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Scheduling Based on Maximum PF Selection with Contiguity Constraint for SC-FDMA in LTE Uplink

机译:LTE上行链路中基于最大PF选择且具有连续性约束的SC-FDMA调度

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摘要

Single-carrier frequency division multiple access (SC-FDMA), which is similar to multi carrier modulation type with orthogonal frequency domain multiple access (OFDMA), has been used as long term evolution (LTE) uplink access method due to its low PAPR and high UE power efficiency. SC-FDMA, however, has a constraint that subcarriers must be consecutively allocated to each user for every time slot due to the single carrier feature of the access type. This paper proposes an LTE uplink scheduling algorithm satisfying the contiguity constraint of resource allocation and ensuring high cell (system) throughput and fairness with low complexity. The proposed scheme, named MSCC, preferentially considers allocation to RBs based on the highest Proportional Fair scheduling metric in each physical resource block (RB) with the contiguity constraint. As a result of simulation analysis, MSCC has better fairness and cell throughput than the previous schemes (i.e., RME, IRME algorithm) by 10% and 17% at most, respectively. We also analyze cell edge user throughput (the gathering with the cell users who have 5% lowest throughput) and PAPR. In the appendix, complexity analysis shows that the time complexity of the MSCC is better than the previous schemes.
机译:单载波频分多址(SC-FDMA)与具有正交频域多址(OFDMA)的多载波调制类型相似,由于其PAPR低和长期演进(LTE)上行链路接入方法而被使用UE功率效率高。然而,由于接入类型的单载波特征,SC-FDMA具有约束,必须针对每个时隙将子载波连续地分配给每个用户。本文提出了一种LTE上行调度算法,该算法既满足资源分配的连续性约束,又可以确保小区(系统)的吞吐量和公平性高,复杂度低。提议的方案称为MSCC,它优先考虑在每个具有邻接性约束的物理资源块(RB)中基于最高比例公平调度指标对RB进行分配。作为仿真分析的结果,与先前的方案(即,RME,IRME算法)相比,MSCC具有更好的公平性和小区吞吐量,分别最多为10%和17%。我们还分析了小区边缘用户吞吐量(与吞吐量最低5%的小区用户的聚集)和PAPR。在附录中,复杂度分析表明,MSCC的时间复杂度优于以前的方案。

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