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Robust Transmitted Waveform and Received Filter Design for Cognitive Radar in the Presence of Signal-Dependent Interference

机译:存在信号依赖干扰的认知雷达鲁棒发射波形和接收滤波器设计

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The problem of robust transmitted waveform and received filter design for cognitive radar in a signal-dependent interference environment is considered. When estimate errors of the target impulse response (TIR) and clutter impulse response (CIR) exist, in order to improve the worst signal-to-clutter ratio (SCR) and signal-to-interference-and-noise ratio (SINR), a robust transmitted waveform and received filter are designed based on the minimax criterion by using the information fed back from the receiver. Using deterministic and random models, the waveform and filter design problem is divided into three optimization problems. The robust waveform and filter are then obtained by solving these problems. In the deterministic model, we prove that the robust waveform and filter impulse response can be generated by a pseudorandom code. In the random model, the robust waveform and filter impulse response can be obtained by an alternative projection algorithm. Numerical results indicate that the worst SINR of the robust waveform and filter is higher than that of the traditional waveform and filter.
机译:考虑了在依赖信号的干扰环境下认知雷达的鲁棒发射波形和接收滤波器设计问题。当存在目标脉冲响应(TIR)和杂波脉冲响应(CIR)的估计误差时,为了提高最差的信杂比(SCR)和信噪比(SINR),通过使用从接收器反馈的信息,基于极小极大准则设计鲁棒的发射波形和接收滤波器。使用确定性和随机模型,将波形和滤波器设计问题分为三个优化问题。然后,通过解决这些问题,可以获得鲁棒的波形和滤波器。在确定性模型中,我们证明了鲁棒的波形和滤波器脉冲响应可以由伪随机码生成。在随机模型中,可以通过替代的投影算法获得鲁棒的波形和滤波器脉冲响应。数值结果表明,鲁棒波形和滤波器的最差SINR高于传统波形和滤波器的SINR。

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