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Coverage and Lifetime Optimization of Wireless Sensor Networks with Gaussian Distribution

机译:高斯分布的无线传感器网络的覆盖范围和生命周期优化

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摘要

A wireless sensor network (WSN) has to maintain a desirable sensing coverage and periodically report sensed data to the administrative center (i.e., base station) and the reporting period may range from months to years. Coverage and lifetime are two paramount problems in a WSN due to constraint of associated battery power. All previous theoretical analysis on the coverage and lifetime is primarily focused on the random uniform distribution of sensors or some specific network scenarios (e.g., a controllable WSN). In this paper, we provide an analytical framework for the coverage and lifetime of a WSN that follows a two-dimensional Gaussian distribution. We also study the coverage and lifetime when the dimensions of Gaussian dispersion (i.e., x, y) admit different Gaussian parameters (i.e., standard deviation, sigmaxnesigmay). We identify intrinsic properties of coverage/lifetime in terms of Gaussian distribution parameters, which is a fundamental issue in designing a WSN. Following the results obtained, we further determine the sensor deployment strategies for a WSN that could satisfy a predefined coverage and lifetime. Two deployment algorithms are developed based on using our analytical models and are shown to effectively increase the WSN lifetime.
机译:无线传感器网络(WSN)必须保持理想的检测范围,并定期将检测到的数据报告给管理中心(即基站),报告期可能在数月到数年之间。由于相关电池电量的限制,覆盖范围和使用寿命是WSN中的两个首要问题。先前关于覆盖范围和寿命的所有理论分析都主要集中在传感器的随机均匀分布或某些特定的网络场景(例如可控WSN)上。在本文中,我们为遵循二维高斯分布的WSN的覆盖范围和生存期提供了一个分析框架。当高斯色散的尺寸(即x,y)接受不同的高斯参数(即标准差,西格玛尼西米)时,我们还将研究覆盖范围和寿命。我们根据高斯分布参数确定覆盖范围/寿命的内在属性,这是设计WSN的基本问题。根据获得的结果,我们进一步确定可以满足预定义覆盖范围和寿命的WSN的传感器部署策略。根据使用我们的分析模型开发了两种部署算法,这些算法可有效延长WSN的使用寿命。

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