A Framework for Level-of-Detail Tracking and Surveillance in Wireless Sensor Networks

In the recent years, wireless sensor networks have become a very active research area. Technological advances paved the way for wireless networks being used in many military and civilian applications, including object tracking, security surveillance, habitat monitoring, and traffic control. However,...

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Main Author: Peng, Jianfeng
Other Authors: Rozenblit, Jerzy W
Language:EN
Published: The University of Arizona. 2007
Online Access:http://hdl.handle.net/10150/194307
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spelling ndltd-arizona.edu-oai-arizona.openrepository.com-10150-1943072015-10-23T04:40:55Z A Framework for Level-of-Detail Tracking and Surveillance in Wireless Sensor Networks Peng, Jianfeng Rozenblit, Jerzy W Rozenblit, Jerzy W Lysecky, Roman Marcellin, Michael In the recent years, wireless sensor networks have become a very active research area. Technological advances paved the way for wireless networks being used in many military and civilian applications, including object tracking, security surveillance, habitat monitoring, and traffic control. However, there are intrinsic constraints on design and optimization of sensor networks. Current research mainly focuses on minimizing energy consumption when collecting and transferring data, but improvement is limited by the current sensing paradigm in which users are passive receivers and interpreters of sensory data. A shift is needed from a supplier-initiated, data-centric approach to a consumer-initiated, demand-driven paradigm. This dissertation proposes a Level-Of-Detail (LOD) sensing framework, in which sensing activities are fully determined and adjusted by the user's need for sensory data in real-time. This information-on-demand approach eliminates unnecessary data collection and transfer, and provides an ideal balance between system lifetime, response time, and attention economics. A software test-bed is created for concept proof purpose. The test-bed employs a client-server architecture and allows users to carry out various experiments in an interactive, three-dimensional virtual environment. Experiments results demonstrate substantial reduction in power consumption using the proposed LOD technology. 2007 text Electronic Dissertation http://hdl.handle.net/10150/194307 659747218 2106 EN Copyright © is held by the author. Digital access to this material is made possible by the University Libraries, University of Arizona. Further transmission, reproduction or presentation (such as public display or performance) of protected items is prohibited except with permission of the author. The University of Arizona.
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language EN
sources NDLTD
description In the recent years, wireless sensor networks have become a very active research area. Technological advances paved the way for wireless networks being used in many military and civilian applications, including object tracking, security surveillance, habitat monitoring, and traffic control. However, there are intrinsic constraints on design and optimization of sensor networks. Current research mainly focuses on minimizing energy consumption when collecting and transferring data, but improvement is limited by the current sensing paradigm in which users are passive receivers and interpreters of sensory data. A shift is needed from a supplier-initiated, data-centric approach to a consumer-initiated, demand-driven paradigm. This dissertation proposes a Level-Of-Detail (LOD) sensing framework, in which sensing activities are fully determined and adjusted by the user's need for sensory data in real-time. This information-on-demand approach eliminates unnecessary data collection and transfer, and provides an ideal balance between system lifetime, response time, and attention economics. A software test-bed is created for concept proof purpose. The test-bed employs a client-server architecture and allows users to carry out various experiments in an interactive, three-dimensional virtual environment. Experiments results demonstrate substantial reduction in power consumption using the proposed LOD technology.
author2 Rozenblit, Jerzy W
author_facet Rozenblit, Jerzy W
Peng, Jianfeng
author Peng, Jianfeng
spellingShingle Peng, Jianfeng
A Framework for Level-of-Detail Tracking and Surveillance in Wireless Sensor Networks
author_sort Peng, Jianfeng
title A Framework for Level-of-Detail Tracking and Surveillance in Wireless Sensor Networks
title_short A Framework for Level-of-Detail Tracking and Surveillance in Wireless Sensor Networks
title_full A Framework for Level-of-Detail Tracking and Surveillance in Wireless Sensor Networks
title_fullStr A Framework for Level-of-Detail Tracking and Surveillance in Wireless Sensor Networks
title_full_unstemmed A Framework for Level-of-Detail Tracking and Surveillance in Wireless Sensor Networks
title_sort framework for level-of-detail tracking and surveillance in wireless sensor networks
publisher The University of Arizona.
publishDate 2007
url http://hdl.handle.net/10150/194307
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