Besides improving communication performance, intelligent reflecting surfaces (IRSs) are also promising enablers for achieving larger sensing coverage and enhanced sensing quality. Nevertheless, in the absence of a direct path between the base station (BS) and the targets, multi-target sensing is generally very difficult, since IRSs are incapable of proactively transmitting sensing beams or analyzing target information. Moreover, the echoes of different targets reflected via the IRS-established virtual links share the same directionality at the BS. In this paper, we study a wireless system comprising a multi-antenna BS and an IRS for multi-target sensing, where the beamforming vector and the IRS phase shifts are jointly optimized to improve the sensing performance. To meet the different sensing requirements, such as a minimum received power and a minimum sensing frequency, we propose three novel IRS-assisted sensing schemes: Time division (TD) sensing, signature sequence (SS) sensing, and hybrid TD-SS sensing. First, for TD sensing, the sensing tasks are performed in sequence over time. Subsequently, a novel signature sequence (SS) sensing scheme is proposed to improve sensing efficiency by establishing a relationship between directions and SSs. To strike a flexible balance between the beam pattern gain and sensing efficiency, we also propose a general hybrid TD-SS sensing scheme with target grouping, where targets belonging to the same group are sensed simultaneously via SS sensing, while the targets in different groups are assigned to orthogonal time slots. By controlling the number of groups, the hybrid TD-SS sensing scheme can provide a more flexible balance between beam pattern gain and sensing frequency. Moreover, ...
翻译:除改善通信性能外,智能反射表面(IRS)也是实现更大感测覆盖面和更高感测质量的有希望的推进因素,然而,在基地站和目标之间没有一条直接路径的情况下,多目标遥感一般非常困难,因为IRS无法主动传送感测光束或分析目标信息;此外,通过IRS建立的虚拟联系反映的不同目标的回声在BS具有相同的方向性。在本文中,我们研究一个由多亚特纳BS和多目标感测IRS组成的无线系统,在这个系统中,对矢量成形矢量和IRS遥感阶段的变异进行优化,以提高感测性能;为了满足不同的感测要求,例如最低限度收到的能量和最低感测频率,我们建议采用三种新的IRS辅助感测方法:时间划分(TD)、信号序列(SS)遥感和混合式TD-SS感测。首先,在技术感测方面,遥感任务是按时间顺序进行的。随后,一个新型的信号序列(SS)的感测计划旨在提高感测效率,通过建立弹性感测图和感测目标,同时提出在SIS的感测目标之间建立弹性感测图。