DocumentCode
2421615
Title
Random access compressed sensing in underwater sensor networks
Author
Fazel, Fatemeh ; Fazel, Maryam ; Stojanovic, Milica
Author_Institution
Northeastern Univ., Boston, MA, USA
fYear
2010
fDate
Sept. 29 2010-Oct. 1 2010
Firstpage
768
Lastpage
774
Abstract
In this paper, we propose a power-efficient underwater sensor network scheme employing compressed sensing and random channel access. The proposed scheme is suitable for applications where a large number of sensor nodes are deployed uniformly over a certain area to measure a physical phenomenon. The underlying assumption is that most physical phenomena have sparse representations in the frequency domain. The network is assumed to have a Fusion Center (FC) that collects the observations of sensor nodes and reconstructs the measured field based on the obtained measurements. The proposed method is completely decentralized, i.e., sensor nodes act independently without the need for coordination with each other or with the FC. During each frame, a Bernoulli random generator at each node determines whether the node participates in sampling or stays inactive during that sampling period. If selected, it measures the physical quantity of interest, e.g. temperature. A second random generator with a uniform distribution then picks a (random) delay for the node to send its data to the FC. The proposed network scheme, referred to as Random Access Compressed Sensing (RACS), results in a simple power-efficient design, for: a) it eliminates the need for duplexing, which requires coordination from the FC; b) there is no need for acknowledgment packets and retransmissions in case packets collide; and moreover, c) it is efficient in terms of the communication resources used (only a small fraction of nodes sample and transmit in each sampling period).
Keywords
frequency-domain analysis; underwater acoustic communication; wireless sensor networks; Bernoulli random generator; FC; RACS; duplexing elimination; frequency domain; fusion center; packets collide retransmission; power-efficient underwater sensor network; random channel access compressed sensing; uniform distribution; Atmospheric measurements; Compressed sensing; Particle measurements; Sea measurements; Sensors; Time division multiple access;
fLanguage
English
Publisher
ieee
Conference_Titel
Communication, Control, and Computing (Allerton), 2010 48th Annual Allerton Conference on
Conference_Location
Allerton, IL
Print_ISBN
978-1-4244-8215-3
Type
conf
DOI
10.1109/ALLERTON.2010.5706985
Filename
5706985
Link To Document