首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Exploiting the spatiotemporal correlation in adaptive optics using data-driven H_(2)-optimal control
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Exploiting the spatiotemporal correlation in adaptive optics using data-driven H_(2)-optimal control

机译:利用数据驱动的H_(2)-最优控制在自适应光学中利用时空相关性

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摘要

A recently proposed data-driven H_(2)-optimal control approach is demonstrated on a laboratory setup. Most adaptive optics (AO) systems are based on a control law that neglects the temporal evolution of the wavefront. The proposed control approach is able to exploit the spatiotemporal correlation in the wavefront without assuming any form of decoupling. By analyzing the dynamic behavior of the wavefront sensor (WFS), it is shown that if the wavefront correction device can be considered static, the transfer function from control input to WFS output reduces to a two-tap impulse response and an integer number of samples delay. Considering this model structure, a data-driven identification procedure is developed to estimate the relevant parameters from measurement data. The specific structure allows for an analytical expression of the optimal controller in terms of the system matrices of the minimum-phase spectral factor of the atmospheric disturbance model. The performance of the optimal controller is compared with that of the standard AO control law. An analysis of the dominant error sources shows that optimal control may reduce the temporal error.
机译:在实验室设置上演示了最近提出的数据驱动的H_(2)-最优控制方法。大多数自适应光学(AO)系统基于忽略波前的时间演变的控制定律。所提出的控制方法能够利用波前的时空相关性而无需采取任何形式的解耦。通过分析波前传感器(WFS)的动态行为,可以看出,如果可以将波前校正设备视为静态设备,则从控制输入到WFS输出的传递函数将减少为两抽头脉冲响应和整数个样本延迟。考虑到这种模型结构,开发了一种数据驱动的识别程序以从测量数据中估计相关参数。具体的结构允许根据大气干扰模型的最小相位谱因子的系统矩阵来分析最优控制器的解析表达式。将最佳控制器的性能与标准AO控制律的性能进行比较。对主要误差源的分析表明,最佳控制可以减少时间误差。

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