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On-sky demonstration of optimal control for adaptive optics at Palomar Observatory

机译:帕洛玛天文台的自适应光学最优控制的空中演示

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High-order adaptive optics systems often suffer from significant computational latency, which ultimately limits the temporal error rejection bandwidth when classical controllers are employed. This Letter presents results from an on-sky, real-time implementation of an optimal controller on the PALM-3000 adaptive optics system at Palomar Observatory. The optimal controller is computed directly from open-loop wavefront measurements using a multichannel subspace system identification algorithm, and mitigates latency by explicitly predicting incident turbulence. Experimental results show a significant reduction in the residual wavefront error over the controlled spatial modes, illustrating the superior performance of the optimal control approach versus the nominal integral control architecture. (C) 2015 Optical Society of America
机译:高阶自适应光学系统通常遭受显着的计算等待时间,这最终会在采用经典控制器时限制时间误差拒绝带宽。这封信介绍了帕洛玛天文台在PALM-3000自适应光学系统上实时,实时实施最佳控制器的结果。使用多通道子空间系统识别算法直接从开环波前测量结果中计算出最佳控制器,并通过显式预测入射湍流来减轻延迟。实验结果表明,在受控空间模式下,残余波前误差显着降低,说明了最优控制方法优于标称积分控制体系的优越性能。 (C)2015年美国眼镜学会

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