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A Mathematical Framework of Optimal Number of Clusters in 3D Noise-Prone WSN Environment

机译:3D噪点无线传感器网络环境中最佳簇数的数学框架

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摘要

In this paper an analytical model of the optimal number of clusters and the corresponding optimal probability are derived for different types of 3D WSN settings utilizing single-hop homogeneous LEACH protocol. Three types of 3D network configurations are analyzed. These include cube, cylinder and sphere network configurations. Energy analysis of these network configurations is done in noise-prone communication environment. The noise is modelled utilizing the probability of reception p(r). A small value of p(r) indicates more packets are dropped, which is a sign of large noise. It was shown through analysis and simulation that optimal number of clusters, optimal probability and energy consumption are affected by the geometry of the 3D WSN, noise, and transmission amplification model used.
机译:在本文中,利用单跳同质LEACH协议,针对不同类型的3D WSN设置,得出了最佳簇数和相应的最佳概率的分析模型。分析了三种类型的3D网络配置。这些包括立方体,圆柱体和球体网络配置。这些网络配置的能量分析是在容易产生噪声的通信环境中完成的。利用接收概率p(r)对噪声建模。 p(r)的较小值表示有更多数据包被丢弃,这表明存在大量噪声。通过分析和仿真表明,最佳群集数,最佳概率和能耗受所用3D WSN的几何形状,噪声和传输放大模型的影响。

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