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Control of a deformable mirror subject to structural disturbance

机译:受结构干扰的变形镜的控制

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Future space based deployable telescopes will be subject to non-atmospheric disturbances. Jitter and optical misalignment on a spacecraft can be caused by mechanical noise of the spacecraft, and settling after maneuvers. The introduction of optical misalignment and jitter can reduce the performance of an optical system resulting in pointing error and contributing to higher order aberrations. Adaptive optics can be used to control jitter and higher order aberrations in an optical system. In this paper, wavefront control methods for the Naval Postgraduate School adaptive optics testbed are developed. The focus is on removing structural noise from the flexible optical surface using discrete time proportional integral control with second order filters. Experiments using the adaptive optics testbed successfully demonstrate wavefront control methods, including a combined iterative feedback and gradient control technique. This control technique results in a three time improvement in RMS wavefront error over the individual controllers correcting from a biased mirror position. Second order discrete time notch filters are also used to remove induced low frequency actuator and sensor noise at 2Hz. Additionally a 2 Hz structural disturbance is simulated on a Micromachined Membrane Deformable Mirror and removed using discrete time notch filters combined with an iterative closed loop feedback controller, showing a 36 time improvement in RMS wavefront error over the iterative closed loop feedback alone.
机译:未来基于太空的可部署望远镜将受到非大气干扰。航天器的机械噪声以及操纵后的沉降会造成航天器的抖动和光学失准。光学失准和抖动的引入会降低光学系统的性能,从而导致指向误差并导致更高阶的像差。自适应光学器件可用于控制光学系统中的抖动和高阶像差。本文研究了海军研究生院自适应光学试验台的波前控制方法。重点是使用带有二阶滤波器的离散时间比例积分控制,从柔性光学表面消除结构噪声。使用自适应光学测试平台的实验成功地证明了波前控制方法,包括组合的迭代反馈和梯度控制技术。这种控制技术比通过偏置镜面位置进行校正的单个控制器的RMS波前误差提高了三倍。二阶离散时间陷波滤波器还用于去除2Hz的感应低频执行器和传感器噪声。此外,在微机械膜可变形反射镜上模拟了2 Hz的结构扰动,并使用离散时间陷波滤波器与迭代闭环反馈控制器相结合将其消除,与单独的闭环反馈相比,RMS波前误差提高了36倍。

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