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A population based approach to model the lifetime and energy distribution in battery constrained wireless sensor networks

机译:基于种群的方法来模拟电池受限的无线传感器网络的寿命和能量分布

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The residual power levels of the nodes in a wireless sensor network determine its important performance metrics like the network lifetime, coverage, and connectivity. In this paper, we present a general framework to model the availability of power at sensor nodes as a function of time, based on models for population dynamics in biological studies. Models are developed for sensors with and without battery recharging and expressions are derived for the network lifetime as well as the distribution and moments of random variables describing the number of sensors with different levels of residual energy as a function of time. The model is also extended to the case where new sensors are periodically added to the network to substitute older sensors that have expended their energy. Finally, the effect of the packet arrival rates and a sensor¿s geographical location are modeled. Simulation results to verify the accuracy of the proposed models are presented.
机译:无线传感器网络中节点的剩余功率水平决定了其重要的性能指标,例如网络寿命,覆盖范围和连接性。在本文中,我们基于生物学研究中的种群动态模型,提出了一个通用框架来对传感器节点处的电源可用性作为时间的函数进行建模。针对有或没有电池充电的传感器开发了模型,并推导了网络寿命以及随机变量的分布和矩的表达式,这些变量描述了具有不同剩余能量水平的传感器数量随时间的变化。该模型还扩展到定期向网络中添加新传感器以替代已消耗能量的旧传感器的情况。最后,对数据包到达率和传感器的地理位置的影响进行了建模。仿真结果验证了所提出模型的准确性。

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