DocumentCode
1868367
Title
Improved MDS-based localization
Author
Shang, Yi ; Rum, Wheeler
Author_Institution
Dept. of Comput. Sci., Missouri-Columbia Univ., Columbia, MO, USA
Volume
4
fYear
2004
fDate
7-11 March 2004
Firstpage
2640
Abstract
It is often useful to know the geographic positions of nodes in a communications network, but adding GPS receivers or other sophisticated sensors to every node can be expensive. MDS-MAP is a recent localization method based on multidimensional scaling (MDS). It uses connectivity information - who is within communications range of whom - to derive the locations of the nodes in the network, and can take advantage of additional data, such as estimated distances between neighbors or known positions for certain anchor nodes, if they are available. However, MDS-MAP is an inherently centralized algorithm and is therefore of limited utility in many applications. In this paper, we present a new variant of the MDS-MAP method, which we call MDS-MAP(P) standing for MDS-MAP using patches of relative maps, that can be executed in a distributed fashion. Using extensive simulations, we show that the new algorithm not only preserves the good performance of the original method on relatively uniform layouts, but also performs much better than the original on irregularly-shaped networks. The main idea is to build a local map at each node of the immediate vicinity and then merge these maps together to form a global map. This approach works much better for topologies in which the shortest path distance between two nodes does not correspond well to their Euclidean distance. We also discuss an optional refinement step that improves solution quality even further at the expense of additional computation.
Keywords
radio networks; Euclidean distance; centralized algorithm; communications network; connectivity information; geographic position; global map; irregularly-shaped network; localization method; multidimensional scaling; Acoustic sensors; Actuators; Communication networks; Computer science; Euclidean distance; Global Positioning System; Large-scale systems; Multidimensional systems; Network topology; Temperature sensors;
fLanguage
English
Publisher
ieee
Conference_Titel
INFOCOM 2004. Twenty-third AnnualJoint Conference of the IEEE Computer and Communications Societies
ISSN
0743-166X
Print_ISBN
0-7803-8355-9
Type
conf
DOI
10.1109/INFCOM.2004.1354683
Filename
1354683
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