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Performance Analysis of Downlink Inter-band Carrier Aggregation in LTE-Advanced

机译:LTE-advanced中下行带间载波聚合性能分析

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摘要

Carrier aggregation (CA) is one of the most distinct features for LTE-Advanced systems, which can support a much wider transmission bandwidth up to 100 MHz by aggregating two or more individual component carriers (CCs) belonging to the same (intra-band) or different (inter-band) frequency bands. With CA, it is possible to schedule a user equipment (UE) on multiple CCs simultaneously. From radio resource management (RRM) perspective, CC selection plays an important role in optimizing the system performance, especially in the case of inter-band CA where the radio propagation characteristics of each CC can be different. In this paper, we investigate the downlink resource allocation for inter-band CA, i.e., how to assign carrier(s) to different UEs. A simple yet effective G-factor based carrier selection algorithm, which takes both traffic load and radio channel characteristics into considerations, is proposed with the objective to guarantee good coverage for Rel'8 UEs and robustness for Rel'10 UEs. Simulation results show that our proposed G-factor based carrier selection algorithm can achieve much better coverage performance compared to the least-load carrier selection in scenarios with relatively high inter-site distance and relatively high frequency separation between carriers, at the expense of some marginal average user throughput loss.
机译:载波聚合(CA)是LTE-Advanced系统最鲜明的功能之一,它可以通过聚合属于同一频段(频带内)的两个或更多单个分量载波(CC)来支持高达100 MHz的更宽传输带宽或不同的(频带间)频带。使用CA,可以同时在多个CC上调度用户设备(UE)。从无线电资源管理(RRM)的角度来看,CC选择在优化系统性能方面起着重要作用,尤其是在频带间CA的情况下,其中每个CC的无线电传播特性可能不同。在本文中,我们研究了带间CA的下行链路资源分配,即如何将载波分配给不同的UE。提出了一种既简单又有效的基于G因子的载波选择算法,该算法同时考虑了业务负载和无线电信道特性,目的是保证对Rel'8 UE的良好覆盖和对Rel'10 UE的鲁棒性。仿真结果表明,在站点间距离相对较高,载波间频率间隔相对较高的情况下,我们提出的基于G因子的载波选择算法与最小负载载波选择相比,可以获得更好的覆盖性能。平均用户吞吐量损失。

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