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Spatially integrated speckle intensity: maximum resistance to decorrelation caused by in-plane target displacement

机译:空间积分散斑强度:平面内目标位移引起的最大去相关阻力

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Laser speckle produced from a diffuse object can be used in determining the! angular position of a rotating object. When the object rotates the backscattered speckle pattern, which changes continuously hut repeats exactly with every revolution, is sampled by a suitably positioned photodetector. The photodetector output signal is periodic, and one period is stored in the memory as a reference. Shaft position can then be determined by the comparison of this stored reference signal with the current photodetector output signal. When the shaft is axially displaced, for example, by vibration, the backscattered speckle pattern changes on the photodetector and the similarity between the reference signal and the current signal is reduced. We examine the cross correlation of the real-time photodetector output signal and the stored reference signal as a function of axial shaft position. Use of a rotating shaft when collecting data is shown to be an efficient means by which to make effectively several thousand independent estimates of the maximum axial displacement tolerable before decorrelation of the photodetector output. Theoretical results and experiments conducted show that the decorrelation displacement varies, according to optical configuration, to a maximum value of 0.7 of the beam diameter. This has important implications for a proposed laser torquemeter as well as additional applications in which changes to the sampled speckle pattern, including decorrelation, are either desirable or undesirable. (C) 1998 Optical Society of America. [References: 5]
机译:由漫射物体产生的激光斑点可用于确定!旋转物体的角度位置。当物体旋转时,反向散射的散斑图样会不断变化,每旋转一圈,小屋就会准确地重复一次,并由适当放置的光电探测器进行采样。光电探测器的输出信号是周期性的,一个周期作为参考存储在存储器中。然后可以通过将该存储的参考信号与当前光电探测器输出信号进行比较来确定轴位置。当轴例如由于振动而轴向移位时,反向散射的斑点图案在光电检测器上改变,并且参考信号与电流信号之间的相似性降低。我们检查了实时光电检测器输出信号与存储的参考信号的互相关性,该互相关性是轴位置的函数。显示了在收集数据时使用旋转轴是一种有效的方法,通过该方法,可以有效地对光电检测器输出进行去相关之前,对可承受的最大轴向位移进行数千次独立估计。理论结果和进行的实验表明,根据光学结构,去相关位移变化至光束直径的最大值0.7。这对于所提出的激光扭矩计以及在其中期望或不期望对采样的散斑图案的改变(包括去相关)的其他应用具有重要意义。 (C)1998年美国眼镜学会。 [参考:5]

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