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A Novel Approach to Reduce Handover Latency in Proxy Mobile IPv6 Based on Multi-Homing

机译:基于多归属的减少代理移动IPv6切换时延的新方法

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Proxy Mobile IPv6 (PMIPv6) is a network based mobility management protocol. It is proposed by the Internet Engineering Task Force. In PMIPv6 the Mobile Node (MN) need not participate in signalling of mobility. PMIPv6 is a layer 3 protocol. In this paper the issue of layer 3 mobility is resolved by the Enhanced Open Flow Technique (EOFT). Generally, the open flow protocol makes functions on network devices, routers, switches. Open flow controller act as server for network?devices to make communication between them. In the proposed EOFT-PMIPv6, the control?signalling and mobility is managed by EOFT controller. In PMIPv6, the Mobility Access gateway (MAG) has the responsibility of the control signalling. But in the EOFT-PMIPv6, the responsibility of MAG is done by the EOFT-Controller. In the proposed technique, the mobility management function is isolated from PMIPv6 mechanisms. These isolated mechanisms are combined in the EOFT-Con- troller. This EOFT-Controller satisfies the responsibility of the mechanisms which are separated from PMIPv6. The eminent mobile environment must provide the efficient multi-homing protocols. The proposed technique overcomes the problem of multihoming in PMIPv6. The EOFT-Controller takeover the responsibility of Layer 3 functions. Also, the proposed technique combines with Modified Mobility Access Gateway (M_MAG) and it handles the handover session dynamically. This paper provides the extended architecture of EOFT-PMIPv6 and provide unbeaten handover scheme for multi-homing. The result is provided by systematic analysis based on comparison with PMIPv6 and EOFT-PMIPv6 is obtained.
机译:代理移动IPv6(PMIPv6)是基于网络的移动性管理协议。它是由Internet工程任务组提出的。在PMIPv6中,移动节点(MN)不需要参与移动性信令。 PMIPv6是第3层协议。本文通过增强的开放流技术(EOFT)解决了第3层移动性的问题。通常,开放流协议在网络设备,路由器,交换机上起作用。开放式流量控制器充当网络设备的服务器,以在它们之间进行通信。在提出的EOFT-PMIPv6中,控制信令和移动性由EOFT控制器管理。在PMIPv6中,移动访问网关(MAG)负责控制信令。但是在EOFT-PMIPv6中,MAG的责任是由EOFT控制器完成的。在提出的技术中,移动性管理功能与PMIPv6机制隔离。这些孤立的机制在EOFT控制器中组合在一起。该EOFT控制器满足与PMIPv6分离的机制的责任。杰出的移动环境必须提供有效的多宿主协议。所提出的技术克服了PMIPv6中的多宿主问题。 EOFT-Controller接管了第3层功能。而且,所提出的技术与修改的移动性访问网关(M_MAG)相结合,并且可以动态地处理切换会话。本文提供了EOFT-PMIPv6的扩展体系结构,并提供了用于多归属的不间断切换方案。通过与PMIPv6的比较,通过系统分析提供结果,并获得EOFT-PMIPv6。

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