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Multi-rate control of high-order adaptive optics systems

机译:高阶自适应光学系统的多速率控制

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Next generation adaptive-optics systems (AO) have unprecedented complexity. The proposed number of degrees-of-freedom has considerably increased, putting the focus on the real-time processing capabilities. Second generation instrumentation for the Very-Large Telescope (VLT) is one such case. We present a method capable of lowering the average computational effort (i.e. lowering the average equivalent frame-rate) and deliver the same performance figures. It consists of applying a distributed set of frame rates to outperform the conventional vector-matrix multiplies (VMM) used for modal reconstruction and control in AO systems when Zernike polynomials or Karhunen-Loeve modes are used as basis. We analyse the low and high-noise regimes for which we outline the theoretical key points and present both semi-analytical and Monte-Carlo simulation results having as baseline a Planet-Finder-like (PF) system.
机译:下一代自适应光学系统(AO)具有前所未有的复杂性。提议的自由度数量已大大增加,将重点放在了实时处理能力上。超大型望远镜(VLT)的第二代仪器就是这种情况。我们提出了一种能够降低平均计算工作量(即降低平均等效帧速率)并提供相同性能指标的方法。它包括以Zernike多项式或Karhunen-Loeve模式为基础时,应用一组分布式帧速率,以胜过用于AO系统中的模态重构和控制的常规矢量矩阵乘法(VMM)。我们分析了低噪声和高噪声机制,为它们概述了理论要点,并给出了以类行星搜索(PF)系统为基线的半分析和蒙特卡洛模拟结果。

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