From NS-2 to NS-3 - Implementation and evaluation

N. Kamoltham, K. N. Nakorn, K. Rojviboonchai
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引用次数: 13

Abstract

NS-2 is the most famous simulator among other network simulators. Most of researchers use NS-2 to evaluate their new protocols/architectures. Although NS-2 has much resource and many available tools to generate different characteristics and network scenarios, source codes created on NS-2 is not able to be reused for real implementation. The releasing of NS-3 changes the way researchers work. NS-3 allows the researchers to work on both simulations and emulations with the same implementation and source codes. These can help researchers to evaluate their works on a single computer for simulation or on a real system without wasting their time to implement their works twice; one in NS-2 simulation and the other in real system. In this paper, we elaborate different points of protocol implementation between NS-2 and NS-3. We recommend a setting for mobility trace in order to obtain correct results between NS-2 and NS-3. Then, as a case study, we use DECA, which is a reliable broadcasting protocol for VANETs and previously implemented on NS-2. How to transfer DECA from NS-2 to NS-3 and how to validate its performance are shown. Moreover, an emulation of DECA on real system using NS-3 is described. The emulation results show a problem caused by asymmetric links which is not concerned in most of literatures. In this paper, therefore, we also propose a simple solution to help protocols' operation in the asymmetric link scenarios. The simulation results show that our solution can improve protocol performance.
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从NS-2到NS-3 -实施和评估
NS-2是网络模拟器中最著名的一个。大多数研究人员使用NS-2来评估他们的新协议/架构。虽然NS-2有很多资源和许多可用的工具来生成不同的特征和网络场景,但在NS-2上创建的源代码无法在实际实现中重用。NS-3的发布改变了研究人员的工作方式。NS-3允许研究人员使用相同的实现和源代码进行模拟和仿真。这可以帮助研究人员在一台模拟计算机上或在一个真实系统上评估他们的工作,而不会浪费他们的时间来执行他们的工作两次;一个在NS-2仿真中,另一个在实际系统中。本文详细阐述了NS-2和NS-3协议实现的不同点。为了在NS-2和NS-3之间获得正确的结果,我们建议设置移动跟踪。然后,作为一个案例研究,我们使用DECA,这是一种可靠的vanet广播协议,以前在NS-2上实现。介绍了如何将DECA从NS-2转换到NS-3,以及如何验证其性能。此外,还利用NS-3在实际系统上进行了DECA仿真。仿真结果显示了非对称链路引起的一个问题,而这在大多数文献中都没有得到关注。因此,在本文中,我们也提出了一个简单的解决方案,以帮助协议在非对称链路场景下运行。仿真结果表明,该方案可以提高协议的性能。
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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