A review of AI and physics-informed neural network methods for electromagnetic and nanophotonic design, with no original results.
Deep-Learning-Aided Detection for Reconfigurable Intelligent Surfaces
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
This paper presents a deep learning (DL) approach for estimating and detecting symbols in signals transmitted through reconfigurable intelligent surfaces (RIS). The proposed network utilizes fully connected layers to estimate channels and phase angles from a reflected signal received through an RIS. Because the proposed network can estimate and detect symbols without any pilot signaling, this method reduces the overhead required for transmission. The improvements achieved by this method are quantified in terms of the bit-error rate, outperforming traditional detectors.
fields
physics.optics 1years
2025 1verdicts
UNVERDICTED 1representative citing papers
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Physics-Informed Neural Networks in Electromagnetic and Nanophotonic Design
A review of AI and physics-informed neural network methods for electromagnetic and nanophotonic design, with no original results.