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Outage-Efficient Strategies for Multiuser MIMO Networks With Channel Distribution Information

机译:具有信道分布信息的多用户MIMO网络的断电有效策略

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摘要

In this paper, we examine single user and multiuser multiple-input multiple-output (MIMO) beamforming networks with channel distribution information (CDI). Since CDI changes infrequently compared to channel state information (CSI), algorithms based on CDI can achieve significant savings in feedback compared to algorithms based on CSI. With CDI, we can only guarantee quality of service for a specified outage probability in the network. Assuming correlated Rayleigh fading on all the links, we derive a closed-form expression for the outage probability. Then, using this expression, we derive algorithms for joint transmit/receive beamforming and power control to minimize the weighted sum power in the network while guaranteeing these outage probabilities. For both single-user and multiuser MIMO scenarios, we present optimal algorithms under the Kronecker model assumption, and we present near-optimal algorithms assuming general correlation structures on the links. We then show that using these algorithms based on CDI, if we are willing to accept given outages on the links, we can achieve comparable power usage in the network relative to algorithms based on CSI.
机译:在本文中,我们研究了具有信道分布信息(CDI)的单用户和多用户多输入多输出(MIMO)波束成形网络。由于与信道状态信息(CSI)相比,CDI的变化很少,因此与基于CSI的算法相比,基于CDI的算法可以显着节省反馈。使用CDI,我们只能在网络中指定的中断概率下保证服务质量。假设所有链路上的相关瑞利衰落均成立,则可以得出停机概率的闭式表达式。然后,使用该表达式,我们导出用于联合发送/接收波束成形和功率控制的算法,以在确保这些中断概率的同时,最小化网络中的加权总和功率。对于单用户和多用户MIMO场景,我们在Kronecker模型假设下给出了最优算法,并且在链路上假定了一般相关结构的情况下给出了近乎最优的算法。然后,我们表明使用这些基于CDI的算法,如果我们愿意接受链路上的给定中断,则相对于基于CSI的算法,我们可以在网络中实现可比的功耗。

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