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On Connectivity Analysis of Smart Antenna Capable Wireless Sensor Networks

机译:智能天线能力无线传感器网络的连接性分析

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Advancements in directional antennas or adaptive antenna arrays (AAA) provide potential benefits in solving various problems in wireless sensor network (WSN). Our earlier studies have investigated feasibility of applying smart antennas for task dissemination and localization purposes [4], [6]. Network connectivity or connectivity probability is also an important issue for smart antenna capable WSN as it relies on received "response" packets from the sensor nodes via routing beam. In this study, we analyze the connectivity of smart antenna (SA) capable wireless sensor networks by modeling the WSN network as a random graph and determine connectivity probability (CP) between the sensor nodes. Analytical and simulation results are presented for connectivity probability and number of sensor nodes under different network conditions such as routing beamwidth, node density, and node transmission range. The results provide the practical values for connectivity probability to design smart antenna based WSN localization and shows that the wider beamwidth and/or higher node density in the routing region provides higher CP level.
机译:方向天线或自适应天线阵列(AAA)的进步提供了解决无线传感器网络(WSN)中的各种问题的潜在好处。我们之前的研究已经调查了应用智能天线进行任务传播和定位目的的可行性[4],[6]。网络连接或连接概率也是能够通过路由光束从传感器节点依赖于接收的“响应”分组的WSN的智能天线的重要问题。在这项研究中,我们通过将WSN网络作为随机图来分析智能天线(SA)能力的无线传感器网络的连接,并确定传感器节点之间的连接概率(CP)。分析和仿真结果显示在不同网络条件下的连接概率和传感器节点的数量,例如路由波束宽度,节点密度和节点传输范围。结果为基于WSN定位设计智能天线的连接概率提供了实际值,并示出了路由区域中的更宽波束和/或更高的节点密度提供了更高的CP电平。

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