Dynamic Time Division Duplexing for Full Dimension MIMO in 5G System

J. W. Lee, C. Kang, M. Rim
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引用次数: 3

Abstract

Dynamic time division duplexing (TDD) allows for flexible resource allocation on downlink (DL) and uplink (UL) traffic demand. The independent DL and UL frame structure in each cell will be useful for the varying traffic condition, especially when the number of active users is highly limited, e.g., in a small cell. However, the dynamic TDD scheme suffers from cross-link interference (CLI) incurred by DL and UL transmission at the same time in the adjacent cells, respectively. In this paper, we consider a user-slot mapping scheme that combines both static and dynamic features of TDD slot allocation into a beam angle-ordered, or joint SINR and beam angle-ordered arrangement, so that CLI be naturally handled without resorting to any sophisticated system-wide optimization process in full dimension MIMO system. Our system-level simulation results demonstrate that the proposed mapping scheme improves the performance of dynamic TDD system without compromising the lower 5% UE performance, by reducing the CLI.
5G系统中全维MIMO的动态时分双工
TDD (Dynamic time division duplexing)技术可以根据DL(下行链路)和UL(上行链路)的流量需求灵活分配资源。每个小区中独立的DL和UL帧结构对于不同的流量条件非常有用,特别是当活动用户数量非常有限时,例如在小小区中。但是,动态TDD方案在相邻小区中分别存在DL和UL同时传输所产生的交联干扰(CLI)。在本文中,我们考虑了一种用户槽位映射方案,该方案将TDD槽位分配的静态和动态特征结合到波束角有序或SINR和波束角有序的联合排列中,从而在全维MIMO系统中自然地处理CLI,而无需采用任何复杂的系统范围优化过程。我们的系统级仿真结果表明,所提出的映射方案通过降低CLI,在不影响低5% UE性能的情况下提高了动态TDD系统的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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