Two-stage precoder for massive MIMO systems with limited feedback

Jinho Kang, Jung Hoon Lee, Wan Choi
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引用次数: 2

Abstract

A two-stage precoder is able to solve the feedback overhead problem in frequency division duplex (FDD) massive MIMO systems since an outer precoder reduces the dimension of the effective channel which is fed back to the base station for inner precoder design. We show that optimization of an outer-precoder dimension is consequential for two-stage precoder design with limited feedback. A smaller dimension of the outer precoder is beneficial to both inter-group interference (IGI) cancelation and the amount of feedback, but restricts same-group interference (SGI) cancelation. Based on a lower-bound of the expected signal to interference plus noise power ratio (SINR), we optimize the dimension of an outer precoder to maximize the average sum-rate. Since the derived lower-bound depends only on the channel covariance matrix and the dimension of the outer precoder, the dimension of an outer precoder can be pre-determined at the BS without knowing the instantaneous dimension-reduced effective channel via feedback. Our simulations results show that our proposed scheme achieves near-optimal average sum-rate.
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有限反馈大规模MIMO系统的两级预编码器
两级预编码器能够解决频分双工(FDD)大规模MIMO系统中的反馈开销问题,因为外部预编码器减少了内部预编码器设计时反馈给基站的有效信道的尺寸。我们证明了外部预编码器维度的优化对于具有有限反馈的两级预编码器设计是重要的。较小的外预编码器尺寸有利于消除组间干扰(IGI)和反馈量,但限制了同组干扰(SGI)的消除。基于期望信号干扰加噪声功率比(SINR)的下界,我们优化了外部预编码器的尺寸以最大化平均和速率。由于导出的下界仅取决于信道协方差矩阵和外部预编码器的维数,因此可以在不知道瞬时降维有效信道的情况下通过反馈在BS处预先确定外部预编码器的维数。仿真结果表明,该方案达到了接近最优的平均和速率。
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