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A low-complexity relay transmit strategy for two-way relaying with MIMO amplify and forward relays

机译:具有MIMO放大和正向中继的双向中继的低复杂度中继传输策略

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In this paper we consider two-way relaying with a MIMO amplify and forward (AF) relay. In the literature, the relay amplification matrix which maximizes the sum rate in two-way relaying is not known for the general MIMO case. However, the maximization of the channels' Frobenius norms is easily achieved via the Algebraic Norm-Maximizing (ANOMAX) transmit strategy. While this scheme provides a significant improvement in the received signals' strengths, it does not reach the full multiplexing gain for high SNRs due to its low rank nature. Therefore, we propose a simple strategy to restore the rank while preserving the same subspaces via an optimization over the profile of the singular values. The resulting scheme is called rank-restored ANOMAX (RR-ANOMAX). The main benefit of this approach is that the computational complexity is very low. Moreover, its performance is very close to the one-way upper-bound which is obtained by considering the two transmission directions as independent one-way relaying channels.
机译:在本文中,我们考虑采用MIMO放大和转发(AF)中继的双向中继。在文献中,对于一般的MIMO情况,在双向中继中最大化总和率的中继放大矩阵是未知的。但是,可以通过代数范数最大化(ANOMAX)传输策略轻松实现通道Frobenius范数的最大化。尽管此方案显着改善了接收信号的强度,但由于其低秩性质,因此无法达到高SNR的全复用增益。因此,我们提出了一种简单的策略,即通过对奇异值的分布进行优化来恢复等级,同时保留相同的子空间。所得方案称为等级还原ANOMAX(RR-ANOMAX)。这种方法的主要好处是计算复杂度非常低。而且,其性能非常接近单向上限,后者是通过将两个传输方向视为独立的单向中继信道而获得的。

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