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Uncooperative target-in-the-loop performance with backscattered speckle-field effects

机译:具有反向散射斑点场效应的不合作目标在环性能

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摘要

Systems utilizing target-in-the-loop (TIL) techniques for adaptive optics phase compensation rely on a metric sensor to perform a hill climbing algorithm that maximizes the far-field Strehl ratio. In uncooperative TIL, the metric signal is derived from the light backscattered from a target. In cases where the target is illuminated with a laser with sufficiently long coherence length, the potential exists for the validity of the metric sensor to be compromised by speckle-field effects. We report experimental results from a scaled laboratory designed to evaluate TIL performance in atmospheric turbulence and thermal blooming conditions where the metric sensors are influenced by varying degrees of backscatter speckle. We compare performance of several TIL configurations and metrics for cases with static speckle, and for cases with speckle fluctuations within the frequency range that the TIL system operates. The roles of metric sensor filtering and system bandwidth are discussed.
机译:利用环路中目标(TIL)技术进行自适应光学相位补偿的系统依靠度量传感器来执行使远场Strehl比最大化的爬山算法。在不合作的TIL中,度量信号是从目标反向散射的光中得出的。在目标物被具有足够长的相干长度的激光照射的情况下,可能会因斑点场效应而损害度量传感器的有效性。我们报告了一个规模化实验室的实验结果,该实验室旨在评估TIL在大气湍流和热起霜条件下的性能,在这些条件下,公制传感器会受到不同程度的反向散射斑点影响。对于具有静态斑点的情况,以及在TIL系统运行的频率范围内具有斑点波动的情况,我们比较了几种TIL配置和度量的性能。讨论了度量传感器过滤和系统带宽的作用。

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