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Efficient Suboptimal Resource Allocation Algorithms for Multiuser MIMO-OFDMA Systems

机译:多用户MIMO-OFDMA系统的高效次优资源分配算法

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摘要

Multiple-input multiple-output (MIMO) wireless communication systems in combination with orthogonal frequency division multiple access and space division multiple access are flexible, spectrally efficient and of high capacity. These systems can allocate frequency, time, and space resources adaptively among mobile stations. Optimal resource allocation (RA) for maximizing the sum rate is usually too complex for practical applications, hence suboptimal algorithms are required. The performance of RA algorithms are degraded due to imperfections in channel state information at transmitter (CSIT). Thus, techniques that make the RA algorithm, robust against CSIT errors are favorable. In this paper, two novel suboptimal grouping algorithms are introduced that are shown to achieve better sum rate-complexity and fairness-complexity performances. A novel index is proposed to measure the efficiency of RA algorithms, which takes into account sum rate and complexity simultaneously. Moreover, the effect of erroneous CSIT on sum rate is investigated and it is shown that performance of the proposed RA algorithms with erroneous CSIT are superior to the existing schemes. Finally, fairness performance of the proposed RA algorithms are evaluated, which are shown to be the same if not superior to other existing algorithms.
机译:结合正交频分多址和空分多址的多输入多输出(MIMO)无线通信系统灵活,频谱效率高且容量大。这些系统可以在移动站之间自适应地分配频率,时间和空间资源。对于实际应用而言,用于最大化总速率的最佳资源分配(RA)通常过于复杂,因此需要次优算法。由于发送器(CSIT)的信道状态信息不完善,RA算法的性能下降。因此,使RA算法对CSIT错误具有鲁棒性的技术是有利的。在本文中,介绍了两种新颖的次优分组算法,它们表现出更好的求和率复杂度和公平复杂度性能。提出了一种新的指标来衡量RA算法的效率,该指标同时考虑了总和率和复杂性。此外,研究了错误的CSIT对求和率的影响,结果表明,所提出的带有错误CSIT的RA算法的性能优于现有方案。最后,对所提出的RA算法的公平性进行了评估,如果不优于其他现有算法,该公平性将显示相同。

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