首页> 外文期刊>Applied optics >Development of a generalized theoretical model for the response of a phase/Doppler measurement system to arbitrarily oriented fibers illuminated by Gaussian beams
【24h】

Development of a generalized theoretical model for the response of a phase/Doppler measurement system to arbitrarily oriented fibers illuminated by Gaussian beams

机译:通用理论模型的发展,用于相位/多普勒测量系统对高斯光束照射的任意取向光纤的响应

获取原文
获取原文并翻译 | 示例
       

摘要

We present a generalized theoretical model for the response of the phase/Doppler (P/D) measurement system to light scattered by cylindrical fibers. This theoretical model is valid for arbitrary fiber diameters and refractive indices, for Gaussian incident beams, and it accounts for arbitrary fiber orientations, fiber positions, and effects that are due to the two-dimensional receivers. The generalized P/D simulation model (GPDCM) is the extension of an earlier study by the authors, combining past P/D simulation methodology with recent developments in modeling light scattering by tilted cylindrical fibers. A FORTRAN computer program that implements the GPDCM theoretical development was written and tested against known P/D results and physical expectations. To illustrate the capabilities of the GPDCM, we present computation results, comparing the effect of fiber tilt, fiber position, and receiver aperture on the performance of P/D systems configured in backscatter and sidescatter arrangements. Calculations show that the effects of fiber tilt and position are most pronounced in the backscatter P/D arrangement, resulting in broadening of the measured phase distribution. The calculated mean phase shifts, however, were found to be essentially independent of the above factors. Computational results also showed that the effect of fiber tilt and position on phase-distribution measurements can be reduced through proper choice of aperture shape and by imposition of threshold criteria on measurable signal characteristics such as the amplitude ratio and visibilities. The GPDCM provides a computational tool that will be valuable in the design, optimization, and evaluation of P/D fiber measurement systems. # 1998 Optical Society of America OCIS codcs: 290.0290, 280.1100, 120.3180.
机译:我们为相位/多普勒(P / D)测量系统对圆柱纤维散射的光的响应提供了一个广义的理论模型。该理论模型对于任意的光纤直径和折射率,对于高斯入射光束均有效,并且它考虑了任意的光纤方向,光纤位置以及由于二维接收器而产生的影响。广义的P / D模拟模型(GPDCM)是作者先前研究的扩展,将过去的P / D模拟方法与对圆柱状倾斜光纤的光散射建模的最新进展相结合。编写并执行了GPDCM理论开发的FORTRAN计算机程序,并针对已知的P / D结果和实际期望进行了测试。为了说明GPDCM的功能,我们提供了计算结果,比较了光纤倾斜,光纤位置和接收器孔径对以反向散射和侧向散射配置的P / D系统性能的影响。计算表明,在后向散射P / D布置中,光纤倾斜和位置的影响最为明显,导致所测相位分布变宽。但是,发现计算出的平均相移基本上与上述因素无关。计算结果还表明,通过适当选择孔径形状以及在可测信号特性(例如振幅比和可见度)上施加阈值标准,可以减少光纤倾斜和位置对相位分布测量的影响。 GPDCM提供了一种计算工具,在P / D光纤测量系统的设计,优化和评估中将非常有用。 #1998美国光学学会OCIS编码:290.0290、280.1100、120.3180。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号