Towards empirical study based mathematical modeling for throughput of MANETs

Novia Nurain, M. Mostakim, A. Islam
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引用次数: 1

Abstract

Mathematical modeling for throughput of MANETs considering the impact of different layers in the protocol stack in addition to that of different network parameters remains unexplored till now even though such modeling is considered as the fastest and the most cost-effective tool for evaluating the performance of a network. Therefore, in this paper, we attempt to develop a mathematical model for throughput of MANETs considering both of the aspects. In addition, we also focus on developing mathematical models for delivery ratio and drop ratio, these metrics limit the maximum throughput of a network. In our analysis, we perform rigorous simulation utilizing ns-2 to capture the performance of MANETs under diversified settings. Our rigorous empirical study reveals that we need to develop cross-layer mathematical models for throughput, delivery ratio, and drop ratio to represent the performance of MANETs and such mathematical models need to resolve higher-order polynomial equations. Consequently, our study uncovers a key finding that mathematical modeling of MANETs considering variation in all parameters is not feasible.
基于实证研究的manet吞吐量数学模型
考虑到协议栈中不同层以及不同网络参数影响的manet吞吐量的数学建模至今仍未被探索,尽管这种建模被认为是评估网络性能的最快和最具成本效益的工具。因此,在本文中,我们试图建立一个考虑这两个方面的manet吞吐量的数学模型。此外,我们还专注于开发传输率和丢包率的数学模型,这些指标限制了网络的最大吞吐量。在我们的分析中,我们利用ns-2进行了严格的模拟,以捕获不同设置下的manet的性能。我们严格的实证研究表明,我们需要开发跨层数学模型来表示manet的性能,这些数学模型需要求解高阶多项式方程。因此,我们的研究揭示了一个关键发现,即考虑所有参数变化的manet数学建模是不可实现的。
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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