Preparing Wi-Fi 7 for Healthcare Internet-of-Things
The healthcare Internet of Things (H-IoT) is an interconnection of devices capable of sensing and transmitting information that conveys the status of an individual’s health. The continuous monitoring of an individual’s health for disease diagnosis and early detection is an important application of H...
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| Vydáno v: | Sensors (Basel, Switzerland) Ročník 22; číslo 16; s. 6209 |
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| Abstract | The healthcare Internet of Things (H-IoT) is an interconnection of devices capable of sensing and transmitting information that conveys the status of an individual’s health. The continuous monitoring of an individual’s health for disease diagnosis and early detection is an important application of H-IoT. Ambient assisted living (AAL) entails monitoring a patient’s health to ensure their well-being. However, ensuring a limit on transmission delays is an essential requirement of such monitoring systems. The uplink (UL) transmission during the orthogonal frequency division multiple access (OFDMA) in the wireless local area networks (WLANs) can incur a delay which may not be acceptable for delay-sensitive applications such as H-IoT due to their random nature. Therefore, we propose a UL OFDMA scheduler for the next Wireless Fidelity (Wi-Fi) standard, the IEEE 802.11be, that is compliant with the latency requirements for healthcare applications. The scheduler allocates the channel resources for UL transmission taking into consideration the traffic class or access category. The results demonstrate that the proposed scheduler can achieve the required latency for H-IoT applications. Additionally, the performance in terms of fairness and throughput is also superior to state-of-the-art schedulers. |
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| AbstractList | The healthcare Internet of Things (H-IoT) is an interconnection of devices capable of sensing and transmitting information that conveys the status of an individual's health. The continuous monitoring of an individual's health for disease diagnosis and early detection is an important application of H-IoT. Ambient assisted living (AAL) entails monitoring a patient's health to ensure their well-being. However, ensuring a limit on transmission delays is an essential requirement of such monitoring systems. The uplink (UL) transmission during the orthogonal frequency division multiple access (OFDMA) in the wireless local area networks (WLANs) can incur a delay which may not be acceptable for delay-sensitive applications such as H-IoT due to their random nature. Therefore, we propose a UL OFDMA scheduler for the next Wireless Fidelity (Wi-Fi) standard, the IEEE 802.11be, that is compliant with the latency requirements for healthcare applications. The scheduler allocates the channel resources for UL transmission taking into consideration the traffic class or access category. The results demonstrate that the proposed scheduler can achieve the required latency for H-IoT applications. Additionally, the performance in terms of fairness and throughput is also superior to state-of-the-art schedulers. The healthcare Internet of Things (H-IoT) is an interconnection of devices capable of sensing and transmitting information that conveys the status of an individual's health. The continuous monitoring of an individual's health for disease diagnosis and early detection is an important application of H-IoT. Ambient assisted living (AAL) entails monitoring a patient's health to ensure their well-being. However, ensuring a limit on transmission delays is an essential requirement of such monitoring systems. The uplink (UL) transmission during the orthogonal frequency division multiple access (OFDMA) in the wireless local area networks (WLANs) can incur a delay which may not be acceptable for delay-sensitive applications such as H-IoT due to their random nature. Therefore, we propose a UL OFDMA scheduler for the next Wireless Fidelity (Wi-Fi) standard, the IEEE 802.11be, that is compliant with the latency requirements for healthcare applications. The scheduler allocates the channel resources for UL transmission taking into consideration the traffic class or access category. The results demonstrate that the proposed scheduler can achieve the required latency for H-IoT applications. Additionally, the performance in terms of fairness and throughput is also superior to state-of-the-art schedulers.The healthcare Internet of Things (H-IoT) is an interconnection of devices capable of sensing and transmitting information that conveys the status of an individual's health. The continuous monitoring of an individual's health for disease diagnosis and early detection is an important application of H-IoT. Ambient assisted living (AAL) entails monitoring a patient's health to ensure their well-being. However, ensuring a limit on transmission delays is an essential requirement of such monitoring systems. The uplink (UL) transmission during the orthogonal frequency division multiple access (OFDMA) in the wireless local area networks (WLANs) can incur a delay which may not be acceptable for delay-sensitive applications such as H-IoT due to their random nature. Therefore, we propose a UL OFDMA scheduler for the next Wireless Fidelity (Wi-Fi) standard, the IEEE 802.11be, that is compliant with the latency requirements for healthcare applications. The scheduler allocates the channel resources for UL transmission taking into consideration the traffic class or access category. The results demonstrate that the proposed scheduler can achieve the required latency for H-IoT applications. Additionally, the performance in terms of fairness and throughput is also superior to state-of-the-art schedulers. |
| Audience | Academic |
| Author | Garcia-Villegas, Eduard Nauman, Ali Kim, Sung Won Qadri, Yazdan Ahmad Musaddiq, Arslan Zulqarnain |
| AuthorAffiliation | 2 Department of Computer Science and Media Technology, Linnaeus University, 391 82 Kalmar, Sweden 3 Department of Network Engineering, Universitat Polit’ecnica de Catalunya (UPC), 08034 Barcelona, Spain 1 Department of Information and Communication Engineering, Yeungnam University, Gyeongsan-si 38541, Korea |
| AuthorAffiliation_xml | – name: 2 Department of Computer Science and Media Technology, Linnaeus University, 391 82 Kalmar, Sweden – name: 1 Department of Information and Communication Engineering, Yeungnam University, Gyeongsan-si 38541, Korea – name: 3 Department of Network Engineering, Universitat Polit’ecnica de Catalunya (UPC), 08034 Barcelona, Spain |
| Author_xml | – sequence: 1 givenname: Yazdan Ahmad orcidid: 0000-0001-5708-1532 surname: Qadri fullname: Qadri, Yazdan Ahmad – sequence: 2 surname: Zulqarnain fullname: Zulqarnain – sequence: 3 givenname: Ali orcidid: 0000-0002-2133-5286 surname: Nauman fullname: Nauman, Ali – sequence: 4 givenname: Arslan surname: Musaddiq fullname: Musaddiq, Arslan – sequence: 5 givenname: Eduard orcidid: 0000-0002-6005-9608 surname: Garcia-Villegas fullname: Garcia-Villegas, Eduard – sequence: 6 givenname: Sung Won orcidid: 0000-0001-8454-6980 surname: Kim fullname: Kim, Sung Won |
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| Cites_doi | 10.3390/s140814070 10.1016/j.iot.2020.100185 10.1109/COMST.2020.2973314 10.1109/ACCESS.2020.2993448 10.1109/ICC.2018.8422767 10.3934/mbe.2022180 10.1109/MCOM.007.2100271 10.1109/TEMS-ISIE46312.2019.9074296 10.1109/ACCESS.2022.3140560 10.1177/1550147719845312 10.3390/electronics11121893 10.3390/jsan11030033 10.3390/s21030768 10.1007/s11036-020-01567-7 10.1016/j.cose.2021.102211 10.1371/journal.pone.0224934 10.1109/TMC.2020.3000503 10.3390/electronics8101081 10.1109/COMST.2020.3012715 10.1109/MCOM.001.1900338 10.3390/healthcare10020293 10.1109/MWC.001.2000332 10.1109/BlackSeaCom.2019.8812774 10.1109/ACCESS.2015.2437951 10.1109/ICC.2018.8422692 |
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| SubjectTerms | 11be Access control Computer and Information Sciences Computer Science Computer network protocols Data- och informationsvetenskap Equipment and supplies Evaluation healthcare IEEE 802 IEEE 802.11be Internet of Things Long-term care of the sick orthogonal frequency division multiple access Performance evaluation Scheduling Sensors Spectrum allocation Technology application Well being Wi-Fi Wireless access points |
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| Title | Preparing Wi-Fi 7 for Healthcare Internet-of-Things |
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