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An enhanced fast handover with seamless mobility support for next-generation wireless networks

机译:增强的快速切换以及对下一代无线网络的无缝移动性支持

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To allow mobile node be always connected regardless of its location on the Internet, mobile IPv6 (MIPv6) is designed for next-generation wireless networks. However, this protocol has some inherent drawbacks: long handoff delay and high packet loss; unbearable for many applications. To improve the performance, mobility protocols such as Fast handovers for MIPv6 (FMIPv6), Fast handover for Hierarchical MIPv6 (F-HMIPv6), Simplified Fast handover for MIPv6 networks (SFMIPv6), are proposed by researchers. But none of them can support seamless mobility. This paper proposes an enhanced fast handover protocol with seamless mobility supports, called enhanced Seamless MIPv6 (e-SMIPv6). Bidirectional tunnels are established among access routers before actual handover; accordingly mobile users can use their previous care-of address within a new visiting network. To reduce the delay related to duplicate address detection, each access router maintains a pool of duplicate-free addresses. To minimize packet loss, access router performs bicasting for roaming node. Our proposal can minimize mobility signaling as much as possible during handoff, which presents an ideal solution for fast moving and ping-pang moving mobile users. To analyze the performance, the city section mobility model is used. Of which numerical results show that e-SMIPv6 yields better performance than FMIPv6. (C) 2014 Elsevier Ltd. All rights reserved.
机译:为了使移动节点始终可以连接,无论其在Internet上的位置如何,移动IPv6(MIPv6)均设计用于下一代无线网络。然而,该协议具有一些固有的缺陷:长的切换延迟和高的分组丢失;在许多应用中无法承受。为了提高性能,研究人员提出了诸如MIPv6快速切换(FMIPv6),分层MIPv6快速切换(F-HMIPv6),MIPv6网络简化快速切换(SFMIPv6)等移动协议。但是它们都不支持无缝移动性。本文提出了一种具有无缝移动性支持的增强型快速切换协议,称为增强型无缝MIPv6(e-SMIPv6)。在实际切换之前,在接入路由器之间建立了双向隧道。因此,移动用户可以在新的访问网络中使用其先前的转交地址。为了减少与重复地址检测有关的延迟,每个访问路由器都维护一个无重复地址池。为了最大程度地减少数据包丢失,接入路由器对漫游节点执行双播。我们的建议可以在切换过程中尽可能减少移动信令,这为快速移动和乒乓移动用户提供了理想的解决方案。为了分析性能,使用了城市路段流动性模型。其中的数值结果表明,e-SMIPv6的性能优于FMIPv6。 (C)2014 Elsevier Ltd.保留所有权利。

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