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Improving accuracy of distance measurements based on an optoelectronic oscillator by measuring variation of fiber delay

机译:通过测量光纤延迟的变化来提高基于光电振荡器的距离测量的准确性

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摘要

The ultra-long optical fiber of an optoelectronic oscillator (OEO) and the high spectral purity of its high frequency oscillation signal open the possibility of high-accuracy distance measurements at a long range. However, the longer the fiber length in an OEO, the more prone the system is to surrounding disturbance, which in turn leads to fluctuation of the loop delay and a reduction in distance measurement accuracy. In this paper, an intensity modulated light signal is combined with the light signal of an OEO in terms of wavelength division multiplexing (WDM) and is propagated through the fiber. The phase shift has been measured in real time to compensate for variations in fiber delay. With this method, experimental results showed a standard deviation of 14.8 μm.
机译:光电振荡器(OEO)的超长光纤及其高频振荡信号的高光谱纯度为在远距离进行高精度距离测量提供了可能。但是,OEO中的光纤长度越长,系统越容易受到周围的干扰,进而导致环路延迟的波动和距离测量精度的降低。在本文中,根据波分复用(WDM),将强度调制的光信号与OEO的光信号进行组合,并通过光纤传播。已经实时测量了相移以补偿光纤延迟的变化。使用这种方法,实验结果显示标准偏差为14.8μm。

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