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Extrinsic Channel-Like Fingerprint Embedding for Authenticating MIMO Systems

机译:用于验证MIMO系统的外部通道样指纹嵌入

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摘要

A framework for introducing an extrinsic fingerprint signal to space-time coded transmissions at the physical layer is presented, where the fingerprint signal conveys a low capacity cryptographically secure authentication message of arbitrary length. The multi-bit digital fingerprint message conveyed by the fingerprint signal is available to all users within reception range and is used to authenticate the fingerprinted transmission. A novel approach is discussed where the fingerprint signaling mechanism mimics distortions similar to time-varying channel effects. Specifically, the fingerprint is detectable to receivers considering previous channel state information, but will be ignored by receivers equalizing according to current channel state information. Two example fingerprint signaling mechanisms and detection rules are presented based on pulse-amplitude keying and phase-shift keying approaches. The methods for obtaining the real (intrinsic) channel estimate, the extrinsic fingerprint message, and the primary transmission are analytically demonstrated using general pilot embedding schemes. The worst-case distortions caused by non-ideal equalization of a fingerprinted message are derived using the 2x2 Alamouti code. Simulation results including bit error rate (BER) and model mismatch error using a maximum-likelihood (ML) receiver are presented for both the primary and fingerprint signal, while authentication signal BERs lower than the primary signal are demonstrated.
机译:提出了一种将外部指纹信号引入物理层的时空编码传输的框架,其中指纹信号传送任意长度的低容量密码安全认证消息。指纹信号传达的多位数字指纹消息对接收范围内的所有用户均可用,并用于验证指纹传输。讨论了一种新颖的方法,其中指纹信号机制模仿类似于时变信道效应的失真。具体而言,考虑到先前的信道状态信息的接收者可以检测到指纹,但是根据当前信道状态信息进行均衡的接收者将忽略该指纹。基于脉冲幅度键控和相移键控方法,给出了两个示例性的指纹信令机制和检测规则。使用常规导频嵌入方案分析性地证明了获得真实(内部)信道估计,外部指纹消息和主要传输的方法。由指纹消息的非理想均衡导致的最坏情况失真是使用2x2 Alamouti码得出的。给出了针对主信号和指纹信号的仿真结果,包括使用最大似然(ML)接收器的误码率(BER)和模型失配误差,同时展示了低于主信号的认证信号BER。

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