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Modeling of Bias Errors in Fiber-Optic Gyroscopes with New Simulation Tool

机译:新型仿真工具光纤陀螺仪中偏差误差的建模

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Although much research has been done on fiber-optic gyroscopes (FOG), these sensors often show bias errors, i.e. the offset rotation rate varies with temperature and other environmental parameters. A low coherence light source is used to avoid undesirable interferences between error signals. Nevertheless in the standard FOG design it is possible that unintentionally optical paths match which may cause bias errors. The parasitic interferences may originate from reflections and polarization cross-coupling, whether intended or not. A new simulation tool for modeling interferometric fiber optic sensors with inclusion of polarization and coherence effects is presented. It allows for the first time to model the FOG signal quantitatively considering temperature dependence, light source parameters and all perturbations and interferences between them with the corresponding degree of coherence. An analysis of the gyroscope design is made which leads to a localization of a bias error source which has not been described yet. This problem may occur in every FOG with an integrated optics circuit (IOC) and a Lyot depolarizer. Reflection paths from the IOC match phase differences gained in the depolarizer and lead to temperature dependent bias errors. Guidelines for an optimum design avoiding the perturbing interferences are given.
机译:虽然在光纤陀螺仪(雾)上已经完成了多大的研究,但这些传感器通常显示出偏差误差,即偏移旋转速率随温度和其他环境参数而变化。低相干光源用于避免误差信号之间的不期望的干扰。然而,在标准的雾设计中,可能导致可能导致偏差错误的无意识别的光路匹配。寄生干扰可以源自反射和偏振交叉耦合,无论是有意的。介绍了一种用于建模具有偏振和相干效应的干涉光纤传感器的建模仿真工具。它允许第一次定量考虑雾信号,以考虑温度依赖性,光源参数和它们之间的所有扰动以及它们之间的所有扰动以及相应的相干程度。制备了对陀螺仪设计的分析,这导致尚未描述的偏置误差源的定位。每个雾化中可能发生该问题,其中具有集成光学电路(IOC)和Lyot Deporarizer。来自IoC的反射路径匹配在Deporarizer中获得的相差,导致温度依赖性偏差误差。给出了避免扰动干扰的最佳设计的指导方针。

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