors and Experimental Techniques
Serrano Gálvez, Pablo
Butcher, Mark
Masi, Alessandro
A Dual-Interferometer-Based Angular Measurement System With Absolute Angle Recovery Method
title A Dual-Interferometer-Based Angular Measurement System With Absolute Angle Recovery Method
title_full A Dual-Interferometer-Based Angular Measurement System With Absolute Angle Recovery Method
title_fullStr A Dual-Interferometer-Based Angular Measurement System With Absolute Angle Recovery Method
title_full_unstemmed A Dual-Interferometer-Based Angular Measurement System With Absolute Angle Recovery Method
title_short A Dual-Interferometer-Based Angular Measurement System With Absolute Angle Recovery Method
title_sort dual-interferometer-based angular measurement system with absolute angle recovery method
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1109/TIM.2018.2857598
http://cds.cern.ch/record/2669956
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AT serranogalvezpablo dualinterferometerbasedangularmeasurementsystemwithabsoluteanglerecoverymethod
AT butchermark dualinterferometerbasedangularmeasurementsystemwithabsoluteanglerecoverymethod
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