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利用动态缩放因子通过散射介质进行物理安全的高保真自由空间光数据传输。

Physically-secured high-fidelity free-space optical data transmission through scattering media using dynamic scaling factors.

作者信息

Xiao Yin, Zhou Lina, Pan Zilan, Cao Yonggui, Chen Wen

出版信息

Opt Express. 2022 Feb 28;30(5):8186-8198. doi: 10.1364/OE.448943.

Abstract

In this paper, we propose a method of physically-secured high-fidelity free-space optical data transmission through scattering media using physically- and dynamically-generated scaling factors. Optical channel characteristics are explored, and scaling factors are physically and dynamically generated to serve as security keys in the developed free-space optical data transmission system. The generated dynamic scaling factors provide a security layer for free-space optical data transmission. To the best of our knowledge, it is the first time to physically and dynamically generate scaling factors in free-space optical data transmission system to realize data encryption. The scaling factors existing in free-space optical data transmission channel are physically and dynamically controlled by using two optical devices, i.e., variable beam attenuator (VBA) and amplitude-only spatial light modulator (SLM). Nonlinear and dynamic variation of scaling factors is realized in different free-space wave propagation environments. It is experimentally demonstrated that high security can be guaranteed in the developed physically-secured high-fidelity free-space optical data transmission system, since one random scaling factor is physically and dynamically generated for the transmission of each signal pixel value. In addition, the proposed physically-secured free-space optical data transmission scheme is robust to noise and scattering, and high-fidelity signals are retrieved at the receiving end. The proposed method could open up a new research perspective for the secured free-space optical data transmission.

摘要

在本文中,我们提出了一种通过使用物理和动态生成的缩放因子,在散射介质中进行物理安全的高保真自由空间光数据传输的方法。我们探索了光信道特性,并物理和动态地生成缩放因子,以在开发的自由空间光数据传输系统中用作安全密钥。生成的动态缩放因子为自由空间光数据传输提供了一层安全保障。据我们所知,这是首次在自由空间光数据传输系统中物理和动态地生成缩放因子以实现数据加密。通过使用两个光学器件,即可变光束衰减器(VBA)和纯幅度空间光调制器(SLM),对自由空间光数据传输信道中存在的缩放因子进行物理和动态控制。在不同的自由空间波传播环境中实现了缩放因子的非线性和动态变化。实验证明,在开发的物理安全的高保真自由空间光数据传输系统中可以保证高安全性,因为为每个信号像素值的传输物理和动态地生成了一个随机缩放因子。此外,所提出的物理安全的自由空间光数据传输方案对噪声和散射具有鲁棒性,并且在接收端可以检索到高保真信号。所提出的方法可能为安全的自由空间光数据传输开辟一个新的研究视角。

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