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An Electromagnetic Analysis of Noise-Based Intrinsically Secure Communication in Wireless Systems

机译:无线系统中基于噪声的本质安全通信的电磁分析

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Recently there has been an increasing interest toward unconditionally secure communication systems in which the mechanism assuring the secrecy of the message is physical and not computational. An interesting approach proposed in the information theory literature for unconditionally secure communication is based on the use of artificial noise at a rate related to the difference between the mutual information in perfect secrecy. Since the mechanism assuring the secrecy of the message is physical and not computational, the unauthorized receiver cannot obtain information from the received signal, regardless of how much computational power is available. For this reason, such a cryptographic system is called unconditionally secure . The aim of this paper is to investigate an electromagnetic approach to the noise-based wireless communication systems stressing the important role of the electromagnetic propagation and antenna design. In particular, the concept of the number of degrees of freedom of the field is used to clarify the physical mechanism that allows for a decrease in the mutual information of the unauthorized channel compared to the eavesdropper channel. Numerical examples regarding both free-space propagation and rich scattering environments are shown, confirming the importance of the role of the electromagnetic propagation and antenna design.
机译:近来,人们越来越关注无条件安全的通信系统,在该系统中,确保消息保密性的机制是物理的,而不是计算的。信息理论文献中提出的一种用于无条件安全通信的有趣方法是,基于人工噪声的使用,其速率与完全保密的互信息之间的差异有关。由于确保消息保密性的机制是物理的,而不是计算的,因此,无论有多少计算能力可用,未经授权的接收者都无法从接收到的信号中获取信息。因此,这种密码系统被称为无条件安全。本文的目的是研究针对噪声无线通信系统的电磁方法,强调电磁传播和天线设计的重要作用。特别地,使用领域自由度数的概念来阐明物理机制,该物理机制允许相比窃听者信道减少未授权信道的互信息。给出了有关自由空间传播和丰富散射环境的数值示例,证实了电磁传播和天线设计的重要性。

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