Publication: Over-the-air beamforming with reconfigurable intelligent surfaces
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Frontiers Media SA
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Abstract
Reconfigurable intelligent surface (RIS)-empowered communication is a revolutionary technology that enables to manipulate wireless propagation environment via smartly controllable low-cost reflecting surfaces. However, in order to outperform conventional communication systems, an RIS-aided system with solely passive reflection requires an extremely large surface. To meet this challenge, the concept of active RIS, which performs simultaneous amplification and reflection on the incident signal at the expense of additional power consumption, has been recently introduced. In this paper, deploying an active RIS, we propose a novel beamforming concept, over-the-air beamforming, for RIS-aided multi-user multiple-input single-output (MISO) transmission schemes without requiring any pre/post signal processing hardware designs at the transmitter and receiver sides. In the proposed over-the-air beamforming-based transmission scheme, the reflection coefficients of the active RIS elements are customized to maximize the sum-rate gain. To tackle this issue, first, a non-convex quadratically constrained quadratic programming (QCQP) problem is formulated. Then, using semidefinite relaxation (SDR) approach, this optimization problem is converted to a convex feasibility problem, which is efficiently solved using the CVX optimization toolbox. Moreover, taking inspiration from this beamforming technique, a novel high-rate receive index modulation (IM) scheme with a low-complexity sub-optimal detector is developed. Through comprehensive simulation results, the sum-rate and bit error rate (BER) performance of the proposed designs are investigated.
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Signal Processing (eess.SP), FOS: Computer and information sciences, FOS: Mechanical engineering, Quadratic programming, Beamforming Optimization, Social psychology, Engineering, Relaxation (psychology), Psychology, Optimization problem, Smart Radio Environments, Communication. Mass media, Mathematical optimization, index modulation (IM), P87-96, Convex optimization, Programming language, Regular polygon, Algorithm, FOS: Psychology, Bit error rate, Physical Sciences, Wireless, Telecommunications, reconfigurable intelligent surface (RIS), Intelligent Reflecting Surfaces, Computer Science - Information Theory, multi-user (MU) transmission, Aerospace Engineering, Geometry, Ocean Engineering, Interference (communication), Beamforming, FOS: Electrical engineering, electronic engineering, information engineering, FOS: Mathematics, Reconfigurable Intelligent Surfaces, Electrical Engineering and Systems Science - Signal Processing, Electrical and Electronic Engineering, active RIS, Antenna Design and Applications, Electronic engineering, Reflection (computer programming), Information Theory (cs.IT), Transmitter, Underwater Acoustic Sensor Networks and Communication, Detector, Intelligent Reflecting Surfaces in Wireless Communications, Computer science, Transmission (telecommunications), over-the-air beamforming, Second-order cone programming, Channel (broadcasting), Transmitter power output, Mathematics