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Hybrid handcrafted and learned feature framework for human action recognition

delete2022-02-12
delete11
PRE
AI
C
Chaolong Zhang
Y
Yuanping Xu *
Z
Zhijie Xu
J
Jian Huang
J
Jun Lu
DOI:10.1007/s10489-021-03068-wdelete
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Abstract

Abstract

En 中文
Recognising human actions in video is a challenging task in real-world. Dense trajectory (DT) offers accurate recording of motions over time that is rich in dynamic information. However, DT models lack the mechanism to distinguish dominant motions from secondary ones over separable frequency bands and directions. By contrast, deep learning-based methods are promising over the challenge though still suffering from limited capacity in handling complex temporal information, not mentioning huge datasets needed to guide the training. To take the advantage of semantical meaningful and handcrafted video features through feature engineering, this study integrates the discrete wavelet transform (DWT) technique into the DT model for gaining more descriptive human action features. Through exploring the pre-trained dual-stream CNN-RNN models, learned features can be integrated with the handcrafted ones to satisfy stringent analytical requirements within the spatial-temporal domain. This hybrid feature framework generates efficient Fisher Vectors through a novel Bag of Temporal Features scheme and is capable of encoding video events whilst speeding up action recognition for real-world applications. Evaluation of the design has shown superior recognition performance over existing benchmark systems. It has also demonstrated promising applicability and extensibility for solving challenging real-world human action recognition problems.
Keywords:
Action recognition
Dense trajectories
Bag-of-temporal features
Visual stream
Motion stream

Journal

Applied Intelligence cover
Applied Intelligence
IF:
3.5
Papers:
7.5K
Citations:
1.7W

Organization

U
University of Huddersfield
Scholars:
3.0K
Papers: 3.2K
Citations: 3.6K
C
Chengdu University of Information Technology
Scholars:
2.9K
Papers: 2.3K
Citations: 2.4K