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On quasi-orthogonal space-time block codes for dual-polarized MIMO channels

机译:对双极化MIMO通道的准正交空间块代码

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As a space and cost-efficient antenna configuration, dual-polarized antennas are widely deployed in real field MIMO wireless communication systems. The Quasi-Orthogonal Space-Time Code (QOSTBC), due to its advantages in the transmission rate and the decoding complexity, is an important transmit diversity scheme for more than 2 transmit antennas. In this paper, we investigate the performance of QOSTBC for dual-polarized MIMO channels. We show that when QOSTBC is used with dual-polarized antennas, we need to connect the power amplifier (PA) outputs to the differently polarized antennas carefully, in order to avoid more than 1dB performance loss at high cross-polar discrimination (XPD). Also, we show that, if the QOSTBC with constellation rotations, which achieves full diversity in uni-polarized MIMO channels, is used, the performance loss due to the bad PA to antenna connections is mitigated. However, when the XPD is high, the QOSTBC without full diversity, if connected properly, can achieve better performance than the QOSTBC with full diversity but connected badly, which shows the importance of proper connection at high XPD. So, to guarantee robust performance of QOSTBC at any XPD, besides designing codes to have full diversity and good diversity product, connecting properly between the PA outputs to the antennas is also important.
机译:作为空间和成本高效的天线配置,双极化天线广泛部署在真实的MIMO无线通信系统中。由于其在传输速率和解码复杂性的优点,准正交空间码(QOSTBC)是一个以上的发射天线的重要发射分集方案。在本文中,我们研究了QoStBC对双极化MIMO通道的性能。我们表明,当QoStBC与双极化天线一起使用时,我们需要将功率放大器(PA)输出连接到不同的极化天线,以避免在高次极性识别(XPD)下超过1dB性能损失。此外,如果使用具有星座旋转的QOSTBC,其中使用了在单极化MIMO通道中实现全部分集的QOSTBC,可以减轻由于BAD PA与天线连接引起的性能损失。但是,当XPD高时,如果正确连接,QOSTBC没有完全多样性,可以实现比具有全部多样性的QOSTBC更好的性能,而是持续连接,这表明了在高XPD下正确连接的重要性。因此,为了保证任何XPD的QoStBC的强大性能,除了设计代码以具有完整的多样性和良好的多样性产品,在PA输出之间正确连接到天线也很重要。

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