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Fiber Bragg Grating Sensor Multiplexing System Based on the Time- and Wavelength- Division Technique

机译:基于时光和波长技术的光纤布拉格光栅传感器复用系统

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A FBG sensor multiplexing system based on the combination of wavelength- and time- division multiplexing technique is proposed. In this paper, A semiconductor optical amplifier (SOA) connected in a ring cavity is used to serve as a gain medium and switch. The sensor array is consisted of four groups of sensors and the nominal wavelength of the sensors in the same group is different. The SOA is driven by a pulse generator which switch on the SOA at different periods, as a switch to select the reflected pulses from a particular group. Using low reflectivity (3%~5%) sensors the number of the groups can achieved 50, the bandwidth of each group used in this system is 40 nm (1525-1565nm), the system permits the interrogation of up to 1000 FBG sensors. With this technique, the FBG sensors system avoid using optical switch to expand channels, it improved the response speed and reduced cost in the application of structural health monitoring where large numbers of sensors are required.
机译:提出了一种基于波长和时分复用技术组合的FBG传感器复用系统。在本文中,在环腔中连接的半导体光放大器(SOA)用作增益介质和开关。传感器阵列由四组传感器组成,同一组中传感器的标称波长不同。 SOA由脉冲发生器驱动,该脉冲发生器在不同时段开启SOA,作为切换,以选择来自特定组的反射脉冲。使用低反射率(3%〜5%)传感器可以实现组的数量50,本系统中使用的每个组的带宽为40 nm(1525-1565nm),系统允许询问高达1000个FBG传感器。采用这种技术,FBG传感器系统避免使用光开关来展开通道,它提高了响应速度和降低的成本,在结构健康监测的应用中,需要大量传感器。

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