DocumentCode :
39273
Title :
Energy Consumption of Visual Sensor Networks: Impact of Spatio-Temporal Coverage
Author :
Redondi, Alessandro ; Buranapanichkit, Dujdow ; Cesana, Matteo ; Tagliasacchi, M. ; Andreopoulos, Yiannis
Author_Institution :
Dipt. di Elettron., Inf. e Bioingegneria, Politec. di Milano, Milan, Italy
Volume :
24
Issue :
12
fYear :
2014
fDate :
Dec. 2014
Firstpage :
2117
Lastpage :
2131
Abstract :
Wireless visual sensor networks (VSNs) are expected to play a major role in future IEEE 802.15.4 personal area networks (PANs) under recently established collision-free medium access control (MAC) protocols, such as the IEEE 802.15.4e-2012 MAC. In such environments, the VSN energy consumption is affected by a number of camera sensors deployed (spatial coverage), as well as a number of captured video frames of which each node processes and transmits data (temporal coverage). In this paper we explore this aspect for uniformly formed VSNs, that is, networks comprising identical wireless visual sensor nodes connected to a collection node via a balanced cluster-tree topology, with each node producing independent identically distributed bitstream sizes after processing the video frames captured within each network activation interval. We derive analytic results for the energy-optimal spatio-temporal coverage parameters of such VSNs under a priori known bounds for the number of frames to process per sensor and the number of nodes to deploy within each tier of the VSN. Our results are parametric to the probability density function characterizing the bitstream size produced by each node and the energy consumption rates of the system of interest. Experimental results are derived from a deployment of TelosB motes and reveal that our analytic results are always within 7% of the energy consumption measurements for a wide range of settings. In addition, results obtained via motion JPEG encoding and feature extraction on a multimedia subsystem (BeagleBone Linux Computer) show that the optimal spatio-temporal settings derived by our framework allow for substantial reduction of energy consumption in comparison with ad hoc settings.
Keywords :
Zigbee; access protocols; feature extraction; image coding; wireless sensor networks; BeagleBone Linux Computer; IEEE 802.15.4 personal area networks; MAC protocols; PAN; balanced cluster-tree topology; collision-free medium access control protocols; energy consumption; energy-optimal spatio-temporal coverage parameters; feature extraction; motion JPEG encoding; multimedia subsystem; probability density function; spatio-temporal coverage impact; wireless visual sensor networks; Cameras; Energy consumption; Multimedia communication; Relays; Streaming media; Topology; Visualization; Energy consumption; IEEE 802.15.4; Internet-of-things (IoT); frame rate; sensor coverage; visual sensor networks (VSNs);
fLanguage :
English
Journal_Title :
Circuits and Systems for Video Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8215
Type :
jour
DOI :
10.1109/TCSVT.2014.2329378
Filename :
6826561
Link To Document :
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