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Fiber optic gyroscope coils - performance characterization

机译:光纤陀螺线圈 - 性能表征

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The need for precision guidance of systems in tactical theaters is becoming increasingly more important. This need has renewed interest in Interferometric Fiber Optic Gyroscopes (FOG) that are capable of delivering navigation grade performance. The challenges however, include satisfactory performance over a large and severe operating temperature range (-60°C to +90°C), low unit cost and relatively small footprint. Performance of the IFOG depends critically on the quality of the sensing element, optical fiber coil, and many of the performance limiting issues of the IFOG can be traced back to coil quality. Although significant progress has been made in the fabrication of temperature insensitive coils with high optical reciprocity, more needs to be done. In this paper, data is presented on the performance of similar size (inside diameter, outside diameter, height) freestanding coils that were wound in quadrupole winding pattern at low tension using different polarization maintaining fibers. Performance characteristics of the coils were measured under variables including (i) fiber geometry, (ii) fiber coating, (iii) winding epoxy, and (iv) epoxy curing profile. Although each coil had the same footprint, they contained different lengths of fiber based on the fiber coating size. Coils were characterized as a function of temperature with respect to: (i) optical loss, (ii) polarization extinction ratio (PER), and (iii) coherence. The data suggests that high performance navigation grade coils can be realized over a large and severe temperature range with careful choice of fiber, winding epoxy and cure cycle.
机译:对战术剧院系统的精确指导的需求变得越来越重要。这种需要重新调整了能够提供导航级性能的干涉纤维陀螺仪(雾)的兴趣。然而,挑战包括在大型和严重的工作温度范围内(-60°C至+ 90°C),低单元成本和相对较小的占地面积的令人满意的性能。 IFO的性能尺寸依赖于传感元件,光纤线圈的质量,光纤线圈和IFOG的许多性能限制问题可以追溯到线圈质量。尽管在具有高光学互动的温度不敏感线圈的制造中,已经进行了显着进展,但是需要做的更多。在本文中,数据示出了在使用不同的偏振保持纤维的低张力下以高压杆绕组模式缠绕的类似尺寸(内径,外径,高度)的性能的性能。在包括(i)纤维几何形状,(ii)纤维涂层,(iii)绕组环氧树脂和(iv)环氧固化型材的变量下测量线圈的性能特征。尽管每个线圈具有相同的占地面积,但它们含有基于纤维涂层尺寸的不同长度的纤维。线圈表征为关于:(i)光学损失的温度的函数,(ii)偏振消光比(per)和(iii)的相干性。数据表明,高性能导航级线圈可以通过仔细选择光纤,绕组环氧树脂和固化循环来实现高性能导航级线圈。

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