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Analytical Modelling of a New Handover Algorithm for Improve Allocation of Resources in Highly Mobile Environments

机译:高度移动环境中改善资源分配的新切换算法的解析模型

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Wireless and mobile communication systems have evolved considerably in recent years. Seamless mobility is one of the main challenges facing mobile users in wireless and mobile systems. However, highly mobile users lead to a high number of handover failures and unnecessary handovers due to the limited resources and coverage limitations with a high mobile speed. The traditional handover models are unable to cope with high mobile users in such environments. This paper proposes, an intelligent handover decision approach to minimize the probability of handover failures and unnecessary handovers whilst maximizing the usage of resources in highly mobile environments. The proposed approach is based on modelling the system using a Markov chain to enhance the system's performance in terms of blocking probability, mean queue length and transmission delay. The results are compared with the traditional handover model. Simulation is also employed to validate the accuracy of the proposed model. Numerical results have shown that the proposed method outperforms the traditional algorithm over a wide range of handover failures and significantly reduced the number of such failures and unnecessary handovers. The results of this study show that quality if service (QoS) measures of such systems can be evaluated efficiently and accurately using the proposed analytical model. However, the performance results have also shown that it is still necessary to explore an effective model for operational spaces. In addition, the proposed model can also be adapted to various types of networks considering the high speed of the mobile user and the radius of the network.
机译:近年来,无线和移动通信系统已经有了很大的发展。无缝移动性是无线和移动系统中移动用户面临的主要挑战之一。然而,由于有限的资源和高速移动的覆盖范围限制,高度移动的用户导致大量的切换失败和不必要的切换。在这种环境下,传统的切换模型无法应对高移动用户。本文提出了一种智能切换决策方法,该方法可以最大程度地减少切换失败和不必要切换的可能性,同时在高度移动的环境中最大程度地利用资源。所提出的方法是基于使用马尔可夫链对系统进行建模的,以在阻塞概率,平均队列长度和传输延迟方面增强系统性能。将结果与传统切换模型进行比较。仿真也被用来验证所提出模型的准确性。数值结果表明,所提出的方法在较大范围的切换失败方面优于传统算法,并且显着减少了此类失败和不必要的切换的次数。这项研究的结果表明,使用提出的分析模型可以有效,准确地评估此类系统的服务质量(QoS)措施。但是,性能结果还表明,仍然有必要探索有效的运营空间模型。另外,考虑到移动用户的高速和网络的半径,所提出的模型也可以适用于各种类型的网络。

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