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Multi-Cell Interference Mitigation for MIMO Non-Orthogonal Multiple Access Systems

机译:MIMO非正交多址系统的多电池干扰减轻

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摘要

This letter proposes a downlink multiple-input multiple-output (MIMO) non-orthogonal multiple access technique that mitigates multi-cell interference (MCI) at cell-edge users, regardless of the number of interfering cells, thereby improving the spectral efficiency. This technique employs specific receive beamforming vectors at the cell-edge users in clusters to minimize the MCI. Based on the receive beamforming vectors adopted by the cell-edge users, the transmit beamforming vectors for a base station (BS) and the receive beamforming vectors for cell-center users are designed to eliminate the inter-cluster interference and maximize the spectral efficiency. As each user can directly obtain its own receive beamforming vector, this technique does not require channel feedback from the users to a BS to design the receive beamforming vectors, thereby reducing the system overhead. We also derive the upper bound of the average sum rate achievable using the proposed technique. Finally, we demonstrate through simulations that the proposed technique achieves a better sum rate performance than the existing schemes and that the derived upper bound is valid.
机译:这封信提出了一个下行链路多输入多输出(MIMO)非正交多址技术,其在细胞边缘用户中减轻多电池干扰(MCI),而不管干扰电池的数量,从而提高光谱效率。该技术在集群中使用特定的接收波束成形矢量,以最小化MCI。基于电池边缘用户采用的接收波束成形矢量,用于基站(BS)的发送波束成形矢量和用于单元中心用户的接收波束成形矢量被设计为消除群集间干扰并最大化光谱效率。当每个用户可以直接获得自己的接收波束成形向量时,该技术不需要从用户到BS设计接收波束成形向量的信道反馈,从而减少系统开销。我们还使用所提出的技术获得可实现的平均和速率的上限。最后,我们通过模拟来证明所提出的技术实现比现有方案更好的总和率性能,并且派生的上限有效。

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