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Channel estimation for super high bit rate massive MIMO systems using joint processing of analog fixed beamforming and CSI-based precoding

机译:基于模拟固定波束形成和基于CSI的预编码的联合处理的超高比特率大量MIMO系统的信道估计

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For the 5th generation (5G) mobile communication system, small cells using higher frequency bands with wider bandwidth will be introduced to achieve super high bit rate transmission of several tens of Gbps. Massive MIMO beamforming (BF) is one of promising technologies to compensate for larger path-loss in the higher frequency bands. We have proposed joint processing of analog fixed BF and channel state information (CSI)-based precoding (FBCP) for Massive MIMO systems to achieve large BF gain while reducing the number of baseband chains, which results in the cost reduction of the transceiver. To generate the precoding and postcoding matrices, both the transmitter and receiver have to estimate the equivalent MIMO channel (the multiplication of analog BF weight matrix and MIMO channel matrix). In this paper, the channel estimation (CE) scheme and the frame structure for Massive MIMO using FBCP is proposed. In the CE for FBCP, the accurate equivalent MIMO channel can be estimated because of the reference signal which obtains the BF gain by using the analog fixed BF. The throughput performances of FBCP with channel estimation are evaluated by the computer simulation and it is shown that the FBCP can achieve higher throughput than the fully digital Massive MIMO due to the reduced reference signal.
机译:对于第五代(5G)移动通信系统,将引入使用具有更宽带宽的较高频带的小单元以实现几十个Gbps的超高比特率传输。大规模的MIMO波束成形(BF)是有前途的技术之一,可以补偿更高频段的较大路径损失之一。我们已经提出了对基于模拟固定的BF和信道状态信息(CSI)的联合处理,用于基于MIMO系统的大​​规模MIMO系统,以降低基带链的数量,这导致收发器的成本降低。为了生成预编码和后标准矩阵,发送器和接收器都必须估计等效的MIMO信道(模拟BF重量矩阵和MIMO信道矩阵的乘法)。本文提出了使用FBCP的频道估计(CE)方案和用于大规模MIMO的帧结构。在FBCP的CE中,由于参考信号通过使用模拟固定的BF获得BF增益的参考信号,可以估计精确的等效MIMO通道。通过计算机仿真评估具有信道估计的FBCP的吞吐量性能,并显示FBCP由于参考信号的减小信号,FBCP可以实现比完全数字大型MIMO更高的吞吐量。

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