基于IEEE 802.21媒体独立切换标准的异构无线接入网快速垂直切换优化策略

R. Tamijetchelvy, G. Sivaradje
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引用次数: 14

摘要

由于无线技术的普及,用户满意度受到终端移动性等因素的极大影响,保证服务质量、随时随地、随时随地接入世界的持续连接等服务变得尤为重要。因此,未来一代无线网络已被预测为各种无线接入网络的集成。异构网络的无缝互联仍然是一项令人兴奋的任务,它要求网络体系结构各层的互连性。在移动通信中,无缝垂直切换是最具挑战性的问题之一。最坏的情况下,可能会导致通信中断、延迟、丢包,影响实时通信性能。为了解决现有方案存在的问题,提出了一种基于IEEE 802.21媒体独立切换(MIH)标准的边缘快速垂直切换移动IP (MIP)协议。本文阐述了基于IEEE 802.21媒体独立切换的异构WLAN/WiMAX网络的优化垂直切换功能,该切换将来自所有不同接入技术的网络功能组合成通用的命令、事件和服务集。该切换场景用于评估具有WLAN/WiMAX接口和IEEE 802.21实体的多模终端的垂直切换性能。这种能力被证明是集成异构网络的移动性、多宿主和路由的有效解决方案。此外,该方案可以显著降低WLAN/WiMAX网络间的业务开销、切换延迟和基站扫描间隔时间。本文给出的移交场景最后展示了垂直移交期间和之后的服务连续性。
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An optimized fast vertical handover strategy for heterogeneous wireless access networks based on IEEE 802.21 media independent handover standard
Owing to ubiquity of wireless technologies, user satisfaction is greatly affected by the factor such as terminal mobility, guaranteeing quality of service, continuous connectivity to access the world anywhere, anytime and any service has gained a significant importance. Hence, the future generation wireless networks have projected as the integration of various wireless access networks. Seamless internetworking of heterogeneous network is still a stimulating assignment and requires interconnectivity at all layers of network architecture. In mobile communication, seamless vertical handover is one of the most challenging issues. The worst case may cause communication interruption, delays and packet losses which affect the real time communication performance. To resolve the problem of prevailing schemes, a marginal fast vertical handover Mobile IP (MIP) protocol using IEEE 802.21 Media Independent Handover (MIH) standard is proposed. In this paper optimized vertical handover functionality is illustrated for heterogeneous WLAN/WiMAX networks based on IEEE 802.21 Media Independent Handover which combines network functionality from all different access technologies into common set of Commands, Events and Services. The proposed handover scenario is used to evaluate the vertical handover performance involving multimode terminal with WLAN/WiMAX interfaces and IEEE 802.21 entities. This capability proves an efficient solution for mobility, multihoming and routing for integrating heterogeneous networks. In addition, the proposed scheme can reduce considerably traffic overhead between WLAN/WiMAX networks, handover latency and base station scanning interval time. The presented handover scenario concludes by presenting service continuity during and after vertical handover.
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