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RVIP: Bridging Live Networks and Software Virtual Networks for Large Scale Network Simulation at Real Time

机译:RVIP:桥接实时网络和软件虚拟网络以实时进行大规模网络仿真

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In this work we investigate real-virtual interface pair (RVIP). a new interface system proposed for hybrid network simulation. In the hybrid system, multiple live networks (LNs) and multiple software virtual networks (SVNs) are connected together via standard IP protocols in an arbitrary topology and at real time. RVIP seeks to implement a new Turing-indistinguishable mode so that an LN and its counterpart SVN are indistinguishable in regards to a third-party live node. To realize the new mode, three necessary conditions must be satisfied: (1) All needed changes incurred by introducing an SVN into a live network scenario are put on the simulation's side, RVIP requires that no change is made on any live node; (2) An SVN does not exchange simulation events with LNs, that is, only standard IP protocol interactions between SVN and LN are allowed. (3) Any LN can be dynamically plugged into the hybrid scenario at real time, just like being plugged into an equivalent purely live network. RVIP realizes the mapping between a live IP protocol stack and a virtual IP protocol stack (V1PS) by presenting a progressive series of connection patterns, namely mapping single virtual node, to live node, combining LN with SVN and connecting multi-SVNs. Then we can construct more complex hybrid scenarios by combining these patterns. Compared to existing hybrid simulation efforts on NS-3, QualNet and OPNET, RVIP can support hybrid scenarios with multiple SVNs and multiple LNs connected by an arbitrary network topology. Our performance studies show that RVIP provides more efficient support in terms of common metrics such as larger throughput limit and smaller extra latency.
机译:在这项工作中,我们研究了真正的虚拟接口对(RVIP)。提出了一种用于混合网络仿真的新接口系统。在混合系统中,多个实时网络(LN)和多个软件虚拟网络(SVN)通过标准IP协议以任意拓扑结构实时连接在一起。 RVIP试图实现一种新的图灵不可区分的模式,以使LN及其对应的SVN在第三方活动节点方面无法区分。为了实现新模式,必须满足三个必要条件:(1)将SVN引入实时网络场景所引起的所有必要更改都放在仿真侧,RVIP要求在任何实时节点上均不进行任何更改; (2)SVN不与LN交换仿真事件,即仅允许SVN与LN之间的标准IP协议交互。 (3)任何LN都可以实时动态地动态插入混合场景,就像插入等效的纯实时网络一样。 RVIP通过呈现一系列连接模式,即将单个虚拟节点映射到活动节点,将LN与SVN结合,并连接多个SVN,来实现实时IP协议栈和虚拟IP协议栈(V1PS)之间的映射。然后,我们可以通过组合这些模式来构建更复杂的混合方案。与在NS-3,QualNet和OPNET上进行的现有混合仿真工作相比,RVIP可以支持具有通过任意网络拓扑连接的多个SVN和多个LN的混合方案。我们的性能研究表明,RVIP在通用指标(例如更大的吞吐量限制和更小的额外延迟)方面提供了更有效的支持。

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