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Dynamic Interference Mitigation for Generalized Partially Connected Quasi-Static MIMO Interference Channel

机译:广义部分连接的准静态MIMO干扰信道的动态干扰缓解

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Recent works on MIMO interference channels have shown that interference alignment can significantly increase the achievable degrees of freedom (dof) of the network. However, most of these works have assumed a fully connected interference graph. In this paper, we investigate how the partial connectivity can be exploited to enhance system performance in MIMO interference networks. We propose a novel interference mitigation scheme which introduces constraints for the signal subspaces of the precoders and decorrelators to mitigate “many” interference nulling constraints at a cost of “little” freedoms in precoder and decorrelator design so as to extend the feasibility region of the interference alignment scheme. Our analysis shows that the proposed algorithm can significantly increase system dof in symmetric partially connected MIMO interference networks. We also compare the performance of the proposed scheme with various baselines and show via simulations that the proposed algorithms could achieve significant gain in the system performance of randomly connected interference networks.
机译:MIMO干扰信道的最新研究表明,干扰对准可以显着提高网络可实现的自由度(dof)。但是,大多数这些工作都假定了完全连接的干扰图。在本文中,我们研究了如何利用部分连接来增强MIMO干扰网络中的系统性能。我们提出了一种新颖的干扰缓解方案,该方案引入了对预编码器和解相关器的信号子空间的约束,以在“预编码器”和“去相关器”设计中以“小的”自由度为代价来缓解“许多”干扰归零约束,从而扩展了干扰的可行范围。对齐方案。我们的分析表明,该算法可以显着提高对称部分连接的MIMO干扰网络中的系统自由度。我们还比较了所提出的方案与各种基线的性能,并通过仿真表明,所提出的算法可以在随机连接的干扰网络的系统性能方面获得显着的收益。

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