IEEE Transactions on Instrumentation and Measurement · 2004 · 60 citations · 16 references
Electrical EngineeringEngineeringSensorsMeasurementFiber Optic SensingFaraday Current SensorEducationFiber OpticsInstrumentationCharacterized FocsOptical SensorDistributed SensingOptical SensorsMagnetic SensorPower Systems MonitoringFiber Optic
The paper presents a portable fiber-optic current sensor (FOCS), based on the Faraday effect, with a magnetic concentrator. Both the optical sensing head and electronic processing block are illustrated. A detailed experimental study to confirm the performance of the device is also reported. According to the measured values of ac rms current up to 1 kA, a calibration procedure was performed. The paper provides an analysis of the results obtained for various conductor displacements within the concentrator. The well-known temperature dependence of the Faraday current sensor and its influence on the measurement accuracy are tested by means of a special double-layer thermal insulated chamber. The calibrated and characterized FOCS is applied for harmonic analysis of the current. The results clearly illustrate the nature of the sensing process and demonstrate odd-order harmonics presence, as predicted by the mathematical model. The paper indicates that the developed device is suitable for the power systems monitoring.
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Reciprocal reflection interferometer for a fiber-optic Faraday current sensor
G. Frosio, R. Dändliker · Applied Optics · 1994 · 130 citations · Full text
Magneto-optic current sensor using a helical-fiber Fabry–Perot resonator
F. Maystre, A. Bertholds · Optics Letters · 1989 · 40 citations · Full text