Publication:
Hybrid RIS-Empowered Reflection and Decode-and-Forward Relaying for Coverage Extension

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Institute of Electrical and Electronics Engineers (IEEE)

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In this letter, we introduce two hybrid transmission schemes combining a passive reconfigurable intelligent surface (RIS) with decode-and-forward relaying in a synergistic manner. The proposed schemes offer a flexible as well as cost- and power-efficient solution for coverage extension in future generation wireless networks. We present closed-form expressions for the end-to-end signal-to-noise ratio of both schemes and a sequential optimization algorithm for the power allocation and the RIS phase configurations. Our computer simulations and theoretical analysis demonstrate that the RIS and relaying technologies enhance the achievable rate and error performance remarkably when working complementary to each other, rather than being considered as competing technologies.

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IEEE Communications Letters

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1089-7798

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OPEN

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Optimization, Signal Processing (eess.SP), FOS: Computer and information sciences, Signal to noise ratio, Computer Science - Information Theory, Information Theory (cs.IT), Fading channels, Reliability, Relays, Reconfigurable intelligent surface, Telecommunications, FOS: Electrical engineering, electronic engineering, information engineering, Relays, Signal to noise ratio, Optimization, Fading channels, Random variables, Wireless networks, Reliability, Relaying, Reconfigurable intelligent surface, Random variables, Relaying, Electrical Engineering and Systems Science - Signal Processing, Wireless networks

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