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Average distance estimation in randomly deployed wireless sensor networks (WSNs): an analytical study

机译:随机部署的无线传感器网络中的平均距离估计(WSNS):分析研究

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摘要

A wireless sensor network (WSN) is an energy-scarce network in which the energy is primarily dissipated by the nodes during data transmission to the base station (BS). The location of the BS dramatically affects the energy dissipation, the throughput, and the lifetime. While in certain studies the optimal positioning of a BS is considered, the system parameters are optimized when the BS location is known in advance in many others. Herein, we provide a general-purpose mathematical framework to find the expected distance value between every point within any n-sided simple polygon shaped sensing field and an arbitrarily located BS. Knowing this value is imperative particularly in random deployment as it is used for energy-efficient clustering. Although similar derivations appear in the related literature, to the best of our knowledge, this study departs from them, since our derivations do not depend on the shape of the field and the orientation of BS relative to it.
机译:无线传感器网络(WSN)是能量稀缺网络,其中能量主要由节点在数据传输到基站(BS)期间消散。 BS的位置显着影响能量耗散,吞吐量和寿命。 虽然在某些研究中考虑了BS的最佳定位,但是当BS位置预先在许多其他方面已知时,优化系统参数。 这里,我们提供通用数学框架,用于在任何N个单独的多边形形状传感传感场和任意位于BS之间找到每个点之间的预期距离值。 了解此值尤其在随机部署中势在必行,因为它用于节能集群。 尽管在相关文献中出现了类似的衍生,但据我们所知,这项研究离开了它们,因为我们的衍生不依赖于场的形状和BS相对于BS的方向。

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