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Very sensitive fiber Bragg grating accelerometer using transverse forces with an easy over-range protection and low cross axial sensitivity

机译:使用横向力的非常灵敏的光纤布拉格光栅加速度计,具有容易的超范围保护和较低的交叉轴向灵敏度

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摘要

The first fiber Bragg grating (FBG) accelerometer using direct transverse forces is demonstrated by fixing the FBG by its two ends and placing a transversely moving inertial object at its middle. It is very sensitive because a lightly stretched FBG is more sensitive to transverse forces than axial forces. Its resonant frequency and static sensitivity are analyzed by the classic spring-mass theory, assuming the axial force changes little. The experiments show that the theory can be modified for cases where the assumption does not hold. The resonant frequency can be modified by a linear relationship experimentally achieved, and the static sensitivity by an alternative method proposed. The principles of the over-range protection and low cross axial sensitivity are achieved by limiting the movement of the FBG and were validated experimentally. The sensitivities 1.333 and 0.634 nm/g were experimentally achieved by 5.29 and 2.83 gram inertial objects at 10 Hz from 0.1 to 0.4 g (g = 9.8× m/s2), respectively, and their resonant frequencies were around 25 Hz. Their theoretical static sensitivities and resonant frequencies found by the modifications are 1.188 nm/g and 26.81 Hz for the 5.29 gram one and 0.784 nm/g and 29.04 Hz for the 2.83 gram one, respectively.
机译:第一个使用直接横向力的光纤布拉格光栅(FBG)加速度计通过固定FBG的两端并将横向移动的惯性物体放置在中间来演示。这是非常敏感的,因为轻微拉伸的FBG对横向力比轴向力更敏感。假设轴向力变化不大,可通过经典的弹簧质量理论分析其共振频率和静态灵敏度。实验表明,该理论可以在假设不成立的情况下进行修改。共振频率可以通过实验获得的线性关系进行修改,静态灵敏度可以通过替代方法提出。通过限制FBG的运动可以实现超范围保护和低交叉轴向灵敏度的原理,并已通过实验验证。灵敏度1.333和0.634 nm / g是通过5.29和2.83克惯性物体在10 Hz处从0.1到0.4 g(g = 9.8×m / s2)分别获得的,其共振频率约为25 Hz。通过修改发现,它们的理论静灵敏度和共振频率对于5.29克1分别为1.188 nm / g和26.81 Hz,对于2.83克1分别为0.784 nm / g和29.04 Hz。

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