Virtual Ad hoc Network testbeds for high fidelity testing of tactical network applications

A. Poylisher, C. Serban, John Lee, Te Lu, R. Chadha, C. Chiang, K. Jakubowski, R. Orlando
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引用次数: 8

Abstract

Testing of applications for tactical MANETs poses a special technical challenge due to the difficulty of conducting experiments in an ad hoc network environment at a scale larger than a few nodes. One approach is to conduct experiments in a testbed that can imitate a tactical MANET to the highest feasible level of fidelity. For applications, this is achieved by executing unmodified software under real operating systems and realistic hardware resources. For the network, it is achieved by using an emulated/simulated network that behaves like a real MANET in some/all layers of the protocol stack. In this paper, we describe the current state of Virtual Ad hoc Network (VAN) Testbed1 technologies for constructing testbeds that allow testing unmodified tactical applications over simulated MANETs, including network-aware applications. On the application side, we employ Xen-based virtualization to provide high fildelity of application execution environment, testbed resource scalability and manageability. On the network side, we employ user-provided simulation models and enable seamless integration of the hosts that run the software under test with virtual nodes in a simulated network. Our goal is to enable running experiments over large-scale (500–1000 nodes) MANETs using VAN testbeds.
用于战术网络应用高保真度测试的虚拟自组网测试平台
由于在比几个节点更大的规模的自组织网络环境中进行实验的困难,战术manet的应用测试提出了一个特殊的技术挑战。一种方法是在测试台上进行实验,以达到最高可行的保真度。对于应用程序,这是通过在实际操作系统和实际硬件资源下执行未经修改的软件来实现的。对于网络,它是通过在协议栈的某些/所有层中使用一个行为像真实的MANET的仿真/模拟网络来实现的。在本文中,我们描述了虚拟自组织网络(VAN)测试平台1技术的现状,该技术用于构建测试平台,允许在模拟的manet上测试未修改的战术应用,包括网络感知应用。在应用端,我们采用基于xen的虚拟化技术,提供高实时性的应用执行环境、测试平台资源的可扩展性和可管理性。在网络方面,我们采用用户提供的仿真模型,使运行被测软件的主机与模拟网络中的虚拟节点无缝集成。我们的目标是使用VAN测试平台在大规模(500-1000个节点)的manet上运行实验。
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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