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Adaptive control of a micromachined continuous-membrane deformable mirror for aberration compensation

机译:微机械加工的连续膜可变形镜的像差补偿自适应控制

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摘要

The nonlinear response and strong coupling of control channels in micromachined membrane deformable mirror (MMDM) devices make it difficult for one to control the MMDM to obtain the desired mirror surface shapes. A closed-loop adaptive control algorithm is developed for a continuons-surface MMDM used for aberration compensation. The algorithm iteratively adjusts the control voltages of all electrodes to reduce the variance of the optical wave front measured with a Hartmann-Shack wave-front sensor. Zernike polynomials are used to represent the mirror surface shape as well as the optical wave front. An adaptive experimental system to compensate for the wave-front aberrations of a model eye has been built in which the developed adaptive mirror-control algorithm is used to control a deformable mirror with 19 active channels. The experimental results show that the algorithm can adaptively update control voltages to generate an optimum continuous mirror surface profile, compensating for the aberrations within the operating range of the deformable mirror.
机译:微机械膜可变形镜(MMDM)设备中控制通道的非线性响应和强耦合使得人们难以控制MMDM以获得所需的镜面形状。针对用于像差补偿的连续表面MMDM,开发了一种闭环自适应控制算法。该算法迭代地调整所有电极的控制电压,以减少使用Hartmann-Shack波前传感器测量的光波前的变化。 Zernike多项式用于表示镜面形状以及光波前。建立了一个自适应实验系统来补偿模型眼的波前像差,其中开发的自适应反射镜控制算法用于控制具有19个活动通道的可变形反射镜。实验结果表明,该算法可以自适应地更新控制电压,以生成最佳的连续镜面轮廓,以补偿可变形镜工作范围内的像差。

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