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Exploiting Spatial, Frequency, and Multiuser Diversity in 3GPP LTE Cellular Networks

机译:在3GPP LTE蜂窝网络中利用空间,频率和多用户多样性

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This paper addresses the problem of frequency domain packet scheduling (FDPS) incorporating spatial division multiplexing (SDM) multiple input multiple output (MIMO) techniques on the 3GPP Long-Term Evolution (LTE) downlink. We impose the LTE MIMO constraint of selecting only one MIMO mode (spatial multiplexing or transmit diversity) per user per transmission time interval (TTI). First, we address the optimal MIMO mode selection (multiplexing or diversity) per user in each TTI in order to maximize the proportional fair (PF) criterion adapted to the additional frequency and spatial domains. We prove that both single-user (SU-) and multi-user (MU-) MIMO FDPS problems under the LTE requirement are NP-hard. We therefore develop two types of approximation algorithms (ones with full channel feedback and the others with partial channel feedback), all of which guarantee provable performance bounds for both SU- and MU-MIMO cases. Based on 3GPP LTE system model simulations, our approximation algorithms that take into account both spatial and frequency diversity gains outperform the exact algorithms that do not exploit the potential spatial diversity gain. Moreover, the approximation algorithms with partial channel feedback achieve comparable performance (with only 1-6 percent performance degradation) to the ones with full channel feedback, while significantly reducing the channel feedback overhead by nearly 50 percent.
机译:本文解决了在3GPP长期演进(LTE)下行链路上结合空分复用(SDM)多输入多输出(MIMO)技术的频域分组调度(FDPS)问题。我们强加了LTE MIMO约束,即每个用户每个传输时间间隔(TTI)仅选择一种MIMO模式(空间复用或传输分集)。首先,我们针对每个TTI中每个用户的最佳MIMO模式选择(复用或分集),以使适应于附加频率和空间域的比例公平(PF)标准最大化。我们证明,在LTE要求下,单用户(SU-)和多用户(MU-)MIMO FDPS问题都是NP-hard。因此,我们开发了两种近似算法(一种具有全信道反馈,另一种具有部分信道反馈),所有这些算法都可以保证SU-和MU-MIMO情况下可证明的性能范围。基于3GPP LTE系统模型仿真,我们的同时考虑空间和频率分集增益的近似算法要优于不利用潜在空间分集增益的精确算法。此外,具有部分通道反馈的近似算法可实现与具有完整通道反馈的算法相当的性能(性能降低1-6%),同时显着减少了近50%的通道反馈开销。

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