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首页> 外文期刊>Applied optics >NEW INTERFEROMETRIC FIBER-OPTIC GYROSCOPE WITH AMPLIFIED OPTICAL FEEDBACK
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NEW INTERFEROMETRIC FIBER-OPTIC GYROSCOPE WITH AMPLIFIED OPTICAL FEEDBACK

机译:新型干涉光学纤维陀螺仪,具有改进的光学反馈

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摘要

A novel interferometric fiber-optic gyroscope with amplified optical feedback by an Er-doped fiber amplifier (EDFA) is proposed and theoretically investigated (the proposed gyroscope is named the feedback EDFA-FOG, FE-FOG in what follows). The FE-FOG functions like a resonant fiber-optic gyro (R-FOG) because of its multiple utilization of the Sagnac loop; however, it is completely different because a low-coherence light source is used. In addition, the gyro output signal is pulsed because the modulation frequency of the phase modulator placed in the Sagnac loop is selected to match the total round-trip time delay of the light, which includes the Sagnac-loop delay plus that of the feedback loop of the fiber amplifier. The sharpness of the output pulse can be adjusted by both the gain of an EDFA and the modulation depth of the phase modulator. When rotation occurs the peak position of the output pulse is shifted as a result of the Sagnac effect. The resolution of the rotation measurement depends on the sharpness of the output pulse. The techniques of both the open-loop and closed-loop methods are described in detail, which shows the great advantage of the proposed gyroscope over the to the conventional interferometric fiber-optical gyroscope (I-FOG). [References: 7]
机译:提出了一种新型的干涉式光纤陀螺仪,并通过掺Er光纤放大器(EDFA)放大了光反馈,并在理论上进行了研究(以下将这种陀螺仪称为反馈EDFA-FOG,FE-FOG)。 FE-FOG的功能类似于共振光纤陀螺(R-FOG),因为它可以多次使用Sagnac环路。但是,由于使用了低相干光源,因此完全不同。此外,陀螺仪输出信号是脉冲式的,因为选择了放置在Sagnac环路中的相位调制器的调制频率以匹配光的总往返时间延迟,其中包括Sagnac环路延迟和反馈环路的总延迟时间光纤放大器。可以通过EDFA的增益和相位调制器的调制深度来调整输出脉冲的清晰度。当发生旋转时,由于Sagnac效应,输出脉冲的峰值位置将移动。旋转测量的分辨率取决于输出脉冲的清晰度。详细介绍了开环和闭环方法的技术,这表明了所提出的陀螺仪相对于传统的干涉式光纤陀螺仪(I-FOG)的巨大优势。 [参考:7]

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