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A Hybrid Virtualization Approach to Emulate Network Nodes of Heterogeneous Architectures

机译:混合虚拟化方法,用于模拟异构架构网络节点

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摘要

In the recent years, resource virtualization technologies of different types have been widely used in the ICT industry, particularly in cloud computing domain. These virtualization technologies can squeeze out hardware potential and consequently can significantly save CAPEX and OPEX. Virtualization technologies are adopted in network emulation to emulate heterogeneous nodes of target networks. At present, network emulators typically utilize legacy x86-based virtual machines (VMs) and light-weighted containers to emulate network nodes of heterogeneous architectures including ARM, SPARC, PPC, etc., which introduces software incompatibility to the original system software, protocols and applications, and may consequently jeopardize emulation fidelity. This paper focuses on mitigating the emulation incompatibility problem caused by node heterogeneity. Firstly, this problem is thoroughly investigated and analyzed on a cloud-based network emulation platform. Then, a hybrid virtualization approach concurrently utilizing multiple virtualization technologies, namely KVM, QEMU, and Docker to emulate heterogeneously architected nodes is derived and then implemented in the cloud-based network emulation platform. Functional verification and performance evaluation experiments have been carried out and have led to the conclusion that the elaborated hybrid virtualization approach can effectively dispose of the emulation incompatibility problem with affordable performance degradations. In addition, a case study of applying the hybrid virtualization approach to emulate a space-ground integrated network (SGIN) is conducted to show its effectivity and efficiency.
机译:近年来,不同类型的资源虚拟化技术已广泛用于ICT行业,特别是在云计算领域。这些虚拟化技术可以挤出硬件潜力,从而可以显着地保存资本支出和OPEX。网络仿真中采用虚拟化技术以模拟目标网络的异构节点。目前,网络仿真器通常利用传统的基于X86的虚拟机(VM)和光加权容器,以模拟异构架构的网络节点,包括ARM,SPARC,PPC等,这引入了原始系统软件,协议和协议的软件不相容应用程序,因此可能会危及仿真保真度。本文侧重于减轻节点异质性引起的仿真不相容问题。首先,在基于云的网络仿真平台上彻底调查并分析了这个问题。然后,推导出利用多个虚拟化技术,即KVM,QEMU和Docker来模拟异构地架构节点的混合虚拟化方法,然后在基于云的网络仿真平台中实现。已经进行了功能验证和性能评估实验并导致了精心制定的混合虚拟化方法可以有效地处理仿真不相容问题,以实惠的性能降级。另外,对应用混合虚拟化方法仿真空间地集成网络(SSGIN)的案例研究以显示其有效性和效率。

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