速率最优MIMO预编码中发射功率与泄漏功率的权衡

Tim Rüegg, A. Amah, A. Wittneben
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引用次数: 7

摘要

本文研究了多用户多输入多输出(MU-MIMO)场景下基于泄漏的预编码(LBP)中泄漏减少和传输功率控制之间的相互依赖关系,以实现速率最大化。我们提出了一种LBP方案,该方案在泄漏和发射功率联合约束下为每个MIMO链路提供速率最优预编码,并推导了该方案的迭代闭形式解。根据约束条件和泄漏功率的强弱,需要调整泄漏功率和/或发射功率。在泄漏完全不减少的利己主义情况和泄漏最小化的利他主义情况之间的任何泄漏水平都可以实现。这允许通过在泄漏功率和发射功率约束之间进行最佳选择来优化MU-MIMO设置中的网络性能。通过数值模拟,我们展示了泄漏功率和发射功率之间的相互依赖关系,并演示了通过最佳权衡可以获得的增益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the trade-off between transmit and leakage power for rate optimal MIMO precoding
In this paper, we study the interdependency between leakage reduction and transmit power control for rate maximization in leakage based precoding (LBP) for a multi user multiple-input multiple-output (MU-MIMO) scenario. We propose a LBP scheme which provides the rate optimal precoding for each MIMO link under a joint leakage and transmit power constraint and derive an iterative closed form solution for it. Depending on the constraints and the strength of the leakage power, the leakage power and/or the transmit power needs to be adjusted. Any leakage level between the egoistic case, where the leakage is not reduced at all, and the altruistic case, where the leakage is minimized, can be achieved. This allows to optimize the network performance in a MU-MIMO setup by optimally choosing the trade-off between leakage power and transmit power constraints. Using numerical simulations, we show the interdependency between the leakage power and the transmit power and demonstrate the gain we can achieve with the optimal trade-off.
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