RESEARCH OF PARAMETERS OF FIBER-OPTICAL MEASURING SYSTEMS
Waldemar Wójcik
Lublin Univeristy of Technology, Institute of Electronics and Computer Science (Poland)
http://orcid.org/0000-0002-0843-8053
Aliya Kalizhanova
kalizhanova_aliya@mail.ru1Institute of Information and Computational Technologies, SR MES RK, 2Al-Farabi Kazakh National University (Kazakhstan)
http://orcid.org/0000-0002-5979-9756
Gulzhan Kashaganova
1Institute of Information and Computational Technologies, SR MES RK, 2Kazakh-American University (Kazakhstan)
http://orcid.org/0000-0001-8150-1621
Ainur Kozbakova
1Institute of Information and Computational Technologies, SR MES RK, 2Al-Farabi Kazakh National University (Kazakhstan)
http://orcid.org/0000-0002-5213-4882
Zhalau Aitkulov
1Institute of Information and Computational Technologies, SR MES RK, 2Al-Farabi Kazakh National University (Kazakhstan)
http://orcid.org/0000-0002-5928-3258
Zhassulan Orazbekov
1Institute of Information and Computational Technologies, SR MES RK, 2Abai Kazakh National Pedagogical University (Kazakhstan)
http://orcid.org/0000-0003-4332-1966
Abstract
At present there exist a lot of technical devices, the failure of which can be connected not only with huge financial losses, but with the treat to the environment as well. Therefore, an important problem is the effective devices conditions diagnostics, including electronic components and check of their operation. Timely faults detecting allows introducing the prevention measures and avoiding serious consequences. Fiber-optic sensors have several advantages, more important of which include the immunity to electromagnetic disturbances, little weight and possibility to be included into the structure being measured. The most perspective are the sensors based on the Bragg fiber gratings. Bragg fiber gratings have several advantages, for instance, they allow creating the distributed measuring massifs, which contain several sensors. As well, they are insensitive to the optic power source vibrations. Variety of using the fiber sensors based on the Bragg fiber gratings has led to producing the Bragg fiber gratings with different spectral characteristics. Homogeneous Bragg fiber gratings have the spectra with solid side lobes, which can influence at the temperature sensor processing characteristics. To level the side lobes there is applied the apodization method, which is one of the means to affect the spectral form. The article herein considers the issues of the Bragg fiber gratings mathematical and computer modeling using the transfer matrix method. Transfer matrix method allows defining the optical components spectral characteristics based on the bound modes theory and description of electromagnetic wave, passing through an optic fiber. In the article there have been analyzed the Bragg fiber gratings in compliance with spectral features, such as transmission and reflectance spectra. As well, there has been carried out the experiment with influence of various parameters at the Bragg fiber gratings spectral characteristics. There have been studied the Bragg fiber gratings spectral features and selected the grating optimal parameters for designing the fiber-optic sensors based on the Bragg fiber gratings.
Keywords:
Bragg gratings, optical sensors, temperature, mathematical modelReferences
Abdulina S. R., Vlasov A. A.: Suppression of side lobes in the Bragg fiber grating reflection spectrum. Optoelectronics, Instrumentation and Data Processing 50(1)/2014, 75–86.
Google Scholar
Chen Y., Chen L., Liu H., Wang K.: Research of FBG sensor signal wavelength demodulation based on improved wavelet transform. Optic 124/2013, 4802–4804.
Google Scholar
Cięszczyk S., Kisała P.: Inverse problem of determining periodic surface profile oscillation defects of steel materials with a Bragg fiber grating sensor. Appl. Opt. 55/2016, 1412–1420.
Google Scholar
Demirdag O., Yildirim B.: Comparing transmission matrix method and AN- FIS in free vibration analysis of Timoshenko columns with applications. Res. Eng. Struct. Mat. 2/2016, 1–18.
Google Scholar
Harasim D., Gulbakhar Y.: Improvement of FBG peak wavelength demodulation using digital signal processing algorithms. Proc. SPIE 9662, 2015, 966212.
Google Scholar
Harasim D., Kisała P.: Układy przesłuchujące multipleksowane światłowodowe czujniki Bragga. Informatyka, Automatyka, Pomiary w Gospodarce i Ochronie Środowiska – IAPGOS 5(4)/2015, 77–84.
Google Scholar
Kashyap R.: Fiber Bragg Gratings. Academic Press San Diego 2009.
Google Scholar
Kenneth O., Meltz G.: Bragg Fiber Grating Technology Fundamentals and Overview. Journal of Lightwave Technology 15(8)/1997, 1263–1276.
Google Scholar
Khalid K. S., Zafrullah M., Bilal S. M., Mirza M. A.: Simulation and analysis of Gaussian apodized Bragg fiber grating strain sensor. Journal of Optical Technology 7(10)/2012, 667–673.
Google Scholar
Kisała P., Cięszczyk S.: Method of simultaneous measurement of two direction force and temperature using FBG sensor head. Applied Optics 54(10)/2015, 2677–2687.
Google Scholar
Kisała P.: Method of simultaneous measurement of bending forces and temperature using Bragg gratings. Proc. SPIE 9506, 2015.
Google Scholar
Kotyra A.: Optoelektroniczne systemy w zastosowaniach diagnostycznych i pomiarowych. Informatyka, Automatyka, Pomiary w Gospodarce i Ochronie Środowiska – IAPGOS 4(2)/2014, 9–10.
Google Scholar
Majumder M., Gangopadhyay T. K., Chakraborty A. K., Dasgupta K., Bhattacharya D. K.: Bragg fiber gratings in structural health monitoring – present status and applications. Sensors and Actuators 147/2008, 150–164.
Google Scholar
Negri L., Nied A., Kalinowski H., Paterno A.: Benchmark for Peak Detection Algorithms in Bragg Fiber Grating Interrogation and a New Neural Network for its Performance Improvement. Sensors 11/2011, 3466–3482.
Google Scholar
Pereira G., McGugan M., Mikkelsen L.P.: Method for independent strain
Google Scholar
and temperature measurement in polymeric tensile test specimen using embedded FBG sensors. Polymer Testing 50/2016, 125–134.
Google Scholar
Wójcik W., Kisała P.: The application of inverse analysis in strain distribution recovery using the Bragg fiber grating sensors. Metrology and Measurement Systems 16(4)/2009, 649–660.
Google Scholar
Wójcik W., Kisała P.: Metoda wyznaczania funkcji apodyzacji światło-wodowych siatek Bragga na podstawie ich charakterystyk widmowych. Przegląd Elektrotechniczny 86(10)/2010, 127–130.
Google Scholar
Authors
Waldemar WójcikLublin Univeristy of Technology, Institute of Electronics and Computer Science Poland
http://orcid.org/0000-0002-0843-8053
Authors
Aliya Kalizhanovakalizhanova_aliya@mail.ru
1Institute of Information and Computational Technologies, SR MES RK, 2Al-Farabi Kazakh National University Kazakhstan
http://orcid.org/0000-0002-5979-9756
Authors
Gulzhan Kashaganova1Institute of Information and Computational Technologies, SR MES RK, 2Kazakh-American University Kazakhstan
http://orcid.org/0000-0001-8150-1621
Authors
Ainur Kozbakova1Institute of Information and Computational Technologies, SR MES RK, 2Al-Farabi Kazakh National University Kazakhstan
http://orcid.org/0000-0002-5213-4882
Authors
Zhalau Aitkulov1Institute of Information and Computational Technologies, SR MES RK, 2Al-Farabi Kazakh National University Kazakhstan
http://orcid.org/0000-0002-5928-3258
Authors
Zhassulan Orazbekov1Institute of Information and Computational Technologies, SR MES RK, 2Abai Kazakh National Pedagogical University Kazakhstan
http://orcid.org/0000-0003-4332-1966
Statistics
Abstract views: 295PDF downloads: 141
License
This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.
Most read articles by the same author(s)
- Olessya A. Yuchshenko, Waldemar Wójcik, DEVELOPMENT OF SIMULATION MODEL OF STRIP PULL SELF-REGULATION SYSTEM IN DYNAMIC MODES IN A CONTINUOUS HOT GALVANIZING LINE , Informatyka, Automatyka, Pomiary w Gospodarce i Ochronie Środowiska: Vol. 4 No. 1 (2014)
- Shamil Koshymbaevich Koshymbaev, Zhibek Shegebaeva, Waldemar Wójcik, DEFINITION OF THE OBJECTS OF MULTIVARIABLE CONTROL OF TECHNOLOGICAL PROCESS OF SMELTING INDUSTRY ON THE BASIS OF OPTIMIZATION MODEL , Informatyka, Automatyka, Pomiary w Gospodarce i Ochronie Środowiska: Vol. 4 No. 1 (2014)
- Gregory Tymchyk, Volodymyr Skytsiouk, Tatiana Klotchko, Roman Akselrod, Valerii Shenfeld, Aliya Kalizhanova, Didar Yedilkhan, Gaukhar Borankulova, TONTOR ZONES MODEL FOR AUTOMATIVE OBJECT MONITORING , Informatyka, Automatyka, Pomiary w Gospodarce i Ochronie Środowiska: Vol. 13 No. 2 (2023)
- Iryna Segeda, Vladyslav Kotsiuba, Oleksii Shushura, Viktoriia Bokovets, Natalia Koval, Aliya Kalizhanova, DECENTRALIZED PLATFORM FOR FINANCING CHARITY PROJECTS , Informatyka, Automatyka, Pomiary w Gospodarce i Ochronie Środowiska: Vol. 14 No. 3 (2024)
- Leonid Timchenko, Natalia Kokriatskaia, Volodymyr Tverdomed, Anatolii Horban, Oleksandr Sobovyi, Liudmyla Pogrebniak, Nelia Burlaka, Yurii Didenko, Maksym Kozyr, Ainur Kozbakova, NEUROBIOLOGICAL PROPERTIES OF THE STRUCTURE OF THE PARALLEL-HIERARCHICAL NETWORK AND ITS USAGE FOR PATTERN RECOGNITION , Informatyka, Automatyka, Pomiary w Gospodarce i Ochronie Środowiska: Vol. 14 No. 3 (2024)