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Dynamic downlink aggregation carrier scheduling scheme for wireless networks

机译:无线网络的动态下行链路聚合载波调度方案

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摘要

Carrier aggregation has been accepted as a means of bandwidth extension in the third generation long-term evolution-advanced (LTE-advanced) network, in an effort to support high data rate transmission with backwards compatibility. Since there are two or more component carriers (CCs) to be aggregated, it is crucial to design efficient carrier scheduling schemes. In this study, the authors propose a novel dynamic aggregation carrier (DAC) scheme for downlink transmission, which enables CCs to aggregate with each other in a dynamic manner. The dynamic nature of the new scheme allows the total capacity of all CCs to be fully utilised to serve flows, whereas the number of aggregated supplementary CCs is decreased so as to lower the computational complexity at user equipment (UE). Furthermore, the performances of the new scheme and two other carrier scheduling schemes are evaluated thoroughly through both analytical and simulation results. It is demonstrated that the DAC scheme offers good performances in terms of delay and throughput while reducing energy consumption and the signalling overhead at UEs.
机译:载波聚合已被接受为第三代高级长期演进(LTE-Advanced)网络中的一种带宽扩展手段,旨在支持向后兼容的高数据速率传输。由于要聚合两个或更多的分量载波(CC),因此设计有效的载波调度方案至关重要。在这项研究中,作者提出了一种用于下行链路传输的新型动态聚合载波(DAC)方案,该方案使CC能够以动态方式彼此聚合。新方案的动态性质允许充分利用所有CC的总容量来服务流,而减少了聚合的补充CC的数量,从而降低了用户设备(UE)的计算复杂度。此外,通过分析和仿真结果,对新方案和其他两种载波调度方案的性能进行了全面评估。已经证明,DAC方案在延迟和吞吐量方面提供了良好的性能,同时减少了UE的能量消耗和信令开销。

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    《Communications, IET》 |2014年第1期|114-123|共10页
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