Wireless Sensor Networks are presented as devices for signal sampling and reconstruction. Within this framework, the qualitative and quantitative influence of (i) signal granularity, (ii) spatial distribution of sensors, (iii) sensors clustering, and (iv) signal reconstruction procedure are assessed. This is done by defining an error metric and performing a Monte Carlo experiment. It is shown that all these factors have significant impact on the quality of the reconstructed signal. The extent of such impact is quantitatively assessed
The potential applications of Wireless Sensor Networks (WSNs) span a very wide range. One of the app...
The performance of wireless sensor networks (WSNs) in industrial environments may be degraded due to...
Map-based visualization of live spatial sensor data collected from a Wireless Sensor Networks (WSN) ...
This paper addresses the effect of nodes spatial distribution on wireless sensor network (WSN) perfo...
In Wireless Sensor Networks (WSN), the effective detection and reconstruction of the event signal is...
The performance of wireless sensor networks (WSN) is often assessed without paying close attention t...
Wireless sensor networks attracted researchers for the unique challenges and the opportunities in si...
Wireless Sensor Networks (WSNs) are expected to be a new, revolutionary technology in the same manne...
Sensor network research is still in its infancy. Few real systems are deployed and little experiment...
Sensor network research is still in its infancy. Few real systems are deployed and little experiment...
Wireless Sensor Networks (WSNs) are often densely deployed to monitor a physical phenomenon, whose n...
Environmental monitoring is often performed through wireless sensor networks, by randomly deploying ...
One of the major challenges in wireless sensor networks (WSNs) is reliability which is not necessari...
We address the problem of compressing large and distributed signals monitored by a Wireless Sensor N...
Wireless sensor network research usually focuses on the reliable and efficient collection of data. H...
The potential applications of Wireless Sensor Networks (WSNs) span a very wide range. One of the app...
The performance of wireless sensor networks (WSNs) in industrial environments may be degraded due to...
Map-based visualization of live spatial sensor data collected from a Wireless Sensor Networks (WSN) ...
This paper addresses the effect of nodes spatial distribution on wireless sensor network (WSN) perfo...
In Wireless Sensor Networks (WSN), the effective detection and reconstruction of the event signal is...
The performance of wireless sensor networks (WSN) is often assessed without paying close attention t...
Wireless sensor networks attracted researchers for the unique challenges and the opportunities in si...
Wireless Sensor Networks (WSNs) are expected to be a new, revolutionary technology in the same manne...
Sensor network research is still in its infancy. Few real systems are deployed and little experiment...
Sensor network research is still in its infancy. Few real systems are deployed and little experiment...
Wireless Sensor Networks (WSNs) are often densely deployed to monitor a physical phenomenon, whose n...
Environmental monitoring is often performed through wireless sensor networks, by randomly deploying ...
One of the major challenges in wireless sensor networks (WSNs) is reliability which is not necessari...
We address the problem of compressing large and distributed signals monitored by a Wireless Sensor N...
Wireless sensor network research usually focuses on the reliable and efficient collection of data. H...
The potential applications of Wireless Sensor Networks (WSNs) span a very wide range. One of the app...
The performance of wireless sensor networks (WSNs) in industrial environments may be degraded due to...
Map-based visualization of live spatial sensor data collected from a Wireless Sensor Networks (WSN) ...