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Signal threshold adaptation for vertical handoff in heterogeneous wireless networks

机译:异构无线网络中用于垂直切换的信号阈值适配

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The convergence of heterogeneous wireless access technologies has been envisioned to characterize the next generation wireless networks. In such converged systems, the seamless and efficient handoff between different access technologies (vertical handoff) is essential and remains a challenging problem. The heterogeneous co-existence of access technologies with largely different characteristics results in handoff asymmetry that differs from the traditional intra-network handoff (horizontal handoff) problem. In the case where one network is preferred, the vertical handoff decision should be carefully executed, based on the wireless channel state, network layer characteristics, as well as application requirements. In this paper, we study the performance of vertical handoff using the integration of 3G cellular and wireless local area networks as an example. In particular, we investigate the effect of an application-based signal strength threshold on an adaptive preferred-network lifetime-based handoff strategy, in terms of the signalling load, available bandwidth, and packet delay for an inter-network roaming mobile. We present an analytical framework to evaluate the converged system performance, which is validated by computer simulation. We show how the proposed analytical model can be used to provide design guidelines for the optimization of vertical handoff in the next generation integrated wireless networks.
机译:已经设想到异构无线接入技术的融合以表征下一代无线网络。在这样的融合系统中,不同接入技术之间的无缝高效切换(垂直切换)至关重要,并且仍然是一个具有挑战性的问题。具有很大不同特征的接入技术的异构共存导致了切换不对称,该不对称与传统的网络内切换(水平切换)问题不同。在首选一个网络的情况下,应根据无线信道状态,网络层特性以及应用要求,仔细执行垂直切换决策。在本文中,我们以3G蜂窝和无线局域网的集成为例来研究垂直切换的性能。特别是,我们针对网络间漫游移动设备的信令负载,可用带宽和数据包延迟方面,研究了基于应用程序的信号强度阈值对自适应首选网络基于生命周期的切换策略的影响。我们提出了一个评估框架,以评估融合系统的性能,并通过计算机仿真对其进行了验证。我们将展示所提出的分析模型如何用于为下一代集成无线网络中的垂直切换优化提供设计指南。

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