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Toward green computing in wireless sensor networks: prediction-oriented distributed clustering for non-uniform node distribution

机译:对于无线传感器网络中的绿色计算:面向预均多节点分布的预测分布式聚类

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Recently, researchers and practitioners in wireless sensor networks (WSNs) are focusing on energy-oriented communication and computing considering next-generation smaller and tiny wireless devices. The tiny sensor-enabled devices will be used for the purpose of sensing, computing, and wireless communication. The hundreds/thousands of WSNs sensors are used to monitor specific activities and report events via wireless communication. The tiny sensor-enabled devices are powered by smaller batteries to work independently in distributed environments resulting in limited maximum lifetime of the network constituted by these devices. Considering the non-uniform distribution of sensor-enabled devices in the next-generation mobility centric WSNs environments, energy consumption is imbalanced among the different sensors in the overall network environments. Toward this end, in this paper, a cluster-oriented routing protocol termed as prediction-oriented distributed clustering (PODC) mechanism is proposed for WSNs focusing on non-uniform sensor distribution in the network. A network model is presented, while categorizing PODC mechanism in two activities including setting cluster of nodes and the activity in the steady state. Further cluster set up activity is described while categorizing in four subcategories. The proposed protocol is compared with individual sensor energy awareness and distributed networking mode of clustering (EADC) and scheduled sensor activity-based individual sensor energy awareness and distributed networking mode of clustering (SA-ADC). The metrics including the overall lifetime of the network and nodes individual energy consumption in realistic next-generation WSNs environments are considered in the experimental evaluation. The results attest the reduced energy consumption centric benefits of the proposed framework PODC as compared to the literature. Therefore, the framework will be more applicable for the smart product development in the next-generation WSNs environments.
机译:最近,无线传感器网络(WSN)的研究人员和从业者专注于考虑下一代较小和微小无线设备的能量导向的通信和计算。将用于感测,计算和无线通信的目的将用于启用微小的传感器的设备。数百/数千个WSNS传感器用于通过无线通信监视特定活动和报告事件。启用了微小的传感器的设备由较小的电池供电,可以在分布式环境中独立工作,导致这些设备构成的网络的最大寿命有限。考虑到在下一代移动性的WSNS环境中,在下一代移动性的设备中的不均匀分布,在整个网络环境中的不同传感器中,能量消耗是不平衡的。朝此目的,本文提出了一种被称为预测的分布式聚类(PODC)机制的簇导向的路由协议,用于关注网络中的非均匀传感器分布的WSN。提出了网络模型,同时在两个活动中对PODC机制进行分类,包括设置节点群集和稳定状态的活动。进一步的群集设置活动在四个子类别中进行分类。将所提出的协议与单独的传感器能​​量意识和分布式网络模式进行比较(EADC)和基于传感器活动的单独传感器能量意识和分布式网络模式(SA-ADC)。在实验评估中考虑了包括网络和节点的整体寿命的度量,包括现实下一代WSNS环境中的各个能量消耗。与文献相比,结果证明了所提出的框架PODC的能耗降低。因此,该框架将更适用于下一代WSNS环境中的智能产品开发。

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