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On the extension of traditional resource allocation algorithms in LTE-A to joint UL-DL scheduling with FDD carrier aggregation

机译:关于将LTE-A中的传统资源分配算法扩展为采用FDD载波聚合的联合UL-DL调度

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Through and spectral efficiency maximization are two of the most challenging issues to be addressed by current and future cellular networks. To achieve these goals however, radio resources need to be utilized in a coordinated manner to provide better network performance and ensure adequate user quality of service (QoS). The radio resources are controlled by LTE base station (eNodeB) and can be scheduled either independently or jointly by considering both uplink (UL) and downlink (DL). This paper addresses the joint UL-DL scheduling in a carrier aggregation (CA) supportive LTE-advanced networks. This work provides good insights of the implementation of the traditional scheduling algorithms for joint UL-DL scheduling for LTE-A utilizing the functionality of CA. We present preliminary results from a MATLAB-based IS-Wireless system level simulator that confirm the importance of the fair sharing of the resources between the UL and DL channels while maintaining a good QoS. Furthermore, simulation results show that the resource utilization and spectral efficiency can be significantly improved by dynamically changing the bandwidth portion between the UL and DL. Finally, we also show that there is a significant improvement in both UL and DL data rates using the proposed CA and joint scheduling schemes.
机译:直通和频谱效率最大化是当前和未来的蜂窝网络要解决的两个最具挑战性的问题。然而,为了实现这些目标,需要以协调的方式利用无线电资源以提供更好的网络性能并确保足够的用户服务质量(QoS)。无线电资源由LTE基站(eNodeB)控制,可以通过同时考虑上行链路(UL)和下行链路(DL)来独立或联合调度。本文介绍了在支持载波聚合(CA)的LTE先进网络中的联合UL-DL调度。这项工作为利用CA功能为LTE-A进行联合UL-DL调度的传统调度算法的实现提供了很好的见识。我们从基于MATLAB的IS-Wireless系统级仿真器中得出初步结果,证实了在保持良好QoS的同时,在UL和DL通道之间公平共享资源的重要性。此外,仿真结果表明,通过动态更改UL和DL之间的带宽部分,可以显着提高资源利用率和频谱效率。最后,我们还表明,使用建议的CA和联合调度方案,UL和DL数据速率均得到了显着改善。

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