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Optimal Number of Cluster Head Selection for Efficient Distribution of Sources in WSNs

机译:无线传感器网络中有效分配源的最佳簇头选择数

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In this paper, we compare problems of cluster formation and cluster-head selection between different protocols for data aggregation and transmission. We focus on two aspects of the problem: (i) how to guess number of clusters required to proficiently consume available sources for a sensor network, and (ii) how to select number of cluster-heads to cover up sensor networks more proficiently. A sensor in Wireless Sensor Networks (WSNs) can communicate directly only with other sensors that are within a radio range in a cluster. However, in order to enable communication between sensors not within communication range, they must form new clusters in distributed sensors. Several clustering algorithms such as LEACH, DEEC, and SEP have been proposed with the objectives of energy minimization, route-path selection, increased connectivity and network longevity. LEACH protocol and the similar ones assume an energy homogeneous system where a node is not likely to fail due to failure in connectivity and packet dropping. More recent protocols like SEP and TEEN considered the reverse that is energy heterogeneity which is more applicable to case of WSNs. We developed a bi-dimensional chain model to select average number of for DEEC. Simulation results are used to compare performance of different protocols to found optimal solutions of above mentioned problems.
机译:在本文中,我们比较了数据聚合和传输的不同协议之间的簇形成和簇头选择问题。我们关注该问题的两个方面:(i)如何猜测有效消耗传感器网络可用资源所需的簇数,以及(ii)如何选择簇头数目以更有效地覆盖传感器网络。无线传感器网络(WSN)中的传感器只能与群集中无线电范围内的其他传感器直接通信。但是,为了实现不在通信范围内的传感器之间的通信,它们必须在分布式传感器中形成新的群集。已经提出了一些聚类算法,例如LEACH,DEEC和SEP,目的是实现能量最小化,路由选择,增加连接性和网络寿命。 LEACH协议和类似协议假定采用能量均匀的系统,在该系统中,节点由于连接故障和数据包丢失而不太可能发生故障。像SEP和TEEN这样的最新协议认为能量异质性是相反的,它更适用于WSN。我们开发了一个二维链模型来选择DEEC的平均数量。仿真结果用于比较不同协议的性能,以找到上述问题的最佳解决方案。

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