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Device-to-device communications achieve efficient load balancing in LTE-advanced networks

机译:设备到设备的通信在LTE先进网络中实现了有效的负载平衡

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In LTE-Advanced networks, besides the overall coverage provided by traditional macrocells, various classes of low-power nodes (e.g., pico eNBs, femto eNBs, and relays) can be distributed throughout the macrocells as a more targeted underlay to further enhance the area??s spectral efficiency, alleviate traffic hot zones, and thus improve the end-user experience. Considering the limited backhaul connections within lowpower nodes and the imbalanced traffic distribution among different cells, it is highly possible that some cells are severely congested while adjacent cells are very lightly loaded. Therefore, it is of critical importance to achieve efficient load balancing among multi-tier cells in LTEAdvanced networks. However, available techniques such as smart cell and biasing, although able to alleviate congestion or distribute traffic to some extent, cannot respond or adapt flexibly to the real-time traffic distributions among multi-tier cells. Toward this end, we propose in this article a device-to-device communicationbased load balancing algorithm, which utilizes D2D communications as bridges to flexibly offload traffic among different tier cells and achieve efficient load balancing according to their real-time traffic distributions. Besides identifying the research issues that deserve further study, we also present numerical results to show the performance gains that can be achieved by the proposed algorithm.
机译:在LTE-Advanced网络中,除了传统宏小区提供的总体覆盖范围外,各种类型的低功率节点(例如,微微eNB,毫微微eNB和中继)可以分布在整个宏小区中,作为更具针对性的基础,以进一步扩大面积频谱效率高,缓解了交通热点区域,从而改善了最终用户的体验。考虑到低功率节点内有限的回程连接以及不同小区之间的流量分配不均衡,很有可能某些小区严重拥塞,而相邻小区的负载非常轻。因此,在LTEAdvanced网络中的多层小区之间实现有效的负载平衡至关重要。然而,诸如智能小区和偏置之类的可用技术尽管能够在某种程度上减轻拥塞或分配业务,但是不能灵活地响应或适应多层小区之间的实时业务分配。为此,我们在本文中提出了一种基于设备到设备通信的负载平衡算法,该算法利用D2D通信作为桥接,灵活地分流不同层单元之间的流量,并根据其实时流量分布实现有效的负载平衡。除了确定值得进一步研究的研究问题之外,我们还提供了数值结果以显示所提出算法可以实现的性能提升。

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