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An Effective Sensor Deployment Scheme that Ensures Multilevel Coverage of Wireless Sensor Networks with Uncertain Properties

机译:一种有效的传感器部署方案可确保具有不确定属性的无线传感器网络的多层覆盖

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摘要

The coverage problem is a fundamental problem for almost all applications in wireless sensor networks (WSNs). Many applications even impose the requirement of multilevel ( ) coverage of the region of interest (ROI). In this paper, we consider WSNs with uncertain properties. More precisely, we consider WSNs under the probabilistic sensing model, in which the detection probability of a sensor node decays as the distance between the target and the sensor node increases. The difficulty we encountered is that there is unified definition of -coverage under the probabilistic sensing model. We overcome this difficulty by proposing a “reasonable” definition of -coverage under such a model. We propose a sensor deployment scheme that uses less number of deployed sensor nodes while ensuring good coverage qualities so that (i) the resultant WSN is connected and (ii) the detection probability satisfies a predefined threshold , where . Our scheme uses a novel “zone 1 and zone 1–2” strategy, where zone 1 and zone 2 are a sensor node’s sensing regions that have the highest and the second highest detection probability, respectively, and zone 1–2 is the union of zones 1 and 2. The experimental results demonstrate the effectiveness of our scheme.
机译:覆盖问题是无线传感器网络(WSN)中几乎所有应用程序的基本问题。许多应用程序甚至要求对感兴趣区域(ROI)进行多级()覆盖。在本文中,我们考虑具有不确定属性的无线传感器网络。更准确地说,我们考虑概率感测模型下的WSN,其中传感器节点的检测概率随着目标与传感器节点之间距离的增加而降低。我们遇到的困难是在概率感知模型下对-coverage有统一的定义。我们通过在这种模型下提出-coverage的“合理”定义来克服这一困难。我们提出一种传感器部署方案,该方案使用较少数量的已部署传感器节点,同时确保良好的覆盖质量,以便(i)生成的WSN已连接,并且(ii)检测概率满足预定义的阈值,其中。我们的方案使用一种新颖的“区域1和区域1-2”策略,其中区域1和区域2是传感器节点的感应区域,分别具有最高和第二高的检测概率,区域1-2是传感器节点的并集。 1区和2区。实验结果证明了该方案的有效性。

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