arrow
Return

Re-Entry Fiber Optic Current Sensor Based on Continuous Light Source

delete2025-01-01
delete0
PRE
AI
C
Can Li
A
Aodi Yu
J
Jundong Tian
P
Peng Xiang
Y
Yi Zhao
Y
Yan Zuo
J
Junchang Huang
L
Li Xia *
DOI:10.1109/JLT.2024.3450727delete
deleteOriginal
deleteOriginal request for help
deleteShare
deleteSave
Abstract

Abstract

En 中文
This paper proposes a re-entrant optical fiber current sensor based on continuous light, which achieves continuous measurement while improving current measurement sensitivity. Based on the traditional re-entry structure, the sensor employs continuous light measurement, where the current signal manifests as a phase difference between two circularly polarized lights caused by the Faraday effect. This phase difference results in an interference pattern reflected in the light intensity changes. The final measured signal is the cumulative interference signal light intensity of different cycles, demodulated using the phase-generated carrier technology. Experimental results demonstrate that the sensitivity of the structure is 1.8 times that of the traditional reflective structure under the same configuration, and the current measurement accuracy is 0.8 mA. The sensitivity can be further improved by reducing the losses within the resonant cavity. This scheme offers a new approach for the low-cost application of re-entrant structures in the field of current measurement.
Keywords:
Optical fibers
Optical fiber sensors
Sensitivity
Optical polarization
Current measurement
Optical reflection
Optical fiber polarization
Fiber optic current sensor
phase-generated carrier demodulation
re-entrant structure
sensitivity enhancement
tunable current sensitivity

Journal

Journal of Lightwave Technology cover
Journal of Lightwave Technology
IF:
4.8
Papers:
1.7W
Citations:
3.8W

Organization

No organization information available