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Context-Aware Computing, Learning, and Big Data in Internet of Things: A Survey

IEEE Internet of Things Journal · 2017 · Vol. 5(1) · pp. 1–27
Ömer Berat SezerErdoğan DoğduAhmet Murat Özbayoğlu

Abstract

Internet of Things (IoT) has been growing rapidly due to recent advancements in communications and sensor technologies. Meanwhile, with this revolutionary transformation, researchers, implementers, deployers, and users are faced with many challenges. IoT is a complicated, crowded, and complex field; there are various types of devices, protocols, communication channels, architectures, middleware, and more. Standardization efforts are plenty, and this chaos will continue for quite some time. What is clear, on the other hand, is that IoT deployments are increasing with accelerating speed, and this trend will not stop in the near future. As the field grows in numbers and heterogeneity, “intelligence” becomes a focal point in IoT. Since data now becomes “big data,” understanding, learning, and reasoning with big data is paramount for the future success of IoT. One of the major problems in the path to intelligent IoT is understanding “context,” or making sense of the environment, situation, or status using data from sensors, and then acting accordingly in autonomous ways. This is called “context-aware computing,” and it now requires both sensing and, increasingly, learning, as IoT systems get more data and better learning from this big data. In this survey, we review the field, first, from a historical perspective, covering ubiquitous and pervasive computing, ambient intelligence, and wireless sensor networks, and then, move to context-aware computing studies. Finally, we review learning and big data studies related to IoT. We also identify the open issues and provide an insight for future study areas for IoT researchers.

IoT and Edge/Fog ComputingContext-Aware Activity Recognition SystemsEnergy Efficient Wireless Sensor NetworksComputer scienceBig dataData scienceContext (archaeology)Ubiquitous computingField (mathematics)Middleware (distributed applications)Wireless sensor networkInternet of ThingsStandardization
Citations
442
FWCI
41.82
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References
243
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References
Big Data Deep Learning: Challenges and Perspectives
IEEE Access · 2014 · 1,248 citations
Internet of Things in Industries: A Survey
IEEE Transactions on Industrial Informatics · 2014 · 4,980 citations
Internet of Things for Smart Cities
IEEE Internet of Things Journal · 2014 · 6,008 citations
Research Directions for the Internet of Things
IEEE Internet of Things Journal · 2014 · 1,915 citations
Some computer science issues in ubiquitous computing
Communications of the ACM · 1993 · 2,370 citations
A survey of information-centric networking
IEEE Communications Magazine · 2012 · 1,605 citations
Reinforcement Learning: An Introduction
IEEE Transactions on Neural Networks · 2005 · 25,702 citations
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