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Optimization of adaptive-optics systems closedloop bandwidth settings to maximize imaging-system performance

机译:优化自适应光学系统的闭环带宽设置,以最大化成像系统的性能

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We present the results of research aimed at optimizing adaptive-optics closed-loop bandwidth settings to maximize imaging-system performance. The optimum closed-loop bandwidth settings are determined as a function of target-object light levels and atmospheric seeing conditions. Our work shows that, for bright objects, the optimum closed-loop bandwidth is near the Greenwood frequency. However, for dim objects without the use of a laser beacon the preferred closed-loop bandwidth settings are a small fraction of the Greenwood frequency. In addition, under low light levels selection of the proper closed-loop . bandwidth is more critical for achieving maximum performance than it is under high light levels. We also present a strategy for selecting the closed-loop bandwidth to provide robust system performance for different target-object light levels.
机译:我们介绍旨在优化自适应光学闭环带宽设置以最大化成像系统性能的研究结果。最佳的闭环带宽设置取决于目标对象的光照水平和大气看见条件。我们的工作表明,对于明亮的物体,最佳的闭环带宽接近格林伍德频率。但是,对于不使用激光信标的昏暗物体,首选的闭环带宽设置是格林伍德频率的一小部分。此外,在光线不足的情况下,请选择适当的闭环。与在高光照条件下相比,带宽对于实现最佳性能更为关键。我们还提出了一种选择闭环带宽的策略,以针对不同的目标对象光照水平提供强大的系统性能。

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