DocumentCode
2413080
Title
N-queens-based algorithm for moving object detection in distributed wireless sensor networks
Author
Stojkoska, Biljana ; Davcev, Danco ; Vladimir, Trajkovik
Author_Institution
Fac. of Electr. Eng. & Inf. Technol., Skopje
fYear
2008
fDate
23-26 June 2008
Firstpage
899
Lastpage
904
Abstract
The main constraint of wireless sensor networks (WSN) in enabling wireless image communication is the high energy requirement, which may exceed even the future capabilities of battery technologies. In this paper we have shown that this bottleneck can be overcome by developing local in-network image processing algorithm that offers optimal energy consumption. Our algorithm is very suitable for intruder detection applications. Each node is responsible for processing the image captured by the video sensor, which consists of NxN blocks. If an intruder is detected in the monitoring region, the node will transmit the image for further processing. Otherwise, the node takes no action. Results provided from our experiments show that our algorithm is better than the traditional moving object detection techniques by a factor of (N/2) in terms of energy savings.
Keywords
image motion analysis; object detection; security of data; telecommunication security; wireless sensor networks; distributed wireless sensor network; intruder detection application; local in-network image processing algorithm; moving object detection; n-queens-based algorithm; optimal energy consumption; video sensor; wireless image communication; Bandwidth; Batteries; Energy consumption; Image processing; Information technology; Object detection; Sensor phenomena and characterization; Streaming media; Wireless communication; Wireless sensor networks; Image Processing; Motion Detection; Multimedia; Wireless Sensor Networks;
fLanguage
English
Publisher
ieee
Conference_Titel
Information Technology Interfaces, 2008. ITI 2008. 30th International Conference on
Conference_Location
Dubrovnik
ISSN
1330-1012
Print_ISBN
978-953-7138-12-7
Electronic_ISBN
1330-1012
Type
conf
DOI
10.1109/ITI.2008.4588530
Filename
4588530
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