High Sensitivity Fiber Displacement Sensor Based Compound Ring Laser Cavity With Linear Variation Of Beat Frequency Signal

ACTA PHYSICA SINICA(2020)

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Abstract
A novel fiber sensor based compound ring laser cavity with linear variation of frequency is proposed and demonstrated experimentally. The compound ring laser cavity is comprised of a ring cavity and a straight cavity. This system can generate the beat frequency spectrum by employing an erbium doped fiber amplifier, a fiber Bragg grating is used as a sensor head and the straight cavity reflector, a pi phase shifted fiber Bragg grating serves as a microwave photonic passband filter. The principle of the proposed sensor is theoretically analyzed, showing that as the displacement increases the beat frequency decreases, and there exists a linear relationship between displacement change and beat frequency shift. In experiment, it is shown that the sensor has a high sensitivity of about 86.19 kHz/mm and can achieve a good linear response (R-2 = 0.9973), and that the minimum monitored displacement is about 10 mu m. The measurement results demonstrate that the sensor is accurate, sensitive, and the proposed sensor system has a compact and simple structure, which makes it convenient for more applications in future.
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Key words
fiber laser sensor,compound ring laser cavity,beat frequency,erbium doped fiber amplifier
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