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Stochastic amplitude fluctuation in coherent OTDR and a new technique for its reduction by stimulating synchronous optical frequency hopping

机译:相干OTDR中的随机幅度波动及其通过激励同步光学跳频来降低幅度的新技术

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摘要

The dynamic range of optical time-domain reflectometry (OTDR) can be extended by employing self-heterodyne coherent detection. However, with coherent detection OTDR (C-OTDR) there is a problem of amplitude fluctuation in the C-OTDR trace caused by (1) the fading noise resulting from the interference between the Rayleigh backscattered lights, (2) the polarization dependent fluctuation of the optical detection efficiency, and (3) the heterodyne detection efficiency fluctuation due to the relative phase change between the Rayleigh backscattered signals and the local oscillator (LO). This paper provides a stochastic description of the amplitude fluctuation using probability density functions and the calculated amplitude fluctuation with M integrations when reduction techniques are applied. We have found theoretically that it is difficult to reduce the amplitude fluctuation effectively by the optical frequency domain integration technique using the asynchronous optical frequency hopping of the source. This is because of an inclination increase in the C-OTDR trace which reduces the measurement accuracy. We propose a synchronous optical frequency hopping technique in which an RF current pulse is induced in the drive current of the laser diode (LD) during the LD temperature change. This effectively reduces the amplitude fluctuation without any increase in the inclination. The amplitude fluctuation for a 1 /spl mu/s pulse width is reduced experimentally to 1/7 that with the LD temperature stabilized. For 100 and 30 ns pulse widths, it is reduced to 1/11 of that with the LD temperature stabilized. These experimental results are in good agreement with the calculated ones.
机译:光学时域反射仪(OTDR)的动态范围可以通过采用自外差相干检测来扩展。但是,对于相干检测OTDR(C-OTDR),C-OTDR迹线存在振幅波动问题,其原因是:(1)瑞利背散射光之间的干扰引起的衰落噪声;(2)偏振相关的波动(3)由于瑞利反向散射信号与本地振荡器(LO)之间的相对相位变化而引起的外差检测效率波动。本文使用概率密度函数对幅度波动进行了随机描述,并在应用归约技术时利用M积分计算了幅度波动。从理论上我们发现,通过使用源的异步光跳频的光频域积分技术很难有效地减小幅度波动。这是因为C-OTDR迹线的倾斜度增加,从而降低了测量精度。我们提出一种同步光学跳频技术,其中在LD温度变化期间在激光二极管(LD)的驱动电流中感应出RF电流脉冲。这有效地减小了幅度波动,而不会增加任何倾斜度。在1 / splμs/ s的脉冲宽度下,幅度波动在实验上减小到了LD温度稳定的1/7。对于100 ns和30 ns的脉冲宽度,在LD温度稳定的情况下,它减小到脉冲宽度的1/11。这些实验结果与计算结果吻合良好。

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