An Overview on IRS-Enabled Sensing and Communications for 6G: Architectures, Fundamental Limits, and Joint Beamforming Designs

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Hauptverfasser: Song, Xianxin, Fang, Yuan, Wang, Feng, Ren, Zixiang, Yu, Xianghao, Zhang, Ye, Liu, Fan, Xu, Jie, Ng, Derrick Wing Kwan, Zhang, Rui, Cui, Shuguang
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Veröffentlicht: 2024
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author Song, Xianxin
Fang, Yuan
Wang, Feng
Ren, Zixiang
Yu, Xianghao
Zhang, Ye
Liu, Fan
Xu, Jie
Ng, Derrick Wing Kwan
Zhang, Rui
Cui, Shuguang
author_facet Song, Xianxin
Fang, Yuan
Wang, Feng
Ren, Zixiang
Yu, Xianghao
Zhang, Ye
Liu, Fan
Xu, Jie
Ng, Derrick Wing Kwan
Zhang, Rui
Cui, Shuguang
contents This paper presents an overview on intelligent reflecting surface (IRS)-enabled sensing and communication for the forthcoming sixth-generation (6G) wireless networks, in which IRSs are strategically deployed to proactively reconfigure wireless environments to improve both sensing and communication (S&C) performance. First, we exploit a single IRS to enable wireless sensing in the base station's (BS's) non-line-of-sight (NLoS) area. In particular, we present three IRS-enabled NLoS target sensing architectures with fully-passive, semi-passive, and active IRSs, respectively. We compare their pros and cons by analyzing the fundamental sensing performance limits for target detection and parameter estimation. Next, we consider a single IRS to facilitate integrated sensing and communication (ISAC), in which the transmit signals at the BS are used for achieving both S&C functionalities, aided by the IRS through reflective beamforming. We present joint transmit signal and receiver processing designs for realizing efficient ISAC, and jointly optimize the transmit beamforming at the BS and reflective beamforming at the IRS to balance the fundamental performance tradeoff between S&C. Furthermore, we discuss multi-IRS networked ISAC, by particularly focusing on multi-IRS-enabled multi-link ISAC, multi-region ISAC, and ISAC signal routing, respectively. Finally, we highlight various promising research topics in this area to motivate future work.
format Preprint
id arxiv_https___arxiv_org_abs_2411_06687
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle An Overview on IRS-Enabled Sensing and Communications for 6G: Architectures, Fundamental Limits, and Joint Beamforming Designs
Song, Xianxin
Fang, Yuan
Wang, Feng
Ren, Zixiang
Yu, Xianghao
Zhang, Ye
Liu, Fan
Xu, Jie
Ng, Derrick Wing Kwan
Zhang, Rui
Cui, Shuguang
Signal Processing
This paper presents an overview on intelligent reflecting surface (IRS)-enabled sensing and communication for the forthcoming sixth-generation (6G) wireless networks, in which IRSs are strategically deployed to proactively reconfigure wireless environments to improve both sensing and communication (S&C) performance. First, we exploit a single IRS to enable wireless sensing in the base station's (BS's) non-line-of-sight (NLoS) area. In particular, we present three IRS-enabled NLoS target sensing architectures with fully-passive, semi-passive, and active IRSs, respectively. We compare their pros and cons by analyzing the fundamental sensing performance limits for target detection and parameter estimation. Next, we consider a single IRS to facilitate integrated sensing and communication (ISAC), in which the transmit signals at the BS are used for achieving both S&C functionalities, aided by the IRS through reflective beamforming. We present joint transmit signal and receiver processing designs for realizing efficient ISAC, and jointly optimize the transmit beamforming at the BS and reflective beamforming at the IRS to balance the fundamental performance tradeoff between S&C. Furthermore, we discuss multi-IRS networked ISAC, by particularly focusing on multi-IRS-enabled multi-link ISAC, multi-region ISAC, and ISAC signal routing, respectively. Finally, we highlight various promising research topics in this area to motivate future work.
title An Overview on IRS-Enabled Sensing and Communications for 6G: Architectures, Fundamental Limits, and Joint Beamforming Designs
topic Signal Processing
url https://arxiv.org/abs/2411.06687