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人体活动识别中的最新传感技术:综述。

The State-of-the-Art Sensing Techniques in Human Activity Recognition: A Survey.

机构信息

German Research Centre for Artificial Intelligence (DFKI), 67663 Kaiserslautern, Germany.

出版信息

Sensors (Basel). 2022 Jun 17;22(12):4596. doi: 10.3390/s22124596.

Abstract

Human activity recognition (HAR) has become an intensive research topic in the past decade because of the pervasive user scenarios and the overwhelming development of advanced algorithms and novel sensing approaches. Previous HAR-related sensing surveys were primarily focused on either a specific branch such as wearable sensing and video-based sensing or a full-stack presentation of both sensing and data processing techniques, resulting in weak focus on HAR-related sensing techniques. This work tries to present a thorough, in-depth survey on the state-of-the-art sensing modalities in HAR tasks to supply a solid understanding of the variant sensing principles for younger researchers of the community. First, we categorized the HAR-related sensing modalities into five classes: mechanical kinematic sensing, field-based sensing, wave-based sensing, physiological sensing, and hybrid/others. Specific sensing modalities are then presented in each category, and a thorough description of the sensing tricks and the latest related works were given. We also discussed the strengths and weaknesses of each modality across the categorization so that newcomers could have a better overview of the characteristics of each sensing modality for HAR tasks and choose the proper approaches for their specific application. Finally, we summarized the presented sensing techniques with a comparison concerning selected performance metrics and proposed a few outlooks on the future sensing techniques used for HAR tasks.

摘要

人体活动识别 (HAR) 已成为过去十年中一个密集的研究课题,因为广泛的用户场景和先进算法以及新型传感方法的发展。之前与 HAR 相关的传感调查主要集中在特定分支,如可穿戴传感和基于视频的传感,或全面介绍传感和数据处理技术,导致对 HAR 相关传感技术的关注较弱。这项工作试图对 HAR 任务中的最新传感模式进行全面、深入的调查,为社区的年轻研究人员提供对各种传感原理的深入了解。首先,我们将 HAR 相关的传感模式分为五类:机械运动学传感、场传感、波传感、生理传感和混合/其他。然后在每个类别中介绍特定的传感模式,并对传感技巧和最新相关工作进行了详细描述。我们还讨论了每个模式在分类中的优缺点,以便新手能够更好地了解每个传感模式用于 HAR 任务的特点,并为他们特定的应用选择合适的方法。最后,我们总结了所提出的传感技术,并在选定的性能指标上进行了比较,并对未来用于 HAR 任务的传感技术提出了一些展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f8f/9229953/36242792319d/sensors-22-04596-g001.jpg

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