Modeling and Validating the Optimal Routes of a Sensor Network Using the Electrostatic Field Equations

A. Jabbar, M. H. Mohammed
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Abstract

In this paper, the analogy between the optimal routes within a sensor network and the electrostatic field lines is utilized successfully. In other words, partial differential equations similar to those of the electrostatic field theory are solved using Finite Difference Method (FDM) to find the optimal routes of the network. For the purpose of validation, an Opnet program based on the generated optimal routes is written to find the throughput and delay of the sensor network, a similar program is then applied to some arbitrary routing scenarios. The results show that the throughput and delay performance of the proposed method is better than that of the chosen arbitrary routing scenarios. It is also found from the results that the throughput of some scenarios is 50 % lower than that of the proposed method.
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基于静电场方程的传感器网络最优路径建模与验证
本文成功地利用了传感器网络内最优路径与静电场线之间的类比。也就是说,用有限差分法求解类似于静电场理论的偏微分方程,从而求得网络的最优路径。为了验证该算法的有效性,基于生成的最优路由编写了一个Opnet程序来计算传感器网络的吞吐量和延迟,然后将类似的程序应用于一些任意路由场景。结果表明,该方法的吞吐量和延迟性能优于任意选择的路由方案。结果还发现,在某些情况下,吞吐量比所提出的方法低50%。
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