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On-sky performance during verification and commissioning of the Gemini Planet Imager's adaptive optics system

机译:在验证和调试双子座行星成像仪的自适应光学系统期间的空中性能

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The Gemini Planet Imager instrument's adaptive optics (AO) subsystem was designed specifically to facilitate high-contrast imaging. It features several new technologies, including computationally efficient wavefront reconstruction with the Fourier transform, modal gain optimization every 8 seconds, and the spatially filtered wavefront sensor. It also uses a Linear-Quadratic-Gaussian (LQG) controller (aka Kalman filter) for both pointing and focus. We present on-sky performance results from verification and commissioning runs from December 2013 through May 2014. The efficient reconstruction and modal gain optimization are working as designed. The LQG controllers effectively notch out vibrations. The spatial filter can remove aliases, but we typically use it oversized by about 60% due to stability problems.
机译:Gemini Planet Imager仪器的自适应光学(AO)子系统专门设计用于促进高对比度成像。它采用了几种新技术,包括通过傅立叶变换实现计算效率高的波阵面重构,每8秒进行一次模态增益优化以及经过空间滤波的波阵面传感器。它还使用线性二次高斯(LQG)控制器(又名卡尔曼滤波器)进行指向和聚焦。我们展示了2013年12月至2014年5月的验证和调试运行带来的空中性能结果。高效的重构和模态增益优化正在按设计进行。 LQG控制器可以有效地消除振动。空间过滤器可以删除别名,但是由于稳定性问题,我们通常将其超大约60%。

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