This paper proposes a practical method for the definition of communication modes when antennas operate in the near-field region, by realizing ad-hoc beams exploiting the focusing capability of large antennas. The beamspace modeling proposed to define the communication modes is then exploited to derive expressions for their number (i.e., the degrees of freedom) in a generic setup, beyond the traditional paraxial scenario, together with closed-form definitions for the basis set at the transmitting and receiving antennas for several cases of interest, such as for the communication between a large antenna and a small antenna. Numerical results show that quasi-optimal communication can be obtained starting from focusing functions. This translates into the possibility of a significant enhancement of the channel capacity even in line-of-sight channel condition, without the need of implementing optimal but complex phase/amplitude profiles on transmitting/receiving antennas as well as resorting to intensive numerical solutions. Traditional results valid under paraxial approximation are revised in light of the proposed modeling, showing that similar conclusions can be obtained from different perspectives.
翻译:本文件建议了一种切实可行的方法,用以界定在近地区域天线运行时的通信模式,方法是利用大型天线的聚焦能力实现特别光束,然后利用为界定通信模式而提议的波束模型,在传统的副轴假设情景之外,在通用设置中得出通信模式编号的表达方式(即自由度),同时在传输和接收天线时为若干感兴趣的情况(如大型天线和小型天线之间的通信)设定的封闭式定义,数字结果表明,从聚焦功能开始,可以取得准最佳通信,这说明即使在直线频道条件下,频道能力也可能得到显著增强,而无需在传输/接收天线时采用最佳但复杂的阶段/光谱图,并采用密集的数字解决办法。