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围绕任意不透明障碍物学习衍射光通信。

Learning diffractive optical communication around arbitrary opaque occlusions.

作者信息

Rahman Md Sadman Sakib, Gan Tianyi, Deger Emir Arda, Işıl Çağatay, Jarrahi Mona, Ozcan Aydogan

机构信息

Electrical and Computer Engineering Department, University of California, Los Angeles, CA, 90095, USA.

Bioengineering Department, University of California, Los Angeles, CA, 90095, USA.

出版信息

Nat Commun. 2023 Oct 26;14(1):6830. doi: 10.1038/s41467-023-42556-0.

Abstract

Free-space optical communication becomes challenging when an occlusion blocks the light path. Here, we demonstrate a direct communication scheme, passing optical information around a fully opaque, arbitrarily shaped occlusion that partially or entirely occludes the transmitter's field-of-view. In this scheme, an electronic neural network encoder and a passive, all-optical diffractive network-based decoder are jointly trained using deep learning to transfer the optical information of interest around the opaque occlusion of an arbitrary shape. Following its training, the encoder-decoder pair can communicate any arbitrary optical information around opaque occlusions, where the information decoding occurs at the speed of light propagation through passive light-matter interactions, with resilience against various unknown changes in the occlusion shape and size. We also validate this framework experimentally in the terahertz spectrum using a 3D-printed diffractive decoder. Scalable for operation in any wavelength regime, this scheme could be particularly useful in emerging high data-rate free-space communication systems.

摘要

当有遮挡物阻挡光路时,自由空间光通信就会变得具有挑战性。在此,我们展示了一种直接通信方案,该方案能使光信息绕过完全不透明、任意形状的遮挡物,这种遮挡物会部分或完全遮挡发射机的视场。在该方案中,利用深度学习联合训练一个电子神经网络编码器和一个基于无源全光衍射网络的解码器,以在任意形状的不透明遮挡物周围传输感兴趣的光信息。经过训练后,编码器 - 解码器对能够在不透明遮挡物周围通信任何任意光信息,其中信息解码以光通过无源光 - 物质相互作用传播的速度进行,并且能抵御遮挡物形状和尺寸的各种未知变化。我们还使用3D打印衍射解码器在太赫兹频谱中通过实验验证了该框架。该方案可扩展到在任何波长范围运行,在新兴的高数据速率自由空间通信系统中可能会特别有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d65/10603111/a8038b098146/41467_2023_42556_Fig1_HTML.jpg

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