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Robust OFDM integrated radar and communications waveform design based on information theory

机译:基于信息理论的鲁棒OFDM集成雷达和通信波形设计

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摘要

An integrated radar and communications system (IRCS) where a monostatic radar transceiver is employed for target classification while simultaneously used as a communications transmitter is considered. The radar combined propagation-target response (joint response of the radar propagation channel and target) and communications channel response are generally frequency selective but the corresponding frequency response functions are not exactly known. In particular, these frequency response functions are only known to lie in an uncertainty class. To ensure the IRCS simultaneously provides acceptable target classification performance and communications rate, a robust orthogonal frequency division multiplexing (OFDM) integrated radar and communications waveform (IRCW) design method is proposed. The approach finds a waveform that simultaneously provides a sufficiently large weighted sum of the communications data information rate (DIR) and the conditional mutual information (MI) between the observed signal and the random target impulse response over the entire uncertainty class. First, the conditional MI and DIR based on the OFDM IRCW are derived. Then, a robust OFDM IRCW optimization problem based on the minimax design philosophy is developed such that closed-form solution is derived. Finally, several numerical results are presented to demonstrate the effectiveness of the proposed method. (C) 2019 Elsevier B.V. All rights reserved.
机译:考虑了一个集成的雷达和通信系统(IRC),其中用于单同时用作通信发射器的目标分类。雷达组合传播 - 目标响应(雷达传播信道和目标的关节响应)和通信信道响应通常是频率选择性,但是不确定地知道相应的频率响应函数。特别地,这些频率响应函数才知道才能躺在不确定性类中。为了确保IRC同时提供可接受的目标分类性能和通信速率,提出了一种强大的正交频分复用(OFDM)集成雷达和通信波形(IRCW)设计方法。该方法发现了一个波形,其同时提供在整个不确定性类别上观察到的信号和随机目标脉冲响应之间的通信数据信息速率(DIR)和条件互信息(MI)的足够大的加权之和。首先,推导了基于OFDM IRCW的条件MI和DIR。然后,开发了一种基于MIMIMAX设计理念的鲁棒OFDM IRCW优化问题,从而导出闭合形式解决方案。最后,提出了几个数值结果以证明所提出的方法的有效性。 (c)2019 Elsevier B.v.保留所有权利。

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