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An Improved Cross-Layering Design for IPv6 Fast Handover with IEEE 802.16m Entry Before Break Handover

机译:中断切换前具有IEEE 802.16m条目的IPv6快速切换的改进跨层设计

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IEEE 802.16m is an advanced air interface standard which is under development for IMT-Advanced systems, known as 4G systems. IEEE 802.16m is designed to provide a high data rate and a Quality of Service (QoS) level in order to meet user service requirements, and is especially suitable for mobilized environments. There are several factors that have great impact on such requirements. As one of the major factors, we mainly focus on latency issues. In IEEE 802.16m, an enhanced layer 2 handover scheme, described as Entry Before Break (EBB) was proposed and adopted to reduce handover latency. EBB provides significant handover interruption time reduction with respect to the legacy IEEE 802.16 handover scheme. Fast handovers for mobile IPv6 (FMIPv6) was standardized by Internet Engineering Task Force (IETF) in order to provide reduced handover interruption time from IP layer perspective. Since FMIPv6 utilizes link layer triggers to reduce handover latency, it is very critical to jointly design FMIPv6 with its underlying link layer protocol. However, FMIPv6 based on new handover scheme, EBB has not been proposed. In this paper, we propose an improved cross-layering design for FMIPv6 based on the IEEE 802.16m EBB handover. In comparison with the conventional FMIPv6 based on the legacy IEEE 802.16 network, the overall handover interruption time can be significantly reduced by employing the proposed design. Benefits of this improvement on latency reduction for mobile user applications are thoroughly investigated with both numerical analysis and simulation on various IP applications.
机译:IEEE 802.16m是高级空中接口标准,正在为称为4G系统的IMT-Advanced系统开发。 IEEE 802.16m旨在提供高数据速率和服务质量(QoS)级别,以满足用户服务要求,并且特别适合于移动环境。有几个因素会对此类要求产生重大影响。作为主要因素之一,我们主要关注延迟问题。在IEEE 802.16m中,提出并采用了一种增强的第2层切换方案,称为“先入后入”(EBB),以减少切换等待时间。与传统的IEEE 802.16切换方案相比,EBB大大减少了切换中断时间。 Internet工程任务组(IETF)对移动IPv6的快速切换(FMIPv6)进行了标准化,以便从IP层的角度减少切换中断时间。由于FMIPv6利用链路层触发器来减少切换延迟,因此将FMIPv6与底层的链路层协议共同设计是非常关键的。但是,尚未提出基于FMIPv6的新切换方案EBB。在本文中,我们提出了一种基于IEEE 802.16m EBB切换的FMIPv6改进跨层设计。与基于传统IEEE 802.16网络的常规FMIPv6相比,通过采用建议的设计,可以显着减少总切换中断时间。通过数值分析和各种IP应用程序的仿真,彻底研究了这种改进对减少移动用户应用程序的延迟的好处。

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