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首页> 外文期刊>Journal of Lightwave Technology >Large-Scale Multilongitudinal Mode Fiber Laser Sensor Array With Wavelength/Frequency Division Multiplexing
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Large-Scale Multilongitudinal Mode Fiber Laser Sensor Array With Wavelength/Frequency Division Multiplexing

机译:波长/频分复用的大规模多纵向模式光纤激光传感器阵列

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摘要

A large-scale multilongitudinal mode fiber laser sensor array is proposed and demonstrated experimentally based on wavelength/frequency division multiplexing and beat frequency demodulation technique. In the proposed hybrid multiplexing sensing system, the frequency division multiplexing is realized by designing n fiber lasers with different cavity lengths, while the wavelength division multiplexing is achieved by incorporating a 1 × m coupler and an m-channel wavelength division demultiplexer. By making the operating wavelength of frequency-multiplexed lasers equal to the central wavelength of each channel in the demultiplexer, the light of each laser is coupled independently to the corresponding channel. Therefore, the multiplexing capability of the multilongitudinal mode fiber laser sensors is greatly improved and the maximum number of multiplexed sensors is m × n theoretically. To verify the proposed wavelength/frequency division multiplexing system, a 4 × 4 multilongitudinal mode fiber laser sensor array was set up and investigated. Experimental results show that there is a low crosstalk between the adjacent channels. The proposed wavelength/frequency hybrid multiplexing technology has the ability to monitor simultaneously a large number of fiber laser sensors.
机译:提出了一种基于波/频分复用和拍频解调技术的大规模多纵模光纤激光传感器阵列并进行了实验验证。在提出的混合多路复用传感系统中,通过设计n个具有不同腔长的光纤激光器来实现频分多路复用,而通过合并一个1×m耦合器和一个m通道波分多路分解器来实现波分多路复用。通过使多路复用激光器的工作波长等于解复用器中每个通道的中心波长,每个激光器的光独立耦合到相应的通道。因此,理论上大大提高了多纵向模式光纤激光传感器的复用能力,并且复用传感器的最大数量为m×n。为了验证所提出的波分/频分复用系统,建立并研究了一个4×4多纵向模式光纤激光传感器阵列。实验结果表明,相邻通道之间的串扰较低。提出的波长/频率混合复用技术具有同时监视大量光纤激光传感器的能力。

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