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Secret key distribution leveraging color shift over visible light channel

机译:利用可见光通道上的颜色偏移进行秘密分配

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Given the widely adoption of screen and camera in many electronic devices, the visible light communication (VLC) over screen-to-camera channel emerges as a novel short range communication technique in recent years. Active research explores various ways to convey messages over screen-camera channel, such as barcode and unobtrusive optical pattern. However, with the prevalence of LED screens of wide viewing angles and mobile devices equipped with high standard cameras, the threat of information leakage over screen-to-camera channel becomes in-negligible. Few studies have discussed how to ensure the security of data transmission over screen-to-camera channel. In this paper, we propose a secret key distribution system leveraging the unique color shift property over visible light channel. To facilitate such design, we develop a practical secret key matching based method to map the secret key into gridded optical patterns on screen, which can only be correctly recognized by the legitimate user through an accessible region and allow regular data stream transmission through valid grids. The proposed system is prototyped with off-the-shelf devices and validated under various experimental scenarios. The results show that our system can achieve high bit-decoding accuracy for the legitimate users while maintaining comparable data throughput as regular unobtrusive VLC systems with very low recovery accuracy of the encrypted data for the attackers.
机译:鉴于屏幕和摄像头已在许多电子设备中得到广泛采用,近年来,屏幕到摄像头通道上的可见光通信(VLC)成为一种新颖的短距离通信技术。积极的研究探索了通过屏幕摄像头通道传达消息的各种方式,例如条形码和不显眼的光学图案。然而,随着大视角LED屏幕和配备高标准摄像头的移动设备的普及,通过屏幕到摄像头通道泄漏信息的威胁变得微不足道。很少有研究讨论如何确保从屏幕到摄像机通道的数据传输的安全性。在本文中,我们提出了一种利用可见光通道上独特的色移特性的秘密密钥分发系统。为了促进此类设计,我们开发了一种基于实用密钥匹配的方法,将密钥映射到屏幕上的网格光学图案中,只有合法用户才能通过可访问区域正确识别该密钥,并允许通过有效网格进行常规数据流传输。拟议的系统使用现成的设备进行原型设计,并在各种实验场景下得到了验证。结果表明,我们的系统可以为合法用户实现高比特解码精度,同时保持与常规无干扰VLC系统相当的数据吞吐量,而攻击者的加密数据恢复精度非常低。

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