Achieving guaranteed connected coverage by using virtual hexagonal partition in wireless sensor networks

Attapol Adulyasas, Zhili Sun, Ning Wang
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引用次数: 3

Abstract

Node provisioning in wireless sensor networks is very high density and is a cause of data duplication. Therefore, sensors' duty-cycling is a significant process in order to reduce data load and prolong network lifetime, where certain sensors are selected to be active, while some others are pushed into sleep mode. However, quality of service in terms of network connectivity and sensing coverage must be guaranteed. This paper proposes a sensor selection method to guarantee connected coverage by using hexagonal tessellation as a virtual partition which consists of many hexagonal cells across the network. Six pieces of equilateral triangles in each hexagonal cell are target areas in which k sensors are selected to operate. Performance of the method is evaluated in terms of quality of connected coverage, number of active nodes, efficient coverage area and chance of node selection.
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在无线传感器网络中利用虚拟六角形分区实现有保证的连接覆盖
无线传感器网络中的节点配置密度非常高,这是导致数据重复的一个原因。因此,为了减少数据负载和延长网络寿命,传感器的占空循环是一个重要的过程,其中某些传感器被选择为活动状态,而另一些传感器被推入睡眠模式。但是,必须保证网络连通性和感知覆盖方面的服务质量。本文提出了一种传感器选择方法,该方法利用六边形网格细分作为网络上多个六边形单元组成的虚拟分区来保证连接覆盖。每个六边形单元中的六块等边三角形是选择k个传感器进行操作的目标区域。从连接覆盖质量、活动节点数量、有效覆盖面积和节点选择机会等方面对该方法的性能进行了评价。
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