Contactless Respiration Monitoring Using Wi-Fi and Artificial Neural Network Detection Method

被引:3
|
作者
Kontou, Panagiota [1 ]
Smida, Souheil Ben [1 ]
Anagnostou, Dimitris E. [1 ]
机构
[1] Heriot Watt Univ, Inst Sensors Signals & Syst, Edinburgh EH14 4AS, Scotland
基金
欧盟地平线“2020”;
关键词
Wireless fidelity; Heart rate; Monitoring; Wireless communication; Receiving antennas; IEEE 802.11n Standard; Biomedical monitoring; Wi-Fi; channel state information (CSI); respiration frequency; artificial neural network (ANN); FREQUENCY ESTIMATION;
D O I
10.1109/JBHI.2023.3337001
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Detecting respiration in a non-intrusive manner is beneficial not only for convenience but also for cases where the traditional ways cannot be applied. This paper presents a novel simple low-cost system where ambient Wi-Fi signals are acquired by a third-party tool (Nexmon) installed in a Raspberry Pi and is able to detect the respiration time domain waveform of a person. This tool was selected as it uses 80 MHz bandwidth of the Wi-Fi signal and supports the latest implementations that are widely used, such as 802.11ac. A neural network is developed to detect the respiration frequency of the waveform. Generated waves emulating respiration waveforms were used for training, validating, and testing the model. The model can be applied to unseen real measurement data and successfully determine the breathing frequency with a very low average error of 4.7% tested in 20 measurement datasets.
引用
收藏
页码:1297 / 1308
页数:12
相关论文
共 50 条
  • [1] Contactless Respiration Monitoring During Sleep with a pair of Wi-Fi devices
    Zhuo, Hongyang
    Zhong, Qinghua
    Zhuo, Xin
    2022 IEEE MTT-S INTERNATIONAL MICROWAVE BIOMEDICAL CONFERENCE (IMBIOC), 2022, : 66 - 68
  • [2] Monitoring pig respiration frequency using Wi-Fi wireless sensing technology
    Lu Y.
    Li G.
    Hao Y.
    Lin Q.
    Nongye Gongcheng Xuebao/Transactions of the Chinese Society of Agricultural Engineering, 2019, 35 (24): : 183 - 190
  • [3] Score Fusion Method by Neural Network Using GPS and Wi-Fi Log Data
    Matsuoka, Katsuya
    Irvan, Mhd
    Kobayashi, Ryosuke
    Yamaguchi, Rie Shigetomi
    PROCEEDINGS OF 2020 INTERNATIONAL SYMPOSIUM ON INFORMATION THEORY AND ITS APPLICATIONS (ISITA2020), 2020, : 470 - 474
  • [4] Preemptive Performance Monitoring of a Large Network of Wi-Fi Hotspots: An Artificial Immune System
    Machaka, Pheeha
    Bagula, Antoine
    WIRED/WIRELESS INTERNET COMMUNICATIONS, 2011, 6649 : 494 - 504
  • [5] Wi-CAS: A Contactless Method for Continuous Indoor Human Activity Sensing Using Wi-Fi Devices
    Hao, Zhanjun
    Zhang, Daiyang
    Dang, Xiaochao
    Liu, Gaoyuan
    Bai, Yanhong
    SENSORS, 2021, 21 (24)
  • [6] TinySense: Multi-User Respiration Detection using Wi-Fi CSI Signals
    Wang, Pei
    Guo, Bin
    Xin, Tong
    Wang, Zhu
    Yu, Zhiwen
    2017 IEEE 19TH INTERNATIONAL CONFERENCE ON E-HEALTH NETWORKING, APPLICATIONS AND SERVICES (HEALTHCOM), 2017,
  • [7] WiPg: Contactless Action Recognition Using Ambient Wi-Fi Signals
    Hao, Zhanjun
    Niu, Juan
    Dang, Xiaochao
    Qiao, Zhiqiang
    SENSORS, 2022, 22 (01)
  • [8] Demo: A Full Human Respiration Detection System Using Commodity Wi-Fi Devices
    Zeng, Youwei
    Yi, Enze
    Wu, Dan
    Gao, Ruiyang
    Zhang, Daqing
    PROCEEDINGS OF THE 2018 ACM INTERNATIONAL JOINT CONFERENCE ON PERVASIVE AND UBIQUITOUS COMPUTING AND PROCEEDINGS OF THE 2018 ACM INTERNATIONAL SYMPOSIUM ON WEARABLE COMPUTERS (UBICOMP/ISWC'18 ADJUNCT), 2018, : 480 - 483
  • [9] Wi-Fi Based Indoor Positioning System with Using Deep Neural Network
    Guney, Selda
    Erdogan, Alperen
    Aktas, Melih
    Ergun, Mert
    2020 43RD INTERNATIONAL CONFERENCE ON TELECOMMUNICATIONS AND SIGNAL PROCESSING (TSP), 2020, : 225 - 228
  • [10] Baby Incubator Monitoring Center Using Wi-Fi Network for Data Transmission
    Lamidi
    Hamzah, Torib
    Triwiyanto
    Nuristadarro
    Tampubolon, Deny Elfredo
    JOURNAL OF BIOMIMETICS BIOMATERIALS AND BIOMEDICAL ENGINEERING, 2022, 55 : 275 - 287