Physical Layer Anonymous Communications: An Anonymity Entropy Oriented Precoding Design (Invited Paper)

Zhongxiang Wei, C. Masouros, Sumei Sun
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Abstract

Different from traditional security-oriented designs, the aim of anonymizing techniques is to mask users' identities during communication, thereby providing users with unidentifiability and unlinkability. The existing anonymizing techniques are only designated at upper layers of networks, ignoring the risk of anonymity leakage at physical layer (PHY). In this paper, we address the PHY anonymity design with focus on a typical uplink scenario where the receiver is equipped with more antennas than the sender. With the increased degrees-of-freedom at the receiver side, we first propose a maximum likelihood estimation (MLE) signal trace-back detector, which only analyzes the signaling pattern of the received signal to disclose the sender's identity. Accordingly, an anonymity entropy anonymous (AEA) precoder is proposed, which manipulates the transmitted signalling pattern to counteract the receiver's trace-back detector and meanwhile to guarantee high receive signal-to-interference-plus-noise ratio for communication. More importantly, more data streams can be multiplexed than the number of transmit antennas, which is particularly suitable for the strong receiver configuration. Simulation demonstrates that the proposed AEA precoder can simultaneously provide high anonymity and communication performance.
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物理层匿名通信:面向匿名熵的预编码设计(特邀论文)
与传统的面向安全的设计不同,匿名化技术的目的是在通信过程中掩盖用户的身份,从而为用户提供不可识别性和不可链接性。现有的匿名化技术只针对网络的上层,忽略了物理层匿名泄露的风险。在本文中,我们讨论了PHY匿名设计,重点关注典型的上行场景,其中接收器配备的天线比发送者多。随着接收端自由度的增加,我们首先提出了一种最大似然估计(MLE)信号跟踪检测器,它只分析接收信号的信令模式来揭示发送者的身份。在此基础上,提出了一种匿名熵匿名(AEA)预编码器,该预编码器对发送的信号模式进行处理,以抵消接收端跟踪检测器的干扰,同时保证较高的接收信噪比。更重要的是,可以复用的数据流比发射天线的数量多,这特别适合于强接收配置。仿真结果表明,该预编码器能够同时提供较高的匿名性和通信性能。
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