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Distributed Energy Spectral Efficiency Optimization for Partial/Full Interference Alignment in Multi-user Multi-relay Multi-cell MIMO Systems

机译:多用户多中继多小区MIMO系统中部分/完全干扰对准的分布式能量谱效率优化

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The energy spectral efficiency maximization (ESEM) problem of a multi-user, multi-relay, multi-cell system is considered, where all the network nodes are equipped with multi-antenna transceivers. To deal with the potentially excessive interference originating from a plethora of geographically distributed transmission sources, a pair of transmission protocols based on interference alignment (IA) are conceived. The first, termed the full-IA, avoids all intra-cell interference (ICI) and other-cell interference by finding the perfect interference-nulling receive beamforming matrices (RxBFMs). The second protocol, termed partial-IA, only attempts to null the ICI. Employing the RxBFMs computed by either of these protocols mathematically decomposes the channel into a multiplicity of non-interfering multiple-input–single-output channels, which we term as spatial multiplexing components (SMCs). The problem of finding the optimal SMCs as well as their power control variables for the ESEM problem considered is formally defined and converted into a convex optimization form with carefully selected variable relaxations and transformations. Thus, the optimal SMCs and power control variables can be distributively computed using both the classic dual decomposition and subgradient methods. Our results indicate that indeed, the ESEM algorithm performs better than the baseline equal power allocation algorithm in terms of its ESE. Furthermore, surprisingly the partial-IA outperforms the full-IA in all cases considered, which is because the partial-IA is less restrictive in terms of the number of available transmit dimensions at the transmitters. Given the typical cell sizes considered in this paper, the path-loss sufficiently attenuates the majority of the interference, and thus the full-IA over-compensates, when trying to avoid all possible sources of interference.
机译:考虑了多用户,多中继,多小区系统的能量谱效率最大化(ESEM)问题,其中所有网络节点都配备了多天线收发器。为了处理源自过多地理分布的传输源的潜在的过度干扰,构想了基于干扰对准(IA)的一对传输协议。第一种称为全IA,通过找到理想的消除干扰的接收波束成形矩阵(RxBFM),避免了所有小区内干扰(ICI)和其他小区干扰。第二种协议称为“部分IA”,仅尝试使ICI无效。使用通过上述两种协议中的任何一种计算出的RxBFM,都会在数学上将通道分解为多个无干扰的多输入单输出通道,我们将其称为空间复用组件(SMC)。为所考虑的ESEM问题找到最佳SMC及其功率控制变量的问题已正式定义,并通过精心选择的变量松弛和变换将其转换为凸优化形式。因此,可以使用经典的对偶分解和次梯度方法来分布式计算最优SMC和功率控制变量。我们的结果表明,就ESE而言,ESEM算法的性能确实优于基线均等功率分配算法。此外,令人惊讶的是,在所有考虑的情况下,部分IA都胜过完全IA,这是因为在发送器上可用部分的发送尺寸方面,部分IA的限制较少。给定本文中考虑的典型小区大小,当试图避免所有可能的干扰源时,路径损耗足以衰减大部分干扰,因此全IA会过度补偿。

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