DocumentCode :
1474149
Title :
Capacity of Data Collection in Arbitrary Wireless Sensor Networks
Author :
Chen, Siyuan ; Huang, Minsu ; Tang, Shaojie ; Wang, Yu
Author_Institution :
Dept. of Comput. Sci., Univ. of North Carolina, Charlotte, NC, USA
Volume :
23
Issue :
1
fYear :
2012
Firstpage :
52
Lastpage :
60
Abstract :
Data collection is a fundamental function provided by wireless sensor networks. How to efficiently collect sensing data from all sensor nodes is critical to the performance of sensor networks. In this paper, we aim to understand the theoretical limits of data collection in a TDMA-based sensor network in terms of possible and achievable maximum capacity. Previously, the study of data collection capacity has concentrated on large-scale random networks. However, in most of the practical sensor applications, the sensor network is not uniformly deployed and the number of sensors may not be as huge as in theory. Therefore, it is necessary to study the capacity of data collection in an arbitrary network. In this paper, we first derive the upper and lower bounds for data collection capacity in arbitrary networks under protocol interference and disk graph models. We show that a simple BFS tree-based method can lead to order-optimal performance for any arbitrary sensor networks. We then study the capacity bounds of data collection under a general graph model, where two nearby nodes may be unable to communicate due to barriers or path fading, and discuss performance implications. Finally, we provide discussions on the design of data collection under a physical interference model or a Gaussian channel model.
Keywords :
Gaussian channels; graph theory; interference suppression; protocols; radiofrequency interference; time division multiple access; wireless sensor networks; BFS tree-based method; Gaussian channel model; TDMA-based sensor network; data collection capacity; disk graph model; large-scale random network; lower bound; path fading; protocol interference; upper bound; wireless sensor network; Data models; Delay; Interference; Protocols; Sensors; Upper bound; Wireless sensor networks; Capacity; arbitrary networks; data collection; wireless sensor networks.;
fLanguage :
English
Journal_Title :
Parallel and Distributed Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
1045-9219
Type :
jour
DOI :
10.1109/TPDS.2011.96
Filename :
5733352
Link To Document :
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