Multi-Cell MIMO User Rate Balancing with Imperfect CSIT: SESIP vs. RESIP

Imène Ghamnia, D. Slock, Y. Yuan-Wu
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Abstract

In this work, we consider the max-min user rate balancing problem w.r.t. imperfect Channel Knowledge at the Transmitter (CSIT), namely: expected user rate balancing. This combines an operation of balancing at the user level and sum rate maximization at the level of the user streams. For the imperfect CSIT, we exploit an approximation of the expected rate as the Expected Signal and Interference Power (ESIP) rate, based on an original minorizer for every individual rate term. We study the latter with two expected rate approximations: i) Received signal level ESIP (RESIP), which may seem the most natural, and ii) Stream level ESIP (SESIP), which requires some more work for the stream level power optimization. Simulation results confirm the intuition that SESIP outperforms RESIP when the number of streams is lower than the number of receive antennas.
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不完美CSIT下的多小区MIMO用户速率平衡:SESIP与RESIP
在这项工作中,我们考虑了最大-最小用户速率平衡问题,即:期望用户速率平衡。这结合了用户级的平衡操作和用户流级的和速率最大化操作。对于不完美的CSIT,我们利用期望速率的近近值作为期望信号和干扰功率(ESIP)速率,基于每个单独速率项的原始最小化器。我们用两个期望速率近似来研究后者:i)接收信号电平ESIP (RESIP),这似乎是最自然的,ii)流电平ESIP (SESIP),这需要更多的工作来进行流电平功率优化。仿真结果证实了SESIP在流数小于接收天线数时优于RESIP的直觉。
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