Optimal Energy Aware Clustering in Sensor Networks

Sensor networks is among the fastest growing technologies that have the potential of changing our lives drastically. These collaborative, dynamic and distributed computing and communicating systems will be self organizing. They will have capabilities of distributing a task among themselves for effic...

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Main Authors: Majid Sarrafzadeh, Xiaojian Yang, Ankur Srivastava, Soheil Ghiasi
Format: Article
Language:English
Published: MDPI AG 2002-07-01
Series:Sensors
Subjects:
Online Access:http://www.mdpi.com/1424-8220/2/7/258/
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spelling doaj-3604292bc7df46b482aff8bbcb97bcee2020-11-25T00:54:37ZengMDPI AGSensors1424-82202002-07-012725826910.3390/s20700258Optimal Energy Aware Clustering in Sensor NetworksMajid SarrafzadehXiaojian YangAnkur SrivastavaSoheil GhiasiSensor networks is among the fastest growing technologies that have the potential of changing our lives drastically. These collaborative, dynamic and distributed computing and communicating systems will be self organizing. They will have capabilities of distributing a task among themselves for efficient computation. There are many challenges in implementation of such systems: energy dissipation and clustering being one of them. In order to maintain a certain degree of service quality and a reasonable system lifetime, energy needs to be optimized at every stage of system operation. Sensor node clustering is another very important optimization problem. Nodes that are clustered together will easily be able to communicate with each other. Considering energy as an optimization parameter while clustering is imperative. In this paper we study the theoretical aspects of the clustering problem in sensor networks with application to energy optimization. We illustrate an optimal algorithm for clustering the sensor nodes such that each cluster (which has a master) is balanced and the total distance between sensor nodes and master nodes is minimized. Balancing the clusters is needed for evenly distributing the load on all master nodes. Minimizing the total distance helps in reducing the communication overhead and hence the energy dissipation. This problem (which we call balanced k-clustering) is modeled as a mincost flow problem which can be solved optimally using existing techniques.http://www.mdpi.com/1424-8220/2/7/258/Sensor networksBalancedClusteringEnergy dissipationOptimal algorithmMaster nodeCapacity constraint
collection DOAJ
language English
format Article
sources DOAJ
author Majid Sarrafzadeh
Xiaojian Yang
Ankur Srivastava
Soheil Ghiasi
spellingShingle Majid Sarrafzadeh
Xiaojian Yang
Ankur Srivastava
Soheil Ghiasi
Optimal Energy Aware Clustering in Sensor Networks
Sensors
Sensor networks
Balanced
Clustering
Energy dissipation
Optimal algorithm
Master node
Capacity constraint
author_facet Majid Sarrafzadeh
Xiaojian Yang
Ankur Srivastava
Soheil Ghiasi
author_sort Majid Sarrafzadeh
title Optimal Energy Aware Clustering in Sensor Networks
title_short Optimal Energy Aware Clustering in Sensor Networks
title_full Optimal Energy Aware Clustering in Sensor Networks
title_fullStr Optimal Energy Aware Clustering in Sensor Networks
title_full_unstemmed Optimal Energy Aware Clustering in Sensor Networks
title_sort optimal energy aware clustering in sensor networks
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2002-07-01
description Sensor networks is among the fastest growing technologies that have the potential of changing our lives drastically. These collaborative, dynamic and distributed computing and communicating systems will be self organizing. They will have capabilities of distributing a task among themselves for efficient computation. There are many challenges in implementation of such systems: energy dissipation and clustering being one of them. In order to maintain a certain degree of service quality and a reasonable system lifetime, energy needs to be optimized at every stage of system operation. Sensor node clustering is another very important optimization problem. Nodes that are clustered together will easily be able to communicate with each other. Considering energy as an optimization parameter while clustering is imperative. In this paper we study the theoretical aspects of the clustering problem in sensor networks with application to energy optimization. We illustrate an optimal algorithm for clustering the sensor nodes such that each cluster (which has a master) is balanced and the total distance between sensor nodes and master nodes is minimized. Balancing the clusters is needed for evenly distributing the load on all master nodes. Minimizing the total distance helps in reducing the communication overhead and hence the energy dissipation. This problem (which we call balanced k-clustering) is modeled as a mincost flow problem which can be solved optimally using existing techniques.
topic Sensor networks
Balanced
Clustering
Energy dissipation
Optimal algorithm
Master node
Capacity constraint
url http://www.mdpi.com/1424-8220/2/7/258/
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AT xiaojianyang optimalenergyawareclusteringinsensornetworks
AT ankursrivastava optimalenergyawareclusteringinsensornetworks
AT soheilghiasi optimalenergyawareclusteringinsensornetworks
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