DocumentCode
1693068
Title
The pulse protocol: sensor network routing and power saving
Author
Awerbuch, Baruch ; Holmer, David ; Rubens, Herbert ; Chang, Kirk ; Wang, I.-J.
Author_Institution
Dept. of Comput. Sci., Johns Hopkins Univ., Baltimore, MD, USA
Volume
2
fYear
2004
Firstpage
662
Abstract
We present a performance evaluation of the pulse protocol operating in a sensor network. In this work, a number of modifications are made to the original pulse protocol to provide efficient operation in a sensor network environment. The pulse protocol utilizes a periodic flood (the pulse) initiated by a single node (the pulse source) to provide both routing and synchronization to the network. This periodic pulse forms a pro-actively updated spanning tree rooted at the pulse source. Nodes communicate by forwarding packets through this tree. In addition, nodes are able to synchronize with the periodic pulse, allowing idle nodes to power off their radios a large percentage of the time when they are not required for packet forwarding. This results in substantial energy savings. A new mechanism called intermediate wake-up periods is introduced in this work in order to reduce the energy costs of low delay applications. Through simulation we explore the performance of both the protocol and the modifications with respect to energy efficiency and delay.
Keywords
delays; military communication; packet radio networks; power consumption; routing protocols; synchronisation; trees (mathematics); wireless sensor networks; delay; intermediate wake-up periods; military communication; packet forwarding; performance; performance evaluation; periodic flood; power saving; pro-actively updated spanning tree; pulse protocol; pulse source; reduced energy costs; sensor network routing; simulation; synchronization; Access protocols; Computer science; Costs; Delay; Energy consumption; Energy efficiency; Floods; Kirk field collapse effect; Routing protocols; Timing;
fLanguage
English
Publisher
ieee
Conference_Titel
Military Communications Conference, 2004. MILCOM 2004. 2004 IEEE
Print_ISBN
0-7803-8847-X
Type
conf
DOI
10.1109/MILCOM.2004.1494871
Filename
1494871
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