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Pseudo-random-bit-sequence phase modulation for reduced errors in a fiber optic gyroscope

机译:伪随机位序列相位调制可减少光纤陀螺仪中的误差

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摘要

Low noise and drift in a laser-driven fiber optic gyroscope (FOG) are demonstrated by interrogating the sensor with a low-coherence laser. The laser coherence was reduced by broadening its optical spectrum using an external electro-optic phase modulator driven by either a sinusoidal or a pseudo-random bit sequence (PRBS) waveform. The noise reduction measured in a FOG driven by a modulated laser agrees with the calculations based on the broadened laser spectrum. Using PRBS modulation, the linewidth of a laser was broadened from 10 MHz to more than 10 GHz, leading to a measured FOG noise of only 0.00073 deg / root h and a drift of 0.023 deg /h. To the best of our knowledge, these are the lowest noise and drift reported in a laser-driven FOG, and this noise is below the requirement for the inertial navigation of aircraft. (C) 2016 Optical Society of America
机译:通过用低相干激光器询问传感器,证明了激光驱动的光纤陀螺仪(FOG)中的低噪声和漂移。通过使用由正弦或伪随机位序列(PRBS)波形驱动的外部电光相位调制器加宽其光谱,可以降低激光相干性。在由调制激光器驱动的FOG中测得的噪声降低与基于加宽的激光光谱的计算结果一致。使用PRBS调制,激光的线宽从10 MHz扩展到10 GHz以上,导致测得的FOG噪声仅为0.00073度/根h和0.023度/ h的漂移。据我们所知,这是激光驱动FOG中报告的最低噪声和漂移,并且此噪声低于飞机惯性导航的要求。 (C)2016美国眼镜学会

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