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Channel Quantization and Feedback Optimization in Multiuser MIMO-OFDM Downlink Systems

机译:多用户MIMO-OFDM下行链路系统中的信道量化和反馈优化

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We consider a multiuser MIMO-OFDM downlink system with single antenna mobile terminals (MTs) where channel state information at the base station is provided through limited uplink feedback (FB). In order to reduce the FB rate and signal processing complexity, the available bandwidth is divided into resource blocks (RBs) whose number of subcarriers reflects the coherence bandwidth of the channel. This approach is very common in the standardization of 4th generation wireless communication systems and justifies an independent channel quantization per RB. The paper has two main contributions: firstly we show conditions on the coherence bandwidth of the channel and the FB rate per RB that allow for a simpler characterization of the RB channel matrix by a space vector, causing negligible performance loss. This is accomplished after deriving a new performance metric for RB channel quantization that exploits spatial and frequency correlation. As a second contribution we investigate the trade-off between accurate channel knowledge and frequency/multiuser diversity. It is seen that even for a moderate number of MTs in the network, concentrating all the available FB bits in characterizing only one RB provides a significant gain in system throughput over a more classical distributed approach and this result is validated both analytically and by simulations.
机译:我们考虑具有单天线移动终端(MTS)的多用户MIMO-OFDM下行链路系统,其中通过有限上行链路反馈(FB)提供基站处的信道状态信息。为了降低FB速率和信号处理复杂性,可用带宽被分成资源块(RB),其数量的子载波反映了信道的相干带宽。这种方法在第四代无线通信系统的标准化中非常常见,并证明每个RB的独立信道量化。本文有两个主要贡献:首先,我们向通道的相干带宽和每个RB的FB速率显示出条件,其允许通过空间向量进行更简单地表征RB信道矩阵,从而导致可忽略不计的性能损失。这是在推导出用于利用空间和频率相关的RB信道量化的新性能度量之后完成的。作为第二种贡献,我们调查准确渠道知识和频率/多元化多样性之间的权衡。可以看出,即使是网络中的适度数量的MTS,只集中在特征中只有一个RB的所有可用的FB比特都会通过更加经典的分布式方法提供系统吞吐量的显着增益,并且该结果在分析和模拟中验证。

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