Cram\'er-Rao Bound Minimization for IRS-Enabled Multiuser Integrated Sensing and Communications
Xianxin Song, Xiaoqi Qin, Jie Xu, and Rui Zhang

TL;DR
This paper proposes a joint beamforming optimization for IRS-enabled multiuser ISAC systems to minimize the Cramér-Rao bound for target estimation, enhancing sensing accuracy while satisfying communication constraints.
Contribution
It introduces a novel CRB minimization framework for IRS-assisted multiuser sensing and communication, with algorithms for joint transmit and reflective beamforming optimization.
Findings
Proposed design achieves lower CRB than benchmarks.
Sensing interference cancellation benefits multi-user scenarios.
Joint optimization improves sensing and communication performance.
Abstract
This paper investigates an intelligent reflecting surface (IRS) enabled multiuser integrated sensing and communications (ISAC) system, which consists of one multi-antenna base station (BS), one IRS, multiple single-antenna communication users (CUs), and one target at the non-line-of-sight (NLoS) region of the BS. The IRS is deployed to not only assist the communication from the BS to the CUs, but also enable the BS's NLoS target sensing based on the echo signals from the BS-IRS-target-IRS-BS link. We consider two types of targets, namely the extended and point targets, for which the BS aims to estimate the complete target response matrix and the target direction-of-arrival (DoA) with respect to the IRS, respectively. To provide full degrees of freedom for sensing, we consider that the BS sends dedicated sensing signals in addition to the communication signals. Accordingly, we model two…
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Taxonomy
TopicsAdvanced Wireless Communication Technologies · Underwater Vehicles and Communication Systems · Satellite Communication Systems
MethodsBalanced Selection
