This paper investigates the optimization of beamforming design in a system with integrated sensing and communication (ISAC), where the base station (BS) sends signals for simultaneous multiuser communication and radar sensing. We aim at maximizing the energy efficiency (EE) of the multiuser communication while guaranteeing the sensing requirement in terms of individual radar beampattern gains. The problem is a complicated nonconvex fractional program which is challenging to be solved. By appropriately reformulating the problem and then applying the techniques of successive convex approximation (SCA) and semidefinite relaxation (SDR), we propose an iterative algorithm to address this problem. In theory, we prove that the introduced relaxation of the SDR is rigorously tight. Numerical results validate the effectiveness of the proposed algorithm.
翻译:本文探讨在集成遥感和通信系统(ISAC)中最优化波束成型设计的问题,基地台(BS)为同时的多用户通信和雷达遥感发出信号,我们的目标是最大限度地提高多用户通信的能源效率,同时保证单个雷达光束收益方面的感测要求,这是一个复杂的非电流分数程序,需要解决的难度很大。我们通过适当调整问题,然后运用接连的电流近似(SCA)和半无限制放松(SDR)技术,提出了解决这一问题的迭接算法。理论上,我们证明引入的SDR的放松非常严格。数字结果证实了提议的算法的有效性。