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Performance Analysis of the Ironless Inductive Position Sensor in the Large Hadron Collider Collimators Environment

The Ironless Inductive Position Sensor (I2PS) has been introduced as a valid alternative to Linear Variable Differential Transformers (LVDTs) when external magnetic fields are present. Potential applications of this linear position sensor can be found in critical systems such as nuclear plants, toka...

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Detalles Bibliográficos
Autores principales: Danisi, Alessandro, Masi, Alessandro, Losito, Roberto
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.3390/s151128592
http://cds.cern.ch/record/2137121
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author Danisi, Alessandro
Masi, Alessandro
Losito, Roberto
author_facet Danisi, Alessandro
Masi, Alessandro
Losito, Roberto
author_sort Danisi, Alessandro
collection CERN
description The Ironless Inductive Position Sensor (I2PS) has been introduced as a valid alternative to Linear Variable Differential Transformers (LVDTs) when external magnetic fields are present. Potential applications of this linear position sensor can be found in critical systems such as nuclear plants, tokamaks, satellites and particle accelerators. This paper analyzes the performance of the I2PS in the harsh environment of the collimators of the Large Hadron Collider (LHC), where position uncertainties of less than 20 μm are demanded in the presence of nuclear radiation and external magnetic fields. The I2PS has been targeted for installation for LHC Run 2, in order to solve the magnetic interference problem which standard LVDTs are experiencing. The paper describes in detail the chain of systems which belong to the new I2PS measurement task, their impact on the sensor performance and their possible further optimization. The I2PS performance is analyzed evaluating the position uncertainty (on 30 s), the magnetic immunity and the long-term stability (on 7 days). These three indicators are assessed from data acquired during the LHC operation in 2015 and compared with those of LVDTs.
id cern-2137121
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
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spelling cern-21371212022-08-10T13:06:40Zdoi:10.3390/s151128592http://cds.cern.ch/record/2137121engDanisi, AlessandroMasi, AlessandroLosito, RobertoPerformance Analysis of the Ironless Inductive Position Sensor in the Large Hadron Collider Collimators EnvironmentEngineeringThe Ironless Inductive Position Sensor (I2PS) has been introduced as a valid alternative to Linear Variable Differential Transformers (LVDTs) when external magnetic fields are present. Potential applications of this linear position sensor can be found in critical systems such as nuclear plants, tokamaks, satellites and particle accelerators. This paper analyzes the performance of the I2PS in the harsh environment of the collimators of the Large Hadron Collider (LHC), where position uncertainties of less than 20 μm are demanded in the presence of nuclear radiation and external magnetic fields. The I2PS has been targeted for installation for LHC Run 2, in order to solve the magnetic interference problem which standard LVDTs are experiencing. The paper describes in detail the chain of systems which belong to the new I2PS measurement task, their impact on the sensor performance and their possible further optimization. The I2PS performance is analyzed evaluating the position uncertainty (on 30 s), the magnetic immunity and the long-term stability (on 7 days). These three indicators are assessed from data acquired during the LHC operation in 2015 and compared with those of LVDTs.oai:cds.cern.ch:21371212015
spellingShingle Engineering
Danisi, Alessandro
Masi, Alessandro
Losito, Roberto
Performance Analysis of the Ironless Inductive Position Sensor in the Large Hadron Collider Collimators Environment
title Performance Analysis of the Ironless Inductive Position Sensor in the Large Hadron Collider Collimators Environment
title_full Performance Analysis of the Ironless Inductive Position Sensor in the Large Hadron Collider Collimators Environment
title_fullStr Performance Analysis of the Ironless Inductive Position Sensor in the Large Hadron Collider Collimators Environment
title_full_unstemmed Performance Analysis of the Ironless Inductive Position Sensor in the Large Hadron Collider Collimators Environment
title_short Performance Analysis of the Ironless Inductive Position Sensor in the Large Hadron Collider Collimators Environment
title_sort performance analysis of the ironless inductive position sensor in the large hadron collider collimators environment
topic Engineering
url https://dx.doi.org/10.3390/s151128592
http://cds.cern.ch/record/2137121
work_keys_str_mv AT danisialessandro performanceanalysisoftheironlessinductivepositionsensorinthelargehadroncollidercollimatorsenvironment
AT masialessandro performanceanalysisoftheironlessinductivepositionsensorinthelargehadroncollidercollimatorsenvironment
AT lositoroberto performanceanalysisoftheironlessinductivepositionsensorinthelargehadroncollidercollimatorsenvironment