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Bi-Directional Beamforming and its Capacity Scaling in Pairwise Two-Way Communications

机译:双向双向通信中的双向波束成形及其容量缩放

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摘要

Recent developments in various devices and applications require pairwise communications in an ad-hoc manner. Such systems are mostly interference-limited and suffer from capacity degradation caused by two-way communication. This paper investigates improvement of capacity performance in pairwise two-way communication through bi-directional use of spatial resources when beamforming is employed as the transmission scheme and instantaneous channel information is not available. This system is called a 'bi-directional beamforming' system. The primary approach to showing improvement in capacity performance in the bi-directional beamforming system involves focusing on the scaling of its achievable sum rate. Lower and upper bounds on the achievable sum rate are derived to evaluate the scaling of the achievable sum rate. Then, a condition is derived under which the bi-directional beamforming system outperforms the conventional beamforming system in the pairwise two-way communication environment. As a result, when the bi-directional beamforming system is employed, results show that the achievable sum rate scales twice as fast as that when conventional beamforming is employed.
机译:各种设备和应用中的最新发展要求以对等方式进行成对通信。这样的系统主要受干扰限制,并且遭受双向通信导致的容量降低。本文研究了在采用波束成形作为传输方案而无法获得即时信道信息的情况下,通过双向使用空间资源来改善双向双向通信中的容量性能。该系统称为“双向波束成形”系统。在双向波束成形系统中显示容量性能改善的主要方法涉及集中于可实现的总速率的缩放。得出可实现的总和率的上下限,以评估可实现的总和率的标度。然后,得出在双向双向通信环境中双向波束形成系统优于常规波束形成系统的条件。结果,当使用双向波束形成系统时,结果表明,可实现的总速率缩放比例是采用传统波束形成时的两倍。

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