DocumentCode
2818986
Title
Message batching in wireless sensor networks — A perturbation analysis approach
Author
Ning, Xu ; Cassandras, Christos G.
Author_Institution
Boston Univ., Brookline
fYear
2007
fDate
12-14 Dec. 2007
Firstpage
939
Lastpage
944
Abstract
We address the problem of batching messages generated at nodes of a sensor network for the purpose of reducing communication energy at the expense of added latency. We first develop a baseline analytical model, derive conditions under which batching is profitable, and explicitly determine a batching time that optimizes a performance metric capturing the tradeoff between communication energy and message latency. We then provide an on-line performance optimization method based on Smoothed Perturbation Analysis (SPA) for estimating the performance sensitivity with respect to the controllable batching time. We prove that the SPA gradient estimator is unbiased and combine it with a Stochastic Approximation (SA) algorithm for on-line optimization. Numerical results are provided for Poisson and Markov modulated Poisson arrival processes and illustrate the effectiveness of the message batching scheme.
Keywords
Markov processes; electronic messaging; gradient methods; perturbation techniques; wireless sensor networks; Markov modulated Poisson arrival processes; SPA gradient estimator; Smoothed Perturbation Analysis; baseline analytical model; communication energy; controllable batching time; message batching; message latency; online optimization; online performance optimization; perturbation analysis; stochastic approximation algorithm; wireless sensor networks; Analytical models; Approximation algorithms; Communication system control; Delay; Energy capture; Measurement; Optimization; Performance analysis; Stochastic processes; Wireless sensor networks; Batching; Perturbation Analysis; Wireless Sensor Network;
fLanguage
English
Publisher
ieee
Conference_Titel
Decision and Control, 2007 46th IEEE Conference on
Conference_Location
New Orleans, LA
ISSN
0191-2216
Print_ISBN
978-1-4244-1497-0
Electronic_ISBN
0191-2216
Type
conf
DOI
10.1109/CDC.2007.4434280
Filename
4434280
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