The sixth generation (6G) mobile communication networks are expected to offer a new paradigm of cellular integrated sensing and communication (ISAC). However, due to the intrinsic difference between sensing and communication in terms of coverage requirement, current cellular networks that are deliberately planned mainly for communication coverage are difficult to achieve seamless sensing coverage. To address this issue, this paper studies the beamforming optimization towards seamless sensing coverage for a basic bi-static ISAC system, while ensuring that the communication requirements of multiple users equipment (UEs) are satisfied. Towards this end, an optimization problem is formulated to maximize the worst-case sensing signal-to-noise ratio (SNR) in a prescribed coverage region, subject to the signal-to-interference-plus-noise ratio (SINR) requirement for each UE. To gain some insights, we first investigate the special case with one single UE and one single sensing point, for which a closed-from expression of the optimal beamforming is obtained. For the general case with multiple communication UEs and contiguous regional sensing coverage, an efficient algorithm based on successive convex approximation (SCA) is proposed to solve the non-convex beamforming optimization problem. Numerical results demonstrate that the proposed design is able to achieve seamless sensing coverage in the prescribed region, while guaranteeing the communication requirements of the UEs.
翻译:第六代(6G)移动通信网络预计将提供一种新的蜂窝综合遥感和通信模式(ISAC),然而,由于遥感和通信在覆盖面要求方面的内在差异,目前主要为通信覆盖而特意规划的蜂窝网络很难实现无缝遥感覆盖。为解决这一问题,本文件研究将光束优化转化为基本双静态ISAC系统的无缝遥感覆盖,同时确保满足多用户设备(UES)的通信要求。为此,形成了一个优化问题,以在规定的覆盖区域最大限度地实现最坏情况感知信号对噪音比率(SNR),但须符合对每个UE的信号对干涉加噪音比率(SINR)的要求。为了获得一些深入了解,我们首先用一个UE和一个单一的感测点来调查这一特殊案例,即从最佳配置的表达中得到封闭式的。关于多个通信用户设备(UES)和毗连的区域感测范围的一般案例,建议根据连续的 convex 近效(SCA) 进行高效的算法,以便解决不间断的通信范围,同时保证所设定的NUx的不连续的通信要求。