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Novel Reflex Fiber Optic Angular Displacement Sensor Based on Fiber Optic Arrays

机译:基于光纤阵列的新型反射式光纤角位移传感器

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摘要

A fiber optic sensor for two-dimensional angular displacement measurement is proposed. Linear light receiving fiber arrays arranged as a crisscross spoke are used in the sensor probe. The measured angular displacement variation will lead to the light spot position change, resulting in the light intensity variation received by each linear-arranged receiving fiber and will be recorded by the charge-coupled device (CCD). Based on the Gauss distribution theory, reflected light spot center can be determined by fitting a Gauss curve according to each received light intensity and the position of each receiving fiber. With this method, measurement errors caused by surface reflection index variation, light power fluctuation, and ambient light disturbance can be effectively avoided. The difference of transmission power loss of each receiving fibers reduce the measurement accuracy of this system. The proposed method based on the measurement and compensation of transmission power loss of fiber array can effectively improve the angular measurement resolution to 3.8 ×10~(-4) rad.
机译:提出了一种用于二维角位移测量的光纤传感器。传感器探针中使用了排列成十字形辐条的线性光接收光纤阵列。测得的角位移变化将导致光斑位置变化,从而导致每条线性排列的接收光纤接收到的光强度变化,并由电荷耦合器件(CCD)记录。根据高斯分布理论,可以根据每个接收的光强度和每个接收光纤的位置拟合高斯曲线来确定反射光斑中心。使用这种方法,可以有效避免由表面反射指数变化,光功率波动和环境光干扰引起的测量误差。每个接收光纤的传输功率损耗之差降低了该系统的测量精度。提出的基于光纤阵列传输功率损耗测量与补偿的方法可以有效地将角度测量分辨率提高到3.8×10〜(-4)rad。

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