随机和现实的移动模型对旁路- aodv路由协议的性能有影响

Ahed Alshanyour, U. Baroudi
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引用次数: 20

摘要

由于缺乏大规模部署的无线自组织网络,仿真是评估和比较不同路由协议方案的主要工具。以往的研究表明,在不同的假定迁移模式下,某一路由协议的行为是不同的。Bypass-AODV是针对移动ad-hoc网络的AODV路由协议的一种新的优化方案。为了提高AODV路由协议的性能,提出了一种本地恢复机制。与AODV相比,该算法在随机航点移动模型下表现出优异的性能。然而,随机航路点是一个简单的模型,可能适用于某些场景,但它不足以捕捉部署manet场景的一些重要移动性特征。在这项工作中,我们将研究旁路- aodv在广泛的移动模型下的性能,包括其他随机移动模型、群体移动模型和车辆移动模型。Ns-2仿真结果表明,bypass-AODV对选择的随机迁移模型不敏感,与AODV相比有明显的性能提升。与AODV相比,它在群体流动模型下的性能相当。但是,对于车辆移动模型,旁路aodv在高速条件下的性能下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Random and realistic mobility models impact on the performance of bypass-AODV routing protocol
Due to lack of mass deployment of wireless ad hoc networks, simulation is the main tool to evaluate and compare different routing protocol proposals. Previous studies have shown that a certain routing protocol behaves differently under different presumed mobility patterns. Bypass-AODV is a new optimization of the AODV routing protocol for mobile ad-hoc networks. It is proposed as a local recovery mechanism to enhance the performance of AODV routing protocol. It shows outstanding performance under random waypoint mobility model compared with AODV. However, random waypoint is a simple model that may be applicable to some scenarios but it is not sufficient to capture some important mobility characteristics of scenarios where MANETs deployed. In this work, we would like to investigate the performance of Bypass-AODV under wide range of mobility models including other random mobility models, group mobility models and vehicular mobility models. Ns-2 simulation results show that bypass-AODV is insensitive to the selected random mobility model and it has a clear performance improvement compared to AODV. It shows a comparable performance under group mobility model compared to AODV. But, for vehicular mobility models, bypass-AODV is suffering from performance degradation at high speed conditions.
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