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Mobile Anchor-Free Localization for Wireless Sensor Networks.

Authors :
Hutchison, David
Kanade, Takeo
Kittler, Josef
Kleinberg, Jon M.
Mattern, Friedemann
Mitchell, John C.
Naor, Moni
Nierstrasz, Oscar
Rangan, C. Pandu
Steffen, Bernhard
Sudan, Madhu
Terzopoulos, Demetri
Tygar, Doug
Vardi, Moshe Y.
Weikum, Gerhard
Aspnes, James
Scheideler, Christian
Arora, Anish
Madden, Samuel
Xu, Yurong
Source :
Distributed Computing in Sensor Systems (9783540730897); 2007, p96-109, 14p
Publication Year :
2007

Abstract

In this paper, we consider how to localize individual nodes in a wireless sensor network when some subset of the network nodes can be in motion at any given time. For situations in which it is not practical or cost-efficient to use GPS or anchor nodes, this paper proposes an Anchor-Free Mobile Geographic Distributed Localization (MGDL) algorithm for wireless sensor networks. Taking advantage of the accelerometers that are present in standard motes, MGDL estimates the distance moved by each node. If this distance is beyond a threshold, then this node will trigger a series of mobile localization procedures to recalculate and update its location in the node itself. Such procedures will be stopped when the node stops moving. Data collected using Tmote Invent nodes (Moteiv Inc.) and simulations show that the proposed detection method can efficiently detect the movement, and that the localization is accurate and the communication is efficient in different static and mobile contexts. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISBNs :
9783540730897
Database :
Supplemental Index
Journal :
Distributed Computing in Sensor Systems (9783540730897)
Publication Type :
Book
Accession number :
33110184
Full Text :
https://doi.org/10.1007/978-3-540-73090-3_7