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Spatial spreading by multi-transmit antennas allows high spectrum efficiency and low required transmit energy in multi-user mobile radio downlinks

机译:多传输天线的空间传播允许高频效率和低所需的多用户移动无线电下行链路所需的传输能量

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Spreading of transmit signals in the spectral and/or temporal domains in combination with appropriate despreading measures on the receiver side dates back to the early days of Spread Spectrum Techniques in the 1940s and since then had fruitful effects on many information technical fields as for instance communications, radar and satellite navigation. Spreading goes along with the consumption of additional resources, that is more bandwidth and/or more transmission time is needed as compared to the unspread case. In communications, such a resource luxury can be used to accommodate an increased number of communication links, that is to enhance capacity, which is for instance the crux of CDMA mobile radio systems. A promising approach to a further capacity increase of radio communication systems is the application of Multiple-Input-Multiple-Output (MIMO) antenna arrangements. In this paper we interpret the use of such antennas as spatial spreading/despreading, that is as an investment of additional spatial resources, a view somewhat contrasting the conventional perception of MIMO. With our interpretation we can explain the capacity gain enabled by such antennas analogously to the capacity gain offered by spectral and/or temporal spreading. As an asset of MIMO antennas, the investment of additional resources in the spatial domain does not stress the spectral and temporal domains. In the paper, after the presentation of our basic considerations, these are applied to OFDM MIMO multi-user mobile radio downlinks (DL) and illustrated by simulations.
机译:在频谱和/或时间域中传播在频谱和/或时间域中的发射信号与接收器边的适当解扩点措施回到20世纪40年代的扩频技术的早期日期,并且从那时起,许多信息技术领域都有富有成果的影响,例如通信,雷达和卫星导航。扩散与额外资源的消耗一起,与未经概略的情况相比,需要更多的带宽和/或更多传输时间。在通信中,这种资源奢侈品可用于容纳增加的通信链路数量,即增强容量,例如,例如CDMA移动无线电系统的关键。对无线电通信系统的进一步容量增加的有希望的方法是应用多输入多输出(MIMO)天线布置。在本文中,我们将这些天线的使用解释为空间传播/解扩,即作为额外的空间资源的投资,视图略微对比MIMO的传统感知。通过我们的解释,我们可以使用频谱和/或时间扩展提供的容量增益来解释由这种天线启用的容量增益。作为MIMO天线的资产,空间域中的额外资源的投资不会强调光谱和颞座。本文在介绍了我们的基本注意事项之后,这些应用于OFDM MIMO多用户移动无线电下行链路(DL)并通过模拟说明。

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