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Evaluation of NEMO-based approaches for route optimization

机译:基于NemO的路线优化方法评估

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The development of mobile IPv6 protocol marked the first attempt to support mobility of individual devices (hosts) such as laptops, mobile phones and PDAs. However, the recent trend is a drive to support mobility of the entire network (Network Mobility — NEMO). NEMO provides mobility solution based on Mobile Router (MR) concept. The mobile routers maintain session continuity between the Mobile Network Nodes (MNNs) and their Corresponding Nodes (CNs) irrespective of the MR's change of point of attachment. Specifically with NEMO Basic Support protocol, all data packet to or from MNNs must go through the (MR-HA) via bidirectional tunnel (BDT). Thus, the Home Agent (HA) is a critical element for communications between MMNs and its CNs. However, BDT generates sub-optimal and inefficient routing path thereby, increasing the path length and delay. Furthermore, multiple MRs can be connected together (two NEMOs or more) to form nested NEMO, but the network performance suffers the Pinball routing problems, due to different levels of IP encapsulations. Therefore, this paper aims to describe the issues of the Route Optimization (RO). Furthermore, it presents highlights of different scenarios of NEMO RO and analysis of the corresponding proposed solutions.
机译:移动IPv6协议的开发标志着支持单个设备(主机)的移动性,例如笔记本电脑,移动电话和PDA。然而,最近的趋势是支持整个网络的移动性的驱动器(网络移动 - Nemo)。 Nemo提供基于移动路由器(MR)概念的移动解决方案。不管MR的连接点的变化,移动路由器维持移动网络节点(MNNS)和它们对应的节点(CNS)之间的会话连续性。具体使用Nemo基本支持协议,往返MNN的所有数据包必须通过双向隧道(BDT)通过(MR-HA)。因此,归属代理(HA)是MMN和其CNS之间的通信的关键元素。然而,BDT产生次优和低效的路由路径,从而增加了路径长度和延迟。此外,多个MRS可以连接在一起(两个NEMOS或更多)来形成嵌套的NEMO,但由于不同级别的IP封装,网络性能遭受波球路由问题。因此,本文旨在描述路线优化(RO)的问题。此外,它介绍了NEMO RO的不同情景的亮点和相应提出的解决方案的分析。

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