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Main Authors: Xia, Qingxin, Maekawa, Takuya, Morales, Jaime, Hara, Takahiro, Oshima, Hirotomo, Fukuda, Masamitsu, Namioka, Yasuo
Format: Preprint
Published: 2024
Subjects:
Online Access:https://arxiv.org/abs/2404.13581
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author Xia, Qingxin
Maekawa, Takuya
Morales, Jaime
Hara, Takahiro
Oshima, Hirotomo
Fukuda, Masamitsu
Namioka, Yasuo
author_facet Xia, Qingxin
Maekawa, Takuya
Morales, Jaime
Hara, Takahiro
Oshima, Hirotomo
Fukuda, Masamitsu
Namioka, Yasuo
contents In this study, we investigate a new self-supervised learning (SSL) approach for complex work activity recognition using wearable sensors. Owing to the cost of labeled sensor data collection, SSL methods for human activity recognition (HAR) that effectively use unlabeled data for pretraining have attracted attention. However, applying prior SSL to complex work activities such as packaging works is challenging because the observed data vary considerably depending on situations such as the number of items to pack and the size of the items in the case of packaging works. In this study, we focus on sensor data corresponding to characteristic and necessary actions (sensor data motifs) in a specific activity such as a stretching packing tape action in an assembling a box activity, and \textcolor{black}{try} to train a neural network in self-supervised learning so that it identifies occurrences of the characteristic actions, i.e., Motif Identification Learning (MoIL). The feature extractor in the network is used in the downstream task, i.e., work activity recognition, enabling precise activity recognition containing characteristic actions with limited labeled training data. The MoIL approach was evaluated on real-world work activity data and it achieved state-of-the-art performance under limited training labels.
format Preprint
id arxiv_https___arxiv_org_abs_2404_13581
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Preliminary Investigation of SSL for Complex Work Activity Recognition in Industrial Domain via MoIL
Xia, Qingxin
Maekawa, Takuya
Morales, Jaime
Hara, Takahiro
Oshima, Hirotomo
Fukuda, Masamitsu
Namioka, Yasuo
Human-Computer Interaction
In this study, we investigate a new self-supervised learning (SSL) approach for complex work activity recognition using wearable sensors. Owing to the cost of labeled sensor data collection, SSL methods for human activity recognition (HAR) that effectively use unlabeled data for pretraining have attracted attention. However, applying prior SSL to complex work activities such as packaging works is challenging because the observed data vary considerably depending on situations such as the number of items to pack and the size of the items in the case of packaging works. In this study, we focus on sensor data corresponding to characteristic and necessary actions (sensor data motifs) in a specific activity such as a stretching packing tape action in an assembling a box activity, and \textcolor{black}{try} to train a neural network in self-supervised learning so that it identifies occurrences of the characteristic actions, i.e., Motif Identification Learning (MoIL). The feature extractor in the network is used in the downstream task, i.e., work activity recognition, enabling precise activity recognition containing characteristic actions with limited labeled training data. The MoIL approach was evaluated on real-world work activity data and it achieved state-of-the-art performance under limited training labels.
title Preliminary Investigation of SSL for Complex Work Activity Recognition in Industrial Domain via MoIL
topic Human-Computer Interaction
url https://arxiv.org/abs/2404.13581