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Interworking Scheme Using Optimized SIP Mobility for MultiHomed Mobile Nodes in Wireless Heterogeneous Networks

机译:无线异构网络中使用优化的SIP移动性的多宿主移动节点互通方案

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Nowadays, mobile users wish to use their multi-interface mobile devices to access the Internet through network points of attachment (PoA) based on heterogeneous wireless technologies. They also wish to seamlessly change the PoAs during their ongoing sessions to improve service quality and/or reduce monetary cost. If appropriately handled, multihomed mobile nodes offer a potential solution to this issue. In this paper, we present an improvement of SIP mobility (pre-call plus mid-call mobility) to support seamless mobility of multihomed mobile nodes in heterogeneous wireless networks. Pre-call mobility is extended to associate user identifier (i.e. SIP URI) and interface identifiers (i.e. IP addresses). The multiple addresses of a mobile device are weighted by the user to create a priority list in the SIP server so as to guarantee resilient reachability of mobile nodes and to avoid unnecessary signaling through wireless links, thus saving radio resources. Then, three variations of mid-call mobility, called hard, hybrid and soft procedures, are also proposed. Their main aim is to minimize, or even avoid, packet losses during interface switching at the mobile node. The proposed solutions have been implemented in a wireless heterogeneous testbed composed of 802.11 WLAN plus 3.5 cellular network, which are fully controlled and configurable. The testbed has been used to study the performance and the robustness of the three proposed mid-call mobility procedures.
机译:如今,移动用户希望使用其多接口移动设备通过基于异构无线技术的网络连接点(PoA)来访问Internet。他们还希望在进行中的会议期间无缝更改PoA,以提高服务质量和/或降低货币成本。如果处理得当,多宿主移动节点将为该问题提供潜在的解决方案。在本文中,我们提出了SIP移动性(呼叫前和呼叫中移动性)的改进,以支持异构无线网络中多宿主移动节点的无缝移动性。呼叫前移动性扩展为关联用户标识符(即SIP URI)和接口标识符(即IP地址)。用户对移动设备的多个地址进行加权,以在SIP服务器中创建优先级列表,从而确保移动节点的弹性可达性并避免通过无线链路进行不必要的信令,从而节省了无线电资源。然后,还提出了呼叫中移动性的三种变体,分别称为硬过程,混合过程和软过程。它们的主要目的是最大程度地减少甚至避免在移动节点进行接口交换期间的数据包丢失。所提出的解决方案已在由802.11 WLAN加3.5蜂窝网络组成的无线异构测试平台中实施,该平台完全受控且可配置。该测试床已用于研究三种建议的通话中移动性程序的性能和鲁棒性。

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