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Secured Key Distribution by Concatenating Optical Communications and Inter-Device Hand-Held Video Transmission

机译:通过级联光通信和设备间手持视频传输来确保密钥分发的安全

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摘要

Key distribution is a growing concern for symmetric cryptography. Most of the current key-distribution mechanisms assume the use of the Internet and WAN networks, which are exposed to security hazards. To overcome them, the use of comprehensive and robust cryptographic mechanisms such as Diffie–Hellman (DH) and RSA (Rivest–Shamir–Adleman) algorithms are proposed. These solutions are limited. DH and RSA have been under threat since the introduction of quantum computing. Hence, new ideas are required. This paper introduces a new security approach for a safe key transmission using undetected high-speed optical camera communication (OCC), which is based on the rolling shutter effect of modern smart cameras. The key transfer is done by blinking light-emitting diode (LED) lights in a specific sequence and frequency, following an encoding pattern. The receiver decodes the received blinks to a bit string using a corresponding image processing application. This optical media ensures secure transfer without the ability to quote it. We demonstrate in an experiment the feasibility of using basic wireless optical communication for key transmission, eliminating the need for a permanent, long, and costly setup. It is mobile, available everywhere anytime, and requires only simple connections to operate. The results show that this method is feasible, robust, efficient, and implementable.
机译:密钥分发是对称密码学日益关注的问题。当前大多数密钥分发机制都假定使用Internet和WAN网络,这会带来安全隐患。为了克服它们,提出了使用全面而可靠的加密机制,例如Diffie-Hellman(DH)和RSA(Rivest-Shamir-Adleman)算法。这些解决方案是有限的。自从引入量子计算以来,DH和RSA一直受到威胁。因此,需要新的想法。本文介绍了一种基于现代智能相机的卷帘效应的,使用未检测到的高速光学相机通信(OCC)进行安全密钥传输的新安全方法。按照编码模式,通过以特定的顺序和频率闪烁发光二极管(LED)灯来完成密钥转移。接收器使用相应的图像处理应用程序将接收到的眨眼解码为位串。这种光学介质可确保安全传输,而无须报价。我们在实验中证明了使用基本的无线光通信进行密钥传输的可行性,从而消除了永久,冗长且昂贵的设置需求。它是可移动的,可随时随地使用,仅需简单的连接即可操作。结果表明,该方法是可行,鲁棒,高效,可实现的。

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