Massive MIMO and inter-tier interference coordination

Ansuman Adhikary, E. A. Safadi, G. Caire
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引用次数: 27

Abstract

We study the performance of a two-tier system where a large number of small cells is deployed under a macro-cellular “umbrella”. The macro-cellular tier provides coverage and handles mobile users, while the small cell tier provides high rate locally to nomadic users. While the standard approach consists of operating the two tiers in different frequency bands, for various reasons (e.g., lack of licensed spectrum), it may be useful to operate both tiers in the whole available spectrum. Hence, we consider schemes for inter-tier interference coordination that do not assume any explicit data or channel state information sharing between tiers. In particular, we consider co-channel TDD and reverse TDD schemes, when the macro (tier-1) base station has a very large number of antennas and the tier-2 base stations have a moderately large number of antennas. We show that by exploiting the spatial directionality of the channel vectors, very efficient inter-tier interference management can be obtained with relatively low complexity. Our approach consists of a sort of “spatial blanking” of certain angle-of-departure of the tier-1 base station at given scheduled time-frequency slots, in order to create transmission opportunities for the corresponding tier-2 small cells. In particular, such “spatial blanking” is significantly more efficient than isotropic slot blanking (enhanced Inter-Cell Interference Coordination, eICIC) currently proposed in LTE standardization.
大规模MIMO与层间干扰协调
我们研究了一个两层系统的性能,其中大量的小细胞被部署在一个大细胞的“保护伞”下。宏蜂窝层提供覆盖并处理移动用户,而小蜂窝层为游牧用户提供本地高速率。虽然标准方法包括在不同的频带中操作两层,但由于各种原因(例如,缺乏许可频谱),在整个可用频谱中操作两层可能是有用的。因此,我们考虑了层间干扰协调的方案,这些方案不假设层之间有任何显式的数据或通道状态信息共享。特别是,当宏(一级)基站具有非常大量的天线而二级基站具有中等数量的天线时,我们考虑了同信道TDD和反向TDD方案。我们表明,通过利用信道矢量的空间方向性,可以以相对较低的复杂性获得非常有效的层间干扰管理。我们的方法包括一种“空间消隐”,在给定的预定时频槽中,对第一层基站的某些偏离角进行消隐,以便为相应的第二层小基站创造传输机会。特别是,这种“空间消隐”比目前在LTE标准化中提出的各向同性槽消隐(增强小区间干扰协调,eICIC)要高效得多。
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