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Distributed Rule-Enabled Interworking Architecture Based on the Transparent Rule Proxy in Heterogeneous IoT Networks.

Wenquan Jin1, Dohyeun Kim2

  • 1Department of Electronic & Communication Engineering, Engineering College, Yanbian University, Yanji 133002, China.

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Summary

This study introduces a transparent rule deployment method for Internet of Things (IoT) systems. It ensures consistent service scenarios across diverse IoT networks using a rule translator and interworking proxy.

Keywords:
EdgeXInternet of Thingsedge computingopen connectivity foundationproxyrules enginetransparent computing

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Area of Science:

  • Computer Science
  • Networking
  • Distributed Systems

Background:

  • Rule-enabled Internet of Things (IoT) systems enable autonomous service scenarios through real-time event-driven rules.
  • Increasing event and action complexity in IoT networks necessitates distributed computation at the network edge.
  • Heterogeneous IoT networks face challenges in maintaining consistent rule execution due to protocol and model differences.

Purpose of the Study:

  • To propose a transparent rule deployment approach for operating consistent service scenarios in heterogeneous IoT networks.
  • To address the interoperability issues arising from diverse IoT platforms and rule models.
  • To enable seamless rule execution across different IoT frameworks.

Main Methods:

  • A novel rule-enabled IoT architecture with distinct functional layers (client, rule service, IoT service, device) is proposed.
  • An interworking proxy is integrated to translate and transfer rules between disparate IoT platforms.
  • The approach facilitates transparent rule deployment and consistent operation of service scenarios.

Main Results:

  • The proposed architecture and interworking proxy successfully enable consistent service scenarios across heterogeneous IoT networks.
  • Rules are deployed transparently, abstracting underlying IoT framework differences.
  • The interworking proxy effectively handles rule translation and transfer between diverse IoT platforms.

Conclusions:

  • The transparent rule deployment approach ensures consistent rule operation in heterogeneous IoT environments.
  • The integrated interworking proxy overcomes heterogeneity challenges in IoT platforms.
  • This facilitates the reliable and unified operation of rule-enabled IoT systems.