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Adding PHY-Layer Crypto to COFDM Radios through a Large Array with Directional Modulation

机译:通过具有方向调制的大型阵列将PHY层加密到COFDM无线电添加到COFDM无线电

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Due to its ability to provide radio-transmission security at the PHY-layer, thus without relying on secret key exchange procedures and encryption algorithms, Directional modulation (DM) has recently attracted significant attention within wireless research communities. Such technique uses an antenna array as a spatial encryption system which partitions the surrounding space into regions where the transmission is either perfectly intelligible or intentionally obfuscated. This paper, which builds upon previous work from the same authors, shows how, by resorting to the proposed DM approach and accepting a slight back- off on the maximum possible array gain (typically ? 1 dB for large arrays), it is possible to complement existing, state-of-art COFDM radio interfaces with PHY-layer information security by just replacing their antenna systems. Such result is obtained without actually degrading signal properties and performance within the regions being intentionally served by the DM-enabled signal. Numerical analyses as well as a real-world application of the devised system to mainstream radio standards (namely ETSI DVB-T and IEEE 802.11) are presented in support of the proposed solution.
机译:由于其在PHY层提供无线电传输安全性的能力,因此在不依赖于秘密关键交换程序和加密算法的情况下,定向调制(DM)最近在无线研究社区中引起了重要的关注。这种技术使用天线阵列作为空间加密系统,该空间加密系统将周围空间分区到传输完全可理解或有意地混淆的区域中。这篇论文在以前的同一作者中构建了,展示了如何通过诉诸所提出的DM方法,并在最大可能的阵列增益上接受略微退避(通常是大阵列的1 dB),可以通过替换其天线系统,可以补充现有的,最先进的COFDM无线电接口,具有PHY层信息安全性。在没有实际降低的信号特性和地区内的性能的情况下获得这些结果是由能够通过DM的信号进行有意服务的。向主流无线电标准的数字分析以及设计设计的真实应用程序(即ETSI DVB-T和IEEE 802.11)的支持以支持所提出的解决方案。

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