| Literature DB >> 30336628 |
Binbin Yan1, Guoqiang Liu2, Jun He3, Yanhua Luo4,5, Liwei Yang6, Haifeng Qi7, Xinzhu Sang8, Kuiru Wang9, Chongxiu Yu10, Jinhui Yuan11, Gang-Ding Peng12.
Abstract
The bending response of polymer optical fibre Bragg grating (POFBG) and silica optical fibre Bragg grating (SOFBG) mounted on a brass beam have been systematically studied and compared. The results indicate that POFBG has higher (almost twice as much) bend sensitivity than SOFBG. Based on the difference between the bend and temperature sensitivity of POFBG and SOFBG, a new method of measuring vector bend and temperature simultaneously was proposed by using a hybrid sensor head with series connection of one POFBG and one SOFBG with different Bragg wavelengths. It provides high sensitivity and resolution for sensing bend and temperature changes simultaneously and independently. The proposed sensor can find some applications in the fields where high sensitivity for both bend and temperature measurements are required.Entities:
Keywords: fibre Bragg grating; polymer fibre grating; silica fibre grating; simultaneous sensing; temperature sensing; vector bend sensing
Year: 2018 PMID: 30336628 PMCID: PMC6210341 DOI: 10.3390/s18103507
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
Figure 1A typical experimental scheme for the vector bend sensing of brass beam with POFBG and SOFBG.
Relevant parameters of SOFBG and POFBG [32,33,34].
| Parameter | Thermal Expansion Coefficient ( | Thermal Expansion Coefficient ( | |
|---|---|---|---|
| Sample | /°C | /°C | |
|
| ~8.6 × 10−6 | 0.55 × 10−6 | |
|
| −100 × 10−6 | 50 × 10−6 | |
|
| - | 19 × 10−6 | |
Figure 2Reflection spectra of typical POFBG and SOFBG at 25 °C.
Figure 3Bend response of POFBG (a) and SOFBG (b) on the upper surface of brass beam vs. the curvature, when the beam is bent upwards or downwards.
The linear fitting results of POFBG and SOFBG response to the bend.
| FBG | Fitting | Direction | Slope | Intercept | Residual Sum of Squares | Adj. |
|
|
|---|---|---|---|---|---|---|---|---|
| nm/m−1 | nm | nm | m−1 | nm/m−1 | ||||
|
| Bending | Up | 0.541 | −0.162 | 0.105 | 0.966 | + | 0.533 |
| Return | Up | 0.525 | −0.136 | 0.067 | 0.977 | |||
| Bending | Down | 0.696 | 0.427 | 0.654 | 0.882 | − | 0.695 | |
| Return | Down | 0.695 | 0.377 | 0.695 | 0.907 | |||
|
| Bending | Up | 0.306 | −0.093 | 0.037 | 0.963 | + | 0.295 |
| Return | Up | 0.284 | −0.115 | 0.048 | 0.977 | |||
| Bending | Down | 0.340 | 0.122 | 0.054 | 0.957 | − | 0.329 | |
| Return | Down | 0.318 | 0.111 | 0.042 | 0.961 |
Figure 4Bend response of POFBG (a) and SOFBG (b) on the upper surface of brass beam without and with sticky tape fixing vs. the curvature, when the beam is bent upwards.
The linear fitting results of POFBG and SOFBG response to the bend with and without sticky tape fixing.
| FBG | Sticky Tape | Slope ( | Intercept | Residual Sum of Squares | Adj. |
|---|---|---|---|---|---|
| nm/m−1 | nm | nm | |||
|
| × | 0.386 | 0.062 | 0.125 | 0.924 |
| √ | 0.541 | −0.162 | 0.105 | 0.966 | |
|
| × | 0.292 | −0.110 | 0.045 | 0.952 |
| √ | 0.306 | −0.093 | 0.037 | 0.963 |
Figure 5Bend response of POFBG (a) and SOFBG (b) on the upper surface of brass vs. the curvature in repeated upwards bending, where the beam length changed to 20 cm.
The linear fitting results of POFBG and SOFBG response to the repeated upwards bending.
| FBG | Cycle | Slope ( | Intercept (nm) | Residual Sum of Squares (nm) | Adj. |
|---|---|---|---|---|---|
|
| 1st | 0.729 | −0.113 | 0.050 | 0.983 |
| 2nd | 0.660 | −0.076 | 0.032 | 0.986 | |
| 3rd | 0.654 | −0.104 | 0.075 | 0.968 | |
|
| 1st | 0.504 | −0.018 | 0.005 | 0.996 |
| 2nd | 0.499 | −0.032 | 0.013 | 0.990 | |
| 3rd | 0.493 | 0.009 | 0.001 | 0.999 |
Figure 6Bragg wavelength shift of POFBG and SOFBG vs. temperature.
The linear fitting results of thermal response of POFBG and SOFBG.
| Grating Type | Slope (nm/°C) | Intercept (nm) | Residual Sum of Squares (nm) | Adj. |
|---|---|---|---|---|
|
| −0.147 | 3.668 | 0.052 | 0.996 |
|
| 0.010 | −0.420 | 0.000 | 1.000 |
|
| 0.018 | −0.746 | 0.000 | 1.000 |
Parameters of the simultaneous vector bending and temperature sensing for different schemes.
| Mounting Case | Bending Direction |
|
|
|
|
|
| |
|---|---|---|---|---|---|---|---|---|
| POFBG | SOFBG | −0.147 | 0.018 | 0.533 | 0.695 | 0.295 | 0.329 | |
| nm/°C | nm/°C | nm/m−1 | nm/m−1 | nm/m−1 | nm/m−1 | |||
| Upper | Upper | Upwards | √ | √ | √ | √ | ||
| Upper | Upper | Downwards | √ | √ | √ | √ | ||
| Lower | Lower | Upwards | √ | √ | √ | √ | ||
| Lower | Lower | Downwards | √ | √ | √ | √ | ||
| Upper | Lower | Upwards | √ | √ | √ | √ | ||
| Upper | Lower | Downwards | √ | √ | √ | √ | ||
| Lower | Upper | Upwards | √ | √ | √ | √ | ||
| Lower | Upper | Downwards | √ | √ | √ | √ | ||