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Open AccessJournal ArticleDOI

Channel Estimation and User Localization for IRS-Assisted MIMO-OFDM Systems

- 01 Apr 2022 - 
- Vol. 21, Iss: 4, pp 2320-2335
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TLDR
In this paper , a twin-IRS structure consisting of two IRS planes with a relative spatial rotation is proposed to obtain the necessary channel parameters, i.e., angles, delays and gains, for environment mapping and user localization.
Abstract
We consider the channel estimation problem and the channel-based wireless applications in multiple-input multiple-output orthogonal frequency division multiplexing systems assisted by intelligent reconfigurable surfaces (IRSs). To obtain the necessary channel parameters, i.e., angles, delays and gains, for environment mapping and user localization, we propose a novel twin-IRS structure consisting of two IRS planes with a relative spatial rotation. We model the training signal from the user equipment to the base station via IRSs as a third-order canonical polyadic tensor with a maximal tensor rank equal to the number of IRS unit cells. We present four designs of IRS training coefficients, i.e., random, structured, grouping and sparse patterns, and analyze the corresponding uniqueness conditions of channel estimation. We extract the cascaded channel parameters by leveraging array signal processing and atomic norm denoising techniques. Based on the characteristics of the twin-IRS structures, we formulate a nonlinear equation system to exactly recover the multipath parameters by two efficient decoupling modes. We realize environment mapping and user localization based on the estimated channel parameters. Simulation results indicate that the proposed twin-IRS structure and estimation schemes can recover the channel state information with remarkable accuracy, thereby offering a centimeter-level resolution of user positioning.

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Citations
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WiFi Access Points Line-of-Sight Detection for Indoor Positioning Using the Signal Round Trip Time

TL;DR: In this paper , the authors proposed a feature selection algorithm for non-line-of-sight identification of the WiFi Access Points using multi-scale selection and machine learning-based weighting methods to choose the most optimal feature sets.
Journal ArticleDOI

Conformal IRS-Empowered MIMO-OFDM: Channel Estimation and Environment Mapping

TL;DR: Simulation results indicate that the proposed conformal IRS structure and estimation schemes can recover the channel state information with remarkable accuracy, thereby offering a centimeter-level resolution of environment mapping.
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Improving the performance of multi-IRS aided millimeter-wave communication systems by transmit antenna selection

TL;DR: In this paper , the authors proposed applying multiple IRSs and transmit antenna selection (TAS) in millimeter-wave (MW) communication systems to improve the performance and reduce the computational complexity at the user.
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Bayesian User Localization and Tracking for Reconfigurable Intelligent Surface Aided MIMO Systems

TL;DR: In this article , a Bayesian user localization and tracking (BULT) algorithm is proposed to estimate and track the user position and the angle-of-arrival (AoAs) at the user in an online fashion.
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A Novel Intelligent Channel Estimation Strategy for the 5G Wireless Communication Systems

TL;DR: In this article , a hybrid technique called Chimp-based CatBoost channel estimation (CbCBCE) was proposed, which combines the Chimp optimization algorithm and the CatBoost algorithm.
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