Title
A Dynamic-alliance-based Adaptive Task Allocation Algorithm in Wireless Sensor Networks
Abstract
In distributed sensor networks, which have limited resources, such as energy and storage, and work in a dynamic environment, the networks should effectively allocate some real-time tasks on those limited resources. Additionally, we should do our best to maximize the lifetime of wireless sensor networks (WSNs) and the accuracy of the results. Due to most of previous works focusing on static task allocation for WSNs and only a few works having paid attention to dynamic resource allocation for sensor networks, this paper present an effectively adaptive task allocation (EATA) in WSNs which applied dynamic alliance. Instead of being aid of manual adjustment, each node can autonomously adjust its parameters and state by means of EATA according to tracking the change of environment, such as energy depletion. By comparing with static task allocation, experiment results show that our scheme can save a great deal of energy and prolong the lifetime of the network.
Year
DOI
Venue
2010
10.1109/GCC.2010.75
GCC
Keywords
Field
DocType
dynamic environment,sensor network,task allocation,limited resource,static task allocation,wireless sensor network,resource allocation,effectively adaptive task allocation,distributed sensor networks,dynamic-alliance-based adaptive task allocation algorithm,dynamic alliance,wireless sensor netoworks,adaptive task allocation,wireless sensor networks,dynamic resource allocation,dynamic-alliance-based adaptive task allocation,real-time task,energy depletion,lead,algorithm design and analysis,real time systems,dynamic scheduling,resource management,real time
Resource management,Key distribution in wireless sensor networks,Algorithm design,Alliance,Computer science,Computer network,Allocation algorithm,Real-time computing,Resource allocation,Dynamic priority scheduling,Wireless sensor network,Distributed computing
Conference
ISBN
Citations 
PageRank 
978-0-7695-4313-0
2
0.39
References 
Authors
3
3
Name
Order
Citations
PageRank
Ying Chen120.39
Wenzhong Guo261176.01
Guolong Chen35211.10