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Optimization of Mobile IPv6-Based Handovers to Support VoIP Services in Wireless Heterogeneous Networks

机译:优化基于移动IPv6的切换以支持无线异构网络中的VoIP服务

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The support of voice over Internet Protocol (VoIP) services in next-generation wireless systems requires the coupling of mobility with quality of service. The mobile node can experience disruptions or even intermittent disconnections of an ongoing real-time session due to handovers. The duration of such interruptions is called disruption time or handover delay and can heavily affect user satisfaction. Therefore, this delay needs to be minimized to provide good-quality VoIP services. In this paper, the focus is on the network layer mobility, specifically on mobile Internet Protocols (MIPs), since they are natural candidates for providing mobility at layer 3. Using analytical models, the authors evaluate MIPv4, MIPv6, fast MIPv6 (FMIPv6), and hierarchical MIPv6 (HMIPv6) and compare their performances in terms of handover delay for VoIP services. To optimize the handover delay, the authors propose to use the adaptive retransmission timer described in this paper. The results obtained using the adaptive timer technique show that for a 3% frame error rate and a 128-kb/s channel, the handoff delay is about 0.075 s (predictive) and 0.051 s (reactive) for FMIPv6. It is around 0.047 s [intra-mobile anchor point (MAP)] and 1.47 s (inter-MAP) for HMIPv6, around 1 s for MIPv6, and 0.26 s for MIPv4
机译:下一代无线系统中对Internet协议语音(VoIP)服务的支持要求将移动性与服务质量结合起来。由于切换,移动节点可能会遇到正在进行的实时会话中断甚至中断的情况。这种中断的持续时间称为中断时间或切换延迟,并且可能严重影响用户满意度。因此,需要最小化此延迟以提供高质量的VoIP服务。在本文中,重点是网络层移动性,尤其是移动Internet协议(MIP),因为它们是在第3层提供移动性的自然候选者。作者使用分析模型评估了MIPv4,MIPv6,快速MIPv6(FMIPv6) ,分层MIPv6(HMIPv6),并根据VoIP服务的切换延迟比较它们的性能。为了优化切换延迟,作者建议使用本文描述的自适应重传计时器。使用自适应计时器技术获得的结果表明,对于3%的帧错误率和128-kb / s的信道,FMIPv6的切换延迟约为0.075 s(可预测)和0.051 s(可响应)。 HMIPv6约为0.047 s [移动内锚点(MAP)]和1.47 s(MAP间),MIPv6约为1 s,MIPv4约为0.26 s

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