论文标题

传输针对多功能MIMO系统集成感应,通信和动力的优化

Transmit Optimization for Multi-functional MIMO Systems Integrating Sensing, Communication, and Powering

论文作者

Chen, Yilong, Hua, Haocheng, Xu, Jie

论文摘要

本文通过研究新的多功能多功能多输入多输出(MIMO)系统,整合了无线传感,通信和动力,统一了集成的传感和通信(ISAC)和同时无线信息和电力传输(SWIPT)。在该系统中,一个多抗Antenna混合访问点(HAP)传输无线信号,与一个多Ant-Antenna信息解码器(ID)接收器通信,无线为一个多Antenna Energy收集(EH)接收器充电,并在同一时间基于ECHO信号对点目标执行雷达传感。在此设置下,我们旨在根据估计分别揭示感应,交流和动力的基本性能权衡限制,分别分别{é} r-Rao Bound(CRB),可实现的通信率和收获的能量水平。为此,我们定义了可实现的CRB速率 - 能量(C-R-E)区域,并通过最大化ID接收器处的可实现速率来表征其帕累托边界,但要取决于目标感测的估计CRB要求,在h-ap处,在EH接收机处收获的能量需求,并在EH接收机处收获的能量需求。我们通过应用先进的凸优化技术获得了半锁定形式的最佳发射协方差解决方案。数值结果表明,与基于时间切换的基准方案相比,我们提出的设计实现了最佳的C-R-E区域边界。

This paper unifies integrated sensing and communication (ISAC) and simultaneous wireless information and power transfer (SWIPT), by investigating a new multi-functional multiple-input multiple-output (MIMO) system integrating wireless sensing, communication, and powering. In this system, one multi-antenna hybrid access point (H-AP) transmits wireless signals to communicate with one multi-antenna information decoding (ID) receiver, wirelessly charge one multi-antenna energy harvesting (EH) receiver, and perform radar sensing for a point target based on the echo signal at the same time. Under this setup, we aim to reveal the fundamental performance tradeoff limits of sensing, communication, and powering, in terms of the estimation Cram{é}r-Rao bound (CRB), achievable communication rate, and harvested energy level, respectively. Towards this end, we define the achievable CRB-rate-energy (C-R-E) region and characterize its Pareto boundary by maximizing the achievable rate at the ID receiver, subject to the estimation CRB requirement for target sensing, the harvested energy requirement at the EH receiver, and the maximum transmit power constraint at the H-AP. We obtain the semi-closed-form optimal transmit covariance solution to the formulated problem by applying advanced convex optimization techniques. Numerical results show the optimal C-R-E region boundary achieved by our proposed design, as compared to the benchmark scheme based on time switching.

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