Design of virtual instrument for automatic temperature visualization in magnetic fields using LabVIEW in combination with fiber-optical temperature measurement

emperature measurement in magnetic fields is indispensable for Magnetic Resonance safety studies and for temperature calibrations during Magnetic Resonance applications. A selection of these procedures is subject to the application of MR-compatible robotic systems. The existing problem for the softw...

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Main Authors: Pahl, C., Mazle, H. A. B., Supriyanto, E.
Format: Conference or Workshop Item
Published: 2015
Subjects:
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author Pahl, C.
Mazle, H. A. B.
Supriyanto, E.
author_facet Pahl, C.
Mazle, H. A. B.
Supriyanto, E.
author_sort Pahl, C.
collection ePrints
description emperature measurement in magnetic fields is indispensable for Magnetic Resonance safety studies and for temperature calibrations during Magnetic Resonance applications. A selection of these procedures is subject to the application of MR-compatible robotic systems. The existing problem for the software version NI LabVIEW 2013 is the lack of an instrument to automatically process data from a fiber-optical temperature measurement device. In this work a virtual instrument for this specific software version is designed in order to automatically visualize temperature in magnetic fields. The setup consists of a magnetic field tolerant fiber-optical temperature measurement device being connected to temperature samples and a Microsoft based Computer System. Results show a functional software instrument for automatic temperature measurement with a maximum delay of 0.14 s. We conclude that the developed instrument is highly suitable for automated biomedical applications and can be adapted to future versions of LabVIEW software.
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institution Universiti Teknologi Malaysia - ePrints
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spelling utm.eprints-592172021-12-09T04:25:27Z http://eprints.utm.my/59217/ Design of virtual instrument for automatic temperature visualization in magnetic fields using LabVIEW in combination with fiber-optical temperature measurement Pahl, C. Mazle, H. A. B. Supriyanto, E. Q Science (General) emperature measurement in magnetic fields is indispensable for Magnetic Resonance safety studies and for temperature calibrations during Magnetic Resonance applications. A selection of these procedures is subject to the application of MR-compatible robotic systems. The existing problem for the software version NI LabVIEW 2013 is the lack of an instrument to automatically process data from a fiber-optical temperature measurement device. In this work a virtual instrument for this specific software version is designed in order to automatically visualize temperature in magnetic fields. The setup consists of a magnetic field tolerant fiber-optical temperature measurement device being connected to temperature samples and a Microsoft based Computer System. Results show a functional software instrument for automatic temperature measurement with a maximum delay of 0.14 s. We conclude that the developed instrument is highly suitable for automated biomedical applications and can be adapted to future versions of LabVIEW software. 2015 Conference or Workshop Item PeerReviewed Pahl, C. and Mazle, H. A. B. and Supriyanto, E. (2015) Design of virtual instrument for automatic temperature visualization in magnetic fields using LabVIEW in combination with fiber-optical temperature measurement. In: 6th International Conference on Automation, Robotics and Applications, ICARA 2015, 17-19 Feb 2015, Queenstown, New Zealand. http://dx.doi.org/10.1109/ICARA.2015.7081180
spellingShingle Q Science (General)
Pahl, C.
Mazle, H. A. B.
Supriyanto, E.
Design of virtual instrument for automatic temperature visualization in magnetic fields using LabVIEW in combination with fiber-optical temperature measurement
title Design of virtual instrument for automatic temperature visualization in magnetic fields using LabVIEW in combination with fiber-optical temperature measurement
title_full Design of virtual instrument for automatic temperature visualization in magnetic fields using LabVIEW in combination with fiber-optical temperature measurement
title_fullStr Design of virtual instrument for automatic temperature visualization in magnetic fields using LabVIEW in combination with fiber-optical temperature measurement
title_full_unstemmed Design of virtual instrument for automatic temperature visualization in magnetic fields using LabVIEW in combination with fiber-optical temperature measurement
title_short Design of virtual instrument for automatic temperature visualization in magnetic fields using LabVIEW in combination with fiber-optical temperature measurement
title_sort design of virtual instrument for automatic temperature visualization in magnetic fields using labview in combination with fiber optical temperature measurement
topic Q Science (General)
work_keys_str_mv AT pahlc designofvirtualinstrumentforautomatictemperaturevisualizationinmagneticfieldsusinglabviewincombinationwithfiberopticaltemperaturemeasurement
AT mazlehab designofvirtualinstrumentforautomatictemperaturevisualizationinmagneticfieldsusinglabviewincombinationwithfiberopticaltemperaturemeasurement
AT supriyantoe designofvirtualinstrumentforautomatictemperaturevisualizationinmagneticfieldsusinglabviewincombinationwithfiberopticaltemperaturemeasurement