The period sensitivity and modal sensitivity of optical fiber force sensor based on mechanical induced ultra-long period fiber grating
© 2016 IEEE. In this study, a mechanical induced ultra-long period fiber grating (MULPFG) with periods of several millimeter is demonstrated. The periodic grooved plate used to create the grating in the single-mode fiber (SM600) is the rectangular grooved plate which is fabricated by the 3D printer....
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th-mahidol.423632019-03-14T15:03:25Z The period sensitivity and modal sensitivity of optical fiber force sensor based on mechanical induced ultra-long period fiber grating Ratchapak Chitaree Wanvisa Talataisong Mahidol University Computer Science © 2016 IEEE. In this study, a mechanical induced ultra-long period fiber grating (MULPFG) with periods of several millimeter is demonstrated. The periodic grooved plate used to create the grating in the single-mode fiber (SM600) is the rectangular grooved plate which is fabricated by the 3D printer. The experimental results clearly show that the MULPFGs with the longer grating period are more sensitive to the perturbation force than the shorter grating period. The force sensitivity to the resonance wavelengths of the MULPFG with higher modes are more sensitive than the lower modes. The fabricated force sensor based on MULPFG by using the 3D printer is robust and stable in operation and exhibits a high-sensitivity of ∼ 0.470 nm/N. It offers the advantages of being inexpensive, erasable, and reconfigurable as well. 2018-12-21T07:21:34Z 2019-03-14T08:03:25Z 2018-12-21T07:21:34Z 2019-03-14T08:03:25Z 2017-03-10 Conference Paper ICOCN 2016 - 2016 15th International Conference on Optical Communications and Networks. (2017) 10.1109/ICOCN.2016.7875783 2-s2.0-85016480983 https://repository.li.mahidol.ac.th/handle/123456789/42363 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85016480983&origin=inward |
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Computer Science Ratchapak Chitaree Wanvisa Talataisong The period sensitivity and modal sensitivity of optical fiber force sensor based on mechanical induced ultra-long period fiber grating |
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© 2016 IEEE. In this study, a mechanical induced ultra-long period fiber grating (MULPFG) with periods of several millimeter is demonstrated. The periodic grooved plate used to create the grating in the single-mode fiber (SM600) is the rectangular grooved plate which is fabricated by the 3D printer. The experimental results clearly show that the MULPFGs with the longer grating period are more sensitive to the perturbation force than the shorter grating period. The force sensitivity to the resonance wavelengths of the MULPFG with higher modes are more sensitive than the lower modes. The fabricated force sensor based on MULPFG by using the 3D printer is robust and stable in operation and exhibits a high-sensitivity of ∼ 0.470 nm/N. It offers the advantages of being inexpensive, erasable, and reconfigurable as well. |
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Mahidol University |
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Mahidol University Ratchapak Chitaree Wanvisa Talataisong |
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Conference or Workshop Item |
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Ratchapak Chitaree Wanvisa Talataisong |
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Ratchapak Chitaree |
title |
The period sensitivity and modal sensitivity of optical fiber force sensor based on mechanical induced ultra-long period fiber grating |
title_short |
The period sensitivity and modal sensitivity of optical fiber force sensor based on mechanical induced ultra-long period fiber grating |
title_full |
The period sensitivity and modal sensitivity of optical fiber force sensor based on mechanical induced ultra-long period fiber grating |
title_fullStr |
The period sensitivity and modal sensitivity of optical fiber force sensor based on mechanical induced ultra-long period fiber grating |
title_full_unstemmed |
The period sensitivity and modal sensitivity of optical fiber force sensor based on mechanical induced ultra-long period fiber grating |
title_sort |
period sensitivity and modal sensitivity of optical fiber force sensor based on mechanical induced ultra-long period fiber grating |
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2018 |
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https://repository.li.mahidol.ac.th/handle/123456789/42363 |
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