This paper presents an in-band Full Duplex (FD) integrated sensing and communications system comprising a holographic Multiple-Input Multiple-Output (MIMO) base station, which is capable to simultaneously communicate with multiple users in the downlink direction, while sensing targets being randomly distributed within its coverage area. Considering near-field wireless operation at THz frequencies, the FD node adopts dynamic metasurface antenna panels for both transmission and reception, which consist of massive numbers of sub-wavelength-spaced metamaterials, enabling reduced cost and power consumption analog precoding and combining. We devise an optimization framework for the FD node's reconfigurable parameters with the dual objective of maximizing the targets' parameters estimation accuracy and the downlink communication performance. Our simulation results verify the integrated sensing and communications capability of the proposed FD holographic MIMO system, showcasing the interplays among its various design parameters.
翻译:本文介绍了由全色多投入多输出(MIMO)基本站组成的带内全复式综合遥感和通信系统,该站能够同时与下行方向的多个用户进行通信,而遥感目标则在其覆盖区内随机分布。考虑到Thz频率的近地无线操作,FD节采用动态超表层天线板进行传输和接收,该天线板由大量次波长空格元材料组成,能够降低成本和电力消耗,模拟编码和合并。我们为FD节的可重新配置参数设计了一个优化框架,其双重目标是最大限度地实现目标参数估计准确性和下行连接通信性。我们的模拟结果核查了拟议的FD全息移动MIMO系统的综合遥感和通信能力,展示了其各种设计参数之间的相互作用。</s>