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Interference Alignment for Partially Connected MIMO Cellular Networks

机译:部分连接的MIMO蜂窝网络的干扰对准

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摘要

In this paper, we propose an iterative interference alignment (IA) algorithm for MIMO cellular networks with partial connectivity, which is induced by heterogeneous path losses and spatial correlation. Such systems impose several key technical challenges in the IA algorithm design, namely the overlapping between the direct and interfering links due to the MIMO cellular topology as well as how to exploit the partial connectivity. We shall address these challenges and propose a three stage IA algorithm. As illustration, we analyze the achievable degree of freedom (DoF) of the proposed algorithm for a symmetric partially connected MIMO cellular network. We show that there is significant DoF gain compared with conventional IA algorithms due to partial connectivity. The derived DoF bound is also backward compatible with that achieved on fully connected K-pair MIMO interference channels.
机译:在本文中,我们提出了一种用于具有部分连接性的MIMO蜂窝网络的迭代干扰对准(IA)算法,该算法是由异构路径损耗和空间相关性引起的。这样的系统在IA算法设计中提出了几个关键的技术挑战,即由于MIMO蜂窝拓扑结构导致的直接链路与干扰链路之间的重叠以及如何利用部分连接性。我们将解决这些挑战,并提出一个三阶段IA算法。作为说明,我们分析了用于对称部分连接的MIMO蜂窝网络的算法的可实现的自由度(DoF)。我们显示,由于部分连接,与传统的IA算法相比,DoF增益显着。导出的DoF范围也与在完全连接的K对MIMO干扰信道上实现的范围向后兼容。

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