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Sum-Power Minimization Under Rate Constraints in Full-Duplex MIMO Interference-Channels

机译:全双工MIMO干扰信道中速率约束下的总功率最小化

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We consider a full-duplex (FD) multiple-input multiple-output (MIMO) interference-channel, where multiple pairs of FD nodes coexist in the same network, and hence each node not only suffers from self-interference due to operating in FD mode, but also from co-channel-interference (CCI) from other pairs due to simultaneous transmission at each link. Transmission power expenditure is a significant source for power consumption in communication systems. One way to extend battery life is to utilize power-efficient resource allocation that minimizes the transmit power consumption. Therefore, in this paper we propose a penalty-based algorithm to address the Quality-of-Service (QoS) issue of this FD system where the total transmit power is minimized subject to minimum rate constraints at each node. The algorithm exploits both spatial and temporal freedoms of the source covariance matrices of MIMO links between the nodes to achieve a lower total system power.
机译:我们考虑了全双工(FD)多输入多输出(MIMO)干扰信道,其中多对FD节点共存于同一网络中,因此每个节点不仅因在FD中运行而遭受自干扰模式,但由于在每个链路上同时传输,还来自其他对的同信道干扰(CCI)。传输功率消耗是通信系统中功率消耗的重要来源。延长电池寿命的一种方法是利用省电的资源分配,该资源分配可最大程度地降低发射功率消耗。因此,在本文中,我们提出了一种基于惩罚的算法来解决该FD系统的服务质量(QoS)问题,在该问题中,总发射功率被最小化,并且每个节点的速率都受到最小速率的约束。该算法利用节点之间MIMO链路的源协方差矩阵的空间和时间自由度,以实现较低的总系统功率。

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