Publication | Open Access
Brillouin optical correlation domain analysis with more than 1 million effective sensing points based on differential measurement
82
Citations
14
References
2015
Year
PhotonicsEngineeringCoherent Gradient SensingOptical Transmission SystemOptical PropertiesSpectroscopyOptical SensorFiber-optic CommunicationFiber Optic SensingDifferential MeasurementKm FiberFiber OpticsDouble ModulationBrillouin ScatteringOptical CharacterizationOptoelectronicsOptical SensorsFiber Optic
Large increase of effective sensing points in Brillouin optical correlation domain analysis (BOCDA) is achieved by simultaneously applying double modulation and optical time gate based on differential measurement scheme. The noise substructure of Brillouin gain spectrum induced by the double modulation is effectively suppressed by the differential measurement, leading to 2,000 times enlargement of the measurement range. Distributed strain and temperature sensing along a 10.5 km fiber with spatial resolution of less than 1 cm is experimentally demonstrated which corresponds to over 1 million effective sensing points.
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