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4.6 Space-Time Modulated 71-to-76GHz mm-Wave Transmitter Array for Physically Secure Directional Wireless Links

机译:4.6时空调制的71至76GHz毫米波发射机阵列,用于物理安全的定向无线链路

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Security in wireless networks has traditionally been addressed above the physical layer. With the expected proliferation of applications in 5G, the mm-wave spectrum and new network architectures, traditional methods of data encryption may not be scalable for energy-constrained applications. Thus, there has been a surge of interest in physical layer security that aims to impart confidentiality by exploiting the physics of the wireless communication channel without the need for exchanging secret cryptographic keys [1], [2]. The idea of a secure directional wireless link between a TX/RX pair is to preserve the signal information within a secure cone where the intended receiver is located while scrambling signals everywhere else to prevent eavesdropping. In a phased array, the same temporal digital information is fed to all the TX elements, transmitting the same information to all directions albeit at different power levels. This information can be recovered (especially at the side lobes) with a sensitive enough receiver. Spatial modulation with I, Q radiated out through separate antennas, and modulation of parasitic elements can distort the constellation in other directions [3], [4]. However, this one-to-one (bijective) mapping allows potential decoding by the eavesdropper, particularly using various signal processing and machine-learning-based classification techniques. Time modulation in an antenna array can incorporate such physical layer security through careful mapping of symbols to antennas in a time-modulated fashion.
机译:传统上,无线网络中的安全性已在物理层之上解决。随着5G,毫米波频谱和新网络架构中应用的预期增长,传统的数据加密方法可能无法在能源受限的应用中扩展。因此,对物理层安全性的兴趣激增,其目的是通过利用无线通信信道的物理特性来赋予机密性,而无需交换秘密密码密钥[1],[2]。 TX / RX对之间的安全定向无线链路的思想是将信号信息保存在目标接收器所在的安全锥体内,同时将信号扰乱其他地方以防止窃听。在相控阵中,相同的时间数字信息被馈送到所有TX元件,即使在不同的功率水平下,也向所有方向传输相同的信息。可以使用足够灵敏的接收器来恢复此信息(尤其是在旁瓣处)。通过单独的天线辐射出的I,Q进行空间调制,以及对寄生元件的调制会在其他方向上使星座失真[3],[4]。但是,这种一对一(双射)映射允许窃听者进行潜在的解码,尤其是使用各种信号处理和基于机器学习的分类技术时。天线阵列中的时间调制可以通过以时间调制的方式将符号仔细映射到天线来结合这种物理层安全性。

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