F2D-SIFPNet: a frequency 2D Slow-I-Fast-P network for faster compressed video action recognition
Author:
Funder
Natural Science Foundation of Beijing Municipality
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s10489-024-05408-y.pdf
Reference76 articles.
1. Abbaszadeh Shahri A, Chunling S, Larsson S (2023) A hybrid ensemble-based automated deep learning approach to generate 3d geo-models and uncertainty analysis. Eng Comput pp 1–16
2. Abbaszadeh Shahri A, Maghsoudi Moud F (2021) Landslide susceptibility mapping using hybridized block modular intelligence model. Bull Eng Geol Env 80:267–284
3. Abbaszadeh Shahri A, Shan C, Larsson S (2022) A novel approach to uncertainty quantification in groundwater table modeling by automated predictive deep learning. Nat Resour Res 31(3):1351–1373
4. Aggarwal AK, Jaidka P (2022) Segmentation of crop images for crop yield prediction. Int J Biol Biomed 7
5. Ahn D, Kim S, Hong H, Ko BC (2023) Star-transformer: a spatio-temporal cross attention transformer for human action recognition. In: Proceedings of the IEEE/CVF winter conference on applications of computer vision, pp 3330–3339
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