Events2nd International Electronic Conference on Sensors and Applications
Published
This submission belongs to the session D. Sensor Networks of the event 2nd International Electronic Conference on Sensors and Applications
Published date
05 Nov, 2015
Citation
Daniel Santesteban, Erik Aguirre, Francisco Falcone, Jesús Villadangos, José Javier Astrain, Leyre Azpilicueta, Peio Lopez Iturri, Radio propagation analysis for ZigBee based indoor dog monitoring system, in Proceedings of 2nd International Electronic Conference on Sensors and Applications, 15 November–30 November 2015, MDPI: Basel, Switzerland, doi: 10.3390/ecsa-2-D001
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Radio propagation analysis for ZigBee based indoor dog monitoring system

Daniel Santesteban 1
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1. Electrical and Electronic Engineering Dept, Universidad Pública de Navarra, Pamplona, Navarra, Spain
2. Computer and Mathematics Engineering Dept, Universidad Pública de Navarra, Pamplona, Navarra, Spain
Abstract

The flexibility of new age wireless networks and the variety of sensors to measure a high number of variables, lead to new scenarios where anything can be monitored by little electronic devices, thereby building Wireless Sensor Networks (WSN). Thanks to ZigBee, RFID or Wi-Fi networks the precise position of humans or animals as well as some biological parameters can be known in real-time. However, since wireless sensors must be attached to biological tissues and they are highly dispersive, propagation of the electromagnetic waves must be studied to build an efficient and well-working network. In this work, the radio wave propagation produced by ZigBee devices working over ISM 2.4GHz based network is studied through a home-made 3D Ray Launching simulation tool. Furthermore, a simplified dog model is developed for the chosen simulation code, considering not only its morphology but also its dielectric properties. This model is placed inside a home, taking under consideration all the furniture (tables, chairs, mirrors, etc.) and some measurements have been carried out attaching ZigBee based Xbee motes to a real dog. Power distribution, Power delay profile and delay spread graphs are extracted from simulation results concluding in an extensive and accurate wireless radio propagation studio. Finally, a dog monitoring system is presented, it works over the zigbee network and sends information to Android based devices.

Keywords
Dog monitoring
WSN
3D Ray Launching
ZigBee
Manuscript
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