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QoS aware downlink scheduler for a carrier aggregation LTE-Advance network with efficient carrier power control

机译:具有有效载波功率控制的载波聚合LTE-Advance网络的QoS感知下行链路调度程序

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摘要

Carrier Aggregation (CA) features will enhance Quality of Service (QoS) for the users as well as cell throughput of the LTE-Advanced (LTE-A) base-station (eNodeB). To deliver a high QoS for users, an eNodeB requires a well-designed and efficient CA enabled downlink scheduling algorithm. Enabling aggregation of multiple component carriers leads to huge power consumption compared with non-CA scenario. To the best of our knowledge, CA enabled downlink scheduling mechanisms which have been proposed so far in the literature has not addressed simultaneously the QoS, carrier's power allocation and Physical Resource Block (PRB) utilization while taking scheduling decisions. In this paper, we propose a novel and efficient Multi Objective based CA Scheduling (MOCAS) algorithm, namely MOCAS-MinMax and MOCAS-NSGAII (Non-Dominated Sorting Genetic II). Analysis as well as simulation results reveal that for 100 cell user's scenario, MOCAS (MinMax and NSGAII) gives a minimum cell throughput gain of two times compared with well-referred CA schedulers like round robin (RR), Efficient Packet Scheduling (EPS), Joint Carrier Scheduler (JS), SJS-PF, Cross-CC User Migration (CUM). Moreover, MOCAS have higher PRB utilization as well scheduling energy efficiency compared with RR and EPS.
机译:载波聚合(CA)功能将提高用户的服务质量(QoS)以及高级LTE(LTE-A)基站(eNodeB)的小区吞吐量。为了向用户提供高QoS,eNodeB需要精心设计且高效的启用CA的下行链路调度算法。与非CA方案相比,启用多个分量载波的聚合会导致巨大的功耗。据我们所知,迄今为止在文献中提出的启用CA的下行链路调度机制在做出调度决策时并未同时解决QoS,载波功率分配和物理资源块(PRB)的使用问题。在本文中,我们提出了一种新颖且高效的基于多目标的CA调度(MOCAS)算法,即MOCAS-MinMax和MOCAS-NSGAII(非支配排序遗传II)。分析和仿真结果表明,对于100个小区用户的情况,MOCAS(MinMax和NSGAII)的最小小区吞吐量增益是众所周知的CA调度程序(例如轮询(RR),高效分组调度(EPS),联合运营商调度程序(JS),SJS-PF,跨CC用户迁移(CUM)。此外,与RR和EPS相比,MOCAS具有更高的PRB利用率以及调度能效。

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