多天线系统的原因和方法

J. Nossek, M. Ivrlac
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引用次数: 2

摘要

带宽效率对现代无线通信系统至关重要。带宽效率的提高通常会牺牲功率效率,这也很重要。多天线系统提供了以最好在传输链路两端利用多天线为代价来改进两者的潜力。我们正在审查基于发射机(TCSI)的长期(LT)信道状态信息的单链路场景下此类系统的通用性能测量。将考虑因素扩展到多用户单小区场景,瞬时TCSI对于充分利用多天线所能提供的功能是必要的。在这里,我们考虑如何最优地分配资源以适应从接收机到发射器的CSI反馈的问题。进一步扩展到蜂窝多用户多天线系统,由于调度是一个非平稳随机过程,我们面临着蜂窝间干扰问题。如果我们能使ICI功率可预测,那么在细胞和速率方面将会有巨大的改进。我们只专注于回顾通用结果,告诉我们多天线可以实现什么,但不会进入详细的实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The why and how of multiantenna systems
Bandwidth efficiency is of great importance for modern wireless communication systems. Increase of bandwidth efficiency normally sacrifices power efficiency, which is also important. Multiantenna systems offer the potential to improve both at the expense of utilizing multiple antennas preferably at both ends of a transmission link. We are reviewing generic performance measures for such systems in single link scenarios based on long term (LT) channel state information at the transmitter (TCSI). Extending the considerations to multiuser single cell scenarios, instantaneous TCSI will be necessary to fully exploit what multiple antennas can offer. Here we consider the problem of how to partition resources optimally to accommodate feedback of CSI from receiver to transmitter. Further extension to cellular multiuser multiantenna systems confronts us with the problem of intercell interference (ICI) which due to scheduling is a nonstationary random process. There is a huge improvement in cell sum rate to be gained, if we can make the ICI power predictable. We focus only on reviewing generic results telling us what can be achieved with multiple antennas but will not go into detailed realizations thereof.
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