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首页> 外文期刊>IEEE Transactions on Green Communications and Networking >Joint Interference Alignment and Power Allocation for Multi-User MIMO Interference Channels Under Perfect and Imperfect CSI
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Joint Interference Alignment and Power Allocation for Multi-User MIMO Interference Channels Under Perfect and Imperfect CSI

机译:完美和不完美CSI下多用户MIMO干扰信道的联合干扰对准和功率分配

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摘要

We present centralized-based iterative algorithms that jointly determine the optimal transceiver filters as well as the optimum power allocation for a K -user multiple-input multiple-output (MIMO) interference channel (IC). The optimality criterion is developed on the basis of the average per user multiplexing gain and the achievable sum-rate in the MIMO IC. By allowing channel state information (CSI) exchanged between base stations (BSs) and a central unit (CU), we design a feedback topology where CU collects local CSIs from all BSs, computes all transceiver filters and sends them to corresponding user-BS pairs. Note that the local CSIs at BSs are obtained from the estimation of the channel states during the so-called uplink-training phase. At the CU, using the alternating optimization strategy, various iterative algorithms are proposed to design the filters. In other related studies, the equal transmit power policy for all user-BS pairs is chosen ignoring the essential need to search for the optimal power allocation policy; they do not take the full advantage of the system's total power. Thus, another key aspect of this paper is to make optimal power allocation decisions for all the user-BS pairs based on the sum-rate maximization strategy and under a sum power constraint.
机译:我们提出了基于集中式的迭代算法,该算法共同确定K用户多输入多输出(MIMO)干扰信道(IC)的最佳收发器滤波器以及最佳功率分配。最优标准是基于MIMO IC中每个用户的复用增益平均值和可实现的总速率来制定的。通过允许在基站(BS)和中央单元(CU)之间交换信道状态信息(CSI),我们设计了一种反馈拓扑,其中CU从所有BS收集本地CSI,计算所有收发器滤波器并将它们发送到相应的用户BS对。注意,在所谓的上行链路训练阶段期间,根据信道状态的估计来获得BS处的局部CSI。在CU,使用交替优化策略,提出了各种迭代算法来设计滤波器。在其他相关研究中,为所有用户-BS对选择了相等的发射功率策略,而忽略了寻找最佳功率分配策略的基本需求。它们没有充分利用系统的总功率。因此,本文的另一个关键方面是基于和率最大化策略并在和功率约束下为所有用户-BS对做出最佳功率分配决策。

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