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Optimal transmitter eigen-beamforming and space-time block coding based on channel mean feedback

机译:基于信道均值反馈的最优发射机特征波束形成和空时分组编码

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Optimal transmitter designs obeying the water-filling principle are well-documented; they are widely applied when the propagation channel is deterministically known and regularly updated at the transmitter. Because channel state information is impossible to be known perfectly at the transmitter in practical wireless systems, we design, in this paper, an optimal multiantenna transmitter based on the knowledge of mean values of the underlying channels. Our optimal transmitter design turns out to be an eigen-beamformer with multiple beams pointing to orthogonal directions along the eigenvectors of the correlation matrix of the estimated channel at the transmitter and with proper power loading across beams. The optimality pertains to minimizing an upper bound on the symbol error rate, which leads to better performance than maximizing the expected signal-to-noise ratio (SNR) at the receiver. Coupled with orthogonal space-time block codes, two-directional eigen-beamforming emerges as a more attractive choice than conventional one-directional beamforming with uniformly improved performance, without rate reduction, and without essential increase in complexity. With multiple receive antennas and reasonably good feedback quality, the two-directional eigen-beamformer is also capable of achieving the best possible performance in a large range of transmit-power-to-noise ratios, without a rate penalty.
机译:遵循充水原理的最佳变送器设计已得到充分证明;当确定确定传播通道并在发射机处定期更新传播通道时,它们将得到广泛应用。由于在实际的无线系统中,不可能在发射机处完美地了解信道状态信息,因此,在本文中,我们基于基础信道平均值的知识设计了一种最佳的多天线发射机。我们的最佳发射机设计结果是一个本征波束形成器,其中多个波束指向正交方向,这些正交波束沿着发射机处估计信道的相关矩阵的本征向量进行正交,并且在波束之间具有适当的功率负载。最优性与最小化符号错误率的上限有关,这导致比最大化接收器的预期信噪比(SNR)更好的性能。结合正交空时分组码,与传统的单向波束成形相比,双向本征波束成形是一种更具吸引力的选择,其性能得到统一提高,且不降低速率,并且不会显着增加复杂性。借助多个接收天线和相当好的反馈质量,双向本征波束形成器还能够在很大的发射功率-噪声比范围内实现最佳性能,而不会造成速率损失。

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