Beamforming Optimization for Multiuser and Multi-Target ISAC With Transceiver Hardware Impairments

波束赋形 计算机科学 收发机 基站 发射机功率输出 最大化 最优化问题 雷达 电子工程 无源雷达 计算机硬件 数学优化 实时计算 滤波器(信号处理) 预编码 计算机工程 匹配滤波器 高斯分布 功率(物理) 通信系统 计算复杂性理论 无线 信噪比(成像) 光学(聚焦) 多用户检测 缩小 迭代法
作者
Zhenyao He,Wei Xu,Zhaohui Yang,Chongwen Huang,Jianfeng Wang,Chau Yuen
出处
期刊:IEEE Transactions on Wireless Communications [Institute of Electrical and Electronics Engineers]
卷期号:25: 10824-10840 被引量:1
标识
DOI:10.1109/twc.2026.3655924
摘要

In this paper, we focus on beamforming optimization for a multiuser and multi-target integrated sensing and communication (ISAC) system with non-ideal hardware at both the base station (BS) and the users. Specifically, by taking into account the impact of hardware impairments encountered in practice, we jointly optimize the transmit and receive beamforming at the ISAC BS to maximize the minimum radar output signal-to-interference-plus-noise ratio (SINR) for the multi-target sensing, subject to the constraints of multiuser communication requirements and transmit power limit. The formulated joint optimization is nonconovex and challenging to solve. To address this intricate optimization task, we start with a single-target scenario, for which we propose an optimal solution. In particular, we prove in theory that, even in the presence of general additive Gaussian distortions caused by transceiver hardware impairments, a matched filter (MF) radar receiver and a transmit beamforming determined through beampattern gain maximization criterion are optimal, which follow the same strategies as an ideal scenario with perfect hardware. Subsequently, for a general multi-target scenario, we derive a series of closed-form optimal radar receive beamforming. By substituting these solutions, we achieve an equivalent problem reformulation with respect to the transmit beamforming and propose an iterative algorithm to solve it. We also extend the optimization method to cases involving more realistic hardware impairments. Finally, we evaluate the effectiveness of the proposed algorithms and highlight their notable advantages compared to existing approaches through simulation results.
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