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首页> 外文期刊>IEICE transactions on information and systems >SDN-Based Self-Organizing Energy Efficient Downlink/Uplink Scheduling in Heterogeneous Cellular Networks
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SDN-Based Self-Organizing Energy Efficient Downlink/Uplink Scheduling in Heterogeneous Cellular Networks

机译:异构蜂窝网络中基于SDN的自组织节能下行/上行调度

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摘要

The increase in network access devices and demand for high quality of service (QoS) by the users have led to insufficient capacity for the network operators. Moreover, the existing control equipment and mechanisms are not flexible and agile enough for the dynamically changing environment of heterogeneous cellular networks (HetNets). This non-agile control plane is hard to scale with ever increasing traffic demand and has become the performance bottleneck. Furthermore, the new HetNet architecture requires tight coordination and cooperation for the densely deployed small cell base stations, particularly for interference mitigation and dynamic frequency reuse and sharing. These issues further complicate the existing control plane and can cause serious inefficiencies in terms of users' quality of experience and network performance. This article presents an SDN control framework for energy efficient downlink/uplink scheduling in HetNets. The framework decouples the control plane from data plane by means of a logically centralized controller with distributed agents implemented in separate entities of the network (users and base stations). The scheduling problem consists of three sub-problems: (i) user association, (ii) power control, (iii) resource allocation and (iv) interference mitigation. Moreover, these sub-problems are coupled and must be solved simultaneously. We formulate the DL/UL scheduling in HetNet as an optimization problem and use the Markov approximation framework to propose a distributed economical algorithm. Then, we divide the algorithm into three sub-routines for (i) user association, (ii) power control, (iii) resource allocation and (iv) interference mitigation. These sub-routines are then implemented on different agents of the SDN framework. We run extensive simulation to validate our proposal and finally, present the performance analysis.
机译:网络接入设备的增加以及用户对高服务质量(QoS)的需求已导致网络运营商的容量不足。此外,现有的控制设备和机制对于灵活变化的异构蜂窝网络(HetNets)环境还不够灵活和敏捷。随着交通需求的不断增长,这种非敏捷的控制平面很难扩展,并已成为性能瓶颈。此外,新的HetNet体系结构要求密集部署的小型小区基站进行紧密的协调与协作,尤其是在干扰缓解,动态频率复用和共享方面。这些问题使现有的控制平面进一步复杂化,并可能在用户的体验质量和网络性能方面造成严重的低效率。本文提出了一种用于HetNets中的节能下行/上行调度的SDN控制框架。该框架通过逻辑集中的控制器将控制平面与数据平面分离,该控制器具有在网络的单独实体(用户和基站)中实现的分布式代理。调度问题包括三个子问题:(i)用户关联,(ii)功率控制,(iii)资源分配和(iv)缓解干扰。而且,这些子问题是耦合的,必须同时解决。我们将HetNet中的DL / UL调度表述为一个优化问题,并使用马尔可夫近似框架提出一种分布式经济算法。然后,将算法分为三个子例程,分别用于(i)用户关联,(ii)功率控制,(iii)资源分配和(iv)缓解干扰。然后,这些子例程在SDN框架的不同代理上实现。我们进行了广泛的仿真以验证我们的建议,最后给出了性能分析。

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