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Extension of the MIMO Precoder Based on the Minimum Euclidean Distance: A Cross-Form Matrix

机译:基于最小欧几里得距离的MIMO预编码器扩展:一种交叉形式矩阵

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Under full channel state information at the transmitter side (Tx-CSI), MIMO precoders can be designed by the optimization of many pertinent criteria, like, for example, the maximizing post-processing signal-to-noise ratio (max-SNR or beamforming solution), or the minimizing weighted mean square error between transmit and receive vector-symbols (W-MMSE solution). These solutions decouple the MIMO channel into b parallel independent datastreams. This diagonal structure reduces the complexity of the maximum likelihood (ML) decisions but the diversity order of these schemes is limited. Recently, we proposed a precoder, max-dmjn solution, which optimizes the exact expression of the minimum Euclidean distance and leads to a non diagonal structure allowing to achieve maximum diversity order. However, the result is available only for two transmit datastreams (6 = 2) and BPSK and QPSK modulations. In this paper, we propose a heuristic method to deal with the case b > 2, which provides a suboptimal, but good solution to this general problem. The new precoder, Equal-dm;n (E-dmin), is based on a non diagonal cross-form structure. It significantly enhances the transmit diversity in the eigen-subchannels. We demonstrate that the achieved diversity order is greater than that of precoders with diagonal structure for the same number of datastreams despite a tradeoff between rate and diversity. This design can also ensure quality of service (QoS) by using an adapted power allocation strategy. Performance comparisons show the BER improvement for MIMO and MIMO-OFDM systems.
机译:在发射机侧(Tx-CSI)的全信道状态信息下,可以通过优化许多相关标准来设计MIMO预编码器,例如,最大化后处理信噪比(max-SNR或波束成形)解决方案)或最小化发送和接收矢量符号之间的加权均方误差(W-MMSE解决方案)。这些解决方案将MIMO信道解耦为b个并行的独立数据流。这种对角线结构降低了最大似然(ML)决策的复杂性,但是这些方案的分集顺序受到限制。最近,我们提出了一种预编码器max-dmjn解决方案,该解决方案优化了最小欧几里得距离的精确表达式,并导致了一种非对角结构,从而实现了最大分集阶数。但是,该结果仅可用于两个发送数据流(6 = 2)以及BPSK和QPSK调制。在本文中,我们提出了一种启发式方法来处理b> 2的情况,它为该一般问题提供了次优但很好的解决方案。新的预编码器Equal-dm; n(E-d min )基于非对角交叉形式的结构。它显着增强了本征子信道的发射分集。我们证明了在速率和分集之间进行权衡的情况下,对于相同数量的数据流,所获得的分集阶数大于具有对角线结构的预编码器。该设计还可以通过使用自适应的功率分配策略来确保服务质量(QoS)。性能比较显示MIMO和MIMO-OFDM系统的BER有所改善。

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