Evaluation of CupCarbon Network Simulator for Wireless Sensor Networks

Cristina Lopez-Pavon, S. Sendra, J. Valenzuela-Valdés
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引用次数: 18

Abstract

Wireless sensor networks are a technology in full evolution with great future and a huge quantity of applications. This document lists some of the limitations existing in WSN networks. In addition, several existing techniques are collected to maximize the network's lifetime, demonstrating that efficient use of energy is very important to achieve this goal. Due to the importance of knowing the behaviour of this type of network before its launch, a comparative is established for the options offered by the WSN network simulators available in the market, compared to those offered by CupCarbon. The objective of this project is the evaluation of the CupCarbon simulator through the implementation of an algorithm that aims to maximize the life time of the network, as well as collecting the results offered by this algorithm. In this way, a Dijkstra routing algorithm is developed whose selection of routes depends on the battery level contained in the nodes that constitute the network. This algorithm is referred as dynamic Dijkstra in the present document. To achieve the objectives described, we pretend to simulate the dynamic Dijkstra in CupCarbon, for this aim, the source code is modified, since it is a free code tool. As a result, it is possible to create the original Dijkstra, but certain problems are presented, to develop the part that depends on the energy, related to the functionalities offered by CupCarbon. As an alternative to determine the results associated to the created algorithm, theoretical analyses are accomplished. Consequently, it is concluded that the evaluation of CupCarbon is not satisfactory enough, while the algorithm created maximizes the network's lifetime.
无线传感器网络的CupCarbon网络模拟器的评估
无线传感器网络是一项正在全面发展的技术,具有广阔的发展前景和广泛的应用前景。本文档列出了WSN网络中存在的一些限制。此外,收集了几种现有的技术来最大化网络的生命周期,表明有效利用能源对于实现这一目标非常重要。由于在推出此类网络之前了解其行为的重要性,因此对市场上可用的WSN网络模拟器提供的选项与CupCarbon提供的选项进行了比较。该项目的目标是通过实现一种旨在最大化网络寿命的算法来评估CupCarbon模拟器,并收集该算法提供的结果。通过这种方式,开发了Dijkstra路由算法,该算法的路由选择取决于组成网络的节点中包含的电池电量。该算法在本文档中称为动态Dijkstra。为了实现所描述的目标,我们假装在CupCarbon中模拟动态Dijkstra,为了达到这个目的,我们修改了源代码,因为它是一个免费的代码工具。因此,有可能创建原始的Dijkstra,但提出了一些问题,开发依赖于能源的部分,与CupCarbon提供的功能相关。作为确定与所创建算法相关的结果的另一种选择,完成了理论分析。因此,我们得出的结论是,对CupCarbon的评估不够令人满意,而所创建的算法最大化了网络的生命周期。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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