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Robustness study of the pseudo open-loop controller for multiconjugate adaptive optics

机译:多共轭自适应光学伪开环控制器的鲁棒性研究

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摘要

Robustness of the recently proposed "pseudo open-loop control" algorithm against various system errors has been investigated for the representative example of the Gemini-South 8-m telescope multiconjugate adaptive-optics system. The existing model to represent the adaptive-optics system with pseudo open-loop control has been modified to account for misalignments, noise and calibration errors in deformable mirrors, and wave-front sensors. Comparison with the conventional least-squares control model has been done. We show with the aid of both transfer-function pole-placement analysis and Monte Carlo simulations that POLC remains remarkably stable and robust against very large levels of system errors and outperforms in this respect least-squares control. Approximate stability margins as well as performance metrics such as Strehl ratios and rms wave-front residuals averaged over a 1-arc mm field of view have been computed for different types and levels of system errors to quantify the expected performance degradation.
机译:以Gemini-South 8-m望远镜多共轭自适应光学系统为代表,研究了最近提出的“伪开环控制”算法针对各种系统错误的鲁棒性。代表具有伪开环控制的自适应光学系统的现有模型已经过修改,以解决可变形反射镜和波前传感器中的未对准,噪声和校准误差。已经与常规最小二乘控制模型进行了比较。通过传递函数极点放置分析和蒙特卡洛模拟,我们表明POLC在很大的系统误差和最小二乘控制方面都表现出了非常稳定和强大的性能。对于不同类型和级别的系统误差,已计算出在1弧毫米视场内平均的近似稳定性裕度以及性能指标(如斯特列尔比和均方根波前残差),以量化预期的性能下降。

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