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首页> 外文期刊>IEICE Transactions on Communications >Selection of Component Carriers Using Centralized Baseband Pooling for LTE-Advanced Heterogeneous Networks
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Selection of Component Carriers Using Centralized Baseband Pooling for LTE-Advanced Heterogeneous Networks

机译:LTE-Advanced异构网络中使用集中式基带池选择分量载波

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Bandwidth expansion in Long Term Evolution (LTE)-Advanced is supported via carrier aggregation (CA), which aggregates multiple component carriers (CCs) to accomplish very high data rate communications. Heterogeneous networks (HetNets), which set pico-base stations in macrocells are also a key feature of LTE-Advanced to achieve substantial gains in coverage and capacity compared to macro-only cells. When CA is applied in HetNets, transmission on all CCs may not always be the best solution due to the extremely high levels of inter-cell interference experienced by HetNets. Activated CCs that are used for transmission should be selected depending on inter-cell interference conditions and the traffic offered in the cells. This paper presents a scheme to select CCs through centralized control assuming a centralized baseband unit (C-BBU) configuration. A C-BBU involves pooling tens or hundreds of baseband resources where one baseband resource can be connected to any CC installed in remote radio heads (RRHs) via optical fibers. Fewer baseband resources can be prepared in a C-BBU than those of CCs in RRHs to reduce the cost of equipment. Our proposed scheme selects the activated CCs by considering the user equipment (UE) assigned to CCs under the criterion of maximizing the proportional fairness (PF) utility function. Convex optimization using the Karush-Kuhn-Tucker (KKT) conditions is applied to solve the resource allocation ratio that enables user throughput to be estimated. We present results from system level simulations of the downlink to demonstrate that the proposed algorithm to select CCs can outperform the conventional one that selects activated CCs based on the received signal strength. We also demonstrate that our proposed algorithm to select CCs can provide a good balance in traffic load between CCs and achieve better user throughput with fewer baseband resources.
机译:通过载波聚合(CA)支持长期演进(LTE)-高级中的带宽扩展,载波聚合(CA)聚合多个分量载波(CC)以完成非常高的数据速率通信。与仅宏蜂窝小区相比,在宏蜂窝小区中设置微微基站的异构网络(HetNets)也是LTE-Advanced的一项关键功能,可实现覆盖范围和容量的实质性增长。当CA应用于HetNets时,由于HetNets经历的小区间干扰程度很高,因此所有CC上的传输可能并不总是最佳解决方案。应该根据小区间干扰条件和小区中提供的业务来选择用于传输的激活CC。本文提出了一种通过采用集中式基带单元(C-BBU)配置的集中式控制选择CC的方案。 C-BBU涉及汇集数十或数百个基带资源,其中一个基带资源可以通过光纤连接到安装在远程无线电头(RRH)中的任何CC。与RRH中的CC相比,在C-BBU中可以准备的基带资源更少,以降低设备成本。我们的方案通过在最大化比例公平(PF)效用函数的标准下考虑分配给CC的用户设备(UE)来选择激活的CC。应用使用Karush-Kuhn-Tucker(KKT)条件的凸优化来解决资源分配比率,从而可以估算用户吞吐量。我们从下行链路的系统级仿真中得出结果,以证明所提出的选择CC的算法可以胜过基于接收信号强度选择激活CC的传统算法。我们还证明了我们提出的选择CC的算法可以在CC之间的流量负载之间实现良好的平衡,并以更少的基带资源实现更好的用户吞吐量。

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