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Computationally Efficient Beampattern Synthesis for Dual-Function Radar-Communications

机译:双函数雷达通信的计算上高效的波束型合成

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The essence of amplitude-modulation based dual-function radar-communications is to modulate the sidelobe of the transmit beampattern while keeping the main beam, where the radar function takes place, unchanged during the entire processing interval. The number of distinct sidelobe levels (SLL) required for information embedding grows exponentially with the number of bits being embedded. We propose a simple and computationally cheap method for transmit beampattern synthesis which requires designing and storing only two beamforming weight vectors. The proposed method first designs a principal transmit beamforming weight vector based on the requirements dictated by the radar function of the DFRC system. Then, a second weight vectors is obtained by enforcing a deep null towards the intended communication directions. Additional SLLs can be realized by simply taking weighted linear combinations of the two available weight vectors. The effectiveness of the proposed method for beampattern synthesis is verified using simulations examples.
机译:基于幅度调制的双函数雷达通信的本质是调制发射束型器的边缘,同时保持主光束,在整个处理间隔期间不变地发生雷达功能。信息嵌入所需的不同侧级级别(SLL)的数量以嵌入的比特数指数呈指数为指数。我们提出了一种简单且计算上的传输波束型合成方法,其需要仅设计和存储两个波束成形权重向量。所提出的方法首先根据DFRC系统的雷达函数决定的要求,设计了主发送波束成形权重向量。然后,通过对预期的通信方向实施深度零点来获得第二权重向量。通过简单地采用两种可用权重向量的加权线性组合,可以实现附加的SLL。利用模拟实施例验证了束束合成方法的所提出方法的有效性。

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