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Construction of all digital closed-loop interferometric fiber optic gyroscope with erbium doped fiber amplifier

机译:掺光纤放大器的全数字闭环干涉式光纤陀螺仪的构建

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This paper describes the design details and the characterization of an all digital closed-loop (ADCL) Interferometric Fiber Optic Gyroscope (IFOG) Prototype with sine wave biasing modulation and an erbium doped fibre amplifier (EDFA) pumped by DFB laser emitting at 1549.0 run as a broadband Source. The output of demodulation circuit in the prototype, proportional to the applied rotation rate, was sampled by AD7714YN analog to digital converter (ADC) and operated in 16 bit resolution. Error voltage, generated by microcomputer-control led LTC 1667CG, 14 bit digital to analog converter (DAC), was sent to the phase modulator through a linear summing circuit, to make Sagnac Phase Shift zero, depending on the rotation direction. The averaged sensitivity of the ADCL-IFOG prototype in unit of error voltage applied to the phase modulator was calculated as 129.21 mu V/(degrees/h) which equals to a scale factor of 7.739 (degrees/h)/(mV) with a standard deviation of 0.71% for a range of 1-15270 (degrees/h) rotation rate, corresponding to a range of Sagnac Phase Shifts varying from 0.00115 (degrees) to 17.57448 (degrees). The maximum peak to peak noise and the bias stability of the prototype were determined as 3.88 (degrees/h) and 1.38 (degrees/h) at 23.0 degrees C, respectively.
机译:本文描述了具有正弦波偏置调制的全数字闭环(ADCL)干涉式光纤陀螺仪(IFOG)原型和由1549.0发射的DFB激光泵浦的掺ped光纤放大器(EDFA)的设计细节和特性。宽带资源。原型中的解调电路输出与所施加的转速成正比,由AD7714YN模数转换器(ADC)进行采样,并以16位分辨率运行。由微计算机控制的LTC 1667CG(14位数模转换器(DAC))产生的误差电压通过线性求和电路发送到相位调制器,以根据旋转方向使Sagnac相移为零。 ADCL-IFOG原型的平均灵敏度以施加到相位调制器的误差电压为单位计算为129.21μV /(度/ h),等于7.739(度/ h)/(mV)的比例因子,旋转速度范围为1-15270(度/小时)时,标准偏差为0.71%,对应的Sagnac相移范围为0.00115(度)至17.57448(度)。在23.0摄氏度下,原型的最大峰峰值噪声和偏压稳定性分别确定为3.88(度/ h)和1.38(度/ h)。

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