基于图像的波前遥感自适应光学的实验室测试结果

N. Miyamura
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引用次数: 0

摘要

高分辨率、高信鼻比遥感观测需要大口径光学系统。在这种情况下,采用自适应光学来补偿由于光学元件的不对准或热变形而产生的波前像差。我们采用液晶硅基空间光调制器(LCOS-SLM)进行光前控制和基于图像的波前传感,实现了简单的硬件结构。对于基于图像的传感,除了采集到的图像外,还需要先验信息。我们采用相位分集(PD)波前传感方法,该方法将一种称为PD的先验信息应用到光学器件中。利用pd和采集的图像,可以估计任意波前像差。在这种情况下,所获得的图像对像差模式的灵敏度取决于所应用的PD。我们使用LCOS-SLM来应用最优pd集。利用LCOS-SLM和USB摄像机搭建了自适应光学系统试验台。在该系统中,我们使用了Shack-Hartmann波前传感器(SHWS)来比较估计的波前像差与SHWS测量的实际波前像差。实验室测试结果表明,该系统提高了遥感传感器的光学性能。
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Laboratory test results for adaptive optics using image-based wavefront sensing for remote sensing
Large aperture optical system is required for high resolution and high signal to nose ratio remote sensing observations. In this case, adaptive optics is used to compensate the wavefront aberration generated by the misalignment or the thermal deformation of the optical elements. We use a liquid crystal on silicon spatial light modulator (LCOS-SLM) for the optical wavefront control, and image-based wavefront sensing which realize simple hardware architecture. For image-based sensing, a priori information is required in addition to the acquired images. We use phase diversity (PD) wavefront sensing method which applies a priori information called PD to the optics. By using PDs and acquired images, we can estimate arbitrary wavefront aberration. In this case, the sensitivity of the acquired image to the aberration mode depends on the applied PD. We use LCOS-SLM to apply the optimal set of PDs. We constructed adaptive optics system testbed using LCOS-SLM and USB camera. In this system, we used a Shack-Hartmann wavefront sensor (SHWS) to compare the estimated wavefront aberration with the actual wavefront measured by the SHWS. The laboratory test results show that the proposed system improves the optical performance of the remote sensing sensors.
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