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An Efficient Downlink Radio Resource Allocation with Carrier Aggregation in LTE-Advanced Networks

机译:LTE-Advanced网络中具有载波聚合的高效下行链路无线资源分配

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摘要

[[abstract]]In Long Term Evolution-Advanced (LTE-A) networks, the Carrier Aggregation technique is incorporated for user equipments (UEs) to simultaneously aggregate multiple component carriers (CCs) for achieving higher transmission rate. Many research works for LTE-A systems with Carrier Aggregation configuration have concentrated on the radio resource management problem for downlink transmission, including mainly CC assignment and packet scheduling. Most previous studies have not considered that the assigned CCs in each UE can be changed. Furthermore, they also have not considered the modulation and coding scheme constraint, as specified in LTE-A standards. Therefore, their proposed schemes may limit the radio resource usage and are not compatible with LTE-A systems. In this paper, we assume that the scheduler can reassign CCs to each UE at each transmission time interval and formulate the downlink radio resource scheduling problem under the modulation and coding scheme constraint, which is proved to be NP-hard. Then, a novel greedy-based scheme is proposed to maximize the system throughput while maintaining proportional fairness of radio resource allocation among all UEs. We show that this scheme can guarantee at least half of the performance of the optimal solution. Simulation results show that our proposed scheme outperforms the schemes in previous studies.
机译:[[摘要]]在高级长期演进(LTE-A)网络中,为用户设备(UE)合并了载波聚合技术,以同时聚合多个分量载波(CC)以实现更高的传输速率。对于具有载波聚合配置的LTE-A系统,许多研究工作都集中在下行链路传输的无线电资源管理问题上,主要包括CC分配和分组调度。以前的大多数研究都没有考虑到可以更改每个UE中分配的CC。此外,他们还没有考虑LTE-A标准中规定的调制和编码方案约束。因此,他们提出的方案可能会限制无线电资源的使用,并且与LTE-A系统不兼容。在本文中,我们假设调度程序可以在每个传输时间间隔为每个UE重新分配CC,并在调制和编码方案约束下制定下行链路无线资源调度问题,事实证明这是NP-hard的。然后,提出了一种新颖的基于贪婪的方案,以在保持所有UE之间的无线电资源分配成比例公平的同时最大化系统吞吐量。我们证明了该方案可以保证最优解决方案性能的至少一半。仿真结果表明,我们提出的方案优于以前的研究方案。

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  • 作者

    Hong-Sheng Liao;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 [[iso]]en
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