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Naked-eye 3D Imaging Employing a Modified MIMO Micro-ring Conjugate Mirrors

机译:采用改性的MIMO微环共轭镜的裸眼3D成像

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In this work, the use of a micro-conjugate mirror that can produce the 3D image incident probe and display is proposed. By using the proposed system together with the concept of naked-eye 3D imaging, a pixel and a large volume pixel of a 3D image can be created and displayed as naked-eye perception, which is valuable for the large volume naked-eye 3D imaging applications. In operation, a naked-eye 3D image that has a large pixel volume will be constructed by using the MIMO micro-ring conjugate mirror system. Thereafter, these 3D images, formed by the first micro-ring conjugate mirror system, can be transmitted through an optical link to a short distance away and reconstructed via the recovery conjugate mirror at the other end of the transmission. The image transmission is performed by the Fourier integral in MATLAB and compares to the Opti-wave program results. The Fourier convolution is also included for the large volume image transmission. The simulation is used for the manipulation, where the array of a micro-conjugate mirror system is designed and simulated for the MIMO system. The naked-eye 3D imaging is confirmed by the concept of the conjugate mirror in both the input and output images, in terms of the four-wave mixing (FWM), which is discussed and interpreted.
机译:在这项工作中,提出了可以使用可以产生3D图像入射探针和显示器的微共轭镜。通过使用所提出的系统以及裸眼3D成像的概念,可以创建一个像素和3D图像的大体积像素并显示为裸眼感知,这对于大容量裸眼3D成像是有价值的应用程序。在操作中,将通过使用MIMO微环共轭镜系统构造具有大像素体积的裸眼3D图像。此后,由第一微环缀合物镜系统形成的这些3D图像可以通过光学链路传输到短距离,并经由回收缀合物镜在变速器的另一端重建。通过MATLAB中的傅里叶积分执行图像传输,并与光波节目结果进行比较。还包括傅立叶卷积用于大容量图像传输。该模拟用于操纵,在其中设计和模拟微共轭镜系统的阵列,用于MIMO系统。根据讨论和解释的四波混合(FWM),通过输入和输出图像中的共轭镜的概念来确认裸眼3D成像。

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