Utilize este identificador para referenciar este registo: https://hdl.handle.net/1822/89593

TítuloTemperature calibration for distributed temperature sensing of printed circuit boards using optical fiber sensors
Autor(es)Leite, Tiago Mauricio
Freitas, Claúdia
Magalhães, Roberto
Silva, Alexandre F.
Ferreira da Silva, Alexandre
Alves, José Ricardo
Viana, J. C.
Delgado, Isabel
Palavras-chaveOptical fiber sensors (OFSs)
optical frequency-domain reflectometry (OFDR)
printed circuit board (PCB)
temperature calibration
DataSet-2023
EditoraIEEE
RevistaIEEE Transactions on Components, Packaging and Manufacturing Technology
CitaçãoLeite, T. M., Freitas, C., Magalhães, R., Ferreira da Silva, A., Alves, J. R., Viana, J. C., & Delgado, I. (2023, September). Temperature Calibration for Distributed Temperature Sensing of Printed Circuit Boards Using Optical Fiber Sensors. IEEE Transactions on Components, Packaging and Manufacturing Technology. Institute of Electrical and Electronics Engineers (IEEE). http://doi.org/10.1109/tcpmt.2023.3312565
Resumo(s)The work investigates the procedures for temperature calibration of optical fiber sensors (OFSs), implemented on printed circuit boards (PCBs), aiming to accomplish accurate distributed temperature measurements, during temperature cycles. The OFSs are interrogated by optical frequency-domain reflectometry, OFDR, which provides plenty of sensing points using a single OF. For temperature measurements, it was used a polyimide-coated optical fiber within a PTFE sleeve and conventional type-K thermocouples, as a temperature reference. Samples with different OFS dispositions were placed in a static oven under distinct programmed temperature profiles. The temperature calibration correlates the OFS signal frequency shift to the temperature profile registered by reference thermocouples. The proposed calibration methodology results in temperature measurement with low error (±1 °C/3%). Different calibration fittings were obtained depending upon the type of OF configuration and temperature profile used (temperature ranges and rates) since some calibration curves showed an undesired 'bow effect' (hysteresis), which appears to be dependent on the heating/cooling rates. The results of OF within PTFE sleeve, bonded to a PCB and covered with aluminum tape, present smaller deviations and a more stable signal. Nevertheless, the calibration of OFS for distributed temperature measurements is still dependent on application-oriented calibration adjustment.
TipoArtigo
URIhttps://hdl.handle.net/1822/89593
DOI10.1109/TCPMT.2023.3312565
ISSN2156-3950
e-ISSN2156-3985
Versão da editorahttps://ieeexplore.ieee.org/document/10242096
Arbitragem científicayes
AcessoAcesso restrito UMinho
Aparece nas coleções:IPC - Artigos em revistas científicas internacionais com arbitragem

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