覆盖网络中上下文的预测路由

Hahnsang Kim, K. Shin
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引用次数: 5

摘要

当移动节点(MNs)在跨无线接入网络进行切换时,它们的上下文必须被传播,以便无缝地重新建立正在进行的应用程序会话,包括IP报头压缩、安全移动IP、身份验证、授权和计费服务,等等。通过覆盖网络按需或基于MNs移动性预测的路由上下文,引入了新的具有挑战性的上下文管理要求。本文提出了一种对覆盖网络中的上下文进行管理的上下文路由器(CXR)。CXR负责(1)监视MN的交叉切换,(2)分析MN的移动模式,以及(3)在每个MN到达AP或网络之前进行上下文路由。上下文的预测路由是基于从向量距离测量中获得的模式之间的(非)相似性的统计学习来执行的。在仿真接入网中基于MN移动性模型的原型实现上对所提出的CXR进行了评估。我们的评估结果表明,应用于CXR的预测机制在预测精度和计算性能方面都优于基于卡尔曼滤波的方法[34]。
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Predictive routing of contexts in an overlay network
While mobile nodes (MNs) undergo handovers across inter-wireless access networks, their contexts must be propagated for seamless re-establishment of on-going application sessions, including IP header compression, secure Mobile IP, authentication, authorization, and accounting services, to name a few. Routing contexts via an overlay network either on-demand or based on prediction of an MNs' mobility, introduces a new challenging requirement of context management. This paper proposes a context router (CXR) that manages contexts in an overlay network. A CXR is responsible for (1) monitoring of MNs' cross-handover, (2) analysis of MNs' movement patterns, and (3) context routing ahead of each MN's arrival at an AP or a network. The predictive routing of contexts is performed based on statistical learning of (dis)similarities between the patterns obtained from vector distance measurements. The proposed CXR has been evaluated on a prototypical implementation based on an MN mobility model in an emulated access network. Our evaluation results show that the prediction mechanisms applied on the CXR outperform a Kalman-filter-based method [34] with respect to both prediction accuracy and computation performance.
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