下行OFDM系统中基于有限反馈的协同多用户MIMO

L. Thiele, M. Schellmann, T. Wirth, V. Jungnickel
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引用次数: 9

摘要

多蜂窝式无线电系统通常由于共信道干扰的存在而受到限制。物理层的概念如抗干扰组合,优化接收端,从而增强信号,同时只对抗终端端的干扰。众所周知,联合收发器优化,即多个基站的协同联合传输,可以大大提高下行传输的容量。然而,性能在很大程度上取决于可用的信道知识。研究如何在多蜂窝网络中实现分散、有限的协同下行传输。这就产生了一个关键的问题:是否可以通过使用简单的信道质量标识符实现高效的协作传输,或者发射机上的信道状态信息是强制性的?此外,我们在终端端使用最小均方误差均衡来对抗残留的共信道干扰。对于基线,我们只应用了接收机优化,并将这些结果与协同传输的结果进行了比较。我们演示了蜂窝正交频分复用系统的潜在容量增益及其随合作天线阵列数量的缩放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cooperative multi-user MIMO based on limited feedback in downlink OFDM systems
Multi-cellular radio systems are often limited due to the presence of cochannel interference. Physical layer concepts as e.g. interference rejection combining, optimize the receiver side and thus strengthen the signal while combating the interference at the terminal side only. It is well known that joint transceiver optimization, i.e. coordinated joint transmission from several base stations, yields large capacity improvement for downlink transmission. However, the performance highly depends on the available channel knowledge. We focus on how to realize a decentralized and limited cooperative downlink transmission in a multi-cellular network. This yields the crucial question: Is an efficient cooperative transmission possible by using simple channel quality identifiers, or is channel state information at the transmitter mandatory? Further, we use minimum mean square error equalization at the terminal side to combat residual cochannel interference. For baseline we apply receiver optimization only and compare these results with those obtained from cooperative transmission. We demonstrate potential capacity gains in a cellular orthogonal frequency division multiplexing system and their scaling with the number of cooperating antenna arrays.
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