Covariance based linear precoding in the case of identical longterm channel state information

Haixia Zhang, M. Ivrlac, J. Nossek, D. Yuan
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引用次数: 1

Abstract

We extend the covariance based linear precoding theory to the spatial division multiple access (SDMA) downlink processing in the case that all the streams belonging to the same user have identical channel covariance matrices, which happens when the antennas of the user are located in close proximity. In this case, the precoders designed for those streams based on covariance channel state information (CSI) will be identical, therefore, they can not separate the user successfully. To overcome this, we modify the covariance matrices by keeping the eigenvectors unchanged and choosing one eigenvalue per stream if the number of streams equals to the rank of the covariance matrix. Otherwise, the eigenvalues will be divided into different groups with the rule making the sums of each group as similar as possible. Then, the precoders are designed based on the modified covariance matrices with the constraint of total transmit power. The proposed method is tested and simulation results show that it works well and can improve the bit error ratio (BER) of the system significantly.
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长期信道状态信息相同情况下基于协方差的线性预编码
我们将基于协方差的线性预编码理论推广到SDMA下行链路处理中,当用户天线距离较近时,属于同一用户的所有流具有相同的信道协方差矩阵。在这种情况下,为这些基于协方差信道状态信息(CSI)的流设计的预编码器将是相同的,因此,它们不能成功地分离用户。为了克服这个问题,我们通过保持特征向量不变来修改协方差矩阵,如果流的数量等于协方差矩阵的秩,则每个流选择一个特征值。否则,特征值将被分成不同的组,规则使每组的和尽可能相似。然后,在总发射功率约束下,基于改进协方差矩阵设计预编码器。对该方法进行了测试和仿真,结果表明该方法能够有效地提高系统的误码率。
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