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一种用于监测人体运动的可穿戴式柔性加速度传感器。

A Wearable Flexible Acceleration Sensor for Monitoring Human Motion.

机构信息

Aerospace Information Research Institute, Chinese Academy of Sciences, Beijing 100094, China.

Institute of Solid Mechanics, Beihang University (BUAA), Beijing 100191, China.

出版信息

Biosensors (Basel). 2022 Aug 10;12(8):620. doi: 10.3390/bios12080620.

Abstract

Skin-inspired flexible wearable acceleration sensors attract much attention due to their advantages of portability, personalized and comfortable experience, and potential application in healthcare monitoring, human-machine interfaces, artificial intelligence, and physical sports performance evaluation. This paper presents a flexible wearable acceleration sensor for monitoring human motion by introducing the island-bridge configuration and serpentine interconnects. Compared with traditional wearable accelerometers, the flexible accelerometer proposed in this paper improves the wearing comfort while reducing the cost of the device. Simulation and experiments under bending, stretching, and torsion conditions demonstrate that the flexible performance of the flexible acceleration sensor can meet the needs of monitoring the daily movement of the human body, and it can work normally under various conditions. The measurement accuracy of the flexible acceleration sensor is verified by comparing it with the data of the commercial acceleration sensor. The flexible acceleration sensor can measure the acceleration and the angular velocity of the human body with six degrees of freedom and recognize the gesture and motion features according to the acceleration characteristics. The presented flexible accelerometers provide great potential in recognizing the motion features that are critical for healthcare monitoring and physical sports performance evaluation.

摘要

由于具有便携性、个性化和舒适体验的优势,以及在医疗保健监测、人机界面、人工智能和体育性能评估等领域的潜在应用,皮肤启发的柔性可穿戴加速度传感器引起了广泛关注。本文通过引入岛桥结构和蛇形互连,介绍了一种用于监测人体运动的柔性可穿戴加速度传感器。与传统的可穿戴加速度计相比,本文提出的柔性加速度计在提高佩戴舒适性的同时降低了设备成本。在弯曲、拉伸和扭转条件下的仿真和实验表明,柔性加速度传感器的柔性性能能够满足监测人体日常运动的需求,并且可以在各种条件下正常工作。通过与商用加速度计的数据进行比较,验证了柔性加速度计的测量精度。柔性加速度计可以测量人体的加速度和角速度,并根据加速度特征识别手势和运动特征。所提出的柔性加速度计在识别对医疗保健监测和体育性能评估至关重要的运动特征方面具有很大的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02d7/9406085/375870b8cc47/biosensors-12-00620-g001.jpg

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