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November 8, 2021IEEE Internet of Things Journal48 citationsOpen Access

Protocol Wireless Medical Sensor Networks in IoT for the Efficiency of Healthcare

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EAEl Miloud Ar-ReyouchiKGKamal GhoumidDADoha Ar-Reyouchi

Key Points

  • This research aims to develop and assess a new medical communication scheme for healthcare efficiency.
  • Proposes a new protocol called PWMSN4EoCH using random network coding.
  • Compares performance metrics such as message size, round-trip time, and network capacity between the new PEH and existing SoAT schemes.
  • Focuses on applications in wireless telemedicine with medical sensors and health hubs.
  • PEH achieves a 64% improvement in round-trip time compared to SoAT (RTT improved from X ms to Y ms).
  • Overall network capacity is enhanced by 66% (capacity increased from A bytes/s to B bytes/s).
  • Delivery delay reduced by 71% (DD decreased from C ms to D ms).

Abstract

In this article, a new medical communication scheme, protocol wireless medical sensor networks for the efficiency of healthcare (PWMSN4EoCH), shorten by (PEH), which uses hasty strategy and random network coding (RNC), is proposed. The new concept improves the performance of the healthcare network. It quickly analyzes the medical network description, focusing on some basic parameters for narrowband Internet of Things (NB-IoT) systems in wireless mesh networks (WMNs). This PEH effectively meets the requirements prescribed for wireless telemedicine applications in which medical sensors (MSs) share the downlink and uplink resources to its neighborhood, including wireless health hubs (WHHs) and wireless base stations (WBSs) for controlling the health of the human body. The PEH scheme substantially accelerates the implementation devices of telemedicine for patient satisfaction. In contrast, the state-of-the-art technique (SoAT) scheme, which is currently used, misses the entirety of the proposed principle. The proposed scheme is compared with the SoAT in terms of message size (bytes), round-trip time (RTT) (ms), overall network capacity (ONC) (bytes/s, and delivery delay (DD) in ms. Our investigation has proved that the RTT, ONC, and DD of the proposed PEH are much better than the SoAT schemes, achieving 64%, 66%, and 71%, respectively. The simulation studies clearly indicate that the PEH introduces more than 64% performance enhancement over the SoAT scheme.

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Cite This Study

Ar-Reyouchi et al. (2021) studied this question.

synapsesocial.com/papers/6a12a1438793652519a647a8https://doi.org/10.1109/jiot.2021.3125886
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