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首页> 外文期刊>Journal of Lightwave Technology >Fiber Optic Dual-Ring Michelson Interferometer-Based Detection Scheme for the Measurement of Dynamic Signals
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Fiber Optic Dual-Ring Michelson Interferometer-Based Detection Scheme for the Measurement of Dynamic Signals

机译:基于光纤双环迈克尔逊干涉仪的动态信号测量检测方案

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摘要

A fiber optic dual-ring Michelson interferometer (DRMI) based detection scheme for the measurement of dynamic signals is proposed and experimentally demonstrated. The fiber optic sensor is a single mode fiber between two broadband fiber Bragg gratings (FBGs) with different center wavelengths. The two FBGs are connected to two output ports of a 3 x 3 coupler to compose a DRMI. High responsivity and wide frequency response range can be achieved at the same time. The scheme has high reliability, in which the undesirable external perturbation applied to interferometric arms is removed. A DRMI-based vibration sensor and a DRMI-based acoustic sensor are fabricated and experimentally investigated. For the DRMI-based vibration sensor, a responsivity of 12.8 rad/g is obtained, and the resonant frequency is 825 Hz. The minimum detectable acceleration is 54 mu g / root Hz at 300 Hz. The acoustic sensor is used to detect signals in the frequency range of 0.5-19 kHz. The detection scheme has properties of wide frequency response range, high responsivity, and high reliability.
机译:提出并实验证明了一种基于光纤双环迈克尔逊干涉仪(DRMI)的动态信号测量检测方案。光纤传感器是两个具有不同中心波长的宽带布拉格光栅(FBG)之间的单模光纤。两个FBG连接到3 x 3耦合器的两个输出端口以组成DRMI。可以同时实现高响应度和宽频率响应范围。该方案具有高可靠性,其中消除了施加到干涉臂的不希望的外部干扰。基于DRMI的振动传感器和基于DRMI的声传感器被制造和实验研究。对于基于DRMI的振动传感器,可获得12.8 rad / g的响应度,谐振频率为825 Hz。在300 Hz时,最小可检测加速度为54μg /根Hz。声音传感器用于检测0.5-19 kHz频率范围内的信号。该检测方案具有频率响应范围宽,响应度高,可靠性高的特点。

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