首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Centroid gain compensation in Shack-Hartmann adaptive optics systems with natural or laser guide star
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Centroid gain compensation in Shack-Hartmann adaptive optics systems with natural or laser guide star

机译:具有自然或激光导星的Shack-Hartmann自适应光学系统中的质心增益补偿

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摘要

In an adaptive optics system with an undersampled Shack-Hartmann wave-front sensor (WFS), variations in seeing, laser guide star quality, and sodium layer thickness and range distance all combine to vary WFS centroid gain across the pupil during an exposure. While using the minimum of 4 pixels per WFS subaperture improves frame rate and read noise, the WFS centroid gain uncertainty may introduce static aberrations and degrade servo loop phase margin. We present a novel method to estimate and compensate WFS gains of each subaperture individually in real time for both natural and laser guide stars.
机译:在带有欠采样的Shack-Hartmann波前传感器(WFS)的自适应光学系统中,视差,激光导星质量以及钠层厚度和射程距离的变化都会结合在一起,从而在曝光期间改变整个瞳孔的WFS质心增益。虽然每个WFS子孔径至少使用4个像素可以提高帧速率和读取噪声,但是WFS质心增益不确定性可能会引入静态像差并降低伺服环路相位裕度。我们提出了一种新颖的方法,可以实时估计和补偿自然和激光制导星的每个子孔径的实时WFS增益。

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