Power-aware routing in wireless sensor networks

Wireless sensor networks have drawn a lot of attention in recent years. Due to the advantages of flexibility and cheap cost, wireless sensor network applications have been widely used for both civil and military purposes. However, constrained by hardware, sensor nodes usually have limited energy sup...

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主要作者: Zha, Wei
其他作者: Ng Wee Keong
格式: Theses and Dissertations
語言:English
出版: 2013
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在線閱讀:https://hdl.handle.net/10356/54843
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機構: Nanyang Technological University
語言: English
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spelling sg-ntu-dr.10356-548432023-03-04T00:45:34Z Power-aware routing in wireless sensor networks Zha, Wei Ng Wee Keong School of Computer Engineering Centre for Advanced Information Systems DRNTU::Engineering::Computer science and engineering Wireless sensor networks have drawn a lot of attention in recent years. Due to the advantages of flexibility and cheap cost, wireless sensor network applications have been widely used for both civil and military purposes. However, constrained by hardware, sensor nodes usually have limited energy supply. All wireless sensor network applications have to take energy issues into consideration. In this thesis, we explore energy efficiency in wireless sensor networks and focus on energy efficient routing protocols. Two kinds of routing protocols, spatial index based routing protocols and geographic based routing protocols, are studied. Spatial index based routing protocols are able to inquire a selected area without flooding the whole network. The drawbacks are the high cost of maintenance and the lack of scalability. Strategies which prolong sensor network lifespan by reducing maintenance cost is studied. Geographic based routing protocols, on the contrary, are quite scalable because the network is organized in a stateless manner. However, they are all designed for stationary networks. Releasing this assumption may fail to guarantee delivery. The deep causes of delivery failure in duty-cycling sensor networks are fundamentally investigated and formally analyzed. A general algorithm component is proposed to serve existing geographic routing algorithms to guarantee the success of packet delivery in duty-cycling sensor networks. Future work will continue studying practical implementations of geographic routing and explore some new areas, such as energy usage prediction and privacy preserving in wireless sensor networks. DOCTOR OF PHILOSOPHY (SCE) 2013-09-11T03:35:23Z 2013-09-11T03:35:23Z 2013 2013 Thesis Zha, W. (2013). Power-aware routing in wireless sensor networks. Doctoral thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/54843 10.32657/10356/54843 en 139 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Computer science and engineering
spellingShingle DRNTU::Engineering::Computer science and engineering
Zha, Wei
Power-aware routing in wireless sensor networks
description Wireless sensor networks have drawn a lot of attention in recent years. Due to the advantages of flexibility and cheap cost, wireless sensor network applications have been widely used for both civil and military purposes. However, constrained by hardware, sensor nodes usually have limited energy supply. All wireless sensor network applications have to take energy issues into consideration. In this thesis, we explore energy efficiency in wireless sensor networks and focus on energy efficient routing protocols. Two kinds of routing protocols, spatial index based routing protocols and geographic based routing protocols, are studied. Spatial index based routing protocols are able to inquire a selected area without flooding the whole network. The drawbacks are the high cost of maintenance and the lack of scalability. Strategies which prolong sensor network lifespan by reducing maintenance cost is studied. Geographic based routing protocols, on the contrary, are quite scalable because the network is organized in a stateless manner. However, they are all designed for stationary networks. Releasing this assumption may fail to guarantee delivery. The deep causes of delivery failure in duty-cycling sensor networks are fundamentally investigated and formally analyzed. A general algorithm component is proposed to serve existing geographic routing algorithms to guarantee the success of packet delivery in duty-cycling sensor networks. Future work will continue studying practical implementations of geographic routing and explore some new areas, such as energy usage prediction and privacy preserving in wireless sensor networks.
author2 Ng Wee Keong
author_facet Ng Wee Keong
Zha, Wei
format Theses and Dissertations
author Zha, Wei
author_sort Zha, Wei
title Power-aware routing in wireless sensor networks
title_short Power-aware routing in wireless sensor networks
title_full Power-aware routing in wireless sensor networks
title_fullStr Power-aware routing in wireless sensor networks
title_full_unstemmed Power-aware routing in wireless sensor networks
title_sort power-aware routing in wireless sensor networks
publishDate 2013
url https://hdl.handle.net/10356/54843
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