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Adaptive Pulse Period Method for Low-Frequency Vibration Sensing With Intensity-Based Phase-Sensitive OTDR Systems

机译:基于强度的相敏OTDR系统的低频振动检测自适应脉冲周期方法

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The use of intensity-based phase-sensitive optical time-domain reflectometry -OTDR) system to measure low-frequency vibration is the aim of this paper. It is well-known that the laser frequency drift (LFD) and other system noise act as internal vibration that challenge -OTDR system to capture external low-frequency vibration. We proposed theoretically and demonstrated experimentally that by adapting the probe pulse repetition rate/pulse period to the frequency of vibration to be measured, consistent intensity change should be always realized in the disturbance region compared to the induced phase-noise change from pulse to pulse. In particular, two different pulse periods were used to demonstrate the effectiveness of the adaptive pulse period method (APP) for detection of low-frequency vibration. Experimentally, the sensing of external vibrations of 5; 1; 0.5 and 0.1 Hz frequencies with intensity-based -OTDR system was achieved with good signal-to-noise ratio. Moreover, an approach suitable for measuring low-frequency vibration induced by a PZT through direct acquisition of the Rayleigh intensity in the disturbance region was established. Various driving voltages applied to the PZT confirmed the consistency of the method.
机译:采用基于强度的相敏光学时域反射仪-OTDR)系统测量低频振动是本文的目的。众所周知,激光频率漂移(LFD)和其他系统噪声充当内部振动,挑战-OTDR系统以捕获外部低频振动。理论上,通过实验向实验说明,通过将探针脉冲重复率/脉冲周期调整到要测量的振动的频率,与从脉冲到脉冲的感应相位噪声变化相比,应在干扰区域中始终实现一致的强度变化。特别地,两个不同的脉冲周期用于展示自适应脉冲周期方法(APP)以检测低频振动的有效性。在实验上,对外振动的感测5; 1;利用基于强度的-OTDR系统的0.5和0.1 Hz频率以良好的信噪比实现。此外,建立了一种方法,适合于通过直接获取PZT引起的低频振动通过直接获取干扰区域中的瑞利强度。施加到PZT的各种驱动电压证实了该方法的一致性。

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