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On DoF-Based Interference Cancellation Under General Channel Rank Conditions

机译:在一般渠道等级条件下基于DOF的干扰消除

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Degree-of-freedom (DoF) based models have become prevalent in studying MIMO-based wireless networks. However, most existing DoF-based models assume the channel matrix is of full-rank. Such a simplifying assumption has gradually become problematic, particularly when the number of antennas increases and the propagation environment is not close to ideal. In this paper, we address this problem by developing a general theory for the DoF-based model under general channel rank conditions. We start with a fundamental understanding on how MIMO's DoFs are consumed at each node for spatial multiplexing (SM) and interference cancellation (IC) in the presence of rank-deficient channels. Based on this understanding, we develop a DoF model that can be used for identifying the DoF region of a multi-link MIMO network and for studying DoF scheduling in MIMO networks under general channel rank conditions. Specifically, we find that for IC, shared DoF consumption at both transmit and receive nodes is critical for efficient DoF allocation. Further, we show that DoF consumption under the existing full-rank assumption is a special case of our generalized DoF model. Based on case studies, we show that the general IC model can achieve larger feasible DoF regions or improved objective values than existing unilateral IC models. The findings of this paper pave the way for future research of many-antenna networks under general channel rank conditions.
机译:基于自由度(DOF)的模型在研究基于MIMO的无线网络方面变得普遍。但是,大多数现有的基于DOF的模型假设通道矩阵是全秩的。这种简化的假设逐渐变得有问题,特别是当天线的数量增加并且传播环境不接近理想时。在本文中,我们通过在一般信道等级条件下开发基于DOF的模型的一般理论来解决这个问题。我们首先关于在等级多路复用(SM)和干扰消除(IC)的每个节点上消耗MIMO的DOF如何在等级缺陷通道中消耗的基本理解。基于此理解,我们开发了一种可用于识别多链路MIMO网络的DOF区域的DOF模型,并在一般信道等级条件下研究MIMO网络中的DOF调度。具体而言,我们发现,对于IC,发送和接收节点的共享DOF消耗对于有效的DOF分配至关重要。此外,我们表明,在现有的全级别假设下的DOF消耗是我们广泛的DOF模型的特殊情况。基于案例研究,我们表明通用IC模型可以实现更大可行的DOF区或者比现有单侧IC模型更好的客观值。本文的调查结果为一般渠道等级条件下的许多天线网络的未来研究铺平了道路。

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