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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Enhanced Fast Handover for Network Mobility in Intelligent Transportation Systems
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Enhanced Fast Handover for Network Mobility in Intelligent Transportation Systems

机译:智能交通系统中网络移动性的增强型快速切换

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To maintain the Internet connectivity of a group of nodes in intelligent transportation systems (ITSs), the network mobility basic support (NEMO BS) protocol was standardized. The NEMO BS provides mobility for mobile network nodes (MNNs) in a moving network through a mobile router (MR). Since packet loss in NEMO dramatically increases during a handover as the number of MNNs increases, Mobile IPv6 fast handovers (FMIPv6) was adopted to reduce packet loss and handover latency. However, since FMIPv6 was originally designed for a single mobile node (MN), FMIPv6 based on NEMO (fNEMO) incurs a high tunneling burden on the link between the previous and new access routers (PAR and NAR, respectively). In this paper, we propose an enhanced fNEMO (EfNEMO) as an efficient fast handover scheme that significantly mitigates the tunneling burden and handover latency. In particular, EfNEMO performs a tentative binding update (BU) procedure to register a new care-of address (NCoA) for the MR with the MR's home agent (HA) before the layer-2 handover. Consequently, EfNEMO delivers packets destined for MNNs via various paths between the HA and the NAR without any tunneling. Furthermore, EfNEMO reduces handover latency because it performs the registration to the HA in advance. By establishing an analytical model for the proposed EfNEMO, we investigate the handover performance of NEMO, fNEMO, and EfNEMO. In addition, we compare EfNEMO with NEMO and fNEMO in terms of the overall cost and the handover latency. Simulation is also performed to compare in a more realistic environment. The results of analysis and simulation show that EfNEMO significantly outperforms fNEMO and NEMO.
机译:为了维护智能运输系统(ITS)中一组节点的Internet连接,对网络移动性基本支持(NEMO BS)协议进行了标准化。 NEMO BS通过移动路由器(MR)为移动网络中的移动网络节点(MNN)提供移动性。由于NEMO中的数据包丢失在切换过程中会随着MNN数量的增加而急剧增加,因此采用了移动IPv6快速切换(FMIPv6)来减少数据包丢失和切换延迟。但是,由于FMIPv6最初是为单个移动节点(MN)设计的,所以基于NEMO(fNEMO)的FMIPv6在以前的和新的访问路由器(分别为PAR和NAR)之间的链路上承受很高的隧道负担。在本文中,我们提出了一种增强的fNEMO(EfNEMO),它是一种有效的快速切换方案,可显着减轻隧道负担和切换等待时间。特别是,EfNEMO执行临时绑定更新(BU)程序,以便在第二层切换之前向MR的家乡代理(HA)注册MR的新转交地址(NCoA)。因此,EfNEMO可以通过HA和NAR之间的各种路径传送发往MNN的数据包,而无需任何隧道。此外,EfNEMO减少了切换等待时间,因为它预先执行了向HA的注册。通过为提出的EfNEMO建立分析模型,我们研究NEMO,fNEMO和EfNEMO的切换性能。此外,我们在总体成本和切换延迟方面比较了EfNEMO,NEMO和fNEMO。还执行仿真以在更现实的环境中进行比较。分析和仿真结果表明,EfNEMO明显优于fNEMO和NEMO。

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