可见光通信系统彩色调制的安全增强加密

IF 4 2区 计算机科学 Q1 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
Goncalo Figueiredo;Rute A. S. Ferreira;Paulo S. Andre
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引用次数: 0

摘要

可见光通信(VLC)已成为一个充满活力的研究领域,有望彻底改变高速无线通信。可见光通信技术利用现有基础设施中的发光二极管(LED)发射可见光谱内的光。VLC 是对传统射频 (RF) 通信的补充,解决了其固有的局限性和缺点。为了满足现代城市环境的需求,VLC 系统必须优先考虑数据传输的安全性、可访问性和经济可行性,尤其是在智慧城市的框架内。据我们所知,我们介绍了一种用于光无线通信的新型隐私增强型 VLC 系统。利用彩色数据调制技术和超混沌三维地图的复杂性,这种创新方法可确保强大的安全性。通过使用不同颜色的 LED 进行数据传输,并利用超混沌地图不可预测的数学特性,实现了更高的保密性。我们通过各种测试对所提系统的性能进行了严格评估,包括操纵超混沌图加密过程的初始控制参数,以及调整信息长度和内容。测试在 1 米的连接距离内进行,符号传输速率为 2 波特。值得注意的是,所提出的系统在信息恢复方面表现出很高的准确性,在入射光功率为 22 µW 时,符号错误率(SER)仅为 0.02。我们强调了所提方法中精确解密参数值的极端重要性,证明每个解密参数的精确度必须在 ${10}^{- 15}$ 的范围内;这突出了为确保正确解密传输符号而进行细致参数校准的不可或缺性。这些结果为需要绝对安全的应用铺平了道路,特别是在智能城市环境中,例如用于密钥分发目的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing secret key distribution through advanced color modulation in visible light communication
Visible light communication (VLC) has emerged as a dynamic area of research poised to revolutionize high-speed wireless communication. VLC technology uses light-emitting diodes (LEDs) within existing infrastructure to emit light within the visible spectrum. VLC complements traditional radio frequency (RF) communications, addressing its inherent limitations and drawbacks. To navigate the demands of modern urban environments, VLC systems must prioritize secure data transmission, accessibility, and economic feasibility, particularly within the framework of smart cities. We introduce what is to our knowledge a novel privacy-enhanced VLC system for optical wireless communication. Leveraging color data modulation techniques and the intricacies of a hyperchaotic three-dimensional map, this innovative approach ensures robust security. By employing diverse LED colors for data transmission and exploiting the unpredictable mathematical properties of hyperchaotic maps, enhanced privacy is achieved. The performance of the proposed system was rigorously evaluated through various tests, manipulating initial control parameters of the encryption process with the hyperchaotic map, as well as adjusting message length and content. Tests were conducted over a 1 m connection distance at a symbol transmission rate of 2 baud. Remarkably, the proposed system demonstrated high accuracy in message recovery, achieving a symbol error rate (SER) of only 0.02 at an incident optical power of 22 µW. We highlight the critical importance of precise decryption parameter values in the proposed method, demonstrating the necessity for accuracy within the range of ${10}^{- 15}$ for each decryption parameter; it underscores the indispensability of meticulous parameter calibration to ensure the correct decryption of transmitted symbols. These results pave the way for applications where absolute security is imperative, particularly in smart city environments, such as for key distribution purposes.
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来源期刊
CiteScore
9.40
自引率
16.00%
发文量
104
审稿时长
4 months
期刊介绍: The scope of the Journal includes advances in the state-of-the-art of optical networking science, technology, and engineering. Both theoretical contributions (including new techniques, concepts, analyses, and economic studies) and practical contributions (including optical networking experiments, prototypes, and new applications) are encouraged. Subareas of interest include the architecture and design of optical networks, optical network survivability and security, software-defined optical networking, elastic optical networks, data and control plane advances, network management related innovation, and optical access networks. Enabling technologies and their applications are suitable topics only if the results are shown to directly impact optical networking beyond simple point-to-point networks.
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