2014 International Conference on Engineering, Technology and Innovation (ICE) 2014
DOI: 10.1109/ice.2014.6871591
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IoT service development via adaptive interfaces: Improving utilization of cyber-physical systems by competence based user interfaces

Abstract: The more complex the processes, the higher the need for process transparency through high-quality real-time data. The steady improvement of Internet-of-Things technologies, or of the recently phrased cyber physical systems, during the last years ensures this process transparency. Although these technologies are promising, the potential of IoT/CPS technologies is not yet fully applied in practice. One reason is that technology novices have difficulties participating in development processes and consequently pre… Show more

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Cited by 5 publications
(1 citation statement)
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“…Moreno et al 9 put forward the “Android‐based IoT Medical monitoring System”, through the field operation found that the accuracy is high, the conclusion that the IoT can be applied to the medical monitoring system, Blaauw et al 10 designed a set of data transmission system for telemedicine, including physiological data acquisition module, gateways and remote clients three parts, through which users can detect physiological data themselves, and can see detailed test results on the display. In References 11‐13 using the idea of radio frequency identification technology, product electronic code, and finite state machine, this article analyzes the characteristics of the supply chain in the whole life cycle of medical devices, and establishes the quality traceability business model and communication model of medical consumables from the demand of quality traceability. A product traceability medical device tracking system based on IoT technology is proposed.…”
Section: Introductionmentioning
confidence: 99%
“…Moreno et al 9 put forward the “Android‐based IoT Medical monitoring System”, through the field operation found that the accuracy is high, the conclusion that the IoT can be applied to the medical monitoring system, Blaauw et al 10 designed a set of data transmission system for telemedicine, including physiological data acquisition module, gateways and remote clients three parts, through which users can detect physiological data themselves, and can see detailed test results on the display. In References 11‐13 using the idea of radio frequency identification technology, product electronic code, and finite state machine, this article analyzes the characteristics of the supply chain in the whole life cycle of medical devices, and establishes the quality traceability business model and communication model of medical consumables from the demand of quality traceability. A product traceability medical device tracking system based on IoT technology is proposed.…”
Section: Introductionmentioning
confidence: 99%