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Seamless Infrastructure Independent Multi Homed NEMO Handoff Using Effective and Timely IEEE 802.21 MIH Triggers

机译:使用有效和及时的IEEE 802.21 MIH触发器实现无缝的,独立于基础架构的多宿主NEMO切换

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Handoff performance of NEMO BS protocol with existent improvement proposals is still not sufficient for real time and QoS-sensitive applications and further optimizations are needed. When dealing with single homed NEMO, handoff latency and packet loss become irreducible all optimizations included, so that it is impossible to meet requirements of the above applications. Then, How to combine the different Fast handoff approaches remains an open research issue and needs more investigation. In this paper, we propose a new Infrastructure independent handoff approach combining multihoming and intelligent Make-Before-Break Handoff. Based on required Handoff time estimation, L2 and L3 handoffs are initiated using effective and timely MIH triggers, reducing so the anticipation time and increasing the probability of prediction. We extend MIH services to provide tunnel establishment and switching before link break. Thus, the handoff is performed in background with no latency and no packet loss while ping- pong scenario is almost avoided. In addition, our proposal saves cost and power consumption by optimizing the time of simultaneous use of multiple interfaces. We provide also NS2 simulation experiments identifying suitable parameter values used for estimation and validating the proposed model.
机译:具有现有改进建议的NEMO BS协议的切换性能仍然不足以用于实时和QoS敏感的应用,并且需要进一步的优化。当处理单归属NEMO时,包括所有优化在内的切换延迟和数据包丢失都变得不可减少,因此无法满足上述应用程序的要求。然后,如何结合不同的快速切换方法仍然是一个开放的研究问题,需要进行更多的研究。在本文中,我们提出了一种新的独立于基础架构的切换方法,该方法结合了多宿主和智能的先断后合切换。根据所需的切换时间估计,使用有效且及时的MIH触发器启动L2和L3切换,从而减少了预期时间并增加了预测的可能性。我们扩展MIH服务,以在链路断开之前提供隧道建立和交换。因此,切换是在后台执行的,没有等待时间,也没有数据包丢失,同时几乎避免了乒乓场景。此外,我们的建议通过优化同时使用多个接口的时间来节省成本和功耗。我们还提供NS2仿真实验,以识别用于估计和验证所提出模型的合适参数值。

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