Publication | Open Access
High sensitivity axial strain and temperature sensor based on dual-frequency optoelectronic oscillator using PMFBG Fabry-Perot filter
54
Citations
14
References
2017
Year
Photonic SensorEngineeringTemperature SensorMechanical EngineeringFiber OpticsOptical PropertiesInstrumentationPhotonicsDual-frequency Optoelectronic OscillatorFiber Optic SensingFiber OpticMicrowave PhotonicsOptical SensorsOeo LoopOeo SensorPmfbg Fabry-perot FilterThermal SensorOptical SensorAxial Strain
A dual-frequency optoelectronic oscillator (OEO) incorporating a polarization-maintaining fiber Bragg grating (PMFBG) Fabry-Perot filter for high-sensitivity and high-speed axial strain and temperature sensing is proposed and experimentally demonstrated. In the OEO loop, two oscillation frequencies are determined by a PMFBG Fabry-Perot filter with two ultra-narrow notches and two laser sources which operate as a dual-passband microwave photonic filter. The fiber birefringence affected by axial strain is far less than the temperature. Through monitoring the variations of two oscillating frequencies and beat frequency, the simultaneous measurement for the axial strain and temperature is realized. The sensitivities of the proposed OEO sensor for axial strain and temperature are experimentally measured to be as high as 100.6 or 100.5 MHz/με and -41 MHz/°C, respectively.
| Year | Citations | |
|---|---|---|
Page 1
Page 1