Language Supervised Human Action Recognition with Salient Fusion: Construction Worker Action Recognition as a Use Case
- URL: http://arxiv.org/abs/2410.01962v1
- Date: Wed, 2 Oct 2024 19:10:23 GMT
- Title: Language Supervised Human Action Recognition with Salient Fusion: Construction Worker Action Recognition as a Use Case
- Authors: Mohammad Mahdavian, Mohammad Loni, Mo Chen,
- Abstract summary: We introduce a novel approach to Human Action Recognition (HAR) based on skeleton and visual cues.
We employ learnable prompts for the language model conditioned on the skeleton modality to optimize feature representation.
We introduce a new dataset tailored for real-world robotic applications in construction sites, featuring visual, skeleton, and depth data modalities.
- Score: 8.26451988845854
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: Detecting human actions is a crucial task for autonomous robots and vehicles, often requiring the integration of various data modalities for improved accuracy. In this study, we introduce a novel approach to Human Action Recognition (HAR) based on skeleton and visual cues. Our method leverages a language model to guide the feature extraction process in the skeleton encoder. Specifically, we employ learnable prompts for the language model conditioned on the skeleton modality to optimize feature representation. Furthermore, we propose a fusion mechanism that combines dual-modality features using a salient fusion module, incorporating attention and transformer mechanisms to address the modalities' high dimensionality. This fusion process prioritizes informative video frames and body joints, enhancing the recognition accuracy of human actions. Additionally, we introduce a new dataset tailored for real-world robotic applications in construction sites, featuring visual, skeleton, and depth data modalities, named VolvoConstAct. This dataset serves to facilitate the training and evaluation of machine learning models to instruct autonomous construction machines for performing necessary tasks in the real world construction zones. To evaluate our approach, we conduct experiments on our dataset as well as three widely used public datasets, NTU-RGB+D, NTU-RGB+D120 and NW-UCLA. Results reveal that our proposed method achieves promising performance across all datasets, demonstrating its robustness and potential for various applications. The codes and dataset are available at: https://mmahdavian.github.io/ls_har/
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