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SEnviro: a sensorized platform proposal using open hardware and open standards.

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This study introduces an open-hardware wireless sensor network (WSN) using Internet protocols for smart cities. It addresses interoperability issues with the OGC SensorThings API, enabling seamless data integration for environmental monitoring.

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Area of Science:

  • Environmental Science
  • Computer Science
  • Engineering

Background:

  • Increasing demand for environmental monitoring drives Wireless Sensor Network (WSN) development.
  • Smart city initiatives require smart sensors, fueled by decreasing hardware costs and open-source hardware popularity.
  • Internet Protocol (IP) communication enables sensor access via the Internet, creating Internet of Things (IoT) and Web of Things (WoT) devices.

Purpose of the Study:

  • To propose a sensorized platform adhering to IoT and WoT principles for environmental monitoring.
  • To address the lack of standardization and interoperability issues in current WSN data formats.
  • To present a practical, open-hardware solution for building and deploying environmental WSNs.

Main Methods:

  • Developed wireless sensor nodes using open-hardware solutions.
  • Implemented communication using HTTP/IP Internet protocols.
  • Utilized the Open Geospatial Consortium (OGC) SensorThings API as a standardized, neutral data format.

Main Results:

  • A proof-of-concept environmental WSN was successfully built based on the proposed architecture.
  • The use of OGC SensorThings API mitigated interoperability issues between different sensor nodes and networks.
  • Details on node construction and energy consumption analysis were provided.

Conclusions:

  • The proposed architecture effectively integrates open-hardware WSNs with IoT and WoT paradigms.
  • Standardization through OGC SensorThings API is crucial for overcoming interoperability challenges in WSNs.
  • The developed platform offers a viable solution for scalable and interconnected environmental monitoring systems.