A practical precoding scheme for multicell MIMO channels with partial user's data sharing

Paul de Kerret, Rajeev Gangula, D. Gesbert
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引用次数: 2

Abstract

In this work1, we consider a setting where K Transmitters (TXs) equipped with multiple antennas aim at transmitting to their K respective Receivers (RXs) also equipped with multiple antennas. Without exchange of the user's data symbols, this represents a conventional Interference Channel (IC), while it is a so-called MIMO Network Channel if the user's data symbols are fully shared between all the TXs. The focus of this work is on the intermediate case where the user's data symbols can be arbitrary shared to the TXs such that only a subset of the TXs has access to the data symbols to transmit to a given RX. We show that we can build a virtual IC so as so have the transmission in that IC equivalent to the transmission in the original setting. In this virtual IC, it is then possible to apply any of the numerous algorithms (Interference Alignment algorithms) initially tailored for the IC. Finally, we let the routing matrix be optimized subject to a constraint on the total number of symbols shared and use a greedy algorithm to find the user's data allocation. We show by simulations that sharing only few user's data symbols is sufficient to achieve most of the performance.
一种实用的多小区MIMO信道部分用户数据共享预编码方案
在这项工作中,我们考虑这样一种设置,即配备多天线的K个发射器(TXs)旨在向同样配备多天线的K个各自的接收器(RXs)发送信号。如果不交换用户的数据符号,这代表传统的干扰信道(IC),而如果用户的数据符号在所有TXs之间完全共享,则它是所谓的MIMO网络信道。这项工作的重点是在中间情况下,用户的数据符号可以任意共享给TXs,这样只有TXs的一个子集可以访问要传输到给定RX的数据符号。我们证明了我们可以构建一个虚拟的集成电路,使得该集成电路中的传输等同于原始设置中的传输。在这个虚拟集成电路中,可以应用最初为集成电路量身定制的众多算法中的任何一种(干扰对齐算法)。最后,我们让路由矩阵在共享符号总数的约束下进行优化,并使用贪婪算法来找到用户的数据分配。我们通过模拟表明,只需共享少量用户数据符号就足以实现大部分性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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