000 02791nam a22003377i 4500
999 _c92090
_d92096
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005 20251125105523.0
006 a||||fr|||| 001 0
007 ta
008 200225t20192019my ||||f ma|| 001 0 eng d
020 _aTHE0008524(Local)
040 _aUMP
_beng
_cUMP
_erda
090 _aFKM .A39 2019 r Thesis
100 0 _aMuhammad Aizzuddin Abdullah,
_eauthor.
245 1 0 _aDevelopment of temperature-insensitive fibre bragg grating based pressure transducer /
_cMuhammad Aizzuddin Abdullah
264 0 1 _aKuantan, Pahang :
_bUMP,
_c2019
264 0 4 _a© 2019
300 _axiv, 91 pages :
_billustrations (some color) ;
_c30 cm. +
_e1 CD-ROM
336 _2rdacontent
_atext
337 _aunmediated
_2rdamedia
338 _avolume
_2rdacarrier
347 _atext file
_bPDF
_2rda
500 _aFaculty of Mechanical & Manufacturing Engineering
502 _aThesis (Master of Science) -- Universiti Malaysia Pahang – 2019
504 _aIncludes bibliographical references
520 3 _aPressure sensors are the essential equipment in the field of pressure measurement. In this study, an aluminium diaphragm-based fibre Bragg grating (FBG) pressure transducer with temperature compensation strategy is presented. FBG-based sensors are good for certain applications, such as biomedical, combustion chamber and pressure vessel; particularly those involving harsh enviroment and high electromagnetic disturbance. One of the greatest challenges for utilising an FBG-sensor based transducer is the unstable output spectrum due to temperature variations. This phenomenon results in a huge variation in pressure readings, thus contributing to accuracy problem. To overcome the problem, this study introduced an approach to solve the inconsistency of sensor output by utilising two FBGs that were bonded at the centre of the diaphragm (FBG sensor) and at the base of the pressure transducer (FBG reference). The inconsistency of wavelength was eliminated by normalising the Bragg wavelength variation from the FBG sensor (𝛥𝜆𝐹𝐵𝐺1) with respect to Bragg wavelength variation from the FBG reference (𝛥𝜆𝐹𝐵𝐺2). The results indicated that the FBG pressure transducer had a sensitivity of 2.8485 nm/MPa at room temperature within the range of 22.9°C to 27.8°C and a linear fitting coefficient of 99.97% in a pressure that ranged from 0 MPa to 0.5 MPa. This FBG pressure transducer with temperature compensation technique was proven to be suitable for the pressure measurement of gas with an average error of 2.32% as compared to the conventional pressure gauge available in market.
610 2 0 _aFaculty of Mechanical & Manufacturing Engineering
650 0 _aUniversities and colleges
_xDisertations
650 0 _aTheses
942 _2lcc
_cTHESIS