School of Mechanical and Vehicle Engineering, Linyi University, Linyi 276000, China
| Abstract: | This study aims to explore the application of fiber optic grating sensors in wearable human physiological parameter acquisition systems, providing technical support for health management and medical assistance services. The appropriate packaging method of this design ensures that the fiber optic grating will not be unnecessarily damaged in non detection states, and the deformation is only caused by the deformation of key parts of the human body. With compensation for human body temperature, the strain at the point to be measured can be measured. Therefore, a design concept of embedding fiber optic grating sensors into clothing is proposed, which enables the collection of physiological parameters of the human body through wearing clothing. It has strong anti-interference ability, high accuracy of measurement results, can be measured repeatedly, and has minimal impact on normal human activities. |
| Keywords: | Fiber Optic Grating Sensors; Wearable; Human Physiological Parameters; Collection Recognitio |
| DOI: | 10.57237/j.mse.2024.02.001 |
| [1] | 陈鹏宇, 钟年丙, 何雪丰, 等. 壳聚糖/聚乙烯醇/纳米碳粉复合物涂覆光纤布拉格光栅湿度传感器 [J]. 光学学报, 2024, 44(04): 344-353. |
| [2] | 化彦杰, 崔建涛, 张民生. 基于GA-BP神经网络的光纤光栅应变传感器原位校准方法 [J]. 机械设计与研究, 2024, 40(01): 249-254. |
| [3] | 贾振安, 张恒, 高宏, 等. 光纤激光传感器结构发展综述[J]. 光通信技术, 2024, 48(01): 1-6. |
| [4] | 李明辉, 黄鹏宇, 陈诗, 等. 基于光纤光栅的风机叶片应变与振动监测技术 [J]. 南京航空航天大学学报, 2023, 55(05): 898-904. |
| [5] | Liu J. Bo F. Chang L. et al. Emerging material platforms for integrated microcavity photonics. Sci China-Phys Mech Astron. 2022. 65: 104201. |
| [6] | Bai H. Li S. Barreiros J, et al. Stretchable distrib uted fib er-optic sensors. Science, 2020. 370: 848–852. |
| [7] | 刘梦亭, 赵丽红. 基于ARM11S3C6410与GPRS的智能家居远程控制系统 [J]. 现代电子技术, 2015(5): 27-30. |
| [8] | 韩嘉, 叶青, 王倩. 基于物联网技术的智能远程医疗系统构建 [J]. 中国医疗设备, 2014(6): 68-70. |
| [9] | 胡盛寿, 高润霖, 刘力生, 等. 《中国心血管病报告》概要[J]. 中国循环杂志, 2019, 34(3): 209-220. |
| [10] | 胡仲春, 翟传伟, 田文浩, 等. 新型光纤光栅压力传感器承压面厚度对比研究 [J]. 中国新技术新产品, 2023, (12): 11-13. |
| [11] | 李驰, 鲁志琪, 任杰, 等. 基于飞秒激光直写的高折射率光纤光栅传感器 [J]. 压电与声光, 2023, 45(03): 445-449. |
| [12] | 吴兆龙. 基于云平台的光纤光栅睡眠监测系统 [D]. 齐鲁工业大学, 2020. |
We invite active, qualified and high profile scientists and researchers to join as Editorial Board Members.
Join UsScholars with a strong interest in reviewing are invited to join the reviewer panel to ensure the quality of the research to be published.
Join Us