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Reducing computational complexity using transmitter correlation value-assisted schedulers in multiuser MIMO uplink

机译:在多用户MIMO上行链路中使用发射机相关值辅助调度器降低计算复杂度

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摘要

In this paper, a threshold bounded antenna selection scheduler (TBS) and a computational complexity bounded antenna selection scheduler (CCBS) are proposed to reduce computational complexity in multiple input multiple output (MIMO) uplink. In contrast to previous works, a spatially correlated MIMO channel model is considered and a transmitter correlation value (TCV) is newly introduced to assist the antenna selection in addition to the channel gain. For the TBS or CCBS, with predetermined threshold of TCV or ratio of successful antennas (RSAs), full searching (FS) and sub searching (SS) are applied more efficiently to user equipments (UEs) compared with previous schedulers. As a result, the number of candidate antennas in the scheduling set can be reduced, which translates into a lower computational complexity in terms of number of evaluated antenna combinations. Additionally, compared with the TBS, the peak computational complexity can be further reduced by the CCBS. Simulation results show that with proposed schedulers the computational complexity can be reduced by at least 50% with an acceptable compromise of capacity.
机译:本文提出了一种阈值有界天线选择调度器(TBS)和一个计算复杂度有界天线选择调度器(CCBS),以降低多输入多输出(MIMO)上行链路中的计算复杂性。与以前的工作相比,考虑了空间相关的MIMO信道模型,并且新引入了发射机相关值(TCV)以帮助除了信道增益之外的天线选择。对于TBS或CCBS,与先前的调度程序相比,具有TCV的预定阈值或成功天线比率(RSA)的完整搜索(FS)和子搜索(SS)更有效地应用于用户设备(UE)。结果,可以减少调度集中的候选天线的数量,这就所评估的天线组合的数量而言转化为较低的计算复杂度。此外,与TBS相比,CCBS可以进一步降低峰值计算复杂度。仿真结果表明,使用所建议的调度程序,可以在容量可接受的情况下将计算复杂度降低至少50%。

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