Back to Search Start Over

Sim2Real in Reconstructive Spectroscopy: Deep Learning with Augmented Device-Informed Data Simulation

Authors :
Chen, Jiyi
Li, Pengyu
Wang, Yutong
Ku, Pei-Cheng
Qu, Qing
Chen, Jiyi
Li, Pengyu
Wang, Yutong
Ku, Pei-Cheng
Qu, Qing
Publication Year :
2024

Abstract

This work proposes a deep learning (DL)-based framework, namely Sim2Real, for spectral signal reconstruction in reconstructive spectroscopy, focusing on efficient data sampling and fast inference time. The work focuses on the challenge of reconstructing real-world spectral signals under the extreme setting where only device-informed simulated data are available for training. Such device-informed simulated data are much easier to collect than real-world data but exhibit large distribution shifts from their real-world counterparts. To leverage such simulated data effectively, a hierarchical data augmentation strategy is introduced to mitigate the adverse effects of this domain shift, and a corresponding neural network for the spectral signal reconstruction with our augmented data is designed. Experiments using a real dataset measured from our spectrometer device demonstrate that Sim2Real achieves significant speed-up during the inference while attaining on-par performance with the state-of-the-art optimization-based methods.

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1438538074
Document Type :
Electronic Resource