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Closed-loop control techniques for an adaptive-optical system with an interferometric wavefront sensor

机译:带干涉波前传感器的自适应光学系统的闭环控制技术

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The self-referencing interferometer (SRI) wavefront sensor (WFS) is being developed for applications requiring laser propagation in strong scintillation. Because it directly measures the optical field of the wavefront, the SRI WFS is less effected by scintillation than conventional WFSs. This feature also means the phase determined from the WFS measurements is limited to the range —π to π, due to the use of the arctangent function. If a segmented wavefront corrector is used, this constraint is not a problem. However, if a continuous facesheet deformable mirror is used, the resulting phase should be unwrapped in order to minimize fitting error. There are a couple of places in the adaptive-optical (AO) closed-loop control process where an unwrapping algorithm can be inserted. Simulations of these configurations have shown that how and where the unwrapping is carried out affects overall AO performance and loop stability. This paper presents an overview of the unwrapping options and the associated issues. A laboratory demonstration of two control loop configurations was carried out to test the validity of the simulation results. These experiments and their outcome are discussed.
机译:自参考干涉仪(SRI)波前传感器(WFS)正在开发,用于需要在强闪烁中传播激光的应用。因为SRI WFS直接测量波前的光场,所以与常规WFS相比,闪烁对SRI WFS的影响较小。此功能还意味着,由于使用反正切函数,从WFS测量确定的相位被限制在-π到π的范围内。如果使用分段波前校正器,则此约束不成问题。但是,如果使用连续的面板可变形镜,则应解开产生的相位,以最大程度地减小装配误差。自适应光学(AO)闭环控制过程中有几个地方可以插入展开算法。对这些配置的仿真表明,展开的方式和位置会影响整体AO性能和环路稳定性。本文概述了展开选项和相关问题。进行了两个控制回路配置的实验室演示,以测试仿真结果的有效性。讨论了这些实验及其结果。

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