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End-to-End Delay Modeling for Mobile Ad Hoc Networks: A Quasi-Birth-and-Death Approach

机译:移动自组织网络的端到端延迟建模:一种准生死方法

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Understanding the fundamental end-to-end delay performance in mobile ad hoc networks (MANETs) is of great importance for supporting Quality of Service (QoS) guaranteed applications in such networks. While upper bounds and approximations for end-to-end delay in MANETs have been developed in literature, which usually introduce errors in delay analysis, the modeling of exact end-to-end delay in MANETs remains a technical challenge. This is partially due to the highly dynamical behaviors of MANETs, but also due to the lack of an efficient theoretical framework to capture such dynamics. This paper demonstrates the potential application of the powerful Quasi-Birth-andDeath (QBD) theory in tackling the challenging issue of exact endto-end delay modeling in MANETs. We first apply the QBD theory to develop an efficient theoretical framework for capturing the complex dynamics in MANETs. We then show that with the help of this framework, closed form models can be derived for the analysis of exact end-to-end delay and also per node throughput capacity in MANETs. Simulation and numerical results are further provided to illustrate the efficiency of these QBD theory-based models as well as our theoretical findings.
机译:理解移动自组织网络(MANET)中基本的端到端延迟性能对于在此类网络中支持服务质量(QoS)保证的应用非常重要。尽管文献中已经开发了MANET中端到端延迟的上限和近似值,这通常会在延迟分析中引入错误,但MANET中精确的端到端延迟建模仍然是一项技术挑战。这部分归因于MANET的高度动态行为,也归因于缺乏捕获此类动态的有效理论框架。本文演示了强大的准生死理论(QBD)在解决MANET中精确的端到端延迟建模这一具有挑战性的问题方面的潜在应用。我们首先应用QBD理论来开发一个有效的理论框架,以捕获MANET中的复杂动力学。然后,我们证明,借助此框架,可以导出封闭形式的模型,以分析MANET中精确的端到端延迟以及每个节点的吞吐量。进一步提供了仿真和数值结果,以说明这些基于QBD理论的模型的效率以及我们的理论发现。

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