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Middleware for Plug and Play Integration of Heterogeneous Sensor Resources into the Sensor Web.

Enoc Martínez1, Daniel M Toma2, Simon Jirka3

  • 1SARTI research group, Electronics Department, Universitat Politècnica de Catalunya, 08800 Vilanova i la Geltrú, Spain. enoc.martinez@upc.edu.

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Summary

Integrating diverse marine sensor data is challenging due to varying procedures. This study presents a framework for plug-and-play sensor integration into Sensor Web Enablement (SWE) infrastructures, improving data sharing for global change monitoring.

Keywords:
OGC PUCK protocolOpen Geospatial ConsortiumSensor Web EnablementSensorMLinteroperabilityplug and playsensor integration

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Area of Science:

  • Oceanography
  • Environmental Science
  • Data Science

Background:

  • Global phenomena studies require integrating diverse data from multiple sources and platforms.
  • Lack of standardization in data acquisition and archival leads to information silos, hindering cross-community data sharing.
  • Existing frameworks like Sensor Web Enablement (SWE) improve standardization but face challenges in uniform sensor integration due to varied marine sensor architectures.

Purpose of the Study:

  • To present a framework enabling plug-and-play integration of marine sensors into existing SWE-based data infrastructures.
  • To address the lack of uniform procedures for integrating heterogeneous marine sensors.
  • To facilitate more effective data sharing for monitoring long-term global ocean changes.

Main Methods:

  • Analysis of operations for automatic sensor identification, configuration, and operation.
  • Structuring required metadata in a standardized format for seamless integration.
  • Development of a modular, plug-and-play, SWE-based acquisition chain.

Main Results:

  • A novel framework for automated sensor integration into SWE infrastructures.
  • Standardized metadata structure facilitating interoperability.
  • Demonstrated use cases highlighting the framework's applicability.

Conclusions:

  • The proposed framework enables simplified and standardized integration of marine sensors into SWE systems.
  • This approach overcomes architectural diversity challenges, enhancing data accessibility.
  • Facilitates comprehensive monitoring of global ocean changes through improved data interoperability.