A Realistic Coverage Model with Backup Set Computation for Wireless Video Sensor Network

Wireless Video Sensor Network (WVSN) are gaining increasing popularity due availability of low cost CMOS camera and miniaturization of hardware. For many applications it is difficult to have pre-engineered deployment of video camera sensors which leads to redundancy. Due to sectored coverage and ran...

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Bibliographic Details
Main Authors: Vijay S Ukani, Keyur Patel, Tanish H Zaveri
Format: Article
Language:English
Published: Institute of Technology, Nirma University 2015-08-01
Series:Nirma University Journal of Engineering and Technology
Subjects:
Online Access:http://nujet.org.in/index.php/nujet/article/view/172
Description
Summary:Wireless Video Sensor Network (WVSN) are gaining increasing popularity due availability of low cost CMOS camera and miniaturization of hardware. For many applications it is difficult to have pre-engineered deployment of video camera sensors which leads to redundancy. Due to sectored coverage and random deployment, it becomes challenging to model video sensor coverage to identify redundancy and suppress redundant video transmission. Several efforts have been made to model coverage redundancy considering 2-dimensional coverage. Field of View (FoV) of the camera sensor is in 3-dimensions, thus it is very difficult to model the coverage and identify overlap area for realistic camera. 3-dimensional coverage is largely an unexplored problem. In this paper, a realistic 3-dimensional pyramid camera coverage is assumed and backup set of nodes are computed. Backup set of a node is a set of video sensor nodes which collectively covers coverage area of the node under consideration. The approach presented in the paper identifies minimal sized set of backup nodes which can be used to adaptively duty cycle the video capture and transmission. The result shows that number of nodes required to remain active to cover the sensor field is reduced and in turn average energy consumption of the network also reduces.
ISSN:2231-2870