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Secure and failure hybrid delay enabled a lightweight RPC and SHDS schemes in Industry 4.0 aware IIoHT enabled fog

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Summary

This study introduces a secure hybrid delay scheme (SHDS) for the Industrial Internet of Healthcare Things (IIoHT). The proposed lightweight RPC mechanism significantly reduces delays by 50% for critical healthcare applications.

Keywords:
IIoHTRPCfault-toleranthealthcarehybrid delayjobsschedulingsecurity

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Area of Science:

  • Healthcare technology
  • Computer science
  • Network engineering

Background:

  • Industrial Internet of Healthcare Things (IIoHT) applications are increasingly used for remote patient monitoring and data streaming.
  • Existing remote procedure call (RPC) mechanisms face challenges with network/computational delays and quality of service in IIoHT.
  • IIoHT applications require robust security, efficient computation, and fault tolerance.

Purpose of the Study:

  • To devise a lightweight RPC mechanism tailored for IIoHT applications.
  • To address hybrid constraints including security, network, computation, and failure efficiency.
  • To optimize the quality of service for healthcare applications within IIoHT.

Main Methods:

  • Developed a lightweight RPC mechanism for IIoHT.
  • Proposed the Secure Hybrid Delay Scheme (SHDS) for workload scheduling.
  • Formulated the scheduling problem using linear integer programming.

Main Results:

  • The proposed SHDS scheme and lightweight RPC demonstrated superior performance for IIoHT applications.
  • A 50% reduction in delays was achieved compared to existing RPC schemes.
  • The system effectively scheduled healthcare workloads within their deadlines.

Conclusions:

  • The lightweight RPC mechanism and SHDS are effective for IIoHT applications.
  • The proposed solution enhances efficiency and reduces latency in healthcare systems.
  • This work contributes to more reliable and performant IIoHT services.