DocumentCode :
2119664
Title :
Semantic-Driven Configuration of Internet of Things Middleware
Author :
Perera, Charith ; Zaslavsky, A. ; Compton, Michael ; Christen, Peter ; Georgakopoulos, Dimitrios
Author_Institution :
ICT Center, CSIRO, Canberra, ACT, Australia
fYear :
2013
fDate :
3-4 Oct. 2013
Firstpage :
66
Lastpage :
73
Abstract :
We are currently observing emerging solutions to enable the Internet of Things (IoT). Efficient and feature rich IoT middeware platforms are key enablers for IoT. However, due to complexity, most of these middleware platforms are designed to be used by IT experts. In this paper, we propose a semantics-driven model that allows non-IT experts (e.g. plant scientist, city planner) to configure IoT middleware components easier and faster. Such tools allow them to retrieve the data they want without knowing the underlying technical details of the sensors and the data processing components. We propose a Context Aware Sensor Configuration Model (CASCoM) to address the challenge of automated context-aware configuration of filtering, fusion, and reasoning mechanisms in IoT middleware according to the problems at hand. We incorporate semantic technologies in solving the above challenges. We demonstrate the feasibility and the scalability of our approach through a prototype implementation based on an IoT middleware called Global Sensor Networks (GSN), though our model can be generalized into any other middleware platform. We evaluate CASCoM in agriculture domain and measure both performance in terms of usability and computational complexity.
Keywords :
Internet of Things; information filtering; middleware; ontologies (artificial intelligence); sensor fusion; CASCoM; GSN; Internet of Things middleware; IoT middeware platforms; IoT middleware component configuration; agriculture domain; automated context-aware configuration; computational complexity; context aware sensor configuration model; data processing components; data retrieval; filtering mechanism; fusion mechanism; global sensor networks; reasoning mechanism; semantic technologies; semantic-driven configuration model; sensors components; usability factor; Context; Data models; Data processing; Middleware; Sensor phenomena and characterization; Internet of Things; middeware; semantics-driven; service composition;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Semantics, Knowledge and Grids (SKG), 2013 Ninth International Conference on
Conference_Location :
Beijing
Type :
conf
DOI :
10.1109/SKG.2013.9
Filename :
6816586
Link To Document :
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