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Performance of resonator fiber optic gyroscope using external-cavity laser stabilization and optical filtering

机译:使用外腔激光稳定和光学滤波的谐振器光纤陀螺仪的性能

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A bench-top resonator fiber optic gyroscope (RFOG) was assembled and tested, showing encouraging progress toward navigation grade performance. The gyro employed a fiber length of 19 meters of polarizing fiber for the sensing coil which was wound on an 11.5 cm diameter PZT cylinder. A bias stability of approximately 0.1 deg/hr was observed over a 2 hour timeframe, which is the best bias stability reported to date in an RFOG to our knowledge. Special care was taken to minimize laser phase noise, including stabilization to an optical cavity which was also used for optical filtering, giving angle random walk (ARW) values in the range of 0.008 deg/rt-hr. The ARW performance and bias stability are within 2x and 10x, respectively, of many civil inertial navigation grade requirements.
机译:台式谐振腔光纤陀螺仪(RFOG)进行了组装和测试,显示出在导航级性能方面的令人鼓舞的进步。陀螺仪将一根长度为19米的偏振纤维用于传感线圈,该线圈缠绕在直径为11.5厘米的PZT圆柱体上。在2小时的时间范围内观察到约0.1度/小时的偏压稳定性,这是迄今为止据我们所知在RFOG中报告的最佳偏压稳定性。要特别注意使激光相位噪声最小化,包括稳定也用于光学滤波的光学腔,使角度随机游走(ARW)值在0.008度/ rt-hr范围内。 ARW性能和偏置稳定性分别是许多民用惯性导航等级要求的2倍和10倍以内。

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