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A novel combined CSI feedback mechanism to support multi-user MIMO beamforming schemes in TDD-OFDMA systems

机译:TDD-OFDMA系统中支持多用户MIMO波束成形方案的新型组合CSI反馈机制

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In modern Orthogonal Frequency Division Multiple Access (OFDMA) systems Multi-User Multiple-Input Multiple-Output (MU-MIMO) techniques are employed to increase the cell and user throughput without additional bandwidth or transmit power requirements. The increased throughput in the downlink is achieved by simultaneous transmission to multiple mobile stations (MSs) over the same time-frequency resources. MU-MIMO beamforming techniques at the base station (BS) transmitter are used to mitigate interference from one data stream to another. To enable the MU-MIMO beamforming operation in the downlink, channel state information (CSI) feedback from the MS is required. In this paper we propose a novel CSI feedback mechanism which combines two existing CSI feedback schemes to achieve significant system performance improvements in MU-MIMO beamforming for OFDMA systems operating in Time Division Duplex (TDD). The employed CSI reporting schemes are the quantized, codebook-based feedback scheme and the sounding-based feedback scheme. In the first step, the performance of the two feedback schemes is evaluated separately through system-level simulations. It is shown that for accurate calculation of the MU-MIMO beamforming weights, the sounding-based CSI feedback scheme is preferable in deployment scenarios with low noise and interference levels. For the remaining deployment scenarios, the quantized codebook-based reporting mechanism outperforms the sounding-based feedback scheme. In the second step, the proposed combination of the considered feedback mechanisms using a simple feedback selection scheme is evaluated through extensive simulations. The simulation results presented in the paper show that the proposed combined CSI feedback mechanism not only outperforms the existing CSI feedback schemes if used separately but also leads to marginal performance degradation compared to the system performance achieved with prefect CSI knowledge at the BS transmitter.
机译:在现代的正交频分多址(OFDMA)系统中,采用多用户多输入多输出(MU-MIMO)技术来增加小区和用户的吞吐量,而没有额外的带宽或发射功率要求。通过在相同的时频资源上同时向多个移动台(MS)传输,可以提高下行链路的吞吐量。基站(BS)发射机处的MU-MIMO波束成形技术用于减轻从一个数据流到另一数据流的干扰。为了在下行链路中启用MU-MIMO波束成形操作,需要来自MS的信道状态信息(CSI)反馈。在本文中,我们提出了一种新颖的CSI反馈机制,该机制将两个现有的CSI反馈方案相结合,以实现时分双工(TDD)中运行的OFDMA系统的MU-MIMO波束成形中系统性能的显着提高。所采用的CSI报告方案是量化的,基于码本的反馈方案和基于探测的反馈方案。第一步,通过系统级仿真分别评估两种反馈方案的性能。结果表明,为了精确计算MU-MIMO波束成形权重,基于探测的CSI反馈方案在具有低噪声和低干扰水平的部署方案中更为可取。对于其余的部署方案,基于量化密码本的报告机制优于基于探测的反馈方案。在第二步中,通过广泛的仿真评估使用简单反馈选择方案的已考虑反馈机制的拟议组合。本文中给出的仿真结果表明,所提出的组合CSI反馈机制,如果单独使用,不仅优于现有的CSI反馈方案,而且与在BS发射机中使用完美的CSI知识所获得的系统性能相比,还会导致边际性能下降。

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