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Predictive link trigger mechanism for seamless handovers in heterogeneous wireless networks

机译:异构无线网络中无缝切换的预测链路触发机制

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摘要

Effective and timely link-layer trigger mechanisms can significantly influence the handover performance. The handover process will not perform the correct decision and execution unless adequate and timely link-layer trigger information is delivered. In this paper, a predictive link trigger mechanism for seamless horizontal and vertical handovers in heterogeneous wireless networks is proposed. Unlike previous link trigger algorithms based on predefined signal level thresholds, the link layer triggers in this study are adaptively and timely fired in accordance with the network conditions. Firstly, the time required to perform a handover is estimated based on the neighboring network conditions. Secondly, the time to trigger a Link_Going_Down to initiate a handover is determined using a least mean square linear prediction in which the prediction interval (k{sub}h) is dynamically determined based on the estimated handover time. An upper bound for the packet loss rate during a handover is derived for a Gaussian shadowing channel. A manner in which this approach can be applied to IEEE 802.21 is shown in media independent handover scenarios. Simulation results of the proposed predictive link triggering mechanism show that it provides a timely proactive handover. The packet loss rate observed in a Gaussian shadowing channel remains low during a handover.
机译:有效且及时的链路层触发机制会严重影响切换性能。除非交付了足够及时的链路层触发信息,否则切换过程将无法执行正确的决策和执行。本文提出了一种用于异构无线网络中水平和垂直无缝切换的预测链路触发机制。与以前的基于预定义的信号电平阈值的链路触发算法不同,本研究中的链路层触发是根据网络条件自适应地及时触发的。首先,基于相邻网络状况来估计执行切换所需的时间。其次,使用最小均方线性预测来确定触发Link_Going_Down启动切换的时间,其中基于估计的切换时间动态确定预测间隔(k {sub} h)。对于高斯阴影信道,得出切换期间的丢包率的上限。在与媒体无关的切换方案中,展示了可以将该方法应用于IEEE 802.21的方式。所提出的预测链接触发机制的仿真结果表明,它提供了及时的主动切换。在切换过程中,在高斯阴影通道中观察到的丢包率仍然很低。

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