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Antenna selection in polarized multiple input multiple output transmissions with mutual coupling

机译:具有相互耦合的极化多输入多输出传输中的天线选择

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摘要

Physical size limitations in user equipment forces multiple antennas to be spaced closely, generating a considerable amount of mutual coupling between antenna elements that cannot be neglected. Thus, the design and deployment of antenna selection schemes appropriate for next generation wireless standards such as 3GPP LTE and LTE advanced need to take these practical implementation issues into account. In this paper, we consider multiple-input multiple-output systems where antenna elements are closely placed side by side, and examine the performance of a typical antenna selection strategy in such systems under various scenarios of antenna spacing and mutual coupling with varying antenna elements. We compare a linear array with an NSpoke co-located antenna structure which comprises of antennas separated by an angular displacement rather that spatial. We further improve the performance of such systems by a new selection approach which terminates the non-selected antenna elements with a short circuit. We observe that this methodology, can improve the performance considerably. We present analytical bounds for capacity with receive antenna selection. We found that NSpoke structures perform even better than full complexity systems when used with intelligent receive antenna selection methods, with few number of antennas even in the presence of strong mutual coupling effects.
机译:用户设备中的物理尺寸限制迫使多个天线紧密地间隔开,从而在不可忽略的天线元件之间产生了大量的相互耦合。因此,适合于诸如3GPP LTE和高级LTE的下一代无线标准的天线选择方案的设计和部署需要考虑这些实际的实现问题。在本文中,我们考虑了天线元件并排放置的多输入多输出系统,并研究了在各种天线间距和互不相同的天线元件耦合情况下,此类系统中典型天线选择策略的性能。我们将线性阵列与NSpoke并置天线结构进行比较,该结构包含由角位移而不是空间分开的天线。我们通过一种新的选择方法进一步改善了此类系统的性能,该选择方法可通过短路终止未选择的天线元件。我们观察到这种方法可以大大提高性能。我们给出了接收天线选择的容量分析界限。我们发现,与智能接收天线选择方法一起使用时,NSpoke结构的性能甚至比完全复杂的系统还要好,即使在存在强互耦效应的情况下,天线数量也很少。

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