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Hybrid Single/Multi-User MIMO Transmission Based on Implicit Channel Feedback

机译:基于隐式信道反馈的混合单/多用户MIMO传输

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This paper investigates multiple input multiple output (MIMO) transmission techniques based on realistic assumptions on feedback of channel state information. We consider three conventional techniques as the baseline: 3GPP long-term evolution (LTE) single user MIMO (SU-MIMO) based on implicit channel feedback, zero-forcing multiuser MIMO (ZF MU-MIMO) based on explicit channel feedback, and ZF MU-MIMO based on implicit channel feedback. SU-MIMO may not be able to exploit the full spatial dimension of the downlink MIMO channel. ZF MU-MIMO has the potential to improve the spectral efficiency, but the explicit channel feedback is not compatible with implicit feedback whereas implicit based ZF MU-MIMO is limited by performance and also the commonly assumed rank restriction makes it impossible to perform dynamic switching of SU/MU MIMO transmission. We propose a new hybrid scheme which enables such dynamic switching of SU/MU MIMO transmission by allowing UE to feed back the implicit channel information without any rank restriction. Computer simulation results show the benefits of the new hybrid scheme, which can properly switch to the better transmission mode in various correlation scenarios.
机译:本文基于对信道状态信息反馈的现实假设,研究了多输入多输出(MIMO)传输技术。我们将三种常规技术作为基准:基于隐式信道反馈的3GPP长期演进(LTE)单用户MIMO(SU-MIMO),基于显式信道反馈的零强制多用户MIMO(ZF MU-MIMO)和ZF基于隐式信道反馈的MU-MIMO。 SU-MIMO可能无法利用下行链路MIMO信道的整个空间维度。 ZF MU-MIMO具有改善频谱效率的潜力,但显式信道反馈与隐式反馈不兼容,而基于隐式的ZF MU-MIMO受性能限制,而且通常假定的秩限制使得无法执行动态切换SU / MU MIMO传输。我们提出了一种新的混合方案,该方案通过允许UE反馈隐式信道信息而没有任何等级限制,从而实现了SU / MU MIMO传输的这种动态切换。计算机仿真结果显示了新混合方案的好处,该方案可以在各种相关情况下正确切换到更好的传输模式。

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