Integrated Sensing and Communication Beamforming Design Based on Mutual Information

Jin Li, Nan Liu
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引用次数: 3

Abstract

Integrated sensing and communication (ISAC) unifies radar sensing and communication, and improves the efficiency of the spectrum, energy and hardware. In this paper, we investigate the ISAC beamforming design in a downlink system with a communication user and a point radar target to be perceived. The design criterion for radar sensing is the mutual information between the target response matrix and the echo signals, while the single user transmission rate is used as the performance metric of the communication. Two scenarios without and with interference from the communication user are investigated. A closed-form solution with low complexity and a solution based on the semidefinite relaxation (SDR) method are provided to solve these two problems, respectively. Numerical results demonstrate that, compared to the results obtained by SDR based on the CVX toolbox, the closed-form solution is tight in the feasible region. In addition, we show that the SDR method obtains an optimal solution.
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基于互信息的集成传感与通信波束形成设计
集成传感与通信(ISAC)将雷达传感与通信统一起来,提高了频谱、能源和硬件的效率。在本文中,我们研究了ISAC波束形成设计在一个通信用户和一个点雷达目标被感知的下行系统。雷达传感的设计准则是目标响应矩阵与回波信号之间的互信息,以单用户传输速率作为通信的性能指标。研究了无通信用户干扰和有通信用户干扰两种情况。针对这两个问题,分别提出了一种低复杂度的闭式解和一种基于半定松弛(SDR)方法的解。数值结果表明,与基于CVX工具箱的SDR得到的结果相比,该闭式解在可行域内是紧的。此外,我们还证明了SDR方法可以得到一个最优解。
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