Interoperability Enhancement of IoT devices Using Open Web Standards in a Smart Farming Use Case
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Interoperability Enhancement of IoT devices Using Open Web Standards in a Smart Farming Use CaseAutoría
Tutor/Supervisor; Universidad.Departamento
Trilles Oliver, Sergi; Universitat Jaume I. Departament de Llenguatges i Sistemes InformàticsFecha de publicación
2019-03Editor
Universitat Jaume IResumen
Since its first appearance the Internet of Things has been subject to constant evolution, development and change. Now it has stepped out of its infancy with billions of
devices embedded in the world wide web. However, ... [+]
Since its first appearance the Internet of Things has been subject to constant evolution, development and change. Now it has stepped out of its infancy with billions of
devices embedded in the world wide web. However, IoT providers mostly define their
own data formats and protocols and there is still a lack of a common standard that
connects these devices in an interoperable manner. There are several organisations
dedicated to developing common standards for IoT devices and research is focusing
on defining an effective standard to be used by embedded devices. Unsurprisingly,
IoT has also found its way into the spatial web and into environmental monitoring
and sensing platforms connected over the web by wireless sensor networks are now a
common way to monitor natural phenomena. This study compares three open Web
Standards in the use case of SEnviro for Agriculture, a full stack IoT for monitoring
vineyards. The interoperability potential of the OGC’s Sensor Observation Service
and SensorThings API are evaluated by integrating Web Standard implementations for each standard and contrasting their qualitative and quantitative traits.
In a further step the Mozilla Corporation’s Web Thing API was implemented and
evaluated in an environmental monitoring and Smart Farming context. The results
of the study show that the SensorThings API proves to be the most adequate Web
Standard for SEnviro and IoT applications for environmental monitoring and Smart
Farming in terms of interoperability. It outperforms the contesting Web Standards
in terms of flexibility and scalability, which strongly impacts on developer and user
experience. [-]
Palabras clave / Materias
Descripción
Treball Final de Màster Universitari Erasmus Mundus en Tecnologia Geoespacial. Codi: SIW013. Curs acadèmic: 2018/2019
Tipo de documento
info:eu-repo/semantics/masterThesisDerechos de acceso
info:eu-repo/semantics/openAccess
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