Optimization of Reconfigurable Intelligent Surfaces Through Trace Maximization
Akbar Sayeed

TL;DR
This paper proposes an optimized RIS design based on trace maximization to enhance wireless link capacity, demonstrating significant gains at low SNRs through eigenvector-based solutions in multipath MIMO channels.
Contribution
It introduces a novel RIS optimization method using trace maximization and eigenvector computation, applicable to both diagonal and general RIS matrices, improving capacity performance.
Findings
Optimized RIS designs outperform baseline and phase-only designs at low SNRs.
Eigenvector-based solutions effectively maximize the link capacity.
Performance varies with multipath richness and line-of-sight conditions.
Abstract
Reconfigurable Intelligent Surfaces (RIS) have received significant attention recently as an innovation for enhanced connectivity, capacity, and energy efficiency in future wireless networks. Recent works indicate that such RIS-augmented communications can significantly enhance performance by intelligently shaping the characteristics of the multipath propagation environment to focus the energy in a desired direction and to circumvent impediments such as blockage, especially for communication at millimeter-wave (mmW), Terahertz (THz) and higher frequencies. In this paper, we investigate optimized (amplitude and phase) RIS design in a point-to-point multipath MIMO link and study the impact on link capacity under the assumption of perfect channel state information at the transmitter (TX), receiver (RX) and RIS. Specifically, we propose RIS design based on the maximization of the trace of…
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Taxonomy
TopicsAdvanced Wireless Communication Technologies · Indoor and Outdoor Localization Technologies · Satellite Communication Systems
