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Optimization and Quantization of Multibeam Beamforming Vector for Joint Communication and Radio Sensing

机译:联合通信与无线电传感的多波束波束形成矢量的优化与量化

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摘要

Joint communication and radio sensing (JCAS) in millimeter-wave (mmWave) systems requires the use of a steerable beam. For analog antenna arrays, a single beam is typically used, which limits the sensing area within the direction of the communication. Multibeam technology can overcome this limitation by separately generating package-level direction-varying sensing subbeams and fixed communication subbeams and then combine them coherently. In this paper, we investigate the optimal combination of the two subbeams and the quantization of the beamforming (BF) vector that generates the combined beam. When either the full channel matrix or only the angle of departure (AoD) of the dominating line-of-sight (LOS) path is known at the transmitter, we derive the closed-form expressions for the optimal combining coefficients that maximize the received communication signal power. For the quantization of the BF vector, we focus on the two-phase-shifter array where two phase shifters are used to represent each BF weight. We propose novel joint quantization methods by combining the codebooks of the two phase shifters. The mean squared quantization error is derived for various quantization methods. Extensive simulation results validate the accuracy of the analytical results and the effectiveness of the proposed multibeam optimization and joint quantization methods.
机译:毫米波(mmWave)系统中的联合通信和无线电感测(JCAS)需要使用可控波束。对于模拟天线阵列,通常使用单个波束,该波束将通信区域限制在通信方向内。多光束技术可以通过分别生成封装级别的方向变化感应子光束和固定通信子光束,然后将它们连贯地结合起来,来克服此限制。在本文中,我们研究了两个子光束的最佳组合以及生成组合光束的波束形成(BF)矢量的量化。当发射机知道全信道矩阵或主导视距(LOS)路径的偏离角(AoD)时,我们就可以得出最佳组合系数的闭式表达式,从而使接收到的通信最大化信号功率。对于BF向量的量化,我们集中于两相移器阵列,其中两个移相器用于表示每个BF权重。通过结合两个移相器的码本,我们提出了新颖的联合量化方法。均方量化误差用于各种量化方法。大量的仿真结果验证了分析结果的准确性以及所提出的多光束优化和联合量化方法的有效性。

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