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- W4387319174 abstract "In this work, we present a novel physics-informed machine learning (PIML)-based neural-network device modeling that predicts both device performance and spatial physical quantities in real-time. Using cutting-edge technologies such as physics-informed neural network (NN) and physics-informed deep operator networks, our approach suggests interpolation and extrapolation strategies in device physics modeling. Despite being trained with a small number of bias voltages, our model demonstrates remarkable accuracy, with a mean absolute percentage error (MAPE) of 0.12% for predicting potential for interpolation and 0.19% for extrapolation. Our approach can be used for data-efficient NN modeling for TCAD and real-time physics analysis in the spatial domain." @default.
- W4387319174 created "2023-10-04" @default.
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- W4387319174 date "2023-01-01" @default.
- W4387319174 modified "2023-10-05" @default.
- W4387319174 title "A Novel Neural-Network Device Modeling Based on Physics-Informed Machine Learning" @default.
- W4387319174 doi "https://doi.org/10.1109/ted.2023.3316635" @default.
- W4387319174 hasPublicationYear "2023" @default.
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