Solving the data overload: Device-to-device bearer control architecture for cellular data offloading

Solving the data overload: Device-to-device bearer control architecture for cellular data offloading
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DOI:
10.1109/mvt.2012.2234052
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发表时间:
2013-02
影响因子:
8.1
通讯作者:
Mijeong Yang;S. Lim;H. Park;Nam-Hoon Park
Mijeong Yang;S. Lim;H. Park;Nam-Hoon Park
中科院分区:
计算机科学2区
文献类型:
--
作者:
Mijeong Yang;S. Lim;H. Park;Nam-Hoon Park

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移动的用户数量和多媒体业务的爆炸式增长导致蜂窝网络中严重的业务过载问题。第三代合作伙伴计划(3GPP)已经将数据卸载定义为科普该问题的关键领域。本地IP接入(利帕)和选择性IP流量卸载(SIPTO)被认为是实现蜂窝数据卸载的典型技术。当前,已经提出了设备到设备(D2 D)通信作为新的数据卸载解决方案。蜂窝基础设施下的D2 D通信降低了无线电接入网络负载以及核心网络负载。蜂窝网络需要建立用于D2 D通信的新型无线电承载,并且该承载可以提供设备之间的直接业务路径。在这篇文章中,我们提出了一个D2 D承载控制架构的D2 D通信支持的长期演进高级(LTE-A)的基础设施。这可能是用于从蜂窝网络卸载数据的可行且有效的解决方案。
The explosive growth of the mobile user population and multimedia services are causing a severe traffic overload problem in the cellular network. The Third-Generation Partnership Project (3GPP) has defined data offloading as a critical area to cope with this problem. Local IP access (LIPA) and selected IP traffic offload (SIPTO) are considered to be the typical technologies to implement cellular data offloading. Currently, device-to-device (D2D) communication has been proposed as a new dataoffloading solution. The D2D communication underlying a cellular infrastructure reduces the radio access network load as well as the core network load. The cellular network needs to establish a new type of radio bearer for D2D communications, and this bearer can provide the direct traffic path between devices. In this article, we propose a D2D bearer control architecture for D2D communications supported by a longterm evolution-advanced (LTE-A) infrastructure. This could be a feasible and efficient solution for offloading data from the cellular network.