Simultaneous strain and temperature measurement based on a photonic crystal fiber modal-interference interacting with a long period fiber grating
An alternative all-fiber sensor for simultaneous strain and temperature measurement based on a photonic crystal fiber (PCF) spliced between single-mode fibers cascaded with a long period grating (LPG) is proposed. By collapsing the air holes at two splicing regions along the PCF, a simple but effect...
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sg-ntu-dr.10356-972422020-03-07T11:35:37Z Simultaneous strain and temperature measurement based on a photonic crystal fiber modal-interference interacting with a long period fiber grating Li, Tao Dong, Xinyong Chan, Chi Chiu Hu, Limin Qian, Wenwen School of Chemical and Biomedical Engineering An alternative all-fiber sensor for simultaneous strain and temperature measurement based on a photonic crystal fiber (PCF) spliced between single-mode fibers cascaded with a long period grating (LPG) is proposed. By collapsing the air holes at two splicing regions along the PCF, a simple but effective modal-interference (MI) is occurred between the core and cladding modes of the PCF. Due to the different responses on the changes of strain and temperature on the MI and the cascaded LPG, the strain and temperature can be measured simultaneously. Experimental results show that the sensing resolution of 9.1 με in strain measurement is experimentally achieved over a range of 2640 με, while the temperature sensing resolution is 0.27 °C within a range of 30–100 °C. 2013-06-25T03:26:53Z 2019-12-06T19:40:31Z 2013-06-25T03:26:53Z 2019-12-06T19:40:31Z 2012 2012 Journal Article Li, T., Dong, X., Chan, C. C., Hu, L., & Qian, W. (2012). Simultaneous strain and temperature measurement based on a photonic crystal fiber modal-interference interacting with a long period fiber grating. Optics Communications, 285(24), 4874-4877. 0030-4018 https://hdl.handle.net/10356/97242 http://hdl.handle.net/10220/10597 10.1016/j.optcom.2012.08.039 en Optics communications © 2012 Elsevier B.V. |
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An alternative all-fiber sensor for simultaneous strain and temperature measurement based on a photonic crystal fiber (PCF) spliced between single-mode fibers cascaded with a long period grating (LPG) is proposed. By collapsing the air holes at two splicing regions along the PCF, a simple but effective modal-interference (MI) is occurred between the core and cladding modes of the PCF. Due to the different responses on the changes of strain and temperature on the MI and the cascaded LPG, the strain and temperature can be measured simultaneously. Experimental results show that the sensing resolution of 9.1 με in strain measurement is experimentally achieved over a range of 2640 με, while the temperature sensing resolution is 0.27 °C within a range of 30–100 °C. |
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School of Chemical and Biomedical Engineering |
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School of Chemical and Biomedical Engineering Li, Tao Dong, Xinyong Chan, Chi Chiu Hu, Limin Qian, Wenwen |
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Li, Tao Dong, Xinyong Chan, Chi Chiu Hu, Limin Qian, Wenwen |
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Li, Tao Dong, Xinyong Chan, Chi Chiu Hu, Limin Qian, Wenwen Simultaneous strain and temperature measurement based on a photonic crystal fiber modal-interference interacting with a long period fiber grating |
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Li, Tao |
title |
Simultaneous strain and temperature measurement based on a photonic crystal fiber modal-interference interacting with a long period fiber grating |
title_short |
Simultaneous strain and temperature measurement based on a photonic crystal fiber modal-interference interacting with a long period fiber grating |
title_full |
Simultaneous strain and temperature measurement based on a photonic crystal fiber modal-interference interacting with a long period fiber grating |
title_fullStr |
Simultaneous strain and temperature measurement based on a photonic crystal fiber modal-interference interacting with a long period fiber grating |
title_full_unstemmed |
Simultaneous strain and temperature measurement based on a photonic crystal fiber modal-interference interacting with a long period fiber grating |
title_sort |
simultaneous strain and temperature measurement based on a photonic crystal fiber modal-interference interacting with a long period fiber grating |
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2013 |
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https://hdl.handle.net/10356/97242 http://hdl.handle.net/10220/10597 |
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