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HARQ performance over massive MIMO channels using chase combining and CZA pilot decontamination

机译:使用Chase Combling和CZA Pilot Deconamination对大规模MIMO通道的HARQ性能

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Pilot contamination is known to seriously limit the performance of massive MIMO systems due to degradation of channel estimation. Channel Zooming Algorithm (CZA) has been proposed as an efficient iterative algorithm to ensure the mitigation of the pilot contamination effect. This algorithm is able to zoom through iterations on the signal of the strongest user by taking advantage of the difference in space signatures and transmitted data sequences. CZA has been proved to be efficient for pilot contamination in the massive MIMO systems in the case of large number of antennas and long data packets. In this paper, we propose a novel version of CZA that utilizes the benefits of retransmitted packets combining. We consider a truncated Hybrid Automatic Repeat reQuest (HARQ), where the number of retransmissions is limited using Chase combining (CC). We evaluate the Packet Error Rate (PER) performance of the proposed approach for different order modulations as BPSK, QPSK, 16-QAM and 64-QAM. Simulation results show that very good performances can be achieved after very few transmission attempts with our HARQ scheme using CC and CZA, despite possible different contamination during each retransmission.
机译:已知导频污染严重限制由于信道估计的劣化导致的大规模MIMO系统的性能。渠道放大算法(CZA)已经提出为一种有效的迭代算法,以确保导频污染效果的减轻。通过利用空间签名和传输的数据序列的差异,该算法能够通过最强用户的信号进行迭代。在大量天线和长数据包的情况下,已证明CZA已被证明是在大量MIMO系统中的导频污染。在本文中,我们提出了一种新颖的CZA版本,其利用重传数据包组合的益处。我们考虑截断的混合自动重复请求(HARQ),其中使用CHASE组合(CC)有限重传。我们评估所提出的方法的数据包错误率(PER)性能为不同的订单调制作为BPSK,QPSK,16-QAM和64-QAM。仿真结果表明,尽管在每个重传期间可能不同的污染,但在使用CC和CZA的HARQ方案的传输尝试非常少,可以实现非常好的表演。

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