基于psk的非相干双功能雷达通信系统

A. Hassanien, M. Amin, Yimin D. Zhang, F. Ahmad, B. Himed
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引用次数: 53

摘要

双功能雷达通信(DFRC)系统使信息嵌入到雷达信号发射中。现有的非相干调相DFRC方法采用多对正交波形,并在每对正交波形中嵌入一个通信符号。符号的总数等于波形数的一半。在本文中,我们提出了一种新的信令策略来嵌入更多的通信符号。该方法采用其中一种正交波形作为公共参考,并根据所有其他波形与参考波形之间的相位差调制信息,实现了非相干相移键控(PSK)。可以嵌入的通信符号的数量等于波形的总数减去一。我们介绍了实现期望相位星座的两种方案。与现有方法相比,该方法在处理大量波形时的数据速率提高了两倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Non-coherent PSK-based dual-function radar-communication systems
Dual-function radar-communication (DFRC) systems enable information embedding into the radar signal emission. Existing methods for non-coherent phase-modulation DFRC employ multiple pairs of orthogonal waveforms and embed one communication symbol into each pair. The total number of symbols is equal to one-half of the number of waveforms. In this paper, we propose a new signaling strategy for embedding a higher number of communication symbols. The proposed method implements non-coherent phase-shift keying (PSK) by employing one of the orthogonal waveforms as a common reference and modulating the information in terms of the phase differences between all other waveforms and the reference waveform. The number of communication symbols that can be embedded equals the total number of waveforms minus one. We introduce two schemes for achieving a desired phase constellation. The proposed approach is shown to achieve a two-fold increase in the data rate compared to existing methods for a large number of waveforms.
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