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A reconfigurable intelligent surface (RIS) employs an array of individually-controllable elements to scatter incident signals in a desirable way; for example, to facilitate links between base stations and mobile stations that would otherwise be blocked.
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M. Di Renzo et al. , “Smart Radio Environments Empowered by Reconfigurable Intelligent Surfaces: How It Works, State of Research, and the Road Ahead,” IEEE J. Sel. Areas Comm. , vol. 38, no. 11, pp. 2450–2525, Nov. 2020
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E. Björnson and L. Sanguinetti, “Power Scaling Laws and Near-Field Behaviors of Massive MIMO and Intelligent Reflecting Surfaces,” IEEE Open J. Comm. Soc. , vol. 1, pp. 1306–1324, Sep 2020
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D. Dardari, “Communicating With Large Intelligent Surfaces: Fundamental Limits and Models,” IEEE J. Sel. Areas Comm. , vol. 38, no. 11, pp. 2526–2537, Nov. 2020
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Ö. Özdogan, E. Björnson & E. Larsson, “Intelligent Reflecting Surfaces: Physics, Propagation, and Pathloss Modeling,” IEEE Wireless Comm. Let. , vol. 9, no. 5, pp. 581-585, May 2020
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J.C.B. Garcia, A. Sibille & M. Kamoun, “Reconfigurable Intelligent Surfaces: Bridging the Gap Between Scattering and Reflection,” IEEE J. Sel. Areas Comm. , vol. 38, no. 11, pp. 2538–2547, Nov. 2020
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E. Björnson, Ö. Özdogan, and E.G. Larsson, “Reconfigurable Intelligent Surfaces: Three Myths and Two Critical Questions,” IEEE Comm. Mag. , vol. 58, no. 12, pp. 90–96, Dec. 2020
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W. Tang, et al. , “Wireless Communications with Reconfigurable Intelligent Surface: Path Loss Modeling and Experimental Measurement,” IEEE Trans. Wireless Comm. , vol. 20, no. 1, pp. 421-439, Jan 2021
2021
Closest in time.
M. Najafi, V. Jamali, R. Schober and H.V. Poor, “Physics-based Modeling and Scalable Optimization of Large Intelligent Reflecting Surfaces,” IEEE Trans. Comm. , vol. 69, no. 4, pp. 2673–2691, Apr. 2021
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