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Resonant fiber optic gyro based on a sinusoidal wave modulation and square wave demodulation technique

机译:基于正弦波调制和方波解调技术的谐振光纤陀螺

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New developments are made in the resonant fiber optic gyro (RFOG), which is an optical sensor for the measurement of rotation rate. The digital signal processing system based on the phase modulation technique is capable of detecting the weak frequency difference induced by the Sagnac effect and suppressing the reciprocal noise in the circuit, which determines the detection sensitivity of the RFOG. A new technique based on the sinusoidal wave modulation and square wave demodulation is implemented, and the demodulation curve of the system is simulated and measured. Compared with the past technique using sinusoidal modulation and demodulation, it increases the slope of the demodulation curve by a factor of 1.56, improves the spectrum efficiency of the modulated signal, and reduces the occupancy of the field-programmable gate array resource. On the basis of this new phase modulation technique, the loop is successfully locked and achieves a short-term bias stability of 1.08 degrees/h, which is improved by a factor of 1.47. (C) 2016 Optical Society of America
机译:谐振光纤陀螺仪(RFOG)有了新的发展,它是一种用于测量转速的光学传感器。基于相位调制技术的数字信号处理系统能够检测由Sagnac效应引起的微弱频率差并抑制电路中的倒数噪声,从而确定RFOG的检测灵敏度。实现了一种基于正弦波调制和方波解调的新技术,并对系统的解调曲线进行了仿真和测量。与过去使用正弦调制和解调的技术相比,它使解调曲线的斜率增加了1.56倍,提高了调制信号的频谱效率,并降低了现场可编程门阵列资源的占用率。在这种新的相位调制技术的基础上,环路被成功锁定,并实现了1.08度/小时的短期偏置稳定性,该稳定性提高了1.47倍。 (C)2016美国眼镜学会

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