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Pseudo Eigenbeam-space Division Multiplexing (pe-sdm) In Frequency-selective Mimo Channels

机译:频率选择性Mimo通道中的伪本征束空分复用(pe-sdm)

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摘要

In a frequency-selective multiple-input multiple-output (MIMO) channel, the optimum transmission is achieved by beamforming with eigenvectors obtained at each discrete frequency point, i.e., an extension of eigenbeam-space division multiplexing (E-SDM). However, the calculation load of eigenvalue decomposition at the transmitter increases in proportion to the number of frequency points. In addition, frequency-independent eigenvectors increase the delay spread of the effective channel observed at the receiver. In this paper, we propose a pseudo eigenvector scheme for the purpose of mitigating the calculation load and maintaining frequency continuity (or decreasing the delay spread). First, we demonstrate that pseudo eigenvectors reduce the delay spread of the effective channels with low computational complexity. Next, the practical performance of the pseudo E-SDM (PE-SDM) transmission is evaluated. The simulation results show that PE-SDM provides almost the same or better performance compared with E-SDM when the receiver employs a time-windowing-based channel estimation available in the low delay spread cases.
机译:在频率选择多输入多输出(MIMO)信道中,通过利用在每个离散频率点获得的特征向量进行波束成形(即扩展本征波束空分复用(E-SDM))来实现最佳传输。然而,发射机处的特征值分解的计算负荷与频率点的数量成比例地增加。另外,与频率无关的特征向量增加了在接收机处观察到的有效信道的延迟扩展。在本文中,我们提出了一种伪特征向量方案,以减轻计算负荷并保持频率连续性(或减少延迟扩展)。首先,我们证明伪特征向量以较低的计算复杂度降低了有效信道的延迟扩展。接下来,评估伪E-SDM(PE-SDM)传输的实际性能。仿真结果表明,当接收机采用在低延迟扩展情​​况下可用的基于时间窗口的信道估计时,PE-SDM与E-SDM相比提供几乎相同或更好的性能。

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