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Automatic bias control of electro-optic modulator in optical-fiber Brillouin sensing system

机译:光纤布里渊传感系统中电光调制器的自动偏置控制

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Electro-optic modulator (EOM) is widely used in optical fiber Brillouin sensing system. However, the characteristics of EOM are sensitive to the external temperature change and mechanical vibration. It manifests a time-dependent drift of transmission curve, which leads to the decrease of extinction ratio and measurement accuracy of the sensing system. In order to set a stable EOM operation point for pulse modulation of input lightwave, an automatic bias control system with optical feedback is designed in this paper based on the observation of drift phenomenon of transmission curve and the measurement of half-wave voltage of EOM. This system can control the bias more precisely and steadily than the previous methods. Experimental results indicate that the extinction ratio of output pulse can be as high as more than 28 dB and keep stable in the whole measurement time of three hours with this system. The steady bias control and obtained high extinction ratio provide a foundation of high accuracy for optical-fiber Brillouin sensing system.
机译:电光调制器(EOM)被广泛用于光纤布里渊传感系统中。但是,EOM的特性对外部温度变化和机械振动很敏感。它表现出传输曲线随时间的漂移,从而导致消光比和传感系统测量精度的降低。为了给输入光波的脉冲调制设定一个稳定的EOM工作点,在观察传输曲线漂移现象和测量EOM的半波电压的基础上,设计了具有光反馈的自动偏置控制系统。与以前的方法相比,该系统可以更精确,更稳定地控制偏差。实验结果表明,该系统的输出脉冲消光比可高达28 dB以上,并在整个三小时的测量时间内保持稳定。稳定的偏置控制和获得的高消光比为光纤布里渊传感系统提供了高精度的基础。

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