在多天线传输系统中结合信息和空间方向性

Afonso Ferreira, Guilherme Gaspar, P. Montezuma, R. Dinis
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引用次数: 3

摘要

众所周知,大规模多输入多输出(Massive MIMO)系统在未来的无线宽带系统中具有很大的潜力。然而,高频谱和功率效率的要求只能通过多电平调制和有效的功率放大来实现。这似乎是矛盾的,因为多层星座的包络变化会影响功率放大的效率。这些限制可以通过与高效低成本饱和非线性放大器兼容的多放大器/天线发射机与宽带毫米波系统的频域接收器相结合来克服。基于这种多放大器结构,可以定义一种双层结构,其中每个放大分支连接到天线阵列以实现星座和功率方向,同时确保与使用二维天线阵列发射机的系统具有相似的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Combining info and spatial directivities in multiple antenna transmission systems
It is well known that Massive MIMO systems (Multiple-input multiple-output) have high potential for future wireless broadband systems. However, high spectral and power efficiency requirements can be only achieved by multilevel modulations and efficient power amplification. This seems contradictory, due envelope variation of multilevel constellations that can compromise efficiency of power amplification. These restrictions can be overpassed by a multi-amplifier/antenna transmitter compatible with efficient and low cost saturated nonlinear amplifiers combined with a frequency-domain receiver for broadband millimeter wave systems. Based on this multi-amplifier structure it is possible to define a double layered structure where each amplification branch is connected to an antenna array to achieve both constellation and power directivities, assuring at same time similar performances to systems using transmitters with 2-dimensional antenna arrays.
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