Application of Forced Modulation Function Mathematical Model in the Characteristic Research of Reflective Intensity Fibre Sensors
, , , oraz
15 gru 2021
O artykule
Data publikacji: 15 gru 2021
Zakres stron: 884 - 892
Otrzymano: 16 cze 2021
Przyjęty: 24 wrz 2021
DOI: https://doi.org/10.2478/amns.2021.1.00073
Słowa kluczowe
© 2021 Lihua Dai et al., published by Sciendo
This work is licensed under the Creative Commons Attribution 4.0 International License.
Fig. 1

Fig. 2

Experimental data of two kinds of spectral compensation
The town of spectroscopic Spectroscopic fill Their data | Measure the signal (v} | 0.6380 | 0.7075 | 0.8263 | 0.9326 | 0.9873 | 1.0646 | 1.1069 | 1.1241 | 1.1301 |
Reference signal (v} | 0.2554 | 0.3271 | 0.4896 | 0.6750 | 0.8049 | 1.0217 | 1.1940 | 1.2644 | 1.3470 | |
The ratio of | 2.498 | 2.163 | 1.688 | 1.382 | 1.227 | 1.042 | 0.927 | 0.889 | 0.839 | |
Type II fibre beam splitting compensation | Measure the signal (v} | 0.3776 | 0.91325 | 1.4256 | 2.0683 | 2.7413 | 3.2959 | 3.9183 | 4.3254 | 4.6840 |
Reference signal (v} | 0.2819 | 0.6692 | 1.5036 | 1.5437 | 20.569 | 2.4815 | 2.9666 | 3.2935 | 3.5949 | |
The ratio of | 1.339 | 1.365 | 1.353 | 1.340 | 1.333 | 1.328 | 1.321 | 1.313 | 1.303 |