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首页> 外文期刊>Indian Journal of Science and Technology >Comparative Assessment on Ramp and Bias Voltage Variations of Closed Loop Interferometric Fiber Optic Gyroscope
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Comparative Assessment on Ramp and Bias Voltage Variations of Closed Loop Interferometric Fiber Optic Gyroscope

机译:闭环干涉式光纤陀螺仪的斜坡和偏置电压变化的比较评估

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Background/Objectives: The main objective of this paper is to perform a comparative discussion in gyro parameters for three cases: (i) V2π (vary)&Vπ/2 (constant), (ii) Vπ/2 (vary) and V2π (constant) and (iii) both V2π and Vπ/2 are varying simultaneously. Methods/Statistical Analysis: Fibre optic gyroscope has to be operated in closed-loop approach to achieve the inertial-grade-performance. The Closed-Loop Interferometric Fibre Optic Gyroscope (CLIFOG) system depends upon ramp voltage (V2π of IOC) and square-wave biasing signal frequency (f bias ). The digital-phase-ramp-function is used as feedback to system and makes gyro to null condition. The biasing signal voltage (Vπ/2) is 1/4 th of ramp voltage (V2π). If there are any variations in ramp and biasing signal voltages, then it introduces variations in gyro performance. Results: The ramp voltage (V2π) and square wave biasing signal voltage (Vπ/2) is increased from 1% to 10%, decreased to 1% to 10% and performed the various tests for three cases. From results, it was noted that: (i) When V2π is varying and Vπ/2 is kept constant, the scale-factor change is increasing as the error in the signal voltage is also increases. (ii) When V2π is kept constant and Vπ/2 is varying, the change in scale-factor is very minute and maintains the scale-factor linearity. (iii) While varying both V2π and Vπ/2 voltages simultaneously, the device is not responding accordingly as the error is increasing and also scale-factor is out of range subsequently. The effects on the CLIFOG system are described with the derived values in terms of bias and scale-factor. The gyro performance is very sensitive with respect to V2π variations and the percentage error is high in gyro output, but very less effect due to Vπ/2 variations when the ramp voltage (V2π) is constant. Conclusion/Application: The Closed Loop Interferometric Fiber Optic Gyroscope (CLIFOG) system requires a proper resetting of ramp voltage (V2π) in order to avoid the bias and scale factor instabilities.
机译:背景/目的:本文的主要目的是针对以下三种情况对陀螺仪参数进行比较讨论:(i)V2π(可变)&Vπ/ 2(恒定),(ii)Vπ/ 2(可变)和V2π(恒定) )和(iii)V2π和Vπ/ 2同时变化。方法/统计分析:光纤陀螺仪必须以闭环方式运行才能达到惯性级性能。闭环干涉式光纤陀螺仪(CLIFOG)系统取决于斜坡电压(IOC的V2π)和方波偏置信号频率(f bias)。数字相位斜坡功能被用作对系统的反馈,并使陀螺仪变为零状态。偏置信号电压(Vπ/ 2)是斜坡电压(V2π)的1/4。如果斜坡和偏置信号电压有任何变化,那么它将引入陀螺仪性能的变化。结果:斜坡电压(V2π)和方波偏置信号电压(Vπ/ 2)从1%升高到10%,降低到1%到10%,并针对三种情况进行了各种测试。从结果可以看出:(i)当V2π变化并且Vπ/ 2保持恒定时,比例因子变化随着信号电压误差的增加而增加。 (ii)当V2π保持恒定并且Vπ/ 2变化时,比例因子的变化非常小并且保持比例因子线性。 (iii)当同时改变V2π和Vπ/ 2电压时,由于误差在增加,并且随后的比例因子超出范围,器件也没有相应的响应。用偏差和比例因子得出的值描述了对CLIFOG系统的影响。陀螺仪性能对V2π变化非常敏感,并且陀螺仪输出中的百分比误差很高,但是当斜坡电压(V2π)恒定时,由于Vπ/ 2变化,影响很小。结论/应用:闭环干涉式光纤陀螺仪(CLIFOG)系统要求正确设置斜坡电压(V2π),以避免偏置和比例因子不稳定性。

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