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MEMS deformable mirror optical limiter for dynamic range compression deconvolution

机译:MEMS可变形镜面光学限制器,用于动态范围压缩折叠

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We propose dynamic range compression deconvolution by a new nonlinear optical limiter micro-electro-mechanical system (NOLMEMS) device. The NOLMEMS uses aperturized, reflected coherent light from optically addressed, parabolically deformable mirrors. The light is collimated by an array of micro-lenses. The reflected light saturates as a function of optical drive intensity. In this scheme, a joint image of the blurred input information and the blur impulse response is captured and sent to a spatial light modulator (SLM). The joint information on the SLM is read through a laser beam and is Fourier transformed by a lens to the back of the NOLMEMS device. The output from the NOLMEMS is Fourier transformed to produce the restored image. We derived the input-output nonlinear transfer function of our NOLMEMS device, which relates the transmitted light from the pinhole to the light intensity incident on the back side of the device, and exhibits saturation. We also analyzed the deconvolution orders for this device, using a nonlinear transform method. Computer simulation of image deconvolution by the NOLMEMS device is also presented.
机译:我们通过新的非线性光学限制器微型电力机械系统(NOLMEMS)装置提出动态范围压缩碎片卷积。 NOLMEMS使用来自光学寻址的抛物线可变形镜的接近的,反射的相干光。光由微透镜阵列准直。反射光作为光驱强度的函数饱和。在该方案中,捕获模糊输入信息的联合图像和模糊脉冲响应并被发送到空间光调制器(SLM)。通过激光束读取SLM上的接合信息,并且通过镜头转换为NOLMEMS器件的背面的傅里叶。 NOLMEMS的输出是傅立叶变换以产生恢复的图像。我们衍生的NOLMEMS装置的输入输出非线性传递函数,其将来自针孔的透射光与入射在设备背面的光强度相关,并展示饱和度。我们还使用非线性变换方法分析了该设备的解卷积订单。还提出了NOLMEMS设备的图像碎片模型的计算机模拟。

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