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Rotation sensing with a low-cost simple FOG

机译:低成本简单FOG的旋转感应

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摘要

The fiber optic gyroscope (FOG) is a single axis rotation sensor which is currently employed in many advanced navigation systems. A major contribution to the cost of an FOG is the price of components such as the polarizer, phase modulator and associated detection electronics. As a lower cost realization of the device is of great importance for its wide deployment in many applications, the possibility of rotation rate measurement with moderate accuracy using a simplified FOG configuration is a very interesting issue. A low-cost simplified implementation of the open loop FOG was carried out to investigate its performance in the absence of a polarizer and a phase modulator and observe the extent to which it can usefully detect the rotation rate in the presence of polarization and phase fading. This paper reports on the realization of the simplified FOG configuration and discusses the association of polarization and phase effects to the measurement errors incurred. The results indicate that the error due to the absence of the polarizer and phase modulator can be of the range of only few hundredths of the rotation rate. This is explained by noting that the phase changes in the path affect both perpendicular polarizations approximately similarly leading to Φ_x being almost equal to Φ_y and hence the polarizer importance appears when using a phase modulator which affects each polarization differently. Possible practical uses of such a simplified gyroscope configuration are suggested for low accuracy automobile guidance applications.
机译:光纤陀螺仪(FOG)是单轴旋转传感器,目前已在许多高级导航系统中使用。 FOG成本的主要贡献在于起偏器,相位调制器和相关检测电子设备等组件的价格。由于该设备的低成本实现对其在许多应用中的广泛部署至关重要,因此使用简化的FOG配置以中等精度进行转速测量的可能性是一个非常有趣的问题。进行了开环FOG的低成本简化实现,以研究其在没有偏振器和相位调制器的情况下的性能,并观察在存在偏振和相位衰落的情况下它可以有效检测旋转速率的程度。本文报告了简化FOG配置的实现,并讨论了偏振和相位效应与所引起的测量误差之间的关系。结果表明,由于不存在偏振器和相位调制器而引起的误差仅为旋转速度的百分之几。这是通过指出路径中的相位变化会影响两个垂直极化而近似相似地导致Φ_x几乎等于Φ_y来解释的,因此,当使用相位调制器时,偏光器的重要性就出现了,而相位调制器会不同地影响每个极化。建议将这种简化的陀螺仪配置用于实际的低精度汽车导航应用。

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