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SoN: Selective Optimal Network for smartphone-based indoor localization in real-time

Title
SoN: Selective Optimal Network for smartphone-based indoor localization in real-time
Author(s)
Lee, KyungsuLee, HaeyunHwang, Jae Youn
Issued Date
2025-05
Citation
Expert Systems with Applications, v.272
Type
Article
Author Keywords
Deep learningSemi-supervised learningEfficient learningScene recognitionIndoor localization
ISSN
0957-4174
Abstract
Deep learning-based scene recognition algorithms have been developed for real-time application in indoor localization systems. However, owing to the slow calculation time resulting from the deep structure of convolutional neural networks, deep learning-based algorithms have limitations in the usage of real-time applications, despite their high accuracy in classification tasks. To significantly reduce the computation time of these algorithms and slightly improve their accuracy, we thus propose a path-selective deep learning network, denoted as Selective Optimal Network (SoN). The SoN selectively uses the depth-variable networks depending on a new indicator, denoted as the classification-complexity of a source image. The SoN reduces the prediction time by selecting optimal depth for the baseline networks corresponding to the input samples. The network was evaluated using two public datasets and two custom datasets for indoor localization and scene classification, respectively. The experimental results indicated that, compared to other deep learning models, the SoN exhibited improved accuracy and enhanced the processing speed by up to 78.59%. Additionally, the SoN was applied to a smartphone-based indoor positioning system in real-time. The results indicated that the SoN shows excellent performance for rapid and accurate classification in real-time applications of indoor localization systems. © 2025
URI
http://hdl.handle.net/20.500.11750/58156
DOI
10.1016/j.eswa.2025.126639
Publisher
Elsevier
Related Researcher
  • 황재윤 Hwang, Jae Youn
  • Research Interests Multimodal Imaging; High-Frequency Ultrasound Microbeam; Ultrasound Imaging and Analysis; 스마트 헬스케어; Biomedical optical system
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Appears in Collections:
Department of Electrical Engineering and Computer Science MBIS(Multimodal Biomedical Imaging and System) Laboratory 1. Journal Articles

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