HOF:基于历史的LTE网络卸载框架,使用移动小型蜂窝和Wi-Fi

Mahmoud H. Qutqut, F. Al-turjman, H. Hassanein
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引用次数: 16

摘要

对于移动运营商来说,小型蜂窝部署被视为一种很有前途的解决方案,因为它们有可能以经济高效的方式改善覆盖范围并增加室内区域的容量。与此同时,也在寻求其他部署方案,例如公共交通工具,包括公共汽车和有轨电车。在本文中,我们提出了一种新的基于历史的卸载框架(HOF),通过利用小蜂窝和Wi-Fi网络来减轻公共交通车辆移动用户产生的数据流量对宏网络的负担。一个小型基站(SBS)安装在车辆上;移动SBS (mobSBS)。移动用户与mobSBS通信,而不是与远处的宏基站(macroBS)通信。为了在带宽利用率方面实现高效的分流,移动数据用户按照不同的预先设置的类别进行优先级排序。我们的框架考虑了移动用户的优先级和服务历史,以减轻非连续Wi-Fi可用性的影响,以最大限度地卸载宏蜂窝数据流量。大量的仿真结果表明,我们提出的框架在平均卸载的macroBSs数据流量和从macroBSs卸载的用户总数方面是非常有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
HOF: A History-based Offloading Framework for LTE networks using mobile small cells and Wi-Fi
Small cell deployments are seen as a promising solution for mobile operators due to their potential to improve coverage and increase capacity for indoor areas in a cost-efficient way. Meanwhile, other deployment scenarios are also being sought, such as in public transportation vehicles including buses and streetcars. In this paper, we propose a novel History-based Offloading Framework (HOF) to relieve overburdened macro networks from data traffic generated by mobile users in public transportation vehicles by utilizing small cells and Wi-Fi networks. A small base station (SBS) is installed onboard the vehicle; called a mobile SBS (mobSBS). Mobile users communicate with the mobSBS instead of the distant Macro base station (macroBS). In order to have efficient offloading in terms of bandwidth utilization, mobile data users are prioritized according to different pre-set classes. Our framework takes into account the mobile user's priority and service history to alleviate the effects of non-incessant Wi-Fi availability in order to maximize the offloaded macrocell data traffic. Extensive simulation results have shown that our proposed framework is highly effective in terms of the average offloaded macroBSs data traffic and the total count of offloaded users from the macroBSs.
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