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Coordinated Scheduling for Aircraft In-Cabin LTE Deployment under Practical Constraints

机译:实际约束下机舱内LTE部署的协调调度

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This paper proposes a coordinated multi-point transmission (CoMP) scheduling technique in combination with inter-cell interference coordination (ICIC) techniques, almost blank subframes (ABS) and reduced-power ABS (RP-ABS). It investigates the scheduler performance in the context of an aircraft in- cabin Long Term Evolution (LTE) system deployment. The scheduling problem is solved for an ideal case and a real-world case where LTE system constraints such as common modulation and coding scheme (MCS) assignment per user, channel quality indicator (CQI) reporting and LTE resource allocation (RA) types are considered in the scheduling problem in order to provide a meaningful comparison between real-world and ideal performance. The tradeoff between fairness, which is defined as the lowest variation in user data rates across a large user population, and system throughput is considered as the performance evaluation metric of the system. It is shown that when the LTE constraints are employed, the ideal user data rate and system throughput performance is drastically degraded regardless of the used ICIC technique. In the ideal case, where the LTE constraints are not considered, RP-ABS becomes the optimum tradeoff between fairness and system throughput which achieves a variation of 4.4 Mbps between the lowest and highest user rate, an average user rate of 3 Mbps and an average system throughput of 500 Mbps. However, when the LTE system constraints are taken into account, ABS becomes the optimum technique for the considered onboard system which achieves a variation of 1.7 Mbps, an average user rate of 1.5 Mbps and an average system throughput of 265 Mbps.
机译:本文结合小区间干扰协调(ICIC)技术,几乎空白子帧(ABS)和功率降低的ABS(RP-ABS),提出了一种协调多点传输(CoMP)调度技术。它在飞机机舱长期演进(LTE)系统部署的背景下调查了调度程序的性能。针对理想情况和现实情况解决了调度问题,在这种情况下,考虑了LTE系统约束,例如每个用户的通用调制和编码方案(MCS)分配,信道质量指示符(CQI)报告和LTE资源分配(RA)类型为了在现实世界和理想性能之间进行有意义的比较,需要对调度问题进行分析。公平性(定义为整个大用户群中用户数据速率的最低变化)与系统吞吐量之间的折衷被认为是系统的性能评估指标。结果表明,当采用LTE约束时,无论使用何种ICIC技术,理想的用户数据速率和系统吞吐性能都会大大降低。在不考虑LTE约束的理想情况下,RP-ABS成为公平性和系统吞吐量之间的最佳折衷方案,可实现最低和最高用户速率,3 Mbps平均用户速率和平均用户速率之间的4.4 Mbps差异系统吞吐量为500 Mbps。但是,当考虑到LTE系统约束时,ABS成为考虑的机载系统的最佳技术,该系统实现了1.7 Mbps的变化,1.5 Mbps的平均用户速率和265 Mbps的平均系统吞吐量。

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