2019
DOI: 10.1109/access.2019.2941371
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Effect of Event-Based Sensing on IoT Node Power Efficiency. Case Study: Air Quality Monitoring in Smart Cities

Abstract: The predicted growth of urban populations has prompted researchers and administrations to improve services provided to citizens. At the heart of these services are wireless networks of multiple different sensors supported by the Internet of Things. The main purpose of these networks is to provide sufficient information to achieve more intelligent transport, energy supplies, social services, public environments (indoor and outdoor) and security, etc. Two major technological advances would improve such networks … Show more

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Cited by 33 publications
(29 citation statements)
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“…In the context of improving sustainability and flexibility of mobility, shared bicycle providers are deploying IoT-enabled electronic locks and localization applications. Many other smart city applications have been realized, for example energy efficient solutions for air quality monitoring [14]. Industry 4.0 proposes a transformation to cyber manufacturing that heavily relies on connected sensors to increase efficiency and flexibility [15].…”
Section: Opportunities For a Diversity Of Applicationsmentioning
confidence: 99%
See 1 more Smart Citation
“…In the context of improving sustainability and flexibility of mobility, shared bicycle providers are deploying IoT-enabled electronic locks and localization applications. Many other smart city applications have been realized, for example energy efficient solutions for air quality monitoring [14]. Industry 4.0 proposes a transformation to cyber manufacturing that heavily relies on connected sensors to increase efficiency and flexibility [15].…”
Section: Opportunities For a Diversity Of Applicationsmentioning
confidence: 99%
“…In the context of improving sustainability and flexibility of mobility, shared bicycle providers are deploying IoT-enabled electronic locks and localization applications. Many other smart city applications have been realized, for example energy efficient solutions for air quality monitoring [ 14 ].…”
Section: Introducing Opportunities and Challenges In The Design Ofmentioning
confidence: 99%
“…This event-driven control approach triggers the market only when there is a significant change in the energy exchanges within the MG. Consequently, a significant reduction in the amount of information to be processed and sent through the communication channels is achieved, without degrading the system performance. For its operation, a Send on Delta (SoD) data collecting scheme is chosen for its simplicity and efficiency [29]. At the prosumer level, an implementation of SoD monitoring strategy evaluates the difference between the last-minute energy measurement sent by the prosumer to the MG and the current measurement.…”
Section: B Event-based Local Energy Marketmentioning
confidence: 99%
“…Much effort has been devoted to sensing strategies to reduce the usage of IoT resources and extend the lifetime of devices. Sampling, data and communication compressions are the pillars of such strategies [1], [2]. Context-aware and event-based sensing are relevant to reduce the transmissions between sensors and sink nodes.…”
Section: Introductionmentioning
confidence: 99%
“…Major strategies consider the following conditions: (a) the difference between the sensed value and the last sample sent is higher than a given threshold (Send-on-Data or SoD strategy) [5], (b) the expected value exceeds the previously sent value by at least a threshold (Send-on-Prediction or SoP strategy) [1]. Two extensions of SoD are the Send-on-Energy and Sendon-Area strategies where the considered difference between current and last values are the energy or the cumulative integral of differences respectively [1], [2]. Proposed strategies intended to be performed by IoT devices, should simplify the computing operations and memory usage and consider the hardware and software limitations of these devices.…”
Section: Introductionmentioning
confidence: 99%