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Orthogonal Waveform Design for Radar-Embedded Communications

机译:雷达嵌入式通信正交波形设计

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摘要

This paper focuses on the waveform design for a radar-embedded communication (REC) system which can achieve covert communication while improving the spectrum utilization. In order to solve the problem that the conventional embedded communication waveforms are not orthogonal, this paper proposes the orthogonal weighted-combining (OWC) strategy and the orthogonal dominant-projection (ODP) strategy. Furthermore, the OWC strategy can be broken into two strategies: constrained weighted-combining (CWC) strategy and improved weighted-combining (IWC) strategy. Theoretical analysis and simulation results have shown that these three strategies can dramatically improve communication reliability. Moreover, the performance of the strategies mentioned above has been assessed by the low probability of intercept (LPI) metric. Comparing to the traditional strategies, the IWC strategy shows better LPI performance while the CWC strategy and ODP strategy remain unchanged. Additionally, the ODP strategy can also reduce computational complexity and response delay, which is rather important in the REC system. Any of the three strategies can be selected in accordance with the needs of the application scenario.
机译:本文重点介绍了雷达嵌入式通信(REC)系统的波形设计,可以在提高频谱利用率的同时实现隐蔽通信。为了解决传统的嵌入式通信波形不是正交的问题,本文提出了正交加权组合(OWC)策略和正交显性投影(ODP)策略。此外,OWC策略可以分为两种策略:约束加权组合(CWC)策略和改进的加权组合(IWC)策略。理论分析和仿真结果表明,这三种策略可以大大提高通信可靠性。此外,通过截距(LPI)度量的低概率来评估上述策略的性能。与传统策略相比,IWC策略显示了更好的LPI性能,而CWC策略和ODP策略保持不变。此外,ODP策略还可以降低计算复杂性和响应延迟,在REC系统中相当重要。可以根据应用方案的需要选择三种策略中的任何一种。

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