首页> 外文会议>Saint Petersburg international conference on integrated navigation systems >CONTROLLING THE COUPLING OF COUNTERPROPAGATING WAVES IN A LASER GYROSCOPE WITH A NONPLANAR CAVITY WHEN WORKING WITH A ZEEMAN DITHER
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CONTROLLING THE COUPLING OF COUNTERPROPAGATING WAVES IN A LASER GYROSCOPE WITH A NONPLANAR CAVITY WHEN WORKING WITH A ZEEMAN DITHER

机译:与ZEEMAN DITTER一起工作时,控制具有非平面空腔的激光陀螺仪中对向传播波的耦合

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In this paper we investigate the effect of the coupling of counterpropagating waves, caused by radiation scattering, on the characteristics of a Zeeman laser gyroscope. We present methods for measurement of this effect in a laser gyroscope when it operates with a frequency biasing. The proposed complex methods for measuring this quantity are based on the amplitude modulation of one of the waves and the phase restoration of the beat signal. The obtained values of the waves coupling magnitude were used to control piezoelectric actuators that regulate the gyroscope cavity length in order to minimize the coupling of the counterpropagating waves. The magnitude of the coupling decreased by a factor of 2-5 times. The laser gyroscope parameters were measured when it operated with the control system of the counterpropagating waves coupling.
机译:在本文中,我们研究了由辐射散射引起的反向传播波耦合对塞曼激光陀螺仪特性的影响。当激光陀螺仪在频率偏置下工作时,我们介绍了在激光陀螺仪中测量此效果的方法。提出的用于测量此量的复杂方法是​​基于波之一的幅度调制和差拍信号的相位恢复。所获得的波耦合量的值用于控制压电致动器,该压电致动器调节陀螺仪腔体的长度,以使反向传播的波的耦合最小。耦合的幅度降低了2-5倍。激光陀螺仪的参数是在与反向传播波耦合的控制系统一起运行时进行测量的。

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