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Capacity of multi-user MIMO systems with MMSE and ZF precoding

机译:具有MMSE和ZF预编码的多用户MIMO系统的容量

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Spatial multiplexing can be deployed to achieve higher throughput in multi-user multiple-input multiple-output (MU-MIMO) systems. Many linear precoding techniques require each antenna to transmit its own data. The precoding techniques such as zero forcing (ZF) and minimum mean square error (MMSE) have presented for optimal capacity in the system. In this paper, we compare the channel capacity with ZF and MMSE when the relationship between the number of transmitting antennas and the number of receiving antenna changes. We apply the two types of precoding to multiple antennas in MU-MIMO downlink transmissions. We find that their impact on capacity is different, and which one provides higher capacity is dependent on the antenna numbers. The simulation results show the impact on capacity with different combinations of transmitting and receiving antennas. Finally, the simulation results demonstrate that the proposed structure can achieve the capacity-approaching performance of the precoding in different antenna environments.
机译:可以部署空间多路复用以实现多用户多输入多输出(MU-MIMO)系统中的较高吞吐量。许多线性预编码技术需要每个天线传输其自己的数据。诸如零强制(ZF)和最小均方误差(MMSE)的预编码技术已经呈现了系统中的最佳容量。在本文中,当发射天线数与接收天线的数量之间的关系时,我们将信道容量与ZF和MMSE进行比较。我们将两种类型的预编码应用于MU-MIMO下行链路传输中的多个天线。我们发现它们对容量的影响是不同的,并且哪一个提供更高的容量取决于天线号码。仿真结果表明,对不同组合的传输和接收天线的影响。最后,仿真结果表明,所提出的结构可以实现不同天线环境中预编码的容量接近性能。

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